|Publication number||US3703739 A|
|Publication date||Nov 28, 1972|
|Filing date||Mar 2, 1971|
|Priority date||Mar 2, 1971|
|Publication number||US 3703739 A, US 3703739A, US-A-3703739, US3703739 A, US3703739A|
|Inventors||Heggem Howard W, Young Edward G|
|Original Assignee||Beatrice Foods Co|
|Export Citation||BiBTeX, EndNote, RefMan|
|Patent Citations (10), Referenced by (83), Classifications (15)|
|External Links: USPTO, USPTO Assignment, Espacenet|
United States Patent Young et al.
[ 1 Nov. 28, 1972 MULTIPLE LAYER SURFACE WORKING PADS  Inventors: Edward G. Young, Gloucester, Mass; Howard W. Heggem, Glen Ellyn, Ill.
 Assignee: Beatrice Foods Co., Chicago, Ill.
 Filed: March 2, 1971  Appl.No.: 120,137
 US. Cl. ..l5/230.17, 15/118, 24/204, 51/406, 161/53  Int. Cl. ..A47l 11/40, B24d 11/00, B32b 7/06 58 Field ofSearch.... .15/98, 209 AH, 223, 228,
230.12,15/23o.17, 230.19, 118; 24/204, DIG. 1s;
2/DlG. 6; 51/406; 161/53  References Cited UNITED STATES PATENTS I 3,383,738 5/1968 Fox et a1. 424/204 ux 3,274,616 9/1966 Russo ..24/204 ux 3,472,198 10/ l 969 Rinecker ..24/ 204 X 3,522,637 8/1970 Brurnlik ..24/204 3,421,188 1/1969 Rock ..24/204 3,384,918 5/1968 Fink ..161/53 X 1,822,856 9/1931 Dirkes ..51/406 2,485,295 10/ 1949 Larson ..5 l/406 X 2,644,280 7/1953 ONeil ..51/406 3,556,667 l/l97l Kaufman ..401/28 Primary Examiner-Daniel Blum Attorney-Greist, Lockwood, Greenawalt & Dewey ABSTRACT Surface working pads formed of open non-woven three-dimensional web material, as typified by the socalled nylon floor pads, are releasably retained on a driving disc or brush block in a stack in which adjacent pads are held together by double face, flexible, pad holding material providing a multitude of projecting tiny adhering filaments. In a preferred embodiment the double faced pad holding material is attached to a sheet carrier.
4 Claims, 5 Drawing Figures PATENTEDunvza I972 3. 703. 739
5 4; INVENTORS J a flaw HOWARD W. HEGGEM ED ARD 6. w
owve 9 ATT' MULTIPLE LAYER SURFACE WORKING PADS This invention relates to innovations and improvements in releasably retained surface working pads formed of open non-woven three-dimensional web material containing numerous interlaced randomly extending fibers as typified by the so-called nylon floor pads and conventional steel wool pads.
The present invention is particularly suitedfor use with floor maintenance machines such as those used for performing scrubbing, stripping and buffing or polishing operations on floor surfaces of various types. The present invention has particular utility in connection with the electrically operated, heavy duty machines used professionally in the maintenance of floors in nonresidential buildings such as schools, office buildings, airports, hospitals, and the like.
Until a few years ago floor maintenance machines utilized pads formed of steel wool for performing scrubbing and stripping operations, and these machines utilized brushes or pads formed of felt for buffing and polishing. More recently the so-called nylon floor pads, which include the abrasive types for stripping and scrubbing, the non-abrasive type for buffing and polishing, and more recently, a type for spray-system maintenance, have come into extensive use.
These pads are formed of uniform lofty, open, nonwoven, three-dimensional web or bat material formed of many interlaced randomly extending flexible, durable, tough, resilient plastic fibers, e.g., nylon fibers. The art of and equipment for making such floor pads of nylon or other synthetic resins or fibers are highly developed. Such floor pads can be made either with self-contained deposits of abrasive material having varying degrees of harshness or agressiveness for scrubbing and stripping operations or without any abrasive for buffing and polishing operations. Nylon is a preferred material from which to form such floor pads because of its excellent resistance to wear, water resistance, and competitive cost. However, other syntheticmaterials may be used such as the polyester resins, and blends of resin fibers. Natural fibers such as cattle and hog hair may also be utilized. Synthetic floor pads of the type mentioned are commercially available from several sources and are described in several patents including: Maisel, U.S. Pat. No. 2,784,132; Hoover et al, U.S. Pat. No. 2,958,593; Haywood, U.S. Pat. No. 3,016,295, and Kamp et a1, U.S. Pat. No. 3,020,139.
Various means have been used for releasably attaching such surface working pads to the driving discs of floor machines. In some instances pads with a center hole were required, in some other instances small diameter clamping discs would fit underneath the center of a steel wool or nylon floor pad and mechanically retain it in place by means of a center screw or other fastening means. In some other instances driving discs or plates for floor machines have been provided of the type comprising a flexible backing layer and a resilient layer having a multitude of resilient protuberances which penetrate into the steel wool or nylon floor pad under the weight of the floor machine. The penetrating action of these protuberances serves to drive the floor pads as long as the weight is maintained thereon. However, when it is desired to raise or elevate the floor machine for any reason, such as for transport to a different location in the building, or to skirt around furniture orother objects on the floor, the floor pads will shift off-center or fall off and have to be repositioned before the machine is put into operation again.
Such problems associated with heretofore available means for retaining and driving surface working pads were virtually eliminated by providing a driving disc having a facing surface or at least substantial areas of which have a multitude of preformed hook-shaped filaments which releasably attach themselves to fibers of a surface working pad with such firmness as to not only serve to drive or operate the pad but also retain the pad in place when the weight of the machine is completely transferred to the transporting wheels and the floor pad is lifted from the floor surfaces. The multitudinous hooks are resilient enough and flexible enough that the surface working pads may be readily stripped or peeled from the driving disc when it is desired to do so for any reason.
One of the problems which remain unresolved in connection with the use of these machines is the fact that the floor machine operator commonly must work on floor areas and locations ranging substantial distances from a central supply location. In doing so an operator may encounter several types of floor surfaces or floor conditions which require different operations, e.g., stripping, scrubbing, or buffing. In addition operators often need new or clean floor pads in order to work efficiently. Because of the wide ranging work areas, it is generally considered inconvenient and expensive to have operators walking back and forth to a central supply area for the purpose of exchanging pads in order to provide fresh working surfaces, or to deal with a different operating problem, e.g., stripping, scrubbing, or buffing. On the other hand it is considered undesirable for operators to carry around an assortment of pads because of the fact that the pads are bulky, frequently get in the way, get mislaid, etc. Moreover, a paid with a contaminated surface is apt to soil the operators clothing, furniture fabric, curtains, or the like with which it may come in contact.
It is a general object of this invention to provide a novel combination of elements which makes available to floor maintenance machine operators a plurality of floor pad surfaces whereby the operators can have on hand, at all work locations, a selection of different types of surface working pads, or a plurality of each kind of surface working pad or both. It is also an object of this invention to provide means by which an operator can shift from pad to pad in a very convenient manner, and without the need of walking back and forth to a supply area, to either expose a fresh surface or utilize a different type of surface working pad. It is another object of this invention to provide a novel pad holder which permits the pads to be used while stacked without spacing therebetween.
These and other objects which will be apparent hereinafter are all achieved in accordance with this invention which is disclosed and described in general hereinafter, and which is described in connection with preferred embodiments in the accompanying drawings in which:
FIG. 1 is a partially cut-away elevational side view of a driving disc and stack of surface working pads in accordance with this invention;
FIG. 2 is a bottom view, partially cut-away, of the stack shown in FIG. 1 in which half of a lowermost pad is shown removed;
FIG. 3 is a plan view of a pad holding disc of this invention;
FIG. 4 is a cross sectional view taken approximately along the line 4-4 of FIG. 3', and
FIG. 5 is a greatly enlarged cross sectional view of the extreme right hand portion of the structure shown in FIG. 4.
Referring to FIGS. 1 and 2, a driving disc adapted for use with a floor machine (not shown) of known type is indicated generally at 10, and is shown in the position normally occupied in use. Driving disc comprises a rigid backing plate 12 which may be cut, formed or molded of fiber, particle board, flake board, hardboard (e.g., Masonite) wood, plastic or metal. l-Iardboard or compressed board of the type commercially available under the proprietary name Masonite serves very well for the rigid backing support 12 and is inexpensive, thereby helping to minimize the cost of driving disc 10.
Preferably the entire undersurface of backing member 12 is covered with a layer of spongy or resilient material of appreciable thickness, e.g., X; inch, as indicated at 14. Sponge rubber serves well as the spongy or resilient layer 14. Other resilient or spongy materials could be used such as various foams or expanded plastic materials which are commercially available. Preferably the surface of spongy layer 14 of fers considerable friction so that the weight of the floor machine it to grip and help to drive the floor pad. The spongy layer 14 is suitably secured to the surface of the rigid backing member 12 by an appropriate adhesive of the permanent type.
Onto the exposed or unadhered surface of resilient layer 14 of the driving disc 12 a pattern of flexible facing material is adhered in the form ofa number of substantially identical pieces 16. These flexible identical facing pieces 16 are formed so that the exposed surfaces thereof provide a multitude of projecting tiny resilient severed loop or hook-shaped filaments similar to those hooks 18, illustrated in FIG. 5. Flexible facing strips, tape, or material of this type are commercially available in various forms under the proprietary name VELCRO". Various forms of such flexible facing materials and techniques of producing the same are disclosed in US. Pat. Nos. 2,7l7,437; 3,009,235; 3,083,737; 3,114,951; 3,136,026; 3,147,528; and 3,154,837. The protruding books or severed loops similar to hooks 18 are indicated'as having a textile or fabric backing layer from which the tiny hooks or severed loops protrude. The hooks or loops are generally arranged in rows extending transversely across the pieces of tape or facing material 16. The loops are generally arranged in a row oriented in the same direction, each hook being cut from a loop. It is highly desirable that on an overall basis hooks or loops be oriented in a plurality of directions. The pieces 16 are suitably adhered or bonded to flexible layer 14 in a permanent manner. However, it is not essential that the filaments have hooks because any adhering configuration will be satisfactory for use in this invention. For example, a facing material having extending filaments with knobs or balls at the end thereof will also serve to penetrate the open pads and to adequately engage the fibers thereof. Methods of providing knobs or balls at the tips of secured filaments, e.g., as in a brush, are known, and some include melting just the tips of the secured filaments to form a bead at the tip.
As shown in FIG. 1, in accordance with this invention, a number of surface working pads 20, 21, 22, 23 are stacked pancake fashion. Pads 20, 21, 22 and 23, in the illustrated embodiment, are nylon floor pads formed of uniform, lofty, open, non-woven, threedimensional web or bat material formed of many interlaced, randomly extending, flexible, durable, tough, resilient nylon fibers. It is to be understood, however, that the pads 20, 21, 22, 23 can be any of the types described in the early part of this specification and can be specifically fabricated to provide varying degrees of harshness for scrubbing or stripping operations or without any abrasive for polishing of buffing operations. The respective pads can be identical to provide a maximum amount of surface area of the same type, or they can be dissimilar to provide an assortment of working surfaces. In accordance with this invention an operator can elect to use a stack which provides several pads having identical working surfaces and one or more of another kind of pad with a different working surface.
Conventionally, a single surface working pad 20 is directly adhered to facing material 16 and is held in place by the loop or hook-shaped filaments. The tiny loop or hook-shaped or other-shaped adhering filaments penetrate into the open lofty structure of floor pad 20 and serve to hook under or otherwise adhere to one or more of the various random interlaced fibers or filaments. The action of these filamentary hooks has been likened to that of a Burdock burr clinging to fabric or animal fur or hair. While the total force required to detach or shift a floor pad all at once in an axial direction from the multitudinal hooks provided by facing material 16 or to slide pad 20 in a direction which is parallel to the face of facing material 16 would be considerable, nevertheless it is possible to readily peel a floor pad off from one of the driving discs simply by starting at one edge and gently pulling just as a piece of adhesive tape is peeled off or removed from the skin.
In accordance with the preferred embodiment of this invention a pad holding disc generally indicated at 30 (see FIG. 3) is placed over the exposed face of surface working pad 20, as indicated in FIG. 1. Pad holding disc 30 includes a carrier 32 and a plurality of patches of facing material 34 can be substantially identical to facing material 16 and the description of facing material 16 can be referred to, making it unnecessary to repeat that description in connection with the description of facing material 34. In the illustrated preferred embodiment a concentric circular opening 36 is provided in the middle of pad holding disc 30. This is preferable for the purpose of carrying an extra disc on the handle of the machine, e.g., after it becomes necessary to discard a worn-out pad, should such an event ever occur.
In the preferred embodiment a pair of oppositely facing patches of facing material 34 (see FIG. 5) are secured opposite one another against opposite surfaces 38 of carrier material 32. A known stapler may be employed to staple the three elements consisting of the facing material 34 and carrier 32 together so that staple 40 serves to unite the elements permanently. As indicated in FIG. 3 it is preferred that at least three pairs of facing material patches 34 be employed. The resulting assembly therefore provides six bonding surfaces which are maintained in a fixed orientation with respect to each other by carrier 32.
Carrier 32 can be cloth, plastic, treated paper or any other flexible material which will withstand the intended use. Plastic, or plastic-treated paper are preferred materials since advertising and/or instruc- 'tional information can be conveniently printed on those materials. As indicated hereinbefore a first pad holding disc 30 is placed on pad and a second pad 21 is superimposed thereon as indicated in FIG. 1. A second pad holding disc 41 identical to pad holding disc 30 is placed on the resulting exposed face of pad 21 and another pad 22 is placed thereover. A third pad holding disc 42 which is also identical to disc 31 is placed on the resulting exposed face of pad 22 and a fourth pad 23 is placed thereover. In each instance the exposed surfaces of the resilient open webs are penetrated by hooks 18 which hook under one or more of the various random interlaced fibers or filaments to secure adjacent pads 20, 21, 22, 23 to each other. These pads are held together well enough to permit the machine to be tipped or elevated for transport to a different location or to skirt around furniture or other objects without shifting or falling, and without need for repositioning when use is resumed.
As indicated hereinbefore pads 20,21, 22, 23 can be alike or dissimilar. For example, pads are available in severalthicknesses, e.g., in 5 4 inch nominal thickness, and 1 inch nominal thickness, and respective pads are manufactured specifically for stripping, or scrubbing, or buffing. Other pads are manufactured at inch nominal thickness, specifically for use in spray cleaning and buffing.
In its broadest concept this invention comprises adhering a stack of pads of the type described in face-toface relationship by double-faced adhering means providing a multitude of projecting filaments of adhering configuration at each face thereof. In the preferred illustrated embodiment the adhering means comprises a pad holding disc which includes a plurality of oppositely faced back-to-back patches of facing material having at the exposed surfaces thereof a multitude of projecting tiny severed loop or hook-shaped filaments. The pad holder need not be a disc, however, and may be square, for example.
In use of a stack of pads, in accordance with this invention, the particular pads employed can be all alike, or all different, or any combination which, in the judgment of the operator, is necessary or desirable. For example, upon being assigned to a large stripping job, an operator can stack a plurality of identical surface working pads specifically designed for stripping operation as shown in FIG. 1. From time to time, in order to provide a fresh working surface, an exposed pad 23, for example, can be peeled from the next adjacent pad 22 and reversed so that the formerly exposed surface 50 is now engaged by pad holding disc 42. When it becomes necessary or desirable to provide another fresh working surface, pad 22 can be peeled from pad 21 and the removed pad comprising pads 22 and 23 can be reversed so that the last-exposed surface is engaged by pad-holding disc 41. Thus, it is apparent that the operator during the entire job has available eight fresh working surfaces without the need of making trips to a supply room, and without the inconvenience of carrying a number of fresh and soiled working pads.
Although in the embodiment illustrated in .FIG. 1, four surface working pads 20, 21, 22, and 23 are shown, it is to be understood that it is not essential, in accordance with this invention, that four such pads be employed in the manner illustrated. For example, an operator may find it necessary or desirable to have available at least one pad of each of the three types referred to above, e.g., for stripping, scrubbing or buffing, and hence can, in accordance with this invention, provide a stacked array of three pads, one pad being specifically designed for each of the three respective purposes. An operator faced with a large scrubbing and buffing job can prepare a stack of a number of scrubbing pads and buffing pads as illustrated in FIG. 1 herein. Since manufacturers can color-code the pads according to intended use, e.g., black pads for stripping, green pads for scrubbing, and brown pads for buffing, it is an easy matter to determine the relative position of a particular pad in stacked array of colorcoded pads in this invention.
Some operators prefer to work with relatively thick pads, e.g., 1 inch nominal thickness, and of course, the available working surface per inch thickness is proportionately less for relatively thick pads than the working surface available per inch thickness of a number of thinner pads. For example, approximately four times the fresh working surface is available when a stack of four relatively thin, e.g., A inch, surface working pads are employed in accordance with this invention than is available when a relatively thick pad, e.g., one inch nominal thickness, is employed by itself. Nonetheless,
it is not essential that only thin pads be used in accordance with this invention since a stacked array of relatively thick pads (e.g., each one inch nominal thickness) is also eminently satisfactory in accordance with this invention.
It will be appreciated that a number of changes may be made in the foregoing construction without departing from the spirit and scope of the invention. For example, the patches of hook-providing material 34 may be made in other shapes and may be otherwise patterned or arranged than shown. Furthermore the driving disc 10 may be non-circular in shape, e.g., rectangular or square, in which case it is usually referred to as the driving plate and may be used on oscillating or vibrating machines instead of a-machine which rotates the driving disc. It may also vary in cross sectional shape and thickness as in a molded or formed piece. Although the driving discs or plates and surface working pads of the present invention have their greatest utility in connection with floor maintenance machines,
. it will be appreciated that they can be used for other tools such as tools for manual operation for carrying out various surface working operations. It will also be understood that the driving means of the present invention may be utilized either on commercial of profesresilient material may be directly attached thereto. Other changes and modifications will be apparent to those skilled in the art. For example, a variety of patterns of the facing material 34 can be used other than the square pattern shown. A circular pattern could be used in a series of parallel rows.
What is claimed as new is:
1. For use with a floor maintenance machine having a floor pad driving arbor, a pad support plate mounted on said arbor and means for attaching a floor pad to said support plate, a composite floor pad comprising a stack of individual floor pads and interposed between opposing floor pad surfaces in said stack, relatively thin pieces of adhering material, the opposite faces of which have a multitude of hooking elements which penetrate the surfaces of floor pads and releasably secure one individual pad to another in supporting drawing relationship.
2. In an apparatus adapted for scrubbing, stripping, buffing or polishing and comprising a driven working member which includes an axially extending shaft, a plane-faced support member fixed with respect to said shaft and substantially perpendicular to said shaft, and having pad means for working a surface flxed with respect to said support plate, the improvement wherein said pad means comprises a plurality of separate pads formed of uniform, lofty, open, non-woven, threedimensional material formed of many interlaced randomly extending, flexible, durable, tough, resilient fibers, and wherein the plurality of pads is arranged in a stacked array in which each of said pads is adhered to a next adjacent pad by respective adhering means including a relatively thin carrier and a plurality of oppositely facing providing a multitude of projecting tiny hookedshaped elements for engaging said fibers.
3. A pad holder comprising a thin circular flexible carrier having two sides and having a circular opening at the center thereof, and having a plurality of substantially uniformly spaced-apart adhering members on each of said sides thereof, and wherein each of said adhering members includes a flexible support material providing a multitude of projecting tiny hooking filaments projecting from the exposed surfaces thereof, wherein respective adhering members on one side of said carrier disc are back-to-back with respect to respective adhering members on the other side of said carrier disc, to provide a plurality of oppositely facing pairs of adhering members, and wherein each respective pair is maintained attached to the carrier and together by a staple.
4. A pad holder comprising a thin circular flexible carrier having two sides and having a circular opening at the center thereof, and having a plurality of substantially uniformly spaced-apart adhering members on each of said sides thereof, and wherein each of said adhering members includes a flexible support material providing a multitude of projecting tiny hooking filaments projecting from the exposed surfaces thereof,
wherein respective adhering members on one side of said carrier disc are back-to-back with respect to respective adhering members on the other side of said carrier disc, to provide a plurality of oppositely facing pairs of adhering members, and wherein each respective pair is maintained attached to the carrier.
|Cited Patent||Filing date||Publication date||Applicant||Title|
|US1822856 *||Jun 11, 1928||Sep 8, 1931||Gen Motors Corp||Abrasive pad|
|US2485295 *||Sep 17, 1947||Oct 18, 1949||Adolph J Larson||Pack of abrasive coated sheets|
|US2644280 *||Sep 13, 1950||Jul 7, 1953||Carborundum Co||Sanding disk accessory|
|US3274616 *||Oct 14, 1965||Sep 27, 1966||Allie Russo||Grip locking glove assembly|
|US3383738 *||Aug 11, 1966||May 21, 1968||Charles P Riva Jr||Chair tie|
|US3384918 *||Nov 23, 1965||May 28, 1968||Ruth Fink||Mophead having a felted pad wrapped therearound|
|US3421188 *||Nov 29, 1966||Jan 14, 1969||Us Air Force||Pressure sealing closure for full pressure astronaut's or diver's assembly|
|US3472198 *||Feb 8, 1968||Oct 14, 1969||American Velcro Inc||Signaling device|
|US3522637 *||Mar 6, 1968||Aug 4, 1970||George C Brumlik||Self-gripping fastening filament|
|US3556667 *||Sep 5, 1967||Jan 19, 1971||Jack W Kaufman||Scrubbing implements|
|Citing Patent||Filing date||Publication date||Applicant||Title|
|US3991534 *||Aug 8, 1973||Nov 16, 1976||Ingrip Fasteners Inc.||Cladding elements|
|US4262788 *||Sep 29, 1978||Apr 21, 1981||Yasunobu Yamamoto||Friction member of non-asbestos|
|US4353142 *||Jun 9, 1980||Oct 12, 1982||Duskin Franchise Kabushiki Kaisha||Mop carrier and a rotary suppressor therein|
|US4758290 *||Jun 29, 1987||Jul 19, 1988||U.S. Chemical & Plastics, Inc.||Method for manufacturing a buffing pad assembly|
|US4809385 *||Dec 14, 1987||Mar 7, 1989||Bogue Larry D||Floor polishing apparatus|
|US4852210 *||Jan 17, 1989||Aug 1, 1989||Krajicek Stephen W||Wet mop with interchangeable scrubbing pad and cloth wipe|
|US4861364 *||Nov 14, 1988||Aug 29, 1989||Trujillo Ted A||Method for using stained glass revolving work station with removable work surface|
|US4872237 *||Nov 25, 1985||Oct 10, 1989||Smith Lloyd J||Chalk dust remover|
|US4910826 *||Sep 29, 1988||Mar 27, 1990||Americo||Surface working pad assembly|
|US4964832 *||Jul 27, 1989||Oct 23, 1990||Charles Bickoff||Modular puppet system|
|US5142727 *||Oct 28, 1991||Sep 1, 1992||Koester James A||Carpet scrubbing bonnet|
|US5201101 *||Apr 28, 1992||Apr 13, 1993||Minnesota Mining And Manufacturing Company||Method of attaching articles and a pair of articles fastened by the method|
|US5201785 *||Jan 30, 1992||Apr 13, 1993||Minnesota Mining & Manufacturing Company||Disc-holder assembly|
|US5254194 *||Aug 21, 1991||Oct 19, 1993||Minnesota Mining And Manufacturing Company||Coated abrasive sheet material with loop material for attachment incorporated therein|
|US5292567 *||Jul 8, 1992||Mar 8, 1994||Minnesota Mining And Manufacturing Company||Buffing pad|
|US5309682 *||Aug 13, 1992||May 10, 1994||Robert Bosch Gmbh||Hand held power tool with working disc|
|US5354591 *||Aug 2, 1993||Oct 11, 1994||Minnesota Mining And Manufacturing Company||Coated abrasive sheet material with loop material for attachment incorporated therein|
|US5360270 *||Apr 28, 1992||Nov 1, 1994||Minnesota Mining And Manufacturing Company||Reusable security enclosure|
|US5533222 *||Jun 28, 1995||Jul 9, 1996||Lelkes; Anthony||Floor and baseboard treatment machine|
|US5605729 *||Jan 19, 1995||Feb 25, 1997||Minnesota Mining And Manufacturing Company||Loop fastener material storage/dispensing assembly|
|US5607345 *||Jan 13, 1994||Mar 4, 1997||Minnesota Mining And Manufacturing Company||Abrading apparatus|
|US5611101 *||Oct 30, 1995||Mar 18, 1997||Americo||Floor polishing pad assembly|
|US5611791 *||Jan 11, 1996||Mar 18, 1997||Minnesota Mining And Manufacturing Company||Sheet of loop material, and garments having such loop material incorporated therein|
|US5616394 *||Jun 1, 1995||Apr 1, 1997||Minnesota Mining And Manufacturing Company||Sheet of loop material, and garments having such loop material incorporated therein|
|US5634245 *||Jul 14, 1995||Jun 3, 1997||Minnesota Mining And Manufacturing Company||Structured surface fastener|
|US5643397 *||Jun 1, 1995||Jul 1, 1997||Minnesota Mining And Manufacturing Company||Equipment for forming a sheet of loop material|
|US5775984 *||Aug 12, 1996||Jul 7, 1998||Olson; Jim C.||Removable-resuable fibrous scrubbing pad for use in wet power orbital scuffing applications|
|US5840089 *||Jul 29, 1997||Nov 24, 1998||Minnesota Mining And Manufacturing Company||Method of making an abrasive article|
|US6234886||Sep 17, 1997||May 22, 2001||3M Innovative Properties Company||Multiple abrasive assembly and method|
|US6261164 *||Aug 29, 2000||Jul 17, 2001||3M Innovative Properties Company||Multiple abrasive assembly and method|
|US6394887 *||Apr 19, 2000||May 28, 2002||Stillman Eugene Edinger||Apparatus for use with automated abrading equipment|
|US6579161||Dec 6, 1996||Jun 17, 2003||3M Innovative Properties Company||Abrasive article|
|US6579162||Dec 15, 2000||Jun 17, 2003||3M Innovative Properties Company||Abrasive article|
|US6807705 *||Mar 15, 2002||Oct 26, 2004||Saint-Gobain Abrasive Technology Company||Polishing pad and system|
|US6857159 *||Sep 30, 2003||Feb 22, 2005||Tracy Strine||Renewable sponge|
|US6884157||Mar 25, 2003||Apr 26, 2005||3M Innovative Properties Company||Abrasive article|
|US6911252 *||Feb 4, 2002||Jun 28, 2005||Compsys, Inc.||Structural framing members with integrated flow channels and method of making same|
|US6991527||May 17, 2001||Jan 31, 2006||Geoffrey Robert Linzell||Applicator tool for treating surfaces|
|US7044834||Apr 20, 2005||May 16, 2006||3M Innovative Properties Company||Abrasive article|
|US7112124 *||Jul 28, 2003||Sep 26, 2006||Donald Naples||Rotary blade sharpener|
|US7264414||Jun 30, 2004||Sep 4, 2007||S.C. Johnson & Son, Inc.||Dispenser assembly for dispensing liquid onto a removable sheet contained by an implement|
|US7716778||Apr 10, 2008||May 18, 2010||Meister James J||Buffing ball|
|US7731573 *||Jan 30, 2008||Jun 8, 2010||3M Innovative Properties Company||Method, system, and apparatus for modifying surfaces|
|US7799968||Sep 21, 2010||Kimberly-Clark Worldwide, Inc.||Sponge-like pad comprising paper layers and method of manufacture|
|US7952834||May 31, 2011||Seagate Technology Llc||Flex circuit assembly with thermal energy dissipation|
|US7994079||Aug 9, 2011||Kimberly-Clark Worldwide, Inc.||Meltblown scrubbing product|
|US8052506 *||Nov 8, 2011||3M Innovative Properties Company||Method, system, and apparatus for modifying surfaces|
|US8142262 *||Sep 6, 2007||Mar 27, 2012||Robert Bosch Gmbh||Sanding device with detachably mounted sanding element|
|US8469775||Mar 26, 2009||Jun 25, 2013||3M Innovative Properties Company||Conversion assemblage adaptable for use in combination with a surface modifying apparatus and method thereof|
|US8669777||Oct 27, 2010||Mar 11, 2014||Seagate Technology Llc||Assessing connection joint coverage between a device and a printed circuit board|
|US8790164 *||Oct 20, 2011||Jul 29, 2014||3M Innovative Properties Company||Method, system, and apparatus for modifying surfaces|
|US8808065 *||Jun 21, 2012||Aug 19, 2014||Design Technologies Llc||Surface treating device|
|US20020144372 *||Mar 15, 2002||Oct 10, 2002||Robert Piombini||Polishing pad and system|
|US20030164175 *||May 17, 2001||Sep 4, 2003||Linzell Geoffrey Robert||Applicator tool for treating surfaces|
|US20040053569 *||Sep 12, 2002||Mar 18, 2004||Keno Chang Enterprise Co., Ltd.||Buffing disc for cleaning hubs|
|US20050039293 *||Jun 30, 2004||Feb 24, 2005||Mcreynolds Kent B.||Dispenser assembly for dispensing liquid onto a removable sheet contained by an implement|
|US20050129897 *||Dec 11, 2003||Jun 16, 2005||Kimberly-Clark Worldwide, Inc.||Disposable scrubbing product|
|US20050130536 *||Dec 11, 2003||Jun 16, 2005||Kimberly-Clark Worldwide, Inc.||Disposable scrubbing product|
|US20050172441 *||Nov 16, 2003||Aug 11, 2005||Johann Rittgasser||Cleaning pad for single-disk or multi-disk cleaning machines|
|US20050202770 *||Apr 20, 2005||Sep 15, 2005||3M Innovative Properties||Abrasive article|
|US20070214592 *||Mar 15, 2007||Sep 20, 2007||Boler Lewyn B||Pad, system and method for polishing, buffing, compounding and glazing|
|US20070298697 *||Sep 1, 2005||Dec 27, 2007||Louis Charmoille||Floor Cleaning Pads and Preparation Thereof|
|US20090170412 *||Sep 6, 2007||Jul 2, 2009||Werner Huser||Sanding device with detachably mounted sanding element|
|US20090191376 *||Jul 30, 2009||3M Innovative Properties Company||Method, apparatus, and system using adapter assembly for modifying surfaces|
|US20090191800 *||Jul 30, 2009||3M Innovative Properties Company||Method, system, and apparatus for modifying surfaces|
|US20090213542 *||Feb 22, 2008||Aug 27, 2009||Seagate Technology Llc||Flex circuit assembly with thermal energy dissipation|
|US20090258586 *||Apr 10, 2008||Oct 15, 2009||James Meister||Buffing ball|
|US20100009606 *||Jul 10, 2008||Jan 14, 2010||3M Innovative Properties Company||Conversion assemblage adaptable for use in combination with a surface modifying apparatus and method thereof|
|US20100009607 *||Oct 27, 2008||Jan 14, 2010||3M Innovative Properties Company||Conversion assemblage adaptable for use in combination with a surface modifying apparatus and method thereof|
|US20100120342 *||Jan 11, 2010||May 13, 2010||3M Innovative Properties Company||Method, system, and apparatus for modifying surfaces|
|US20120034853 *||Feb 9, 2012||3M Innovative Properties Company||Method, system, and apparatus for modifying surfaces|
|US20130344785 *||Jun 21, 2012||Dec 26, 2013||Design Technologies Llc||Surface treating device|
|US20150283677 *||Nov 3, 2014||Oct 8, 2015||Qci Global Inc.||Grinder system with replaceable clay embedded disc|
|DE4330357A1 *||Sep 8, 1993||Feb 23, 1995||Dagmar Schulze||Device for applying liquids or pastes, for wiping and working surfaces|
|EP0112405A1 *||Dec 24, 1982||Jul 4, 1984||Hans J. Fabritius||Attaching element to be employed in grinding and polishing machines|
|EP0347302A1 *||Jun 12, 1989||Dec 20, 1989||Maurice Plazanet||Fibre pad attaching device and surface-cleaning machine provided with said device|
|WO2001087499A1 *||May 17, 2001||Nov 22, 2001||Ball Burnishing Machine Tools Ltd.||An applicator tool for treating surfaces|
|WO2004015960A2 *||Jul 30, 2003||Feb 19, 2004||No Sweat, Llc||Hand held cleaning device & method of advertising at an entertainment event|
|WO2004015960A3 *||Jul 30, 2003||Jul 29, 2004||No Sweat Llc||Hand held cleaning device & method of advertising at an entertainment event|
|WO2004045359A2 *||Nov 16, 2003||Jun 3, 2004||Johann Rittgasser||Cleaning pad for single-disk or multi-disk cleaning machines|
|WO2004045359A3 *||Nov 16, 2003||Sep 16, 2004||Detlef Rauh||Cleaning pad for single-disk or multi-disk cleaning machines|
|WO2005060810A1 *||Jun 3, 2004||Jul 7, 2005||Kimberly-Clark Worldwide, Inc.||Disposable scrubbing product|
|WO2009012104A1 *||Jul 10, 2008||Jan 22, 2009||3M Innovative Properties Company||Method of applying wheel balancing weights|
|U.S. Classification||15/230.17, 451/538, 24/442, 24/444, 15/118, 428/66.6|
|International Classification||A47L11/164, A47L11/00, A47L11/283|
|Cooperative Classification||A47L11/164, A47L11/4038, A47L11/283|
|European Classification||A47L11/40F2, A47L11/283, A47L11/164|