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use of a ceramic material for the ausformen - press tooling components made of glass or a ceramic high surface quality and dimensional accuracy glashaltigen

机译:陶瓷材料用于玻璃或陶瓷制成的奥氏体冲压模具零件表面质量高,尺寸精度高

摘要

PCT No. PCT/DE87/00112 Sec. 371 Date Jan. 6, 1988 Sec. 102(e) Date Jan. 6, 1988 PCT Filed Mar. 17, 1987 PCT Pub. No. WO87/05594 PCT Pub. Date Sep. 24, 1987.The use is described of oxide ceramic materials for compression molds for shaping elements made from glass or a glass-containing ceramic and having high surface quality and tight tolerances. The materials are polycrystalline, monophasal or polyphasal materials which are contact-inert towards the optical elements to be pressed and which, in addition, have significantly better mechanical and thermal properties than monocrystalline substances, which, in principle, exhibit an anisotropic behavior as a consequence of their geometrical anisotropy. The material intended for use according to the invention can comprise a Al2O3 ceramic or a ZrO2- and/or HfO2-containing ceramic. The material can also be built up in several phases, i.e. can contain a matrix component and at least one particle component dispersed discretely in it. They are preferably ZrO2-containing ZTC, PSZ or TZP ceramics, which, for the application according to the invention, have excellent thermomechanical properties which are founded in the reaction mechanism and, above all, in the crystallography of their components. Mechanisms such as so-called "stress-induced conversion toughening" and "microcrack toughening" play an important part here. With the materials used, compression molds can be produced for reworking-free shaping of optical elements having planar and/or spherical and/or aspherical convex and/or concave surfaces of high surface quality and dimensional accuracy, while noting improved production processes.
机译:PCT号PCT / DE87 / 00112第二部分371日期1988年1月6日第102(e)1988年1月6日PCT申请,1987年3月17日提交PCT Pub。 PCT公开号WO87 / 05594。 1987年9月24日。描述了用于压模的氧化物陶瓷材料的用途,该压模用于成形由玻璃或含玻璃的陶瓷制成的元件,并且具有高表面质量和严格的公差。这些材料是多晶,单相或多相材料,它们对要压制的光学元件具有接触惰性,并且与单晶物质相比,其机械和热性能也明显好于单晶物质,单晶物质因此会表现出各向异性的几何各向异性。根据本发明打算使用的材料可以包括Al 2 O 3陶瓷或含ZrO 2和/或HfO 2的陶瓷。该材料也可以分几个阶段构建,即可以包含基质成分和至少一种离散地分散在其中的颗粒成分。它们优选是含ZrO 2的ZTC,PSZ或TZP陶瓷,对于根据本发明的应用,其具有优异的热机械性能,其建立在反应机理中,尤其是在其组分的晶体学中。所谓的“应力诱导的转化增韧”和“微裂纹增韧”等机制在这里起着重要的作用。利用所使用的材料,可以制造压模,以用于具有光学表面质量和尺寸精度的具有平面和/或球形和/或非球形的凸面和/或凹面的光学元件的无返工成型,同时注意到改进的生产工艺。

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