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    • 2. 发明授权
    • Heat-resistant spring made of fiber-reinforced metallic composite
material
    • 耐热弹簧由纤维增强金属复合材料制成
    • US4544610A
    • 1985-10-01
    • US361756
    • 1982-03-25
    • Hideho OkamotoKen-ichi Nishio
    • Hideho OkamotoKen-ichi Nishio
    • C22C47/00C22C49/00C22C49/04C22C49/06C22C49/08C22C49/11F16F1/02F16F1/18F16F1/04
    • F16F1/18C22C49/00F16F1/022Y10T428/12465Y10T428/12486
    • A spring useful as various machine parts or elements for various machines and apparatuses, which is made of a fiber-reinforced metallic composite material comprising a matrix metal (e.g. a metal having a melting point of not higher than 1,700.degree. C.) and a reinforcement of an inorganic fiber having high modulus of elasticity and high strength selected from a ceramic fiber and a metallic fiber, particularly an alumina or alumina-silica fiber containing alumina of 100 to 72% by weight, preferably 98 to 75% by weight, and silica of 0 to 28% by weight, preferably 2 to 25% by weight, and having substantially no .alpha.-alumina reflection by X-ray diffraction. The spring of the present invention is light in weight and has far greater heat resistance and mechanical properties in comparison with the conventional metallic or non-metallic springs, and hence is particularly valuable from the standpoint of saving energy and saving resources.
    • 用作各种机器和装置的各种机器部件或元件的弹簧,其由包含基质金属(例如熔点不高于1700℃的金属)的纤维增强金属复合材料制成, 的具有高的弹性模量和高强度的无机纤维,其选自陶瓷纤维和金属纤维,特别是含有100至72重量%,优选98至75重量%的氧化铝的氧化铝或氧化铝 - 二氧化硅纤维,以及二氧化硅 为0〜28重量%,优选为2〜25重量%,并且通过X射线衍射基本上没有α-氧化铝反射。 本发明的弹簧与传统的金属或非金属弹簧相比,重量轻且具有远大的耐热性和机械性能,因此从节约能源和节省资源的观点来看特别有价值。
    • 7. 发明授权
    • Process for producing fiber-reinforced metal composite material
    • 生产纤维增强金属复合材料的工艺
    • US4452865A
    • 1984-06-05
    • US446048
    • 1982-12-01
    • Kohji YamatsutaKen-ichi Nishio
    • Kohji YamatsutaKen-ichi Nishio
    • C22C47/08C22C49/06C22F1/04
    • C22C47/08C22C49/06Y10T428/12486
    • A process for producing a fiber-reinforced metal composite material which comprises mixing an inorganic fiber with an aluminum alloy at a temperature of not lower than the melting point of said alloy to form a composite,(1) removing the composite from the mold at a temperature of not higher than the solid phase line of said alloy (i.e. a temperature at which a liquid phase appears in said alloy) and heating the composite to a temperature of more than the solid phase line and holding the temperature (heat treatment) during a definite time (Indirect method), or(2) without allowing to cool the composite to a temperature of not higher than the solid phase line (Direct method),quenching the composite to a temperature of 200.degree. C. or lower from a temperature of higher than the solid phase line but lower than the melting temperature.
    • 1.一种纤维增强金属复合材料的制造方法,其特征在于,在不低于所述合金的熔点的温度下混合无机纤维与铝合金,形成复合材料,(1)从模具中除去复合材料 温度不高于所述合金的固相线(即液相出现在所述合金中的温度),并将复合材料加热到比固相线更高的温度并保持温度(热处理)期间 确定时间(间接法)或(2)不允许将复合材料冷却至不高于固相线的温度(直接法),将复合材料从温度为200℃以下的温度淬火 高于固相线但低于熔融温度。