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    • 1. 发明申请
    • VACUUM GENERATING UNIT
    • 真空发生单元
    • US20090032125A1
    • 2009-02-05
    • US12168333
    • 2008-07-07
    • Yoshihiro FukanoMasayuki Oshima
    • Yoshihiro FukanoMasayuki Oshima
    • F04F3/00
    • F04F3/00F04F5/02Y10T137/86083
    • An ejector functioning as a vacuum generating mechanism is disposed in a main body constituting a vacuum generating unit, and an atmospheric air introducing valve is disposed between the ejector and a vacuum port. The atmospheric air introducing valve is brought into a valve closed state at times when a negative pressure is generated by the ejector under a condition in which a workpiece is held by the negative pressure generated by the ejector, whereby communication between the vacuum port and the atmosphere is blocked. On the other hand, at times when the vacuum is broken, in which the negative pressure state of the vacuum port is released, the atmospheric air introducing valve is brought into a valve open state, whereby the vacuum port communicates with the atmosphere.
    • 在构成真空发生单元的主体中设置有作为真空发生机构的喷射器,在喷射器和真空口之间配置有大气导入阀。 在通过喷射器产生的负压保持工件的状态下,喷射器产生负压时,大气引入阀进入阀关闭状态,由此真空口与大气之间的连通 被封锁。 另一方面,当真空破坏的时候,真空口的负压状态被解除,大气导入阀进入阀打开状态,由此真空口与大气连通。
    • 2. 发明授权
    • Vacuum generating unit
    • 真空发生单元
    • US08043071B2
    • 2011-10-25
    • US12168333
    • 2008-07-07
    • Yoshihiro FukanoMasayuki Oshima
    • Yoshihiro FukanoMasayuki Oshima
    • F04F5/48
    • F04F3/00F04F5/02Y10T137/86083
    • An ejector functioning as a vacuum generating mechanism is disposed in a main body constituting a vacuum generating unit, and an atmospheric air introducing valve is disposed between the ejector and a vacuum port. The atmospheric air introducing valve is brought into a valve closed state at times when a negative pressure is generated by the ejector under a condition in which a workpiece is held by the negative pressure generated by the ejector, whereby communication between the vacuum port and the atmosphere is blocked. On the other hand, at times when the vacuum is broken, in which the negative pressure state of the vacuum port is released, the atmospheric air introducing valve is brought into a valve open state, whereby the vacuum port communicates with the atmosphere.
    • 在构成真空发生单元的主体中设置有作为真空发生机构的喷射器,在喷射器和真空口之间配置有大气导入阀。 在通过喷射器产生的负压保持工件的状态下,喷射器产生负压时,大气引入阀进入阀关闭状态,由此真空口与大气之间的连通 被封锁。 另一方面,当真空破坏的时候,真空口的负压状态被解除,大气导入阀进入阀打开状态,由此真空口与大气连通。
    • 4. 发明申请
    • Pilot-controlled electromagnetic valve
    • 先导控制电磁阀
    • US20050040354A1
    • 2005-02-24
    • US10911101
    • 2004-08-04
    • Yoshihiro FukanoMasayuki Oshima
    • Yoshihiro FukanoMasayuki Oshima
    • F16K31/143F16K11/07F16K31/06F16K31/11F16K31/16F16K31/42F16K31/524F04F1/00E03B5/00F04B23/00F16K31/12F16K51/00
    • F16K31/52483F16K11/0712F16K31/426
    • A pilot-controlled electromagnetic valve is capable of preventing tilting of a piston and of shortening the piston with a simplified arrangement and allows a main valve element to be moved by actuation of a manual controller by transmitting the motion of the manual controller to both the piston and the main valve element. A partition is formed between a piston chamber and a manual controller chamber. A guide hole is formed in the partition. A guide projection is formed on the left side of the piston. The guide projection is inserted through the guide hole to project into the manual controller chamber. The manual controller having a sloped surface is reciprocatably provided in the manual controller chamber. Actuation of the manual controller causes the sloped surface to contact the sloped portion of the guide projection, thereby enabling both the piston and the main valve element to be moved.
    • 先导控制的电磁阀能够以简化的布置来防止活塞的倾斜和活塞的缩短,并且通过将手动控制器的运动传递到活塞的活塞,通过手动控制器的致动来允许主阀元件移动 和主阀元件。 在活塞室和手动控制器室之间形成隔板。 在隔板中形成导孔。 引导突起形成在活塞的左侧。 引导突起通过引导孔插入到手动控制器室中。 具有倾斜表面的手动控制器可往复运动地设置在手动控制器室中。 手动控制器的致动导致倾斜表面与引导突起的倾斜部分接触,从而使活塞和主阀元件都能够移动。
    • 5. 发明授权
    • Pilot-controlled electromagnetic valve system
    • 先导控制电磁阀系统
    • US07216843B2
    • 2007-05-15
    • US10911102
    • 2004-08-04
    • Yoshihiro FukanoMasayuki Oshima
    • Yoshihiro FukanoMasayuki Oshima
    • F16K31/00
    • F15B13/0821F15B13/0814F15B13/0832F15B13/0857F16B5/02F16B43/00F16K27/00
    • A pilot-controlled electromagnetic valve system has an electromagnetic valve block mounted on the top of a manifold block. A bearing surface is formed on the top of the electromagnetic valve block at a position adjacent to a screw accommodating recess formed on a joint surface at a side of the electromagnetic valve block. A washer engagement groove is formed at the bearing surface. An inwardly sloped washer having an engagement portion at the inner side thereof is fitted on a screw. The engagement portion is engaged with a side wall of the washer engagement groove. Thus, the electromagnetic valve block is surely secured to the manifold block with the screw even if the electromagnetic valve block is one at an end of a series of electromagnetic valve blocks constituting a valve manifold, or provided singly.
    • 先导控制的电磁阀系统具有安装在歧管块顶部的电磁阀块。 在与电磁阀块一侧的接合面形成的螺钉收纳凹部相邻的位置处,在电磁阀块的顶部形成有支承面。 在支承面形成有垫圈接合槽。 在其内侧具有接合部的向内倾斜的垫圈安装在螺钉上。 接合部与垫圈接合槽的侧壁接合。 因此,即使电磁阀块是构成阀歧管的一系列电磁阀块的一端,也可以单独设置,电磁阀块可靠地固定于歧管块。
    • 6. 发明授权
    • Pilot-controlled electromagnetic valve
    • 先导控制电磁阀
    • US07014163B2
    • 2006-03-21
    • US10911101
    • 2004-08-04
    • Yoshihiro FukanoMasayuki Oshima
    • Yoshihiro FukanoMasayuki Oshima
    • F16K31/00F16K31/12F16K31/44
    • F16K31/52483F16K11/0712F16K31/426
    • A pilot-controlled electromagnetic valve is capable of preventing tilting of a piston and of shortening the piston with a simplified arrangement and allows a main valve element to be moved by actuation of a manual controller by transmitting the motion of the manual controller to both the piston and the main valve element. A partition is formed between a piston chamber and a manual controller chamber. A guide hole is formed in the partition. A guide projection is formed on the left side of the piston. The guide projection is inserted through the guide hole to project into the manual controller chamber. The manual controller having a sloped surface is reciprocatably provided in the manual controller chamber. Actuation of the manual controller causes the sloped surface to contact the sloped portion of the guide projection, thereby enabling both the piston and the main valve element to be moved.
    • 先导控制的电磁阀能够以简化的布置来防止活塞的倾斜和活塞的缩短,并且通过将手动控制器的运动传递到活塞的活塞,通过手动控制器的致动来允许主阀元件移动 和主阀元件。 在活塞室和手动控制器室之间形成隔板。 在隔板中形成导孔。 引导突起形成在活塞的左侧。 引导突起通过引导孔插入到手动控制器室中。 具有倾斜表面的手动控制器可往复运动地设置在手动控制器室中。 手动控制器的致动导致倾斜表面与引导突起的倾斜部分接触,从而使活塞和主阀元件都能够移动。
    • 9. 发明授权
    • Ball screw mechanism
    • 滚珠丝杠机构
    • US08584546B2
    • 2013-11-19
    • US12545508
    • 2009-08-21
    • Yoshihiro FukanoToru SugiyamaMasaki Imamura
    • Yoshihiro FukanoToru SugiyamaMasaki Imamura
    • F16H1/24
    • F16H25/2219
    • A ball screw mechanism is equipped with a ball screw shaft formed from a metallic material, a displacement nut inserted over an outer circumferential side of the ball screw shaft, steel balls installed between a first screw groove formed on the ball screw shaft and a second screw groove formed in the displacement nut, and a pair of first and second return members, through which the steel balls are circulated between one end side and another end side of the displacement nut. The first and second return members include main body parts mounted respectively onto one end and another end of the displacement nut, and cylindrical parts that project outwardly with respect to the main body parts. A return passage, through which the steel balls are circulated, is formed inside of the main body parts and the cylindrical parts.
    • 滚珠丝杠机构配备有由金属材料形成的滚珠丝杠轴,插入滚珠丝杠轴的外周侧的移动螺母,安装在形成于滚珠丝杠轴上的第一螺旋槽与第二螺丝 形成在位移螺母中的槽,以及一对第一和第二返回构件,钢球通过该一对第一和第二返回构件在位移螺母的一端侧和另一端侧之间循环。 第一和第二返回构件包括分别安装在位移螺母的一端和另一端的主体部分和相对于主体部分向外突出的圆柱形部件。 钢球循环的返回通道形成在主体部分和圆柱形部分的内部。