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    • 2. 发明授权
    • Expansion valve
    • 膨胀阀
    • US08667984B2
    • 2014-03-11
    • US13343987
    • 2012-01-05
    • Kazuto KobayashiTakashi Mogi
    • Kazuto KobayashiTakashi Mogi
    • F16K17/38F25B41/06
    • F25B41/062F25B2341/0683F25B2500/32Y10T137/7737
    • To reduce a weight of a valve main body of an expansion valve formed by an extrusion molding of a metal material such as an aluminum alloy or the like. A valve main body 100 is made of a material obtained by an extrusion molding of a metal material such as an aluminum alloy or the like. Two pair of holding faces 101a and 101b, and 102a and 102b are formed on both side face 100a and 100b in the extruding direction of the valve main body 100, and the other portions are to be concave as much as possible, so that the weight can be reduced. The holding faces 101a and 101b and the holding faces 102a and 102b are parallel faces, and come to be holding faces for chuck claws C1 and C2 at a time of machining.
    • 通过铝合金等金属材料的挤压成型,减轻由膨胀阀形成的阀主体的重量。 阀主体100由通过诸如铝合金等的金属材料的挤出成型获得的材料制成。 在阀主体100的挤出方向上的两侧面100a和100b上形成有两对保持面101a和101b,102a和102b,并且其他部分尽可能地凹入,使得重量 可以减少 保持面101a和101b以及保持面102a和102b是平行的面,并且在加工时成为卡盘爪C1和C2的保持面。
    • 4. 发明申请
    • Expansion valve
    • 膨胀阀
    • US20040026524A1
    • 2004-02-12
    • US10632804
    • 2003-08-04
    • FUJIKOKI CORPORATION
    • Masamichi YanoKazuhiko Watanabe
    • F25B041/06
    • F25B41/062F25B2341/0683F25B2500/05F25B2500/32
    • An expansion valve 101 comprises a substantially prismatic-shaped valve body 301 made of aluminum alloy. On the valve body 301 is formed a first passage 32 through which a liquid-phase refrigerant travels towards an evaporator, and a second passage 34 through which a gas-phase refrigerant travels from the evaporator toward a compressor. On the upper portion of the valve body 301 is mounted a power element portion 36 for driving the valve mounted in the middle of a first passage 32. On the side surfaces 301a of the valve body 301 are formed protruding portions 301c, and to the protruding portions, penetrating holes 50 for inserting the bolt for mounting the expansion valve are formed.
    • 膨胀阀101包括由铝合金制成的大致棱柱形的阀体301。 在阀体301上形成有液相制冷剂朝向蒸发器行进的第一通道32和气相制冷剂从蒸发器朝向压缩机行进的第二通道34。 在阀体301的上部安装有功率元件部36,用于驱动安装在第一通道32的中间的阀。在阀体301的侧面301a上形成有突出部301c,突出部 形成用于插入用于安装膨胀阀的螺栓的贯通孔50。
    • 8. 发明申请
    • Thermal expansion valve
    • 热膨胀阀
    • US20010009099A1
    • 2001-07-26
    • US09750117
    • 2000-12-29
    • Fujikoki Corporation
    • Kazuto KobayashiAsao Kato
    • F25B041/04F25B041/00
    • F16K31/002F25B41/062F25B2341/0683F25B2500/17F25B2500/32
    • A thermal expansion valve 10-3 includes a passage 32 through which refrigerant enters a prism-shaped body 30 from a receiver, and a valve means 32b placed within a valve chamber 35 for controlling the opening of an orifice 32a. The refrigerant returning from an evaporator 8 travels through a passage 34 toward a compressor 4. A power element 60 that drives the valve means 32b via a heat sensing shaft 36f comprises a disk-shaped housing 36d and a diaphragm 60a placed within said housing, which constitute a pressure working chamber 36b. A working gas is filled inside said pressure working chamber 36b and sealed thereto by a plug body 60k. The diameter size of the diaphragm 60a and the whole size of the plug body 60k are reduced in order to miniaturize and reduce the weight of the thermal expansion valve as a whole.
    • 热膨胀阀10-3包括通道32,制冷剂从接收器进入棱镜体30,阀装置32b设置在阀室35内,用于控制孔32a的开口。 从蒸发器8返回的制冷剂通过通道34朝向压缩机4.通过热传感轴36f驱动阀装置32b的动力元件60包括盘形壳体36d和放置在所述壳体内的隔膜60a, 构成压力工作室36b。 工作气体填充在压力工作室36b的内部,并由塞体60k密封。 隔膜60a的直径尺寸和塞体60k的整体尺寸减小,以便使整个热膨胀阀的重量小型化和减轻。