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    • 2. 发明申请
    • Glass fiber package, method for packing of glass fiber and glass fiber product using the same
    • 玻璃纤维包装,玻璃纤维包装方法及使用其的玻璃纤维制品
    • US20080241539A1
    • 2008-10-02
    • US12078094
    • 2008-03-27
    • Shoji SugiyamaTakashi ShidomiMasahiro Kawachi
    • Shoji SugiyamaTakashi ShidomiMasahiro Kawachi
    • D02G3/00B29C43/02
    • B29C43/003B29C43/021B29K2303/06B29K2309/08B29L2031/3468H01G9/02Y02E60/13Y10T428/298Y10T442/623Y10T442/691
    • An object of the present invention is to provide a glass fiber package where a glass fiber aggregate which contains alkali-containing glass wool fiber of a very small diameter having an average fiber size of 5 μm or less or, particularly, less than 1 μm and containing 5% or more by weight or, particularly, 10% or more by weight of alkali metal oxide components is packed in a compressed state to give a form which is able to be handled as a freight, and in which, fiber breakage (lowering in the fiber length) and fiber adhesion caused by compression packing is hardly resulted even upon a long-term storage whereby the properties inherent to the glass fiber immediately after its manufacture is apt to be maintained; to provide a method for packing the glass fiber; and to provide a glass fiber product using the same.A glass fiber package of the present invention includes a glass fiber aggregate which contains alkali-containing glass wool fiber having an average fiber size of 5 μm or less and containing 5% or more by weight of alkali metal oxide components is packed in a compressed state so as to give a form which is able to be handled as a freight where the bulk density is 80 to 135 kg/m3.
    • 本发明的目的是提供一种玻璃纤维包装,其中含有平均纤维尺寸为5μm以下,特别是小于1μm的非常小直径的含碱玻璃棉纤维的玻璃纤维集合体, 含有5重量%以上,特别优选为10重量%以上的碱金属氧化物成分以压缩状态包装,得到能够作为运费处理的形式,其中纤维断裂(降低 在纤维长度方面),并且即使长期保存也难以产生由压缩填料引起的纤维粘合,因此易于维持刚制成后的玻璃纤维所固有的特性; 提供包装玻璃纤维的方法; 并提供使用其的玻璃纤维制品。 本发明的玻璃纤维包含玻璃纤维聚集体,其包含平均纤维尺寸为5μm以下且含有5重量%以上的碱金属氧化物成分的碱金属玻璃棉纤维以压缩状态包装 以便给出能够作为堆积密度为80至135kg / m 3的货物处理的形式。
    • 9. 发明授权
    • Solid flowable polymer medium with metal additives and method of molding
using same
    • 具有金属添加剂的固体可流动聚合物介质和使用其的成型方法
    • US4772521A
    • 1988-09-20
    • US130600
    • 1987-12-09
    • Robert V. Kromrey
    • Robert V. Kromrey
    • B29C43/00B29C43/10C08K3/08B32B5/16B32B9/00
    • B29C43/10C08K3/08B29C43/006B29C43/52B29K2303/06Y10T428/25Y10T428/254Y10T428/256Y10T428/259Y10T428/29Y10T428/2982
    • A flowable particulate polymer-metal mixture that is thermally conductive and is particularly adapted for use as a pressurizing medium in a high pressure elevated temperature molding process. The material comprises a substantially uniform mixture of about 20% to about 90% solid flowable, particulate silicone rubber having a nominal flow rate of at least 0.6 gram/second through a 1.1 cm diameter pipe 7.6 cm long under applied pressure of 10.34 MPa at room temperature. The material also comprises about 10% to about 80% thermally conductive particulate metal that has a melting point less than the molding temperature and is substantially chemically compatible with said silicone rubber. The pressurizing medium is used to mold article precursors into articles by placing an article precursor within a pressure vessel and substantially filling the vessel with a pressurizing mixture. The mixture is exposed to a temperature equal to or greater than the metal melting point and is caused to produce a substantially uniform predetermined medium pressure on the surface of the article precursor to mold the article. The molten metal transfers heat to the article precursor yet since it is molten the polymer-metal mixture is flowable.
    • 一种可流动的颗粒聚合物 - 金属混合物,其是导热性的并且特别适用于在高压高温成型工艺中用作加压介质。 该材料包括大约20%至大约90%的固体可流动的颗粒状硅橡胶,其额定流速为至少0.6克/秒,通过1.1cm直径的管道7.6cm长,施加压力为10.34MPa,室内 温度。 该材料还包含约10%至约80%的导热颗粒金属,其熔点小于模塑温度,并且与所述硅橡胶基本上化学相容。 加压介质用于通过将制品前体放置在压力容器内并用加压混合物基本上填充容器将制品前体模制成制品。 将混合物暴露于等于或大于金属熔点的温度,并使其在制品前体的表面上产生基本均匀的预定介质压力以模制该制品。 熔融金属将热量转移到制品前体,但由于熔融金属混合物是可流动的。
    • 10. 发明授权
    • Method of molding using a solid flowable polymer medium with metal
additives
    • 使用具有金属添加剂的固体可流动聚合物介质的成型方法
    • US4755343A
    • 1988-07-05
    • US907943
    • 1986-09-10
    • Robert V. Kromrey
    • Robert V. Kromrey
    • B22D19/00B22D19/14B28B3/00B29C43/00B29C43/10B29C43/32B29K105/06B30B11/00C08K3/08
    • B30B11/001B29C43/10C08K3/08B29C43/006B29C43/52B29K2303/06Y10S264/50
    • A flowable particulate polymer-metal mixture that is thermally conductive and is particularly adapted for use as a pressurizing medium in a high pressure elevated temperature molding process. The material comprises a substantially uniform mixture of about 20% to about 90% solid flowable, particulate silicone rubber having a nominal flow rate of at least 0.6 gram/second through a 1.1 cm diameter pipe 7.6 cm long under applied pressure of 10.34 MPa at room temperature. The material also comprises about 10% to about 80% thermally conductive particulate metal that has a melting point less than the molding temperature and is substantially chemically compatible with said silicone rubber. The pressurizing medium is used to mold article precursors into articles by placing an article precursor within a pressure vessel and substantially filling the vessel with a pressurizing mixture. The mixture is exposd to a temperature equal to or greater than the metal melting point and is caused to produce a substantially uniform predetermined medium pressure on the surface of the article precursor to mold the article. The molten metal transfers heat to the article precursor yet since it is molten the polymer-metal mixture is flowable.
    • 一种可流动的颗粒聚合物 - 金属混合物,其是导热性的并且特别适用于在高压高温成型工艺中用作加压介质。 该材料包括大约20%至大约90%的固体可流动的颗粒状硅橡胶,其额定流速为至少0.6克/秒,通过1.1cm直径的管道7.6cm长,施加压力为10.34MPa,室内 温度。 该材料还包含约10%至约80%的导热颗粒金属,其熔点小于模塑温度,并且与所述硅橡胶基本上化学相容。 加压介质用于通过将制品前体放置在压力容器内并用加压混合物基本上填充容器将制品前体模制成制品。 将混合物暴露于等于或大于金属熔点的温度,并使其在制品前体的表面上产生基本均匀的预定介质压力以模制该制品。 熔融金属将热量转移到制品前体,但由于熔融金属混合物是可流动的。