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    • 6. 发明申请
    • High aluminiferous ferritic stainless steel sheet for weight sensor substrate, method for producing the same, and weight sensor
    • 用于重量传感器基板的高含铝铁素体不锈钢板,其制造方法和重量传感器
    • US20080245162A1
    • 2008-10-09
    • US12152505
    • 2008-05-14
    • Masuhiro FukayaTadashi Komori
    • Masuhiro FukayaTadashi Komori
    • G01L1/10C22C38/06C22C38/18
    • C22C38/26C22C38/02C22C38/04C22C38/06
    • The present invention provides a stainless steel most suitable as a metal base material for the weight sensor substrate of an automobile airbag, a method for producing said stainless steel and said weight sensor; and the stainless steel sheet comprises a high aluminiferous ferritic stainless steel containing Al of 2.5 to 8 mass % and comprising, in mass, C: 0.025% or less, N: 0.025% or less, the sum of C and N being 0.030% or less, and Nb: 0.05 to 0.5%, with the balance consisting of Fe and unavoidable impurities. Further, said stainless steel sheet may further contain, in mass, one or more of V: 0.05 to 0.4%, Ti: 0.02 to 0.2%, and Zr: 0.02 to 0.2%. The present invention makes it possible to control the difference in the average linear expansion coefficient between said stainless steel sheet and crystallized glass for a weight sensor to less than 10% in the temperature range from 20° C. to 900° C. and thus to improve the adhesiveness of said stainless steel sheet with said crystallized glass.
    • 本发明提供一种最适合用作汽车气囊的重量传感器基板的金属基材的不锈钢,所述不锈钢的制造方法和所述重量传感器。 不锈钢板包含含有2.5〜8质量%的Al的高含铝铁素体系不锈钢,其质量含量为C:0.025%以下,N:0.025%以下,C和N的总和为0.030%, 较少,Nb:0.05〜0.5%,余量由Fe和不可避免的杂质构成。 此外,所述不锈钢板还可以进一步含有V:0.05〜0.4%,Ti:0.02〜0.2%,Zr:0.02〜0.2%中的一种或多种。 本发明使得可以将重量传感器的所述不锈钢板和结晶玻璃之间的平均线膨胀系数的差在20℃至900℃的温度范围内控制在小于10%,从而 提高所述不锈钢板与所述结晶玻璃的粘合性。
    • 7. 发明申请
    • High aluminiferous ferritic stainless steel sheet for weight sensor substrate, method for producing the same, and weight sensor
    • 用于重量传感器基板的高含铝铁素体不锈钢板,其制造方法和重量传感器
    • US20050028903A1
    • 2005-02-10
    • US10928551
    • 2004-08-26
    • Masuhiro FukayaTadashi Komori
    • Masuhiro FukayaTadashi Komori
    • G01G3/14B60R21/16C22C38/00C22C38/26C22C38/28G01G19/12G01G19/52
    • C22C38/26C22C38/02C22C38/04C22C38/06
    • The present invention provides a stainless steel most suitable as a metal base material for the weight sensor substrate of an automobile airbag, a method for producing said stainless steel and said weight sensor; and the stainless steel sheet comprises a high aluminiferous ferritic stainless steel containing Al of 2.5 to 8 mass % and comprising, in mass, C: 0.025% or less, N: 0.025% or less, the sum of C and N being 0.030% or less, and Nb: 0.05 to 0.5%, with the balance consisting of Fe and unavoidable impurities. Further, said stainless steel sheet may further contain, in mass, one or more of V: 0.05 to 0.4%, Ti: 0.02 to 0.2%, and Zr: 0.02 to 0.2%. The present invention makes it possible to control the difference in the average linear expansion coefficient between said stainless steel sheet and crystallized glass for a weight sensor to less than 10% in the temperature range from 20° C. to 900° C. and thus to improve the adhesiveness of said stainless steel sheet with said crystallized glass.
    • 本发明提供一种最适合用作汽车气囊的重量传感器基板的金属基材的不锈钢,所述不锈钢的制造方法和所述重量传感器。 不锈钢板含有含有2.5〜8质量%的Al的高含铝铁素体系不锈钢,其质量含量为C:0.025%以下,N:0.025%以下,C和N的总和为0.030%, 较少,Nb:0.05〜0.5%,余量由Fe和不可避免的杂质构成。 此外,所述不锈钢板还可以进一步含有V:0.05〜0.4%,Ti:0.02〜0.2%,Zr:0.02〜0.2%中的一种或多种。 本发明使得可以将重量传感器的所述不锈钢板和结晶玻璃之间的平均线性膨胀系数的差在20℃至900℃的温度范围内控制为小于10%,从而 提高所述不锈钢板与所述结晶玻璃的粘合性。
    • 8. 发明授权
    • Method for simultaneous sizing of a large number of long fiber yarns
    • 同时施胶大量长纤维纱线的方法
    • US4458397A
    • 1984-07-10
    • US429125
    • 1982-09-30
    • Susumu KurodaTadashi Komori
    • Susumu KurodaTadashi Komori
    • B65H57/16D02H5/02D06B1/14D06B3/04D06B23/06D02H13/20
    • D06B23/06B65H57/16D02H5/02D06B3/04B65H2701/31
    • A method of and an apparatus for simultaneously sizing a large number of long fiber yarns, in which number of warper's beams having a sufficient number of warps for weaving of cloth is divided into 2 or 3 sets of beams according to the total number of warps and the yarn diameter so that yarns in each divided set are placed in the width equal to that of said weaver's beam having a yarn pitch of over 3 times that of the yarn diameter, each warp sheet from divided warper's beams is sized and dried passing over one of the sizing and drying paths having a same distance of 2 or 3 systems placed in vertical levels under a same amount of draft, and then each yarn which is sized and dried in each system is wound onto a weaver's beam over a path of the same distance with a same amount of draft.
    • 用于同时施胶大量长纤维纱线的方法和装置,其中具有足够数量的用于编织布的经纱的整经束的数量根据经纱的总数被分成2组或3组, 纱线直径使得每个分割组中的纱线的宽度等于具有纱线间距超过纱线直径的3倍以上的织布束的宽度,来自分割的整经机的每个经纱片的尺寸和干燥通过一个 的尺寸和干燥路径具有相同距离的2或3个系统,在相同的牵伸量下放置在垂直水平上,然后在每个系统中将尺寸和干燥的每根纱线在相同的路径上缠绕在织造者的梁上 距离与相同数量的草稿。