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Micro pillar for vacuum glass and vacuum glass
The invention provides a micro strut for vacuum glass and the vacuum glass. The micro pillar comprises a plurality of fiber layers, and each fiber layer is composed of a plurality of metal fibers and/or alloy fibers. The invention also provides vacuum glass, and a plurality of the micro pillars are arranged in a vacuum cavity of the vacuum glass. According to the innovatively developed novel micro-strut material and structure, the flexible tiny supporting object made of the metal fibers and/or the alloy fibers is used, so that the novel micro-strut can greatly reduce heat transfer, improve the sound insulation efficiency and effectively improve the heat insulation and sound insulation effects; meanwhile, the micro-supporting column can support a vacuum layer, when the glass is impacted, the micro-supporting column needs to be overcome to do work, kinetic energy can be converted into internal energy of the supporting column through the compression performance of the micro-supporting column, an instantly-increased stress concentration point is not formed, and the risk of glass breakage can be effectively reduced.
本发明提供了一种真空玻璃用微支柱及真空玻璃。该微支柱包括若干纤维层,每一纤维层由若干金属纤维和/或合金纤维组成。本发明还提供了一种真空玻璃,其中,该真空玻璃的真空腔内设有若干所述微支柱。本发明创新研制出的新的微支柱材料与结构使用金属纤维和/或合金纤维制成的柔性微小支撑物,使得这种新的微支柱可以大幅降低热传、提高隔声效能,有效提升隔热与隔声的效果;同时,该微支柱还能够支撑真空层,而且,当玻璃受到冲击时,需克服微支柱做功,利用本发明的微支柱的压缩性能,能够把动能转化成支柱的内能,不形成瞬间增大的应力集中点,能够有效降低玻璃破裂的风险。
Micro pillar for vacuum glass and vacuum glass
The invention provides a micro strut for vacuum glass and the vacuum glass. The micro pillar comprises a plurality of fiber layers, and each fiber layer is composed of a plurality of metal fibers and/or alloy fibers. The invention also provides vacuum glass, and a plurality of the micro pillars are arranged in a vacuum cavity of the vacuum glass. According to the innovatively developed novel micro-strut material and structure, the flexible tiny supporting object made of the metal fibers and/or the alloy fibers is used, so that the novel micro-strut can greatly reduce heat transfer, improve the sound insulation efficiency and effectively improve the heat insulation and sound insulation effects; meanwhile, the micro-supporting column can support a vacuum layer, when the glass is impacted, the micro-supporting column needs to be overcome to do work, kinetic energy can be converted into internal energy of the supporting column through the compression performance of the micro-supporting column, an instantly-increased stress concentration point is not formed, and the risk of glass breakage can be effectively reduced.
本发明提供了一种真空玻璃用微支柱及真空玻璃。该微支柱包括若干纤维层,每一纤维层由若干金属纤维和/或合金纤维组成。本发明还提供了一种真空玻璃,其中,该真空玻璃的真空腔内设有若干所述微支柱。本发明创新研制出的新的微支柱材料与结构使用金属纤维和/或合金纤维制成的柔性微小支撑物,使得这种新的微支柱可以大幅降低热传、提高隔声效能,有效提升隔热与隔声的效果;同时,该微支柱还能够支撑真空层,而且,当玻璃受到冲击时,需克服微支柱做功,利用本发明的微支柱的压缩性能,能够把动能转化成支柱的内能,不形成瞬间增大的应力集中点,能够有效降低玻璃破裂的风险。
Micro pillar for vacuum glass and vacuum glass
一种真空玻璃用微支柱及真空玻璃
ZENG XINCHANG (Autor:in) / DING YUANJIE (Autor:in) / CHEN QI (Autor:in) / CAI ZHIQIANG (Autor:in)
28.03.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E06B
Feste oder bewegliche Abschlüsse für Öffnungen in Bauwerken, Fahrzeugen, Zäunen oder ähnlichen Einfriedungen allgemein, z.B. Türen, Fenster, Läden, Tore
,
FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES, OR LIKE ENCLOSURES, IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
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