Fixture for holding a preform during a heating process
A restraint fixture (12) is disclosed that includes a preform retention region configured to limit contracting forces applied against a preform (10) in the preform retention region when the restraint fixture (12) thermally contracts. In one embodiment, the restraint fixture (12) comprises a band (12) having a first surface defining the preform retention region and a first expansion portion (26, 28, 29) adapted to deform upon application of a force to the band (12).
The present invention is directed to a fixture for holding a preform during a heating process, and, more specifically, toward a restraint fixture for holding a preform that expands during a heating process and limits the force applied to the preform when the restraint fixture cools.
BACKGROUND OF THE INVENTIONBrake discs for aircraft or automobiles require materials having high heat resistance and long wear. Asbestos has been used in these applications, due to its heat resistance properties. Asbestos-based friction components have limited applicability under severe use conditions because the polymeric resins used to bind the asbestos fibers together decompose at elevated temperatures. The use of carbon-carbon brake components has therefore become more common.
Among the types of substrates used to make carbon-carbon parts are discontinuous carbon fiber moldings, nonwoven airlaid carbon substrates, woven carbon fiber substrates, and braided carbon fiber substrates. Carbon-carbon parts can also be made by using fibers that are precursors to carbon fibers to build a preform and then converting the fiber to carbon fiber. The substrates are typically stacked on top of each other to a desired thickness, and then the stacked substrates may be needle-punched together to join or consolidate the substrates to each other by intermingling fibers between the layers of substrates to form the preform. Other methods of manufacturing a preform or impregnating the preform with pitch may also be used.
An alternate method of consolidating the layers of a substrate is to use a pitch or resin binder and press the materials under heat and pressure to form a preform. The preform is then typically batch carbonized to reduce its non-carbon content. The carbonized preform may then be die cut or machined to a desired shape for further densification.
The preform may be further densified by a chemical vapor deposition (CVD) process, e.g. with hydrocarbon gasses, by resin infiltration or by pitch infiltration and then carbonized yet again. These densification processes may be repeated until the desired density is attained. The preform may then be heat-treated to reorient the carbon atoms, which modifies the thermo-mechanical properties of the preform, machined if necessary, and the non friction surfaces treated with an anti-oxidant to form the finished carbon-carbon part.
It has been found that, for preforms containing pitch, if the preform is carbonized without undergoing a stabilization step, a significant amount of the liquid pitch runs out of the preform during carbonization. This limits the density of the resulting carbon-carbon preform. In an effort to address this problem, the present inventors have attempted to carbonize performs while they are contained in a restraint fixture. The use of such a restraint fixture substantially addresses the problem of run out, but may cause damage to the finished perform. This is because, while the preform and the restraint fixture both expand when heated during the carbonization process, the restraint fixture contracts to a greater extent that the preform as it cools and thus squeezes and sometimes damages the preform. It would therefore be desirable to provide a restraint fixture for quickly and efficiently producing preforms that reduces the need for a stabilization step and avoids pitch run out during carbonization.
SUMMARY OF THE INVENTIONOne aspect of the invention comprises a restraint fixture including a band having a central portion having first and second ends and a first finger extending from the first end at a first angle and a second finger extending from the second end at a second angle. The center portion is curved so that its first end lies adjacent to its second end, and the first finger is connected to the second finger.
Another aspect of the invention comprises a restraint fixture that includes a band having a central portion having first and second ends, a first finger extending from the first end and a second finger extending from the second end. The center portion is curved so that the first end lies adjacent to the second end and the first finger is connected to the second finger. The band has a first configuration wherein the first finger extends from the first end at a first angle and the second finger extends from the second end at a second angle, and a second configuration wherein the first finger extends from the first end at a third angle different than the first angle and the second finger extends from the second end at a fourth angle different from the second angle.
A further aspect of the invention comprises a restraint fixture that includes a band having a first surface defining a preform retention region and a first expansion portion adapted to deform upon application of a force to the band first surface.
Another aspect of the invention comprises a restraint fixture that includes a band having a first surface defining a preform retention region and an arrangement for limiting a force exerted by the band on a preform in the preform retention region during a thermal contraction of the band.
An additional aspect of the invention comprises a restraint fixture that includes a band having first edge and a second edge and an inner surface defining a preform retention region, wherein the band has an inner diameter at the first edge greater than the inner diameter at the second edge.
BRIEF DESCRIPTION OF THE DRAWINGSThese and other aspects and features of the present invention will be better understood after a reading of the following detailed description together with the drawings wherein:
Referring now to the drawings, wherein the showings are for the purpose of illustrating preferred embodiments of the invention only and not for the purpose of limiting same,
In use, restraint fixture 12 is placed around preform 10, and the first finger 26 and second finger 28 are fastened together with fastener 32. When a standard carbonization process is carried out on the restraint fixture 12 and preform 10, at a temperature of about 750° C., for example, both the preform 10 and the restraint fixture 12 thermally expand. However, once the preform is carbonized, the new coefficient of thermal expansion will not allow the preform to shrink back to its original size when it cools. The restraint fixture 12, however, will shrink as it cools, and as it shrinks, it applies force to the circumference of preform 10. This squeezing may damage the preform. However, as will be appreciated from
Band 14 may be formed from a variety of thicknesses of steel. The present inventors have found that steel sheet as thin as 18 gauge or as thick as one half inch can be used to form band 14. When thinner material is used, the distance between opening 30 and preform 10, in other words, the length of first finger 26 and second finger 28, may be relatively small because band 14 and fingers 26, 28 will readily deform. When a thicker band 14 is used, such as one formed from quarter inch steel, the fingers 26, 28 must be longer so that the pressure of band 14 contracting around preform 10 during cooling will be sufficient to deform the first and second fingers 26, 28 without damaging the preform 10. Beneficially, while thinner bands generally can only be used once, thicker bands are reusable and may be used, for example, up to about 100 times before the repeated heating and cooling cycles render them unsuitable for further use. Alternately, band 14 can be formed from a carbon-carbon material that is both strong and will withstand a greater number of heating and cooling cycles before failing. A carbon-carbon band 37 is illustrated
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A second embodiment of the present invention is illustrated in
A third embodiment of the invention is illustrated in
A fourth embodiment of the invention is illustrated in
A fifth embodiment of the invention is illustrated in
A sixth embodiment of the invention is illustrated in
A seventh embodiment of the invention is illustrated in
An eighth embodiment of the invention is illustrated in
A ninth embodiment of the invention is illustrated in
The invention has been described in terms of several embodiments, however, other modifications and additions will become apparent to those skilled in the art upon a reading of this disclosure and such modifications and additions are intended to be included within the scope of this patent.
Claims
1. A restraint fixture comprising:
- a band having a central portion having first and second ends, a first finger extending from said first end at a first angle and a second finger extending from said second end at a second angle, said center portion being curved such that said first end lies adjacent to said second end, and said first finger being connected to said second finger.
2. The restraint fixture of claim 1 wherein said first angle is equal to said second angle.
3. The restraint fixture of claim 1 wherein said first and second angles are selected such that said first finger contacts said second finger when said first end lies adjacent to said second end.
4. The restraint fixture of claim 1 including a connector connecting said first finger to said second finger at a location spaced from said central portion first and second ends.
5. The restraint fixture of claim 1 wherein said first finger and said second finger comprise integral portions of said band.
6. The restraint fixture of claim 1 wherein said first angle is approximately 90 degrees.
7. The restraint fixture of claim 1 wherein said central portion defines a substantially circular preform retention region.
8. The restraint fixture of claim 1 wherein said first finger is substantially parallel to said second finger.
9. A restraint fixture comprising:
- a band having a central portion having first and second ends, a first finger extending from said first end and a second finger extending from said second end, said center portion being curved such that said first end lies adjacent to said second end, said first finger being connected to said second finger;
- said band having a first configuration wherein said first finger extends from said first end at a first angle and said second finger extends from said second end at a second angle and a second configuration wherein said first finger extends from said first end at a third angle different than said first angle and said second finger extends from said second end at a fourth angle different from said second angle.
10. The restraint fixture of claim 9 wherein said third angle is greater than said first angle and said fourth angle is greater than said second angle.
11. The restraint fixture of claim 9 wherein said first finger is connected to said second finger by a fastener spaced from said first end and said second end.
12. The restraint fixture of claim 9 wherein said band is shiftable from said first configuration to said second application by an application of radial force against said central portion.
13. A restraint fixture comprising:
- a band having a first surface defining a preform retention region, and
- a first expansion portion adapted to deform upon application of a force to said band first surface.
14. The restraint fixture of claim 13 including a wall having a second surface defining with the band a preform retention region.
15. The restraint fixture of claim 14 wherein said preform retention region is ring shaped.
16. The restraint fixture of claim 15 wherein said band surrounds said second surface.
17. The restraint fixture of claim 13 wherein said band is continuous.
18. The restraint fixture of claim 17 wherein said first expansion portion comprises a crimp in said band.
19. The restraint fixture of claim 13 wherein said band includes a first end and a second end and a central portion between first end and said second end, said first and second ends comprising said expansion region.
20. The restraint fixture of claim 19 wherein said first end includes a projection and said second end includes a recess receiving said projection.
21. The restraint fixture of claim 20 wherein said first end comprises a first finger bent at an angle to said central portion.
22. The restraint fixture of claim 20 wherein said first end is parallel to said second end.
23. The restraint fixture of claim 19 wherein said first surface comprises an inner surface, said band further comprising an outer surface and said first end inner surface overlies said second end outer surface.
24. The restraint fixture of claim 23 wherein said first end inner surface slidingly engages said second end outer surface.
25. The restraint fixture of claim 23 wherein said first end inner surface comprises a toothed surface, said second end outer surface comprises a toothed surface, and said first toothed surface and second toothed surface are configured to allow said first end inner surface to slide relative to said second end outer surface in a single direction.
26. The restraint fixture of claim 22 wherein said first end is connected to said second end at a point spaced from said central portion.
27. The restraint fixture of claim 19 including means for securing said first end to said second end.
28. The restraint fixture of claim 27 wherein said means for securing said first end to said second end comprise a loop encircling said band.
29. The restraint fixture of claim 22 including a connector connecting said first end to said second end.
30. The restraint fixture of claim 29 wherein said connector comprises a screw.
31. The restraint fixture of claim 29 wherein said connector comprises a loop encircling said first end and said second end.
32. The restraint fixture of claim 13 including a second expansion portion adapted to deform upon application of a force to said band.
33. The restraint fixture of claim 13 including a separator plate in said preform retention region adapted to separate a first preform in said preform retention region from a second preform in said preform retention region.
34. The restraint fixture of claim 14 including a separator plate in said preform retention region adapted to separate a first preform in said preform retention region from a second preform in said preform retention region, wherein said first surface defines a preform outer diameter, said second surface defines a preform inner diameter, and said separation plate including a larger outer diameter than said preform outer diameter and a smaller inner diameter than said preform inner diameter.
35. A restraint fixture comprising:
- a band having a first surface defining a preform retention region, and
- means for limiting a force exerted by said band on a preform in said preform retention region during a thermal contraction of said band.
36. The restraint fixture of claim 35 wherein said band comprises a first end and a second end connected to said first end.
37. A restraint fixture comprising:
- a band having first edge and a second edge and an inner surface defining a preform retention region, said band having a first inner diameter at said first edge greater than a second inner diameter at said second edge.
38. The restraint fixture of claim 37 wherein said band comprises a first end and a second end connected to said first end.
Type: Application
Filed: Sep 16, 2004
Publication Date: Mar 16, 2006
Inventors: Allen Simpson (Buchannan, MI), Mark La Forest (Granger, IN), Slawomir Fryska (Granger, IN), Barry Soos (Mishawaka, IN)
Application Number: 10/942,258
International Classification: F16B 1/00 (20060101);