US3329488A - Resin bonded abrasive articles containing olivine - Google Patents

Resin bonded abrasive articles containing olivine Download PDF

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Publication number
US3329488A
US3329488A US385068A US38506864A US3329488A US 3329488 A US3329488 A US 3329488A US 385068 A US385068 A US 385068A US 38506864 A US38506864 A US 38506864A US 3329488 A US3329488 A US 3329488A
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US
United States
Prior art keywords
olivine
percent
abrasive
wheel
pore
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
US385068A
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English (en)
Inventor
Louis L Cofran
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.)
Unifrax I LLC
Original Assignee
Carborundum Co
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 Carborundum Co filed Critical Carborundum Co
Priority to US385068A priority Critical patent/US3329488A/en
Priority to GB30962/65A priority patent/GB1071364A/en
Priority to DE19651302479D priority patent/DE1302479C2/de
Priority to FR25869A priority patent/FR1443608A/fr
Application granted granted Critical
Publication of US3329488A publication Critical patent/US3329488A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24DTOOLS FOR GRINDING, BUFFING OR SHARPENING
    • B24D3/00Physical features of abrasive bodies, or sheets, e.g. abrasive surfaces of special nature; Abrasive bodies or sheets characterised by their constituents
    • B24D3/02Physical features of abrasive bodies, or sheets, e.g. abrasive surfaces of special nature; Abrasive bodies or sheets characterised by their constituents the constituent being used as bonding agent
    • B24D3/20Physical features of abrasive bodies, or sheets, e.g. abrasive surfaces of special nature; Abrasive bodies or sheets characterised by their constituents the constituent being used as bonding agent and being essentially organic
    • B24D3/28Resins or natural or synthetic macromolecular compounds
    • B24D3/32Resins or natural or synthetic macromolecular compounds for porous or cellular structure
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24DTOOLS FOR GRINDING, BUFFING OR SHARPENING
    • B24D18/00Manufacture of grinding tools or other grinding devices, e.g. wheels, not otherwise provided for

Definitions

  • This invention relates to improved bonded abrasive articles. More particularly it relates to improved bonded abrasive articles containing a novel pore-forming material to provide a greater freedom of cut and improved cutting action.
  • Bonded abrasive articles of the type used in snagging operations are generally in the form of a disc, where the grinding is accomplished on the side or face of the article, or a wheel, where the grinding is accomplished on the periphery.
  • Abrasive articles of this type generally comprise a mass of abrasive granules bonded together by an organic bonding material with or without the presence of fillers and/ or other additives.
  • Another method used heretofore in order to obtain porosity has been to incorporate particles of a volatile material, such as naphthalene or paradichlorobenzene, in the wheel forming mix, so that the naphthalene or paradichlorobenzene will volatilize during the curing cycle leaving holes or pores in the wheel. It is extremely difiicult, however, to obtain uniform pore distribution and pore size by such a method.
  • a volatile material such as naphthalene or paradichlorobenzene
  • An object of the present invention is to provide improved bonded abrasive articles.
  • Another object is to provide bonded abrasive articles having a porous, open structure and free-cutting characteristics.
  • Another object is to provide a novel pore-forming material which imparts improved cutting action to bonded abrasive articles such as wheels and discs.
  • a further object is to provide improved bonded grinding wheels in which novel pore-forming material is employed in conjunction with an organic bond.
  • a further object is to provide a raw batch composition for the manufacture of bonded abrasive articles, the composition containing a novel pore-forming material.
  • a still further object of this invention is to provide a method for forming bonded abrasive articles having a porous, open structure.
  • organic bonded abrasive articles such as, for example, disc wheels
  • improved abrading and cutting characteristics by incorporating therein during the process of their manufacture, controlled amounts of a novel poreforming material.
  • disc wheels, and other organic bonded abrasive shapes, of porous, open structure and free-cutting characteristics can be made by the addition to the wheel-forming mix of selected amounts of a friable pore-forming material which is readily removed from the wheel during the grinding operation.
  • friable as used herein, is used in its conventional manner and defines a material which is easily crushed, crumbled, pulverized, or reduced to powder.
  • the friable pore-forming material of this invention breaks down and wears away considerably faster than the abrasive and is readily removed thereby forming holes or pores in the grinding surface of the wheel.
  • This porosity in the surface of the wheel provides an interrupted cut, cool cutting action as well as chip clearance during use.
  • the novel friable pore-forming material of this invention is olivine.
  • Olivine is an abundant rock-forming mineral group consiting essentially of silicates of magnesium and ferrous iron, that is (Mg, Fe) SiO
  • olivine is richer in magnesium than iron with fayalite being the minor component and usually averaging about 15% of the olivine.
  • Nickel and titanium may be present in minute quantities as impurities.
  • Olivine occurs as orthohombic crystals and is an essential constituent and characteristic mineral or many basic rocks such as gabbro, basalt, peridotite; the rock known as dunite being composed almost Wholly of olivine. Olivine has a specific gravity ranging .3.2 to 4.3, the specific gravity increasing concomitantly with the iron content. It has a hardness of about 6.5 to 7.
  • Olivine contains from about 36 to about 43 percent silica, from about 28 to about 52 percent magnesia and from about 5 to about 30 percent ferrous iron.
  • the MgzFe of olivine ranges from about 9:1 or higher to about 2:1.
  • Olivine as a friable pore-forming material, is not sube-ct to these limitations and organic bonded disc wheels :ontaining olivine particles as a pore-forming agent do not lave any of these undesirable characteristics. It has been letermined that segregation of the pore-forming agent 1nd the abrasive component of the wheel-forming mix be- :o-rnes desirably less as the density and/or the particle ;ize of these components approach the same value. Since Jlivine has a specific gravity similar to abrasive grain and .s avail-able in particle sizes similar to that of abrasive grain, these characteristics prevent undesirable segregation of the olivine in the wheel-forming mixture.
  • the olivine When such a mix is pressed into wheels the olivine is uniformly distributed throughout the wheel so that when the wheel is used and the olivine removed during the grinding operation, there will be a uniform pore distribution throughout the grinding surface. Also, the olivine does not adversely affect the strength of the wheels.
  • organic bonded abrasive articles in accordance with the present invention, conventional abrasive grain, such as silicon carbide and the like, is mixed with a suitable organic bonding material, and a controlled amount of olivine is then added.
  • the bond can be modified by the inclusion therewith of inert or active fillers and/or other modifying agents, as may be desired.
  • the resulting mix is placed in a mold and subjected to pressure to form an abrasive body of the desired shape and size according to conventional manufacturing procedures.
  • the molded article is removed from the mold and subjected to the necessary heat treatment to mature the bond.
  • the times and temperatures required for maturing the bond are those conventionally followed in the making of bonded abrasive articles and depend upon the type of bond used.
  • the organic bonded articles can be either formed by a hot pressing operation in which the bond is partially or fully matured at the time of formation in the mold by simultaneous exposure to heat and pressure, or the articles can be formed by conventional cold pressing techniques, in which the raw batch mixture is pressed to shape in a mold, the body removed from the mold, and the bond subsequently cured by a time-temperature treatment. After curing or firing, the abrasive body is suitably dressed in accordance with conventional practices.
  • the amount of olivine incorporated in the abrasive body is determined by the degree of porosity desired in the body. The amount may be as large as is practicable to produce a porous article which is also strong enough for the use for which it is intended.
  • the olivine particles may be added to the whee1-forming mix in such an amount that the volume of the olivine is from about 3 percent to about 20 percent of the volume of the molded abrasive body. When more than about 20 percent by volume of olivine is used, undesirable segregation of the olivine and the wheel-forming mix begins to occur. It is preferred, however, that the granular olivine be added in such an amount that it constitutes from about 5 percent to about 15 percent by volume of the bonded article.
  • the olivine In order to provide pores in the wheel, the olivine is employed in particulate form, Granular olivine is available in particle sizes ranging from about 2 mesh to about 50 mesh and finer, and particle sizes within this range may be used in accordance with the present invention. It is preferred that the olivine have a particle size within the range of from about 4 mesh to about +16 mesh (US. Standard Sieve). The optimum amount and particle size of the olivine in the abrasive article in any particular case will depend on conditions of use, such as the nature of the work being ground or cut, the amount of stock to be removed and whether grinding is to be carried out wet or dry, among other factors.
  • any of the conventional abrasives such as silicon carbide, aluminum oxide, zirconia, flint, garnet, bauxite and the like or mixtures thereof can be used in forming the organic bonded abrasive articles of this invention.
  • the term organic bond encompasses the natural and synthetic resins, including the phenol-formaldehydes, urea-formaldehydes, melamine-formaldehyde, epoxies, alkyds, polyesters, modified phenolics, natural and synthetic rubbers, shellac and the like.
  • Conventional fillers such as, for example, cryolite, iron sulfides, fluorspar and the like, in finely divided form may also be included, if desired, in the raw batch composition to be pressed.
  • an organic bonded wheel such as, for example, a resin bonded disc Wheel, containing from about 3 percent to about 20 percent by volume of olivine
  • the olivine at the face of the grinding wheel in direct contact with the work being ground breaks down, due to its friability, and is readily removed from the grinding surface of the disc, leaving a hole or pore in the face of the disc.
  • This increased porosity of the working face results in a cool cutting wheel which does not load or bind.
  • cooling air or a cutting liquid is used in the grinding operation it will be entrained in the open pores and wiped against the face of the work being ground giving a highly effective cooling action.
  • the olivine has a density quite similar to that of the abrasive grains commonly used in forming bonded articles, the olivine is uniformly distributed throughout the wheel sothat the pores formed on the grinding face will be generally uniform.
  • Resin bonded abrasive wheels according to the present invention can be made in the following manner:
  • the abrasive grain 24 grit silicon carbide, is first mixed with the liquid phenolic resin in order to wet the abrasive grain.
  • the powdered phenolic resin is then added in increments with continued mixing until all the powdered resin has been taken up and distributed throughout the mixture of abrasive grain.
  • a suitable dry phenolic resin is a phenol-formaldehyde resin known as Varcum 1364.
  • a suitable liquid resin is one known as Varcum 8121.
  • a raw batch composition is then prepared by forming a mixture comprising about percent by weight of the abrasive grain-resin mix prepared above and about 15 percent by weight olivine, the olivine consisting essentially of about 47%-49% MgO 7%9% FeO 39%41% SiO and being uniformly distributed throughout this wheelforming mix.
  • This raw batch composition is then placed in a suitable mold, leveled off and pressed as usual in the formation of disc wheels, to a density of 34 grams per cubic inch. The formed wheel is then removed from the mold and cured in the usual way at a temperature of about 300400 F. for a period of about 40 hours.
  • Disc Wheels, 30" x 1 x 1 made in this manner have an olivine content of about 10 percent by volume.
  • a raw batch composition containing 93 percent by weight of the abrasive grain-resin mix described above and 7 percent by weight of olivine is prepared and placed in a mold and pressed to a density of 33 grams per cubic inch.
  • a wheel of this same type containing 15 percent by volume of olivine is prepared by pressing a raw batch composition containing 79 percent by weight of the abrasive grain-resin mix described above and 21 percent by weight olivine, in a suitable mold to a density of 35 grams per cubic inch.
  • olivine was added to the wheel-forming mix in amounts greater than that to provide an article containing 20 percent by volume olivine, segregation of the olivine and abrasive grain-bonding material mix occurred.
  • EXAMPLE III In order to compare the properties of olivine, against other materials used as pore-forming additives, a number of test bodies were prepared in accordance with the procedure set forth in Example I. Each of these resin bonded, 24 grit silicon carbide test bodies was prepared and pressed under similar uniform conditions, the only differences between the test bodies being the pore-forming material utilized. In each case, suflicient pore-forming material, having a particle size of about 4 mesh and finer was added so that the test body contained 15 percent by volume of the pore-forming additive. Each of the mixes was pressed into a figure-eight briquette of the same size and shape, the briquette having an efiective cross section of one square inch.
  • the wheel-forming mixes and the pressed bodies were evaluated and observed in respect to tensile strength, uniformity of mix, segregation and problems with respect to wheel processing.
  • the tensile strengths were determined under uniform conditions using a Tinius-Olsen Universal Testsive grain size, the specific organic bond, and the proportion of grain to the bond may be varied in accordance with the particular application for which the bonded abrasives are intended.
  • abrasive bodies of the present invention normally contain more than 50 percent by weight of the abrasive constituent.
  • the bond pressing and curing conditions will, of course, be dependent on the nature and amount of bonding material used and the intended use of the wheel.
  • pressures of between about 500 to 6000 psi. are used to press the article while curing is usually accomplished at temperatures of under 500 F. for periods of time up to about 50 hours.
  • abrasive article as defined in claim 1 wherein said pore-forming material consists essentially of about 7-49 percent MgO, 7-9 percent FeO and 3941 percent iO 6.
  • a particulate, friable ore-forming material consisting essentially of olivine, aid olivine being present in an amount sufiicient to contitute from about 3 volume percent to about 20 volume ver-cent of said article and having a particle size in the 'ange of 4 to +16 mesh.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Polishing Bodies And Polishing Tools (AREA)
  • Manufacture Of Macromolecular Shaped Articles (AREA)
US385068A 1964-07-24 1964-07-24 Resin bonded abrasive articles containing olivine Expired - Lifetime US3329488A (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
US385068A US3329488A (en) 1964-07-24 1964-07-24 Resin bonded abrasive articles containing olivine
GB30962/65A GB1071364A (en) 1964-07-24 1965-07-21 Abrasive article
DE19651302479D DE1302479C2 (de) 1964-07-24 1965-07-21 Schleifscheibe
FR25869A FR1443608A (fr) 1964-07-24 1965-07-23 Meule abrasive

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US385068A US3329488A (en) 1964-07-24 1964-07-24 Resin bonded abrasive articles containing olivine

Publications (1)

Publication Number Publication Date
US3329488A true US3329488A (en) 1967-07-04

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Country Status (4)

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US (1) US3329488A (fr)
DE (1) DE1302479C2 (fr)
FR (1) FR1443608A (fr)
GB (1) GB1071364A (fr)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3433730A (en) * 1965-04-28 1969-03-18 Gen Electric Electrically conductive tool and method for making
US3476537A (en) * 1966-05-23 1969-11-04 Acme Abrasive Co Abrasive composition with limestone as the porosity-inducing agent
US4001981A (en) * 1974-02-19 1977-01-11 E. I. Du Pont De Nemours And Company Abrasive article
EP0057392A3 (fr) * 1981-02-02 1985-01-09 Norton Company Articles abrasifs
US4882878A (en) * 1988-08-05 1989-11-28 Benner Robert L Grinding wheel
US5037453A (en) * 1989-09-13 1991-08-06 Norton Company Abrasive article
US5104424A (en) * 1989-11-20 1992-04-14 Norton Company Abrasive article
US5203886A (en) * 1991-08-12 1993-04-20 Norton Company High porosity vitrified bonded grinding wheels
US5210982A (en) * 1991-01-22 1993-05-18 Kormanek Ronald S Animal glue hardening composition and article and method of manufacturing thereof

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2294239A (en) * 1938-04-09 1942-08-25 Durite Plastics Inc Abrasive article
US2333429A (en) * 1942-04-06 1943-11-02 J K Smit & Sons Inc Diamond abrasive article
US2592954A (en) * 1942-12-16 1952-04-15 Carborundum Co Method of making flexible abrasive articles
US2729553A (en) * 1952-03-06 1956-01-03 Simonds Abrasive Company Abrasive article

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2294239A (en) * 1938-04-09 1942-08-25 Durite Plastics Inc Abrasive article
US2333429A (en) * 1942-04-06 1943-11-02 J K Smit & Sons Inc Diamond abrasive article
US2592954A (en) * 1942-12-16 1952-04-15 Carborundum Co Method of making flexible abrasive articles
US2729553A (en) * 1952-03-06 1956-01-03 Simonds Abrasive Company Abrasive article

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3433730A (en) * 1965-04-28 1969-03-18 Gen Electric Electrically conductive tool and method for making
US3476537A (en) * 1966-05-23 1969-11-04 Acme Abrasive Co Abrasive composition with limestone as the porosity-inducing agent
US4001981A (en) * 1974-02-19 1977-01-11 E. I. Du Pont De Nemours And Company Abrasive article
EP0057392A3 (fr) * 1981-02-02 1985-01-09 Norton Company Articles abrasifs
US4882878A (en) * 1988-08-05 1989-11-28 Benner Robert L Grinding wheel
US5037453A (en) * 1989-09-13 1991-08-06 Norton Company Abrasive article
US5104424A (en) * 1989-11-20 1992-04-14 Norton Company Abrasive article
US5210982A (en) * 1991-01-22 1993-05-18 Kormanek Ronald S Animal glue hardening composition and article and method of manufacturing thereof
US5203886A (en) * 1991-08-12 1993-04-20 Norton Company High porosity vitrified bonded grinding wheels

Also Published As

Publication number Publication date
FR1443608A (fr) 1966-06-24
DE1302479B (de) 1972-08-24
GB1071364A (en) 1967-06-07
DE1302479C2 (de) 1973-03-29

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Legal Events

Date Code Title Description
AS Assignment

Owner name: KENNECOTT CORPORATION

Free format text: MERGER;ASSIGNORS:BEAR CREEK MINING COMPANY;BEAR TOOTH MINING COMPANY;CARBORUNDUM COMPANY THE;AND OTHERS;REEL/FRAME:003961/0672

Effective date: 19801230