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Soil compaction system |
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Retrofittable insulating system for solar rooms |
| To accomplish these and other objects, the insulation shade system of the present invention ... |
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Spacer fabric with interconnected rib fibers in glazing element |
| I claim: 1. A glazing element comprising at least one pane having a pair of parallel major surfaces ... |
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Greenhouse roof glazing system |
| The present invention relies on the premises that sunlight is provided in quantifiable amounts to ... |
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Process for erecting a building and building erected in accordance therewith |
| The present invention relates to a process for erecting, from prefabricated metal elements, a ... |
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Motor-vehicle door |
| We claim: 1. A motor-vehicle door comprising: an outer skin; an inner skin fixed to the outer skin, ... |
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Mine door installation |
| Among the several objects of the invention may be noted the provision of a mine door system having ... |
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Vitrified super abrasive grain grinding tool
| Details |
Inventors: Nagata, Akira; Yogo, Takao;
Assignee: Noritake Co., Limited (Nagoya, JP)
Primary Examiner: Dixon, Jr.; William R.
Assistant Examiner: Thompson; Willie J.
Attorney, Agent or Firm: Fish & Richardson
Vitrified super abrasive grain grinding tool comprised of abrasive grains and first and second fillers bonded together by a vitrified bonding material, wherein the abrasive grains are super abrasive grains, the softening points of the first and second fillers are both higher than an inherent firing temperature of the vitrified bonding material for the super abrasive grains, the first filler is a ceramics which maintains a hollow state before and after firing of the bonding material, and the second filler is a ceramics which exists in a non-hollow state. This grinding tool has a high porosity at a low concentration while utilizing excellent grinding characteristic of super abrasive grains with high grain retention force and little burn mark in dry grinding. |
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DETAILED DESCRIPTION What is claimed is: 1. A vitrified super abrasive grain grinding tool comprising super abrasive grains and first and second fillers bonded together by a vitrified bonding material, wherein the softening points of the first and second fillers are both higher than an inherent firing temperature of the vitrified bonding material for the super abrasive grains, the first filler is a heat resistant hollow grain ceramic material which maintains a hollow state both before and after firing of the vitrified bonding material, and the second filler is a solid ceramic material which exists in a non-hollow state. 2. The vitrified super abrasive grain grinding tool according to claim 1, wherein and inherent firing temperature is within the range of 650. degree. -1000. degree. C. 3. The vitrified super abrasive grain grinding tool according to claim 1, wherein the first filler is at least one selected from the group consisting of a glass balloon, a Sirasu balloon, a carbon balloon, an alumina balloon, a fly ash balloon, and a mixture thereof. 4. The vitrified super abrasive grain grinding tool according to claims 1, 2 or 3, wherein the second filler is at least one selected from the group consisting of alumina, SiC, an SiO. sub. 2 --Al. sub. 2 O. sub. 3 --system ceramic, zircon, cordierite or a mixture thereof. 5. The vitrified super abrasive grain grinding tool according to claim 1, wherein the coefficients of thermal expansion (. alpha. ) of the first filler and the second filler are within the range of . +-. 2. times. 10. sup. -6 K. sup. -1 within a range of room temperature-500. degree. C. relative to the . alpha. of the super abrasive grains. 6. The vitrified super abrasive grain grinding tool according to claim 1, wherein the concentration of the abrasive grains is 5 to less than 100. 7. The vitrified super abrasive grain grinding tool according to claim 1, wherein the grinding tool has a porosity of 35-70%. 8. The vitrified super abrasive grain grinding tool according to claim 6, wherein the concentration of the abrasive grains is 25-75
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