会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明公开
    • Scroll compressor
    • 涡旋压缩机
    • EP1433956A1
    • 2004-06-30
    • EP03029176.9
    • 2003-12-18
    • Kabushiki Kaisha Toyota Jidoshokki
    • Kimura, KazuyaShimizu, IzuruTarao, SusumuHishinuma, Yumin
    • F04C27/00F04C23/00F04C18/02
    • F04C27/005F04C23/008F04C2210/261
    • A scroll compressor includes a fixed scroll member fixed to a housing and a movable scroll member engaging the fixed scroll member. Each scroll member has a base plate and a spiral wall. A compression chamber between the fixed and movable scroll members reduces in volume by orbiting the movable scroll member, thus compressing gas. A back pressure chamber is defined in the housing on a back surface side of the movable scroll base plate between the movable scroll member and the a fixed wall of the housing. An introducing passage interconnects the back pressure chamber and a relatively high pressure region. A seal member on one of the movable scroll member and the fixed wall seals the back pressure chamber as being slidable on the other. The seal member includes a portion for lowering sealing performance, which interconnects the back pressure chamber and a relatively low pressure region.
    • 涡旋式压缩机包括固定在壳体上的定涡旋构件和与定涡旋构件接合的动涡旋构件。 每个涡旋构件具有底板和螺旋壁。 固定涡卷构件和可动涡卷构件之间的压缩室通过绕动涡卷构件旋转而减小体积,从而压缩气体。 背压室限定在动涡旋体构件和壳体的固定壁之间的动涡旋体底板的背面侧的壳体上。 引入通道将背压室和相对较高的压力区域互连。 活动涡旋件和固定壁中的一个上的密封件将另一个上的背压室密封,使其可以滑动。 密封构件包括用于降低密封性能的部分,该部分将背压室和相对低的压力区域互连。
    • 4. 发明公开
    • Horizontally-mounted scroll compressor
    • 水平蒙特勒Spiralverdichter
    • EP1818541A1
    • 2007-08-15
    • EP07002715.6
    • 2007-02-08
    • KABUSHIKI KAISHA TOYOTA JIDOSHOKKI
    • Iguchi, MasaoTarao, SusumuShimizu, Izuru
    • F04C18/02
    • F04C27/005F04C18/0215F04C29/026
    • A horizontally-mounted scroll compressor includes a first annular seal member (34,90,101,102,103,105) which is provided between a movable base plate and a slide-contact body (14,74) for sealing between a back-pressure region (61,82a) and a suction-pressure region (20,43,75,86). The first seal member has a plurality of first groove portions (34a-d) which connect the back-pressure region to the suction-pressure region. The shortest distance along a circumference of the first seal member between any two of the first groove portions which are the remotest from each other is set at not less than one-third of a circumferential length of the first seal member.
    • 水平安装的涡旋压缩机包括设置在可移动底板和滑动接触体(14,74)之间的第一环形密封构件(34,90,101,102,103,105),用于密封背压区域(61,82a)和 吸入压力区域(20,43,75,86)。 第一密封构件具有将背压区域连接到吸入压力区域的多个第一槽部(34a-d)。 在第一密封构件的彼此最远的任意两个第一沟槽部分之间的沿着圆周的最短距离被设定为不小于第一密封构件的圆周长度的三分之一。
    • 5. 发明公开
    • Electric type swash plate compressor
    • Elektrisch angetriebener Taumelscheibenkompressor
    • EP1116883A3
    • 2002-10-23
    • EP00124523.2
    • 2000-11-09
    • Kabushiki Kaisha Toyota Jidoshokki
    • Yokomachi, NaoyaMurakami, KazuoNakane, YoshiyukiTarao, Susumu
    • F04B35/04F04B27/10F04B39/06F04B27/08
    • F04B39/064F04B27/0895F04B27/1036F04B35/04
    • The electrically driven swash plate compressor consists of an electric motor (21) in the motor chamber (15) and a swash plate (22) with the stationary cylinder block (13) in the crank chamber (16). The swash plate is rotated by the drive shaft (17), whereby the pistons (26,27) are reciprocated in the cylinder block (13). The refrigerant is drawn from the intake port (31A) to the suction chamber (31) and flows into the compression chamber (13E) through port (35A) undergoing compression by the movement of piston (26). The refrigerant is then discharged into the intermediate pressure chamber (32) through port (35B) and then partly discharged into the discharge chamber (33) and partly bypassed into the crank chamber (16) through the communication passage (38). From there the refrigerant is circulated into the motor chamber (16) for cooling of the electric motor (21). Additionally, the cooling effect prevents a deterioration of the state of the lubricating oil in the bearings (18B,23), the pistons (26,27) and their shoes (28,29).
    • 电动旋转斜盘压缩机由马达室(15)中的电动马达(21)和曲柄室(16)内的固定气缸体(13)构成的旋转斜盘(22)组成。 旋转斜盘由驱动轴(17)旋转,活塞(26,27)在气缸体(13)中往复运动。 制冷剂从进气口(31A)被吸入吸入室(31),并通过活塞(26)的运动经受压缩的端口(35A)流入压缩室(13E)。 然后,制冷剂通过端口(35B)排出到中间压力室(32)中,然后部分地通过连通通道(38)排放到排放室33中,并部分地绕过曲柄室16。 从那里制冷剂循环到电动机室(16)中以冷却电动机(21)。 此外,冷却效果可防止轴承(18B,23),活塞(26,27)和其鞋(28,29)中的润滑油的状态的劣化。
    • 8. 发明公开
    • Scroll compressor
    • Spiralverdichter
    • EP1544467A3
    • 2005-11-30
    • EP04029861.4
    • 2004-12-16
    • KABUSHIKI KAISHA TOYOTA JIDOSHOKKI
    • Kimura, KazuyaShimizu, IzuruTarao, SusumuHishinuma, Yumin
    • F04C18/02F04C27/00
    • F04C27/005F04C18/0215F04C29/026F04C2210/261Y10S418/01
    • A scroll type compressor includes a housing (11) defining a discharge pressure region, a fixed scroll member (31) having a fixed base plate (32) and a fixed scroll wall (34), a movable scroll member (38) having a movable base plate (40) and a movable scroll wall (41), a fixed wall (69) slidably supporting the movable scroll member, a back pressure chamber (56) defined on a back surface side of the movable base plate. A supply passage (59,60) connects the back pressure chamber (56) to the discharge pressure region and passes through a sliding portion between the movable scroll member (38) and the fixed wall (69). A clearance at the sliding portion varies in response to a position of the movable scroll member (38) in a direction in which the movable scroll member approaches to or leaves from the fixed wall (69), whereby cross-sectional area of the clearance where gas passes is varied to adjust pressure in the back pressure chamber (56).
    • 涡旋式压缩机包括限定排出压力区域的壳体(11),具有固定基板(32)和固定涡旋壁(34)的固定涡旋构件(31),具有可移动的动涡旋件 基板(40)和可动涡旋壁(41),可滑动地支撑动涡旋件的固定壁(69),限定在可动基板的背面侧的背压室(56)。 供给通道(59,60)将背压室(56)连接到排出压力区域并通过可动涡旋件(38)和固定壁(69)之间的滑动部分。 滑动部分的间隙响应于可动涡旋构件(38)沿着可动涡旋构件接近或离开固定壁(69)的方向的位置而变化,由此间隙的横截面积 改变气体通道以调节背压室(56)中的压力。
    • 10. 发明公开
    • Scroll-type fluid machine
    • 涡旋式流体机械
    • EP2218914A2
    • 2010-08-18
    • EP10153580.5
    • 2010-02-15
    • Kabushiki Kaisha Toyota Jidoshokki
    • Tarao, SusumuIguchi, MasaoMori, Hidefumi
    • F04C18/02F04C29/00F04C27/00
    • F04C18/0215F01C17/066F01C21/02F04C23/008F04C29/0057F04C29/0071F04C2240/807
    • A scroll-type fluid machine includes a mechanism for driving a movable scroll relative to a fixed scroll. The mechanism includes a drive shaft rotatable on a first axis, an eccentric pin and a bearing. The eccentric pin revolves around the first axis with the rotation of the drive shaft and has an outer peripheral surface centered on a second axis that is parallel to and eccentric to the first axis. The bearing is mounted to the movable scroll and has an inner peripheral surface centered on a third axis that is parallel to and eccentric to the first and second axes. The inner peripheral surface is in contact with the outer peripheral surface of the eccentric pin. Pressing force is applied to the bearing from the eccentric pin due to the arrangement of the first, second and third axes so as to press the movable scroll to the fixed scroll.
    • 涡旋式流体机械包括用于驱动可动涡盘相对于固定涡盘的机构。 该机构包括可在第一轴上旋转的驱动轴,偏心销和轴承。 偏心销随着驱动轴的旋转围绕第一轴线旋转,并且具有以与第一轴线平行且偏心的第二轴线为中心的外周面。 轴承安装在动涡旋盘上,并具有以第三轴线为中心的内周面,该第三轴线与第一和第二轴线平行并偏心。 内周面与偏心销的外周面接触。 由于第一轴线,第二轴线和第三轴线的布置,压力从偏心销施加到轴承,以便将动涡旋体压向固定涡旋体。