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    • 11. 发明申请
    • POWER GENERATING SYSTEM
    • 发电系统
    • WO2003097394A2
    • 2003-11-27
    • PCT/JP2003/005991
    • 2003-05-14
    • HONDA GIKEN KOGYO KABUSHIKI KAISHA
    • TSUNODA, Tadashi
    • B60K6/00
    • F02C6/00B60W2710/06F01D15/10F02C7/08H01M8/04089H01M8/04111H01M2008/1293H01M2250/402Y02B90/12
    • A power generating system is integrally provided with a gas turbine engine (GT) and a solid electrolyte type fuel cell (FC). A compressor wheel (17), a turbine wheel (18), a heat exchanger (20) and a burner (27) of the gas turbine engine (GT) and the solid electrolyte type fuel cell (FC) are of axially symmetric shapes having a common axis (L) of a rotary section (33) comprising the compressor wheel (17) and the turbine wheel (18). The heat exchanger (20) and the solid electrolyte type fuel cell (FC) are disposed sequentially on one side in a direction of the axis (L) with respect to the rotary section (33). This layout ensures that the entire power generating system can be compactly constructed, and further the flow rates of compressed air and exhaust gas can be made uniform, and the flows of the compressed air and the exhaust gas can be smoothened, thereby reducing the pressure loss and enhancing the power generating efficiency.
    • 发电系统与燃气轮机(GT)和固体电解质型燃料电池(FC)一体地设置。 燃气涡轮发动机(GT)和固体电解质型燃料电池(FC)的压缩机叶轮(17),涡轮机叶轮(18),热交换器(20)和燃烧器(27) 包括压缩机叶轮(17)和涡轮机叶轮(18)的旋转部分(33)的公共轴线(L)。 热交换器(20)和固体电解质型燃料电池(FC)相对于旋转部(33)沿轴线(L)的方向依次设置。 该布置确保整个发电系统能够紧凑地构造,并且可以使压缩空气和废气的流量进一步均匀,并且可以使压缩空气和排气的流动平滑,从而降低压力损失 提高发电效率。
    • 14. 发明申请
    • METHOD OF PRODUCING ONE-WAY CLUTCH
    • 生产单向离合器的方法
    • WO2003047809A1
    • 2003-06-12
    • PCT/JP2002/012780
    • 2002-12-05
    • HONDA GIKEN KOGYO KABUSHIKI KAISHA
    • ISHIZAKA, TakashiAKAGI, MasatoshiUSHIJIMA ShuichiHIGASHI, IsamuSAHASHI, Masayoshi
    • B23P15/00
    • F16D41/066B23P15/00
    • A method of producing a one way clutch (1) includes a preparation step of providing a disk-shaped blank (31) from which an outer race (12) is to be formed, a preforming step of performing cold presswork on the disk-shaped blank to reduse the thickness of the disk-shaped blank, a forming step of using a metal die having a shape with which a through-hole (12a) into which a shaft member (11) is to be fitted, a plurality of pocket portions (21) and retaining portions (22, 23) can be stamped at a time to perform cold stamping on the disk-shaped blank to complete the outer race, and an assembling step of assembling resilient members (14) and rollers (13) into the pocket portions of the outer race and fitting the outer race with the outer circumference of the shaft member, thereby completing the one-way clutch.
    • 一种单向离合器(1)的制造方法包括:准备步骤,提供要形成外圈(12)的圆盘状坯料(31);在圆盘形状上进行冷压制的预成形步骤 空白以重新利用盘状坯料的厚度,使用具有形状的金属模具的形成步骤,具有要安装轴构件(11)的通孔(12a)的形状,多个袋部分 (21)和保持部分(22,23)可以一次冲压以在盘形坯件上进行冷冲压以完成外圈,以及将弹性部件(14)和辊(13)组装成组装步骤 外圈的凹部和外圈与轴构件的外周配合,从而完成单向离合器。
    • 15. 发明申请
    • SURFACE MICROMACHINING PROCESS FOR RESIN MOLD
    • 树脂模具的表面微机械加工工艺
    • WO2003018281A1
    • 2003-03-06
    • PCT/JP2002/008469
    • 2002-08-22
    • HONDA GIKEN KOGYO KABUSHIKI KAISHASHIRAKAWA, HiroshiHOSOYA, Kenji
    • SHIRAKAWA, HiroshiHOSOYA, Kenji
    • B29C33/38
    • B29C33/38B29C33/3807B29C33/3842B29C33/3885
    • A surface micromachining process for a resin mold including a layer of a resin as a material of the resin mold, which layer has a product's surface forming plane, and a back surface reinforcing member for reinforcing the resin layer. The product's surface forming plane is micromachined by means of at least two masking/blasting treatments. The treatments comprise a primary blasting step of sticking a first mask sheet having a specific window on the product's surface forming plane and blasting blast particles to the product's surface forming plane via the first mask sheet, and a secondary blasting step of peeling the first mask sheet, sticking a second mask sheet different from the first mask sheet on the product's surface forming plane, and blasting blast particles to the product's surface forming plane via the second mask sheet.
    • 一种用于树脂模具的表面微加工方法,其包括作为树脂模具的材料的树脂层,该层具有产品的表面形成面,以及用于增强树脂层的后表面加强构件。 产品的表面形成平面通过至少两次掩蔽/喷砂处理进行微加工。 处理包括:通过第一掩模片将产品表面形成平面上具有特定窗口的第一掩模片和喷砂粒子粘贴到产品的表面形成平面上的初级喷砂步骤,以及将第一掩模片 将与第一掩模片不同的第二掩模片粘贴在产品的表面形成平面上,并通过第二掩模片将喷砂颗粒喷射到产品的表面形成平面上。