US3716950A - Reinforced abrasive wheels - Google Patents

Reinforced abrasive wheels Download PDF

Info

Publication number
US3716950A
US3716950A US00188338A US3716950DA US3716950A US 3716950 A US3716950 A US 3716950A US 00188338 A US00188338 A US 00188338A US 3716950D A US3716950D A US 3716950DA US 3716950 A US3716950 A US 3716950A
Authority
US
United States
Prior art keywords
fabric
abrasive
layer
mesh
wheel
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US00188338A
Inventor
C Mcclure
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Application granted granted Critical
Publication of US3716950A publication Critical patent/US3716950A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24DTOOLS FOR GRINDING, BUFFING OR SHARPENING
    • B24D5/00Bonded abrasive wheels, or wheels with inserted abrasive blocks, designed for acting only by their periphery; Bushings or mountings therefor
    • B24D5/02Wheels in one piece
    • B24D5/04Wheels in one piece with reinforcing means

Definitions

  • ABSTRACT Abrasive wheels are reinforced by one or more disclike layers of open-mesh triaxial fabric, preferably of glass composition. If uniform, the mesh openings are relatively large, preferably with a side length of at least a half inch.
  • a simple fabric layer may be sandwiched by layers of bonded abrasive material, or a pair of fabric layers may sandwich and be bonded to an intervening layer of abrasive material.
  • Fabric-reinforced abrasive wheels are known and are especially useful as cut-off wheels for masonry materials.
  • the reinforcing fabric is used as a facing material, partially embedded into the side (usually both sides) of such a wheel, although it is also known to sandwich it between two layers of abrasive material, subsequently bonded together in conventional manner.
  • a primary object of the present invention is improve.- ment in the structure of fabric-reinforced abrasive wheels.
  • Another object is improvement in the functioning of fabric-reinforced abrasive wheels.
  • a further object is accomplishment of the foregoing objects in economical fashion.
  • FIG. 1 is a side elevation of an abrasive wheel faced with triaxial fabric of uniform mesh size and useful according to the present invention
  • FIG. 2 is a schematic flat view, on an enlarged scale, of triaxial fabric with uniform mesh openings
  • FIG. 3 is a similar view of another pattern of triaxial -fabric useful according to this invention.
  • FIG. 4 is an exploded edge elevation of such fabric and other components of an abrasive blade of this invention preparatory to formation by molding or pressing;
  • FIG. 5 is a fragmentary transverse section through an internally reinforced abrasive wheel so formed.
  • FIG. 6 is a similar section through an externally reinforced wheel so formed.
  • the objects of the present invention are accomplished in an abrasive wheel characterized by component reinforcing material comprising at least one disc-like layer of open-mesh triaxial fabric.
  • FIG. 1 shows abrasive wheel 10 faced with triaxial fabric 11, and having a central opening to receive a saw spindle (not shown).
  • FIG. 2 shows fabric 1 1 on a much larger scale than in i the preceding view.
  • FIG. 3 shows, on a like scale, triaxial fabric 21 having several different sets of mesh openings, as follows: triangular openings 24 of intermediate size, smaller hex-' agonal openings 22 (which may be triangular instead), and larger lozenge-shaped openings 26.
  • respective yarns in this view are designated as 23a, 23b, and 23c.
  • FIG. 4 shows schematically, exploded in elevation, upper and lower plates 31 and 39 sandwiching the component materials of such an abrasive wheel, including upper and lower layers 33 and 37 of triaxial fabric, themselves sandwiching thicker layer of abrasive material 35.
  • abrasive and bonding components are similarly conventional, comprising an abrasive such as alumina, silicon carbide, or boron nitride and a bonding component such as phenol-formaldehyde or other thermosetting resin or a suitably hardenable rubber.
  • FIG. 5 shows, fragmentarily, resulting abrasive wheel or rotary blade 30 composed of central layer 35 of abrasive material sandwiched by upper and lower facing layers of such fabric.
  • FIG. 6 shows alternative wheel 40 composed of upper and lower layers 42 and 44 of abrasive material sandwiching intermediate triaxial fabric layer 43.
  • both intermediate and facinglayers of such fabric may be used together with layered abrasive material intervening, for a highly reinforced wheel.
  • the open meshes of the fabric are filled with the abrasive material and bonded thereto a unitary product.
  • the fabrics used according to this invention are sufficiently stable, as woven, by reason of the mutual contiguity of all three courses at their crossover'locations.
  • the locking effect so obtained is absent, of course, from orthogonally woven open-mesh fabrics, in which the warp yarns and the filling yarns intersect loosely at Less reinforcing yarn is required according to this invention because triaxial fabrics have a high degree of isotropy, in contrast to the anisotropy of orthogonally woven fabrics, which are notably weak in the diagonal directions.
  • the resulting lesser degree of covering of the abrasive wheel face makes for more efficient cutting, which is another welcome economy for the wheel user.
  • the overall denier be reduced up to about one-third, but in the uniform mesh of FIG. 2 it is unnecessary for the length of the side of a mesh opening to be less than a half inch long, whereas five to the inch is a common value for orthogonal meshes.
  • Abrasive wheel including component reinforcing material comprising at least one disc-like layer of openmesh triaxial woven fabric.
  • Abrasive wheel according to claim 2 wherein the length of a side of such mesh opening is at least 1% inch.
  • Abrasive cut-off wheel comprising a 1 layer of bonded abrasive material sandwiched by a pair of layers of triaxial woven reinforcing fabric bonded thereto.
  • Abrasive wheel according to claim 1 having a central opening therethrough for a drive spindle and wherein the fabric has a corresponding central open- 7.
  • Abrasive cut-off wheel comprising a layer of triaxial woven reinforcing fabric and a pair of layers of bonded abrasive material sandwiching and bonding the fabric layer.
  • Abrasive wheel including component reinforcing material comprising at least one disc-like layer of openmesh triaxial woven fabric having triangular mesh openings.
  • Abrasive wheel including component reinforcing material comprising at least one disc-like layer of openmesh triaxial woven fabric having hexagonal mesh openings;

Abstract

Abrasive wheels are reinforced by one or more disc-like layers of open-mesh triaxial fabric, preferably of glass composition. If uniform, the mesh openings are relatively large, preferably with a side length of at least a half inch. A simple fabric layer may be sandwiched by layers of bonded abrasive material, or a pair of fabric layers may sandwich and be bonded to an intervening layer of abrasive material.

Description

United States Patent 1 McClure 51 Feb. 20, 1973 [54] REINFORCED ABRASIVE WHEELS [76] Inventor: Charles A. McClure, R.D. No. 2,
PO. Box 290, Malvern, Pa. 19355 [22] Filed: Oct. 12, 1971 [21] Appl. No.: 188,338
[52] US. Cl ..51/206 NF, 51/207, 52/600, 52/659, 125/15 [51] Int. Cl. ..B24d 5/08 [58] Field of Search.5 l/207, 206 R, 206 NF; 52/600, 52/659, 84; 125/15 [56] References Cited UNITED STATES PATENTS 201,778 3/1878 l-lart ..51/207 X 2,745,224 S/1956 Erickson ..51/207 X 2,814,918 12/1957 Erickson ..51/206 NF Hurst ..51/206 NF 3,030,743 4/1962 Raymond ..51/207 3,446,251 5/1969 Dow ..139/383 1 1,537,790 5/1925 Alpe ..51/206 NF UX Primary Examiner-Donald G. Kelly Assistant ExaminerHoward Goldberg Attorney-Charles A. McClure et a1.
[5 7 ABSTRACT Abrasive wheels are reinforced by one or more disclike layers of open-mesh triaxial fabric, preferably of glass composition. If uniform, the mesh openings are relatively large, preferably with a side length of at least a half inch. A simple fabric layer may be sandwiched by layers of bonded abrasive material, or a pair of fabric layers may sandwich and be bonded to an intervening layer of abrasive material.
10 Claims, 6 Drawing Figures PATENTEDFEB201973 3116350 MVfl/TOA. CHARLES A. McCLUEE REINFORCED ABRASIVE WHEELS This invention relates to abrasive wheels or rotary blades reinforced with one or more layers of fabric.
Fabric-reinforced abrasive wheels are known and are especially useful as cut-off wheels for masonry materials. For economical construction the reinforcing fabric is used as a facing material, partially embedded into the side (usually both sides) of such a wheel, although it is also known to sandwich it between two layers of abrasive material, subsequently bonded together in conventional manner.
With ordinary woven fabric, in which warp and filling yarns intersect at right angles (i.e., orthogonally), attempts to confer the desired reinforcing strength to the wheel may lead to use of too heavy or close-meshed fabric, which impairs bonding of the abrasive material to the fabric and also, with facing fabric, hinders the cutting action of the blade. Use of glass fabric, which is strong but slippery, requires prebonding of the fabric itself to maintain its weave during manufacturing and does not eliminate the foregoing problems with the necessarily close mesh normally used, such as in the range from 2 to 7 (per inch).
A primary object of the present invention is improve.- ment in the structure of fabric-reinforced abrasive wheels.
Another object is improvement in the functioning of fabric-reinforced abrasive wheels.
A further object is accomplishment of the foregoing objects in economical fashion.
Other objects of the invention, together with means and methods for attaining the various objects, will be apparent from the following description, and the accompanying diagrams.
FIG. 1 is a side elevation of an abrasive wheel faced with triaxial fabric of uniform mesh size and useful according to the present invention;
FIG. 2 is a schematic flat view, on an enlarged scale, of triaxial fabric with uniform mesh openings;
FIG. 3 is a similar view of another pattern of triaxial -fabric useful according to this invention;
FIG. 4 is an exploded edge elevation of such fabric and other components of an abrasive blade of this invention preparatory to formation by molding or pressing;
FIG. 5 is a fragmentary transverse section through an internally reinforced abrasive wheel so formed; and
FIG. 6 is a similar section through an externally reinforced wheel so formed.
In general, the objects of the present invention are accomplished in an abrasive wheel characterized by component reinforcing material comprising at least one disc-like layer of open-mesh triaxial fabric.
FIG. 1. shows abrasive wheel 10 faced with triaxial fabric 11, and having a central opening to receive a saw spindle (not shown).
FIG. 2 shows fabric 1 1 on a much larger scale than in i the preceding view. Respective component yarns 13a,
either appearance may prevail, depending upon the relative lateral spacing and diameter of the yarns in the fabric.
FIG. 3 shows, on a like scale, triaxial fabric 21 having several different sets of mesh openings, as follows: triangular openings 24 of intermediate size, smaller hex-' agonal openings 22 (which may be triangular instead), and larger lozenge-shaped openings 26. Central opening 25, formed by stamping out a disc of the fabric, subsequently accommodates the spindle of a saw mechanism in which a blade reinforced with such fabric is useful. It will be apparent that the fabric of FIG. 3 corresponds in weave to that of FIG. 2 less every third yarn course along each of the three axes. The
respective yarns in this view are designated as 23a, 23b, and 23c.
Such triaxial fabrics (as well as others) are disclosed in Dow U.S. Pat. No. 3,446,251, and machinery for weaving triaxial fabrics is disclosed by Skelton in Textile Research Journal, 41:637.
FIG. 4 shows schematically, exploded in elevation, upper and lower plates 31 and 39 sandwiching the component materials of such an abrasive wheel, including upper and lower layers 33 and 37 of triaxial fabric, themselves sandwiching thicker layer of abrasive material 35.
It will be understood that the items shown in FIG. 4 are compressed vertically and heated sufficiently to bond the abrasive granules of the middle layer to one another and to the facing layers in a suitable mold. The abrasive and bonding components are similarly conventional, comprising an abrasive such as alumina, silicon carbide, or boron nitride and a bonding component such as phenol-formaldehyde or other thermosetting resin or a suitably hardenable rubber.
FIG. 5 shows, fragmentarily, resulting abrasive wheel or rotary blade 30 composed of central layer 35 of abrasive material sandwiched by upper and lower facing layers of such fabric. FIG. 6 shows alternative wheel 40 composed of upper and lower layers 42 and 44 of abrasive material sandwiching intermediate triaxial fabric layer 43. Of course, if desired, both intermediate and facinglayers of such fabric may be used together with layered abrasive material intervening, for a highly reinforced wheel. The open meshes of the fabric are filled with the abrasive material and bonded thereto a unitary product.
Unlike previous glass fabrics, which require structural stabilization by resin-impregnation or similar prebonding treatment preparatory to use as reinforcement, the fabrics used according to this invention are sufficiently stable, as woven, by reason of the mutual contiguity of all three courses at their crossover'locations. The locking effect so obtained is absent, of course, from orthogonally woven open-mesh fabrics, in which the warp yarns and the filling yarns intersect loosely at Less reinforcing yarn is required according to this invention because triaxial fabrics have a high degree of isotropy, in contrast to the anisotropy of orthogonally woven fabrics, which are notably weak in the diagonal directions. Not only is use of a lighter fabric more economical in that regard, the resulting lesser degree of covering of the abrasive wheel face makes for more efficient cutting, which is another welcome economy for the wheel user. Not only may the overall denier be reduced up to about one-third, but in the uniform mesh of FIG. 2 it is unnecessary for the length of the side of a mesh opening to be less than a half inch long, whereas five to the inch is a common value for orthogonal meshes.
Notwithstanding the description and illustration of certain embodiments of this invention, modifications may be made therein, as by adding, combining, or subdividing parts or steps, or by substituting equivalents while retaining many or most of the advantages and benefits of the present invention. The invention itself is defined in the following claims.
The claimed invention:
1. Abrasive wheel including component reinforcing material comprising at least one disc-like layer of openmesh triaxial woven fabric.
2. Abrasive wheel according to claim 1, wherein such fabric has substantially uniform mesh openings.
3. Abrasive wheel according to claim 2, wherein the length of a side of such mesh opening is at least 1% inch.
4. Abrasive cut-off wheel comprising a 1 layer of bonded abrasive material sandwiched by a pair of layers of triaxial woven reinforcing fabric bonded thereto.
5. Abrasive wheel according to claim 4, wherein the reinforcing fabric is composed of glass and is otherwise unbonded.
6. Abrasive wheel according to claim 1, having a central opening therethrough for a drive spindle and wherein the fabric has a corresponding central open- 7. Abrasive cut-off wheel comprising a layer of triaxial woven reinforcing fabric and a pair of layers of bonded abrasive material sandwiching and bonding the fabric layer.
8. Abrasive cut-off wheel according to claim 7, wherein the reinforcing fabric is composed of glass and is otherwise unbonded.
9. Abrasive wheel including component reinforcing material comprising at least one disc-like layer of openmesh triaxial woven fabric having triangular mesh openings.
10. Abrasive wheel including component reinforcing material comprising at least one disc-like layer of openmesh triaxial woven fabric having hexagonal mesh openings;

Claims (9)

1. Abrasive wheel including component reinforcing material comprising at least one disc-like layer of open-mesh triaxial woven fabric.
2. Abrasive wheel according to claim 1, wherein such fabric has substantially uniform mesh openings.
3. Abrasive wheel according to claim 2, wherein the length of a side of such mesh opening is at least 1/2 inch.
4. Abrasive cut-off wheel comprising a layer of bonded abrasive material sandwiched by a pair of layers of triaxial woven reinforcing fabric bonded thereto.
5. Abrasive wheel according to claim 4, wherein the reinforcing fabric is composed of glass and is otherwise unbonded.
6. Abrasive wheel according to claim 1, having a central opening therethrough for a drive spindle and wherein the fabric has a corresponding central opening.
7. Abrasive cut-off wheel comprising a layer of triaxial woven reinforcing fabric and a pair of layers of bonded abrasive material sandwiching and bonding the fabric layer.
8. Abrasive cut-off wheel according to claim 7, wherein the reinforcing fabric is composed of glass and is otherwise unbonded.
9. Abrasive wheel including component reinforcing material comprising at least one disc-like layer of open-mesh triaxial woven fabric having triangular mesh openings.
US00188338A 1971-10-12 1971-10-12 Reinforced abrasive wheels Expired - Lifetime US3716950A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US18833871A 1971-10-12 1971-10-12

Publications (1)

Publication Number Publication Date
US3716950A true US3716950A (en) 1973-02-20

Family

ID=22692748

Family Applications (1)

Application Number Title Priority Date Filing Date
US00188338A Expired - Lifetime US3716950A (en) 1971-10-12 1971-10-12 Reinforced abrasive wheels

Country Status (2)

Country Link
US (1) US3716950A (en)
GB (1) GB1357278A (en)

Cited By (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3828485A (en) * 1971-10-12 1974-08-13 Clure C Mc Reinforced abrasive wheels
US4062153A (en) * 1975-07-23 1977-12-13 Ab Slipmaterial-Naxos Silenced grinding wheel
US4350497A (en) * 1980-09-08 1982-09-21 Abraham Ogman Reinforced grinding device
US4386306A (en) * 1979-11-26 1983-05-31 Toyoda Koki Kabushiki Kaisha Numerical control device
US4718398A (en) * 1985-09-04 1988-01-12 Diamant Boart Societe Anonyme Circular saw for stony materials
US5411010A (en) * 1992-12-30 1995-05-02 Mummenhoff; Heinrich Base blade of fiber-reinforced plastic for circular saw blades and/or abrasive cutting disks
US5573453A (en) * 1995-08-21 1996-11-12 B.O.T.S.G., Inc. Fiber reinforced abrasive mold and die finishing tools
US6241522B1 (en) * 1997-01-10 2001-06-05 Gebruder Brasseler Gmbh & Co. Grinding tool for dental purposes
US6454644B1 (en) * 2000-07-31 2002-09-24 Ebara Corporation Polisher and method for manufacturing same and polishing tool
US6632130B1 (en) * 2000-05-23 2003-10-14 Thomas Whiting Abrade and cut disc
US20060128292A1 (en) * 2004-07-03 2006-06-15 August Ruggeberg Gmbh & Co. Kg Abrasive cutting-off wheel for stationary use
US20060288992A1 (en) * 2005-06-27 2006-12-28 Anthony Baratta Tools and methods for making and using tools, blades and methods of making and using blades
US20060288991A1 (en) * 2005-06-27 2006-12-28 Anthony Baratta Tools and methods for making and using tools, blades and methods of making and using blades
US20080210212A1 (en) * 2005-06-27 2008-09-04 Anthony Baratta Tools and Methods for Making and Using Tools, Blades and Methods of Making and Using Blades
CN102882008A (en) * 2012-09-29 2013-01-16 西安空间无线电技术研究所 Low-expansion mesh reflector using composite material connectors
WO2013049403A1 (en) * 2011-09-27 2013-04-04 Saint-Gobain Abrasives, Inc. Noise-reduced abrasive articles
US20160229024A1 (en) * 2013-09-17 2016-08-11 Rhodius Schleifwerkzeuge Gmbh & Co. Kg Resin-bonded grinding disk
US20190106876A1 (en) * 2017-10-10 2019-04-11 Linus Industries, LLC Triaxial weave for the production of stiff structural manifolds for use in structures and weaving method thereof
USD873517S1 (en) * 2017-07-21 2020-01-21 3M Innovative Properties Company Floor scrubbing pad
US11597059B2 (en) 2017-11-21 2023-03-07 3M Innovative Properties Company Coated abrasive disc and methods of making and using the same
US11607775B2 (en) 2017-11-21 2023-03-21 3M Innovative Properties Company Coated abrasive disc and methods of making and using the same

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US201778A (en) * 1878-03-26 Improvement in emery-wheels
US1537790A (en) * 1923-09-17 1925-05-12 Alpe Robert John Universal coupling and the manufacture thereof
US2745224A (en) * 1955-05-12 1956-05-15 Norton Co Reinforced abrasive wheel and method of making same
US2814918A (en) * 1956-06-07 1957-12-03 Norton Co Cut-off wheel
US2826016A (en) * 1956-02-06 1958-03-11 Rexall Drug Co Reinforced abrasive products
US3030743A (en) * 1958-08-06 1962-04-24 Minnesota Mining & Mfg Reinforced rotative abrasive structures
US3446251A (en) * 1968-04-23 1969-05-27 Gen Electric Triaxial fabric

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US201778A (en) * 1878-03-26 Improvement in emery-wheels
US1537790A (en) * 1923-09-17 1925-05-12 Alpe Robert John Universal coupling and the manufacture thereof
US2745224A (en) * 1955-05-12 1956-05-15 Norton Co Reinforced abrasive wheel and method of making same
US2826016A (en) * 1956-02-06 1958-03-11 Rexall Drug Co Reinforced abrasive products
US2814918A (en) * 1956-06-07 1957-12-03 Norton Co Cut-off wheel
US3030743A (en) * 1958-08-06 1962-04-24 Minnesota Mining & Mfg Reinforced rotative abrasive structures
US3446251A (en) * 1968-04-23 1969-05-27 Gen Electric Triaxial fabric

Cited By (28)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3828485A (en) * 1971-10-12 1974-08-13 Clure C Mc Reinforced abrasive wheels
US4062153A (en) * 1975-07-23 1977-12-13 Ab Slipmaterial-Naxos Silenced grinding wheel
US4386306A (en) * 1979-11-26 1983-05-31 Toyoda Koki Kabushiki Kaisha Numerical control device
US4350497A (en) * 1980-09-08 1982-09-21 Abraham Ogman Reinforced grinding device
US4718398A (en) * 1985-09-04 1988-01-12 Diamant Boart Societe Anonyme Circular saw for stony materials
US5411010A (en) * 1992-12-30 1995-05-02 Mummenhoff; Heinrich Base blade of fiber-reinforced plastic for circular saw blades and/or abrasive cutting disks
US5573453A (en) * 1995-08-21 1996-11-12 B.O.T.S.G., Inc. Fiber reinforced abrasive mold and die finishing tools
US6241522B1 (en) * 1997-01-10 2001-06-05 Gebruder Brasseler Gmbh & Co. Grinding tool for dental purposes
US6632130B1 (en) * 2000-05-23 2003-10-14 Thomas Whiting Abrade and cut disc
US6454644B1 (en) * 2000-07-31 2002-09-24 Ebara Corporation Polisher and method for manufacturing same and polishing tool
US20060128292A1 (en) * 2004-07-03 2006-06-15 August Ruggeberg Gmbh & Co. Kg Abrasive cutting-off wheel for stationary use
US7101276B2 (en) * 2004-07-03 2006-09-05 August Ruggeberg Gmbh & Co. Kg Abrasive cutting-off wheel for stationary use
US20080210212A1 (en) * 2005-06-27 2008-09-04 Anthony Baratta Tools and Methods for Making and Using Tools, Blades and Methods of Making and Using Blades
US9039495B2 (en) 2005-06-27 2015-05-26 Husqvarna Ab Tools and methods for making and using tools, blades and methods of making and using blades
US20060288992A1 (en) * 2005-06-27 2006-12-28 Anthony Baratta Tools and methods for making and using tools, blades and methods of making and using blades
US8151783B2 (en) 2005-06-27 2012-04-10 Husqvarna Outdoor Products Inc. Tools and methods for making and using tools, blades and methods of making and using blades
US8157619B2 (en) * 2005-06-27 2012-04-17 Husqvarna Professional Outdoor Products Inc. Tools and methods for making and using tools, blades and methods of making and using blades
US20060288991A1 (en) * 2005-06-27 2006-12-28 Anthony Baratta Tools and methods for making and using tools, blades and methods of making and using blades
WO2013049403A1 (en) * 2011-09-27 2013-04-04 Saint-Gobain Abrasives, Inc. Noise-reduced abrasive articles
CN103857495A (en) * 2011-09-27 2014-06-11 圣戈班磨料磨具有限公司 Noise-reduced abrasive articles
US8956203B2 (en) 2011-09-27 2015-02-17 Saint-Gobain Abrasives, Inc. Noise-reduced abrasive articles
CN102882008B (en) * 2012-09-29 2015-02-11 西安空间无线电技术研究所 Low-expansion mesh reflector using composite material connectors
CN102882008A (en) * 2012-09-29 2013-01-16 西安空间无线电技术研究所 Low-expansion mesh reflector using composite material connectors
US20160229024A1 (en) * 2013-09-17 2016-08-11 Rhodius Schleifwerkzeuge Gmbh & Co. Kg Resin-bonded grinding disk
USD873517S1 (en) * 2017-07-21 2020-01-21 3M Innovative Properties Company Floor scrubbing pad
US20190106876A1 (en) * 2017-10-10 2019-04-11 Linus Industries, LLC Triaxial weave for the production of stiff structural manifolds for use in structures and weaving method thereof
US11597059B2 (en) 2017-11-21 2023-03-07 3M Innovative Properties Company Coated abrasive disc and methods of making and using the same
US11607775B2 (en) 2017-11-21 2023-03-21 3M Innovative Properties Company Coated abrasive disc and methods of making and using the same

Also Published As

Publication number Publication date
GB1357278A (en) 1974-06-19

Similar Documents

Publication Publication Date Title
US3716950A (en) Reinforced abrasive wheels
US3542632A (en) Fibrillated fabrics and a process for the preparation thereof
US3087699A (en) Wire fabrics and methods of producing the same
JP3953099B2 (en) Abrasive product and manufacturing method thereof
US3828485A (en) Reinforced abrasive wheels
US2800701A (en) Production of power transmission and conveyor belting
EP1967621A2 (en) Abrasive backing and abrasive cloth
US2768483A (en) Abrasive article and method of making
US3685215A (en) Reinforced grinding wheel
US5358767A (en) Textile structure useful as reinforcements in the manufacture of composite materials, and technical yarns for such structures
EP1231024B1 (en) Carrier plate for flap grinding wheel and flap grinding wheel
US2449595A (en) Reinforced plastic material
US5126191A (en) Process for the production of a textile reinforcing web for composite materials based on resins and new type of web
US2814918A (en) Cut-off wheel
US20170067191A1 (en) Reinforcing textile structure for composite materials
US3240656A (en) Woven fabrics
US2835020A (en) Reinforced felt fabric
US2808688A (en) Laminated grinding wheel
Chen et al. Relationships between layer linkage and mechanical properties of 3 D woven textile structures
DE202014007186U1 (en) Tool for surface finishing
US3660219A (en) Heterogeneous construction of textile shuttle side walls
JP2001001272A (en) Rotary tool
DE20113727U1 (en) mattress
USRE25303E (en) Cut-off wheel
DE102019128899B4 (en) Process for the production of a carrier plate for flap grinding wheels, carrier plate and flap grinding wheel comprising this carrier plate