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    • 1. 发明申请
    • AMORPHOUS AND NANOCRYSTALLINE GLASS-COATED ARTICLES
    • 非晶和纳米晶玻璃涂层制品
    • WO2005007590A3
    • 2005-12-08
    • PCT/US2004021228
    • 2004-07-01
    • DEMODULATION LLC
    • LIEBERMANN HOWARD HLA COURSE WILLIAM C
    • B32B15/02B32B15/04C03B37/026C03C20060101H01F1/01
    • C03B37/026H01F1/15333H01F1/15391Y10T428/294
    • A drawn glass-coated metallic member has a thermal contraction coefficient differential such that the thermal contraction coefficient of the glass is less than that of the metallic member. The thermal contraction coefficient differential is maintained within a predetermined range during drawing. The glass is placed under residual compression, interfacial bonding between said glass and said wire is substantially uniform, and surface cracking and bond breaks between metal and glass are substantially prevented. A dynamic balance is maintained between the surface tension of the molten alloy and the resistance to high temperature deformation by the glass vessel in which it is contained, enabling the production of glass-coated amorphous or nanocrystalline alloy members having predefined cross-sectional shapes.
    • 拉伸的玻璃涂覆金属构件具有热收缩系数差,使得玻璃的热收缩系数小于金属构件的热收缩系数。 拉伸过程中热收缩系数差异保持在预定范围内。 玻璃被置于残余压缩下,所述玻璃与所述导线之间的界面结合基本上均匀,并且基本上防止了金属与玻璃之间的表面开裂和结合断裂。 在熔融合金的表面张力和容纳它的玻璃容器对高温变形的抵抗力之间保持动态平衡,从而能够生产具有预定横截面形状的玻璃涂覆的非晶或纳米晶合金构件。
    • 2. 发明申请
    • AMORPHOUS AND NANOCRYSTALLINE GLASS-COATED ARTICLES
    • 不规则和纳米晶玻璃涂层文章
    • WO2005007590A2
    • 2005-01-27
    • PCT/US2004/021228
    • 2004-07-01
    • DEMODULATION, LLC
    • LIEBERMANN, Howard, H.LA COURSE, William, C.
    • C03C
    • C03B37/026H01F1/15333H01F1/15391Y10T428/294
    • A drawn glass-coated metallic member has a thermal contraction coefficient differential such that the thermal contraction coefficient of the glass is less than that of the metallic member. The thermal contraction coefficient differential is maintained within a predetermined range during drawing. The glass is placed under residual compression, interfacial bonding between said glass and said wire is substantially uniform, and surface cracking and bond breaks between metal and glass are substantially prevented. A dynamic balance is maintained between the surface tension of the molten alloy and the resistance to high temperature deformation by the glass vessel in which it is contained, enabling the production of glass-coated amorphous or nanocrystalline alloy members having predefined cross-sectional shapes.
    • 拉制的玻璃涂覆的金属构件具有热收缩系数差,使得玻璃的热收缩系数小于金属构件的热收缩系数。 在拉伸期间,热收缩系数差保持在预定范围内。 将玻璃置于残余压缩之下,所述玻璃与所述丝之间的界面结合基本上是均匀的,并且基本上防止了金属和玻璃之间的表面裂纹和结合断裂。 熔融合金的表面张力与容纳玻璃容器的耐高温变形性之间保持动态平衡,能够生产具有预定横截面形状的玻璃涂覆的非晶或纳米晶合金构件。