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    • 28. 发明授权
    • Traction drive rolling element and method of forming the same
    • 牵引驱动滚动元件及其形成方法
    • US06881126B2
    • 2005-04-19
    • US10686590
    • 2003-10-17
    • Tatsuomi NakayamaMinoru OtaMinoru NumakuraMamoru SaitoHidenori Watanabe
    • Tatsuomi NakayamaMinoru OtaMinoru NumakuraMamoru SaitoHidenori Watanabe
    • B23B5/36B23B5/40B24B19/02F16H15/38B24B49/00
    • B24B19/02B23B5/40F16H15/38
    • A method of forming a traction drive rolling element including: forming a preform having a working surface with an arcuate profile in section taken along a central axis; supporting the preform to be rotatable about the central axis; allowing a relative movement between the preform and a grooving tool for moving the grooving tool along the arcuate profile, simultaneously with rotating the preform about the central axis, to form microscopic recesses and projections alternately arranged in a direction perpendicular to the central axis along the arcuate profile; pressing a grindstone having a contact surface area of 25 mm2 or less, on the working surface; and allowing a relative movement between the preform and the grindstone for moving the grindstone along the arcuate profile simultaneously with rotating the preform while keeping pressing the grindstone on the working surface until a height of the microscopic projections becomes 3 μm or less.
    • 一种形成牵引驱动滚动元件的方法,包括:沿着中心轴线形成具有弓形轮廓的工作表面的预成型件; 支撑预成型件可围绕中心轴线旋转; 允许预成型件和用于沿着弧形轮廓移动切槽工具的切槽工具之间的相对运动,同时围绕中心轴线旋转预成型件,以形成沿着与弓形管的垂直于中心轴线的方向交替布置的微观凹槽和突起 简介 在工作表面上压制接触面积为25mm 2以下的磨石; 并且允许预成型件和砂轮之间的相对运动,用于沿着弓形轮廓同时移动砂轮,同时旋转预制件,同时保持将磨石压在工作表面上,直到微突起的高度为3μm或更小。
    • 29. 发明授权
    • Oxygen sensor
    • 氧传感器
    • US6036829A
    • 2000-03-14
    • US20334
    • 1998-02-09
    • Hirokazu YamadaTakashi KojimaMakoto HoriMasahiro HamayaMinoru Ota
    • Hirokazu YamadaTakashi KojimaMakoto HoriMasahiro HamayaMinoru Ota
    • G01N27/407
    • G01N27/4071
    • An oxygen sensor 3 having a heater 2 capable of providing an improved temperature increasing characteristic, while maintaining an increased amount of introduced air and a high production efficiency. The sensor 3 includes a sensor element 1 having an air chamber 100 in which a heater 2 is arranged. The heater 2 has a rectangular cross sectional shape. In order to produce the heater 2, onto a green ceramic sheet, a heater of a predetermined pattern including a plurality of heater sections is printed. Then, to the printed sheet, different ceramic green sheets are applied so as to obtain a laminated body. The laminated body is subjected to a cutting so as to produce an intermediate body in which a heater section is included. The intermediate body is subjected to a firing to obtain a completed heater.
    • 具有能够提供改善的升温特性的加热器2,同时保持增加的引入空气量和高生产效率的氧传感器3。 传感器3包​​括传感器元件1,其具有布置有加热器2的空气室100。 加热器2具有矩形横截面形状。 为了将加热器2制造到生坯陶瓷片上,印刷包括多个加热器部分的预定图案的加热器。 然后,向印刷片施加不同的陶瓷生片以获得层压体。 对层叠体进行切割以制造其中包括加热器部分的中间体。 对中间体进行烧制以获得完成的加热器。