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    • 8. 发明申请
    • Method of producing heat-resistant inorganic textile and heat-resistant inorganic textile produced using the method
    • 使用该方法生产耐热无机织物和耐热无机纺织品的方法
    • US20080053051A1
    • 2008-03-06
    • US11896430
    • 2007-08-31
    • Yoshitaka Aoki
    • Yoshitaka Aoki
    • B01D39/20B05D3/02
    • D06M15/643B01D39/2017B01D39/2055B01D39/2065B01D39/2082B01D2239/0457B01D2239/0478B01D2239/10C03C25/1095C04B41/009C04B41/4554C04B2111/00793D06M11/79D06M2101/40F01N3/0211F01N3/2853Y10T428/249921C04B41/4517C04B41/4535C04B41/5031C04B14/42C04B30/02C04B14/386C04B14/4625
    • Provided is a method of producing a heat-resistant inorganic textile formed of a heat-resistant inorganic fiber that includes an inorganic base fiber and a heat-resistant inorganic ceramic layer that coats the inorganic base fiber, the method including the steps of: (1) subjecting an inorganic base textile formed of the inorganic base fiber to a coating treatment with a meltable silicone resin or a curable silicone composition, thereby forming a meltable silicone resin layer or curable silicone composition layer that coats the inorganic base fiber, (2) subjecting the meltable silicone resin layer to a non-melting treatment, thereby forming a non-melting silicone resin layer, or subjecting the curable silicone composition layer to curing, thereby forming a silicone cured product layer, and (3) heating the non-melting silicone resin layer or silicone cured product layer under a non-oxidizing atmosphere, at a temperature within a range from 400 to 1,500° C., thereby generating a heat-resistant inorganic ceramic layer. The method enables favorable conservation of resources and is economically beneficial. The heat-resistant inorganic textile produced by the method exhibits excellent heat resistance and strength, and is ideal as a material for an exhaust gas filter.
    • 提供一种由耐热无机纤维形成的耐热无机织物的制造方法,该耐热无机纤维包括无机基础纤维和涂覆无机基础纤维的耐热无机陶瓷层,该方法包括以下步骤:(1 )将由无机基础纤维形成的无机基础织物用可熔性硅树脂或可固化硅氧烷组合物进行涂覆处理,从而形成可涂覆有机硅树脂层或涂覆无机基础纤维的可固化有机硅组合物层,(2) 将可熔融的有机硅树脂层进行非熔融处理,从而形成不熔融的有机硅树脂层,或者使可固化的硅氧烷组合物层固化,从而形成硅氧烷固化产物层,和(3)加热非熔融硅氧烷 树脂层或硅氧烷固化物层,在非氧化性气氛下,在400〜1500℃的温度范围内,从而产生热分解 无机陶瓷层。 该方法有利于资源节约,具有经济效益。 通过该方法制造的耐热无机织物表现出优异的耐热性和强度,并且作为废气过滤器的材料是理想的。
    • 10. 发明申请
    • Card tray
    • 卡盘
    • US20070023530A1
    • 2007-02-01
    • US11487812
    • 2006-07-17
    • Yoshitaka AokiKeiichi TsutsuiHirotaka NishizawaTakashi Totsuka
    • Yoshitaka AokiKeiichi TsutsuiHirotaka NishizawaTakashi Totsuka
    • G06K19/06G06K7/00
    • G06K19/077G06K19/07739Y10S439/945
    • A card tray to be mounted to a memory card can make the memory card mountable in a card slot for memory cards conforming to standards different from those to which the memory card conforms. The card tray has a main body and a recessed mount section. The recessed mount section is formed such that the holder of a second memory card can be mounted to one of the major surfaces of the main body. A memory-card-mounted body is produced when the second memory card is mounted to the recessed mount section. The card tray is configured such that, when the first memory card is placed on the memory-card-mounted body with the left and right edges thereof aligned with each other, the contact pieces of the first memory card and the contact pieces of the second memory card have longitudinally overlapping parts and transversally overlapping parts as viewed from above.
    • 要安装到存储卡的卡片托盘可以使存储卡可安装在符合与存储卡所符合的标准不同的存储卡的卡插槽中。 卡片托盘具有主体和凹入的安装部分。 凹入的安装部分形成为使得第二存储卡的保持器可以安装到主体的主要表面之一。 当第二存储卡安装到凹入的安装部分时,产生存储卡安装体。 卡片托盘被构造成使得当第一存储卡被放置在其左右边缘彼此对准的存储卡安装体上时,第一存储卡的接触片和第二存储卡的接触片 存储卡具有从上方观察的纵向重叠部分和横向重叠部分。