IP Library Granted Patent US 7,468,336
Granted Patent B2
US 7,468,336 · App. 10/876,968 · Granted Dec 23, 2008

High temperature resistant vitreous inorganic fiber

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Quick Facts
Patent No.
US 7,468,336
App. No.
10/876,968
Granted
Dec 23, 2008
Kind
B2
Abstract

A high temperature resistant vitreous inorganic fiber having a use temperature of up to at least 1000° C., or greater, having after service mechanical integrity, is non-durable (soluble) in physiological fluids, and is produced from a melt containing silica, magnesia, calcia, a lanthanide series element-containing compound, and optionally zirconia.

Claims (48)

1. A low shrinkage, high temperature resistant vitreous inorganic fiber having a use temperature over at least 1000° C., which maintains mechanical integrity up to the use temperature and which is non-durable in physiological fluids, comprising the fiberization product of greater than 71.25 weight percent silica, magnesia, calcia, a lanthanide series element-containing compound and optionally less than 10 weight percent zirconia.

2. The fiber of claim 1 , wherein said lanthanide series element is selected from the group consisting of La, Ce, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu.

3. The fiber of claim 2 , wherein said lanthanide series element is La.

4. The fiber of claim 1 , wherein said lanthanide series element-containing compound is selected from the group consisting of lanthanide series element-containing bromides, lanthanide series element-containing chlorides, lanthanide series element-containing fluorides, lanthanide series element-containing phosphates, lanthanide series element-containing nitrates, lanthanide series element-containing nitrites, lanthanide series element-containing oxides, and lanthanide series element-containing sulfates.

5. The fiber of claim 4 , wherein said lanthanide series element-containing compound is La 2 O 3 .

6. The fiber of claim 1 , containing less than about 2 weight percent alumina.

7. The fiber of claim 1 , containing less than about 1 weight percent iron oxides, calculated as Fe 2 O 3 .

8. The fiber of claim 1 , containing substantially no alkali metal oxide.

9. The fiber of claim 8 , wherein said lanthanide series element is selected from the group consisting of La, Ce, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu.

10. The fiber of claim 9 , wherein said lanthanide series element is La.

11. The fiber of claim 8 , wherein said lanthanide series element-containing compound is selected from the group consisting of lanthanide series element-containing bromides, lanthanide series element-containing chlorides, lanthanide series element-containing fluorides, lanthanide series element-containing phosphates, lanthanide series element-containing nitrates, lanthanide series element-containing nitrites, lanthanide series element-containing oxides, and lanthanide series element-containing sulfates.

12. The fiber of claim 11 , wherein said lanthanide series element-containing compound is La 2 O 3 .

13. The fiber of claim 8 , containing less than about 2 weight percent alumina.

14. The fiber of claim 8 , containing less than about 1 weight percent iron oxides, calculated as Fe 2 O 3 .

15. The fiber of claim 8 , containing substantially no alkali metal oxide.

16. The fiber of claim 1 , comprising the fiberization product of greater than 71.25 to about 86 weight percent silica, greater than 0 to about 20 weight percent magnesia, about 5 to about 28.75 weight percent calcia, and greater than 0 to about 6 weight percent of a compound containing lanthanum or a lanthanide series element.

17. The fiber of claim 1 , comprising the fiberization product of about 71.5 to about 79 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9 to about 27 weight percent calcia, greater than 0 to 6 weight percent of a compound containing lanthanum or a lanthanide series element.

18. The fiber of claim 1 , comprising the fiberization product of about 71.5 to about 76.1 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9.25 to about 28 weight percent calcia, greater than 0 to 6 weight percent of a compound containing lanthanum or a lanthanide series element.

19. The fiber of claim 1 , comprising the fiberization product of about 71.5 to about 79 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9 to about 27 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

20. The fiber of claim 1 , comprising the fiberization product of about 71.5 to about 76.1 weight percent silica, 0 to about 16.5 weight percent magnesia, and about 9.25 to about 28 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

21. The fiber of claim 1 , comprising the fiberization product of about 72 to about 75 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9.25 to about 28 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

22. A method for preparing a low shrinkage, high temperature resistant vitreous fiber having a use temperature over at least 1000° C., which maintains mechanical integrity up to the use temperature and which is non-durable in physiological fluids, comprising forming a melt with ingredients comprising greater than 71.25 weight percent silica, magnesia, calcia, a lanthanide series element-containing compound and optionally less than 10 weight percent zirconia; and producing fibers from the melt.

23. The method of claim 22 , wherein the melt comprises greater than 71.25 to about 86 weight percent silica, greater than 0 to about 20 weight percent magnesia, about 5 to about 28.75 weight percent calcia, and about greater than 0 to about 6 weight percent of a compound containing lanthanum or a lanthanide series element.

24. The method of claim 22 , wherein the melt comprises about 71.5 to about 79 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9 to about 27 weight percent calcia, greater than 0 to 6 weight percent of a compound containing lanthanum or a lantlianide series element.

25. The method of claim 22 , wherein the melt comprises about 71.5 to about 76.1 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9.25 to about 28 weight percent calcia, greater than 0 to 6 weight percent of a compound containing lanthanum or a lanthanide series element.

26. The method of claim 22 , wherein the melt comprises about 71.5 to about 79 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9 to about 27 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

27. The method of claim 22 , wherein the melt comprises about 71.5 to about 76.1 weight percent silica, 0 to about 16.5 weight percent magnesia, and about 9.25 to about 28 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

28. The method of claim 22 , wherein the melt comprises about 72 to about 75 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9.25 to about 28 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

29. The method of claim 22 , wherein said lanthanide series element is selected from the group consisting of La, Ce, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu, and Y.

30. The method of claim 22 , wherein said lanthanide series element is La.

31. The method of claim 22 , wherein said lanthanide series element-containing compound is selected from the group consisting of lanthanide series element-containing bromides, lanthanide series element-containing chlorides, lanthanide series element-containing fluorides, lanthanide series element-containing phosphates, lanthanide series element-containing nitrates, lanthanide series element-containing nitrites, lanthanide series element-containing oxides, and lanthanide series element-containing sulfates.

32. The method of claim 31 , wherein said lanthanide series element-containing compound is La 2 O 3 .

33. The method of claim 22 , containing less than about 2 weight percent alumina.

34. The method of claim 22 , containing less than about 1 weight percent iron oxides, calculated as Fe 2 O 3 .

35. The method of claim 22 , containing substantially no alkali metal oxide.

36. The method of claim 22 , further comprising from 0 to about 11 weight percent zirconia.

37. A method of insulating an article, including disposing on, in, near or around the article, a thermal insulation material having a service temperature up to at least 1000° C., or greater, which maintains mechanical integrity up to the use temperature and which is non-durable in physiological fluids, said insulation material comprising the fiberization product of a melt of ingredients comprising greater than 71.25 weight percent silica, magnesia, calcia, a lanthanide series element-containing compound and, optionally, less than 10 weight percent zirconia.

38. A low shrinkage, high temperature resistant vitreous inorganic fiber having a use temperature over at least 1000° C., which maintains mechanical integrity up to the use temperature and which is non-durable in physiological fluids, comprising the fiberization product of greater than 71.25 to about 86 weight percent silica, greater than 0 to about 20 weight percent magnesia, about 5 to about 28.75 weight percent calcia, and greater than 0 to about 6 weight percent of a compound containing lanthanum or a lanthanide series element.

39. The fiber of claim 38 , comprising the fiberization product of about 71.5 to about 79 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9 to about 27 weight percent calcia, greater than 0 to 6 weight percent of a compound containing lanthanum or a lanthanide series element.

40. The fiber of claim 38 , comprising the tiberization product of about 71.5 to about 76.1 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9.25 to about 28 weight percent calcia, greater than 0 to 6 weight percent of a compound containing lanthanum or a lanthanide series element.

41. The fiber of claim 38 , comprising the fiberization product of about 71.5 to about 79 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9 to about 27 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

42. The fiber of claim 38 , comprising the fiberization product of about 71.5 to about 76.1 weight percent silica, 0 to about 16.5 weight percent magnesia, and about 9.25 to about 28 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

43. The fiber of claim 38 , comprising the fiberization product of about 72 to about 75 weight percent silica, greater than 0 to about 16.5 weight percent magnesia, about 9.25 to about 28 weight percent calcia, greater than 0 to about 6 of a compound containing lanthanum or a lanthanide series element and, optionally, 0 to about 5 weight percent zirconia.

44. The fiber of claim 38 , wherein said lanthanide series element is selected from the group consisting of La, Ce, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu.

45. The fiber of claim 44 , wherein said lanthanide series element is La.

46. The fiber of claim 38 , wherein said lanthanide series element-containing compound is selected from the group consisting of lanthanide series element-containing bromides, lanthanide series element-containing chlorides, lanthanide series element-containing fluorides, lanthanide series element-containing phosphates, lanthanide series element-containing nitrates, lanthanide series element-containing nitrites, lanthanide series element-containing oxides, and lanthanide series element-containing sulfates.

47. The fiber of claim 46 , wherein said lanthanide series element-containing compound is La 2 O 3 .

48. The fiber of claim 38 , containing less than about 2 weight percent alumina.

Assignments (14)
RELEASE OF FIRST LIEN SECURITY INTEREST IN PATENT COLLATERAL AT REEL/FRAME NO. 47909/0937 Recorded Oct 2, 2024
From: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
To: UNIFRAX I LLC
Reel/Frame 069103/0582 →
RELEASE OF SECURITY INTEREST IN PATENT COLLATERAL AT REEL/FRAME NO. 49014/0755 Recorded Oct 4, 2021
From: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
To: UNIFRAX I LLC
Reel/Frame 057710/0669 →
RELEASE OF SECOND LIEN SECURITY INTEREST RECORDED AT REEL 044393, FRAME 0273 Recorded Dec 17, 2018
From: GOLDMAN SACHS LENDING PARTNERS LLC
To: UNIFRAX I LLC
Reel/Frame 047940/0758 →
RELEASE OF FIRST LIEN SECURITY INTEREST RECORDED AT REEL 042166, FRAME 0201 Recorded Dec 15, 2018
From: GOLDMAN SACHS LENDING PARTNERS LLC
To: UNIFRAX I LLC
Reel/Frame 048919/0384 →
SECOND LIEN PATENT SECURITY AGREEMENT Recorded Dec 14, 2018
From: UNIFRAX I LLC
To: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
Reel/Frame 049014/0755 →
FIRST LIEN PATENT SECURITY AGREEMENT Recorded Dec 14, 2018
From: UNIFRAX I LLC
To: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
Reel/Frame 047909/0937 →
SECURITY INTEREST Recorded Nov 7, 2017
From: UNIFRAX I LLC
To: GOLDMAN SACHS LENDING PARTNERS LLC, AS COLLATERAL AGENT
Reel/Frame 044393/0273 →
SECURITY INTEREST Recorded Apr 5, 2017
From: UNIFRAX I LLC
To: GOLDMAN SACHS LENDING PARTNERS LLC
Reel/Frame 042166/0201 →
RELEASE OF SECURITY INTEREST Recorded Apr 4, 2017
From: GOLDMAN SACHS LENDING PARTNERS, LLC
To: UNIFRAX I LLC
Reel/Frame 042157/0728 →
SECURITY AGREEMENT Recorded Nov 29, 2011
From: UNIFRAX I LLC (F/K/A UNIFRAX CORPORATION)
To: GOLDMAN SACHS LENDING PARTNERS LLC AS ADMINISTRATIVE AGENT
Reel/Frame 027289/0063 →
RELEASE OF SECURITY INTEREST Recorded Nov 28, 2011
From: WELLS FARGO BANK, NATIONAL ASSOCIATION AS SUCCESSOR TO WACHOVIA BANK, NATIONAL ASSOCIATION
To: UNIFRAX HOLDING CO.; UNIFRAX I LLC AS SUCCESSOR TO UNIFRAX CORPORATION; UFX HOLDING II CORPORATION (F/K/A ASP UNIFRAX INC.); UFX HOLDING I CORPORATION
Reel/Frame 027287/0275 →
CONVERSION TO A LIMITED LIABILITY COMPANY/CHANGE OF NAME Recorded Apr 26, 2007
From: UNIFRAX CORPORATION
To: UNIFRAX I LLC
Reel/Frame 019215/0213 →
SECURITY AGREEMENT Recorded Jul 13, 2006
From: UNIFRAX HOLDING CO.; UNIFRAX CORPORATION; UFX HOLDING II CORPORATION (F/K/A ASP UNIFRAX INC.); UFX HOLDING I CORPORATION
To: WACHOVIA BANK, NATIONAL ASSOCIATION
Reel/Frame 017982/0191 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2004
From: ZOITOS, BRUCE K.; ANDREJCAK, MICHAEL J.; BOYMEL, PAUL M.
To: UNIFRAX CORPORATION
Reel/Frame 015272/0512 →