Claims
- 1. A precast element of fused quartz for application at high temperatures having a content of about over 90 percent in weight of SiO.sub.2 comprising about 20 to 50 percent in weight of quartz having a grain size from about 1 to 6 mm, 20 to 40 percent in weight of quartz having a grain size from about 0.1 to 1 mm, 15 to 35 percent in weight of finely-ground quartz having a grain size smaller than 0.1 mm, 1 to 10 percent of pulverized quartz having a specific surface area according to BET greater than 20 m.sup.2 per gram, 1 to 10 percent in weight of cement and 0.1 to 8 percent in weight of a phosphoric compound.
- 2. A precast element of fused quartz according to claim 1, wherein said fused quartz comprises 25 to 45 percent in weight of quartz having a grain size from about 1 to 6 mm, 25 to 32 percent in weight of quartz having a grain size from about 0.1 to 1 mm, 20 to 30 percent in weight of finely-ground quartz having a grain size smaller than 0.1 mm, 1 to 8 percent of pulverized quartz having a specific surface area according to BET greater than 20 m.sup.2 per gram, 1 to 8 percent in weight of cement and 0.1 to 5.0 percent in weight of a phosphoric compound.
- 3. A precast element of fused quartz according to claim 1 wherein said fused quartz comprises 30 to 44 percent in weight of quartz having a grain size from about 1 to 6 mm, 28 to 32 percent in weight of quartz having a grain size from about 0.1 to 1 mm, 22 to 26 percent in weight of finely-ground quartz having a grain size smaller than 0.1 mm, 3 to 6 percent of pulverized quartz having a specific surface area according to BET greater than 20 m.sup.2 per gram, 2 to 6 percent in weight of cement and 0.1 to 3 percent in weight of a phosphoric compound.
- 4. A precast element of fused quartz according to claim 1, wherein the dry density of said fused quartz is greater than 1.7 g per cm.sup.3.
- 5. A precast element of fused quartz according to claim 1, wherein the open porosity of said fused quartz is less than 18 percent in volume.
- 6. A precast element of fused quartz according to claim 1, wherein the cold compression strength of said fused quartz exceeds 30 MPa over the temperature range between 110.degree. C. and 1500.degree. C.
- 7. A precast element of fused quartz according to claim 1, wherein said cement comprises a calcium-aluminate.
- 8. A precast element of fused quartz according to claim 1, wherein said phosphoric compound comprises sodium polyphosphate.
- 9. A precast element of fused quartz according to claim 4, wherein the dry density of said fused quartz is greater than 1.8 per cm.sup.3.
- 10. A precast element of fused quartz according to claim 5, where the open porosity of said fused quartz is less than 14 percent in volume.
- 11. A precast element of fused quartz according to claim 6, wherein the cold compression strength of said fused quartz exceeds 60 MPa over the temperature range between 1000.degree. and 1200.degree. C.
- 12. A precast element of fused quartz according to claim 7, wherein said calcium-aluminate consists of about 80 percent in weight of Al.sub.2 O.sub.3 and about 20 percent in weight of CaO.
- 13. A precast element of fused quartz according to claim 1, wherein said fused quartz comprises about 92% to 99.5% in weight of SiO.sub.2, about 0.1% to 8.0% in Al.sub.2 O.sub.3, about 0.01% to 0.20% of Fe.sub.2 O.sub.3, about 0.01 to 1.00% of P.sub.2 O.sub.5 and about 0.1% to 2.0% of CaO.
- 14. A method of producing a precast element of fused quartz for application at high temperatures having a content of about over 90 percent in weight of SiO.sub.2 comprising about 20 to 50 percent in weight of quartz having a grain size from about 1 to 6 mm, 20 to 40 percent in weight of quartz having a grain size from about 0.1 to 1 mm, 15 to 35 percent in weight of finely-ground quartz having a grain size smaller than 0.1 mm, 1 to 10 percent of pulverized quartz having a specific surface area according to BET greater than 20 m.sup.2 per gram, 1 to 10 percent in weight of cement and 1.0 to 8 percent in weight of a phosphoric compound, said method comprising the steps of:
- a) dry mixing said four fractions of quartz, said cement and said phosphoric compound in a container to form a composite;
- b) adding and mixing in about 5% to 10% in weight of water to the composite of step (a) to form a homogeneous paste material; and
- c) filling the paste material of step (b) into a mould to form said precast element of fused quartz.
- 15. A method according to claim 14, wherein said moulding in step (c) is carried out by vibratory compaction.
- 16. A method according to claim 14, wherein said filled moulds in step (c) are dried at 400.degree. C. for several hours.
- 17. A method according to claim 16, wherein said filled moulds are slowly raised to the given temperature so that the surface does not close before the water has escape resulting in said precast element of fused quartz having capillaries open to the surface.
- 18. A method according to claim 14, wherein said water in step (b) consists of about 7% in weight.
- 19. A method according to claim 14, wherein said filled moulds in step (c) are dried at 400.degree. C. for twelve to twenty-four hours.
Priority Claims (1)
Number |
Date |
Country |
Kind |
43 01 846.7 |
Jan 1993 |
DEX |
|
Parent Case Info
This is a continuation of International Application PCT/DE94/00004, with an international filing date of Jan. 5, 1994.
US Referenced Citations (7)