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    • 133. 发明公开
    • Method and tool for manufacturing a spiral element for a scroll member used in scroll type fluid displacement apparatus
    • Herstellungsverfahren und -werkzeugfürein Spiralelement einerFluidumverdrängungsanlagemit Exzenterspiralelementen。
    • EP0059474A1
    • 1982-09-08
    • EP82101601.1
    • 1982-03-02
    • SANDEN CORPORATION
    • Fukuhara, Seiichi
    • F01C1/02F01C21/00
    • F01C1/0246F01C21/00F04C2230/00F05B2230/00F05B2250/15F05B2250/25
    • In a manufacturing method and tool of scroll member used in scroll type fluid displacement apparatus, in order to reduce waste metal, used energy and time in machining operation subsequent to a molding operation, a molding member which has a first involute groove and a second involute groove at its side surface and an insertion member which should be disposed in the first involute groove are used in the molding operation. The sectional configuration of the first involute groove is formed in wedge-shape and, sectional configuration of the second involute groove is formed substantially in rectangular-shape. The insertion member has a wedge-shape cross section. A metal of which the spiral element of preformed scroll member is made is fullfilled in the second involute groove for metal forming. After metal forming, the insertion member is removed from the first involute groove and the formed metal member is taken out from the second involute groove. The preformed scroll member with rectangular cross section is thereby obtained.
      Another molding member which has a circular indentation at its axial end surface is used. This molding member is disposed on the end surface of first molding member for covering the both involute grooves. The space of indentation consists of the forming space. Therefore, metal filling up the forming space of indentation forms the end plate of preformed scroll member.
      The first molding member has a plurality of holes each of which is placed on the locus of involute curve and connects between the bottom surface of first involute groove and opposite side surface of first molding member. The insertion member has a plurality of pins at the axial end surface thereof. When the insertion member is disposed in the first involute groove, each of the pins is inserted in the each hole of the molding member and the axial outer end portion of pin extends from the hole. The insertion member is, therefore, easily removed from the first involute groove by pushing up the pins.
    • 在涡旋式流体置换装置中使用的涡旋构件的制造方法和工具中,为了在模制操作之后减少废金属,使用的能量和加工时间,具有第一渐开槽和第二渐开线的成型构件 在模制操作中使用其侧表面处的凹槽和应设置在第一渐开槽中的插入构件。 第一渐开槽的截面形状形成为楔形,并且第二渐开线槽的截面形状基本上形成为矩形。 插入构件具有楔形横截面。 在金属成形用的第二渐开线槽中满足预先形成的涡旋构件的螺旋形元件的金属。 在金属成形之后,插入件从第一渐开槽移除,并且形成的金属件从第二渐开线槽中取出。 由此获得具有矩形截面的预制涡旋构件。 使用在其轴向端面具有圆形凹陷的另一模制构件。 该成型构件设置在第一成形构件的端面上,用于覆盖两个渐开槽。 压痕空间由成型空间组成。 因此,填充压痕成形空间的金属构成预成型涡旋构件的端板。 第一成型构件具有多个孔,每个孔被放置在渐开线曲线的轨迹上,并且连接在第一渐开槽的底表面和第一模制构件的相对侧表面之间。 插入构件在其轴向端面具有多个销。 当插入构件设置在第一渐开槽中时,每个销插入模制构件的每个孔中,并且销的轴向外端部从孔延伸。 因此,插入构件通过向上推动销而容易地从第一渐开槽移除。
    • 136. 发明专利
    • Scroll compressor
    • 滚动压缩机
    • JP2009299498A
    • 2009-12-24
    • JP2008151929
    • 2008-06-10
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KIMATA HISAYUKISATO SO
    • F04C18/02
    • F04C18/0276F04C18/0215F04C2230/00
    • PROBLEM TO BE SOLVED: To provide a scroll compressor easily changeable in the capacity and preventing an occurrence of a failure. SOLUTION: The scroll compressor has a turning scroll 7 including a fixed scroll with one spiral wall body erected on one side face of one end plate and the other spiral wall body 7b erected on one side face of the other end plate 7a, and revolvably supported while being prevented from rotating by engaging the wall bodies with each other. A wall body stepped part 33 low on the center side in the direction along the spiral and high on the outer side is formed at the upper edges of the one wall body and the other wall body 7b. An end plate stepped part 29 high on the center side and low on the outer side in the direction along the spiral is formed on one side faces of the one end plate and the other end plate 7a, and in a position opposing to the wall body stepped part 33. A cutout part 7h is formed at an end on the outer side in the direction along the spiral on one of the one wall body and the other wall body 7b, and a winding end angle of the one is formed smaller than that of the other. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供容易变化的涡旋压缩机,并防止故障的发生。 解决方案:涡旋压缩机具有包括固定涡旋盘的转动涡旋件7,其中一个螺旋壁体竖立在一个端板的一个侧面上,另一个螺旋壁体7b竖立在另一个端板7a的一个侧面上, 并且通过使壁体彼此接合而防止旋转。 沿着螺旋状的方向的中心侧的壁体台阶部分33形成在一个壁体和另一个壁体7b的上边缘处,外侧高。 在一个端板和另一个端板7a的一个侧面上形成有沿着螺旋形的方向在中心侧为高端的端板台阶部29和外侧的低侧,并且在与壁体相反的位置 一个切割部分7h形成在一个壁体和另一个壁体7b中的一个上沿着螺旋方向的外侧的端部,并且一个的卷绕端角形成为小于 的另一个 版权所有(C)2010,JPO&INPIT
    • 137. 发明专利
    • Compressor
    • 压缩机
    • JP2005076567A
    • 2005-03-24
    • JP2003309456
    • 2003-09-02
    • Toyota Industries Corp株式会社豊田自動織機
    • NAKANE YOSHIYUKINASUDA TSUTOMU
    • F04B39/06F01C21/10F04B27/10F04B39/12F04C18/02
    • F04B27/1081F01C21/10F04B39/123F04C18/0215F04C2230/00F05C2251/048
    • PROBLEM TO BE SOLVED: To provide a compressor capable of positively restraining temperature rise for refrigerant gas to be sucked, and improving volumetric efficiency of the compressor.
      SOLUTION: In this compressor 10 having at least a housing constituting an outer shell of the compressor, a compression mechanism portion for compressing the sucked air, a driving mechanism portion which drives the compression mechanism portion, and a suction passage 14 for the sucked air formed in the housing, a suction pipe 33 to communicate with the suction passage 14 is provided in the housing. A thermal insulation body 34 for restraining thermal transmission from the housing to the suction pipe 33 is interposed between the housing and the suction pipe 33, and the thermal insulation body 34 is provided with a through hole 35 for allowing the suction passage 14 to communicate with the suction pipe 33.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够积极地限制要吸入的制冷剂气体的温度升高的压缩机,并且提高压缩机的容积效率。 解决方案:在具有构成压缩机的外壳的至少一个壳体的压缩机10中,用于压缩吸入的空气的压缩机构部分,驱动压缩机构部分的驱动机构部分和用于驱动压缩机构部分的吸入通道14 形成在壳体中的吸入空气,在壳体中设置有与吸入通道14连通的吸入管33。 用于限制从壳体到吸入管33的热传递的隔热体34插入在壳体和吸入管33之间,并且绝热体34设置有通孔35,用于允许吸入通道14与 吸入管33.版权所有(C)2005,JPO&NCIPI
    • 138. 发明专利
    • Scroll fluid machine
    • 滚动流体机
    • JPS58214689A
    • 1983-12-13
    • JP9763882
    • 1982-06-09
    • Hitachi Ltd
    • MACHIDA SHIGERUHATANO KAZUYOSHINAKAMURA YOUZOUARAI TOORU
    • F01C1/02F04C18/02
    • F04C18/0253F04C2230/00F04C2240/801F05B2230/00
    • PURPOSE:To improve reliability on a compressor which is adapted to run at a high speed, by forming a compression chamber with a lap and a mirror plate made of ceramic to prevent the occurrence of deformation due to the compression heat. CONSTITUTION:A metal protecting member 18 is attached to the back of a mirror plate 17a as in a stationary scroll. Further, a bearing 19 made of ceramic for supporting a crank shaft is integrally joined to the center of the back of the mirror plate 17a. Since the bearing 19 is thus made of ceramic, reliability on the bearing can be improved by virtue of an extremely high wear resistance of the ceramic.
    • 目的:为了提高适应于高速运转的压缩机的可靠性,通过形成具有搭接部的压缩室和由陶瓷制成的镜面板,以防止由于压缩热而发生变形。 构成:金属保护构件18如同固定涡卷一样安装在镜面板17a的背面。 此外,用于支撑曲轴的由陶瓷制成的轴承19一体地接合到镜板17a的后部的中心。 由于轴承19由陶瓷制成,因此可以通过陶瓷的极高耐磨性来提高轴承的可靠性。