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    • 4. 发明申请
    • Molded member with foamed body
    • 带发泡体的模制件
    • US20060214399A1
    • 2006-09-28
    • US11086190
    • 2005-03-22
    • Shinji OkamotoHiroshi SuzukiTomohiro Chiba
    • Shinji OkamotoHiroshi SuzukiTomohiro Chiba
    • B60R21/20B60R21/16
    • B29C44/1228B29C44/351B29L2022/027B29L2031/3038B60R21/205B60R21/2165
    • Disclosed is a molded member with a foamed body, which is foamed on the top surface sides of a first member and a second member and is prevented from leaking from between abutment surfaces of those members toward the back side. A seal piece of a required width extending in an eaves form outward over the perimeter of the outer contour edge of an airbag door is provided at the outer contour edge. When the airbag door is laid out at a door mount portion, so formed as to surround an opening formed in a base material, the seal piece is set in close contact with the outer surface of the door mount portion in such a way as to surround the opening. This prevents the foamed body, foamed on the top surface side of the base material facing the airbag door, from leaking from a clearance, produced between abutment surface of the base material and the airbag door, toward the back side.
    • 公开了一种具有发泡体的模制构件,其在第一构件和第二构件的顶表面侧上发泡,并且被防止从这些构件的邻接表面向后侧泄漏。 在外轮廓边缘处设置有在安全气囊门的外轮廓边缘的周边外侧向外延伸的所需宽度的所需宽度的密封件。 当安全气囊门布置在门安装部分时,形成为围绕形成在基材中的开口,密封件被设置成与门安装部分的外表面紧密接触,以便围绕 开幕。 这防止了在面向气囊门的基材的顶面侧发泡的发泡体从在基材的抵接面和气囊门之间产生的间隙向后侧泄漏。
    • 5. 发明授权
    • Heat exchanger with a distribution device capable of uniformly
distributing a medium to a plurality of exchanger tubes
    • 具有能够将介质均匀地分配到多个换热器管的分配装置的热交换器
    • US5901785A
    • 1999-05-11
    • US825378
    • 1997-03-28
    • Tomohiro ChibaToshiharu Shinmura
    • Tomohiro ChibaToshiharu Shinmura
    • F28F9/02F28D1/03F28F9/22F28F27/02
    • F28F9/027F28D1/0341Y10S165/465Y10S165/483
    • In a heat exchanger (1) including first through M-th tube groups, each tube group comprising at least one exchanger tube (10), and a distribution device (3) which has a distribution tank (30) supplied with a medium and first through M-th distribution paths (31, 32, and 33) for directing the medium from the distribution tank to the first through the M-th tube groups, respectively, medium inlet ports of the first through the M-th distribution paths are coupled to first through M-th regions of the distribution tank that have first through M-th void ratios different to each other. Medium outlet ports of the first through the M-th distribution paths are coupled to the exchanger tubes of the first through the M-th tube groups, respectively. The number of the exchanger tubes of each of the first through the M-th tube groups and an inner cross-sectional area of each of the first through the M-th distribution paths are defined on the basis of the first through the M-th void ratios of the first through the M-th regions of the distribution tank so that a mass flow of the medium introduced into one of the exchanger tubes of the first through the M-th tube groups is substantially equal to the mass flow of the medium introduced into each of remaining ones of the exchanger tubes of the first through the M-th tube groups.
    • 在包括第一至第M管组的热交换器(1)中,每个管组包括至少一个换热器管(10)和分配装置(3),分配装置(3)具有供应介质的分配罐(30) 通过用于将介质从分配罐引导到第一至第M管组的第M分配路径(31,32和33),第一至第M分配路径的介质入口端口 到具有第一至第M个空隙率彼此不同的分配槽的第一至第M个区域。 第一至第M分配路径的中等出口分别与第一至第M管组的交换管耦合。 第一至第M管组中的每一个的交换管的数量和第一至第M分配路径中的每一个的内截面积基于第一至第M 使分配箱的第一至第M个区域的空隙率大大等于第一至第M管组中的一个交换管的介质的质量流量, 引入到第一至第M管组中的每个剩余的换热器管中。