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    • 3. 发明专利
    • Mold clamping device
    • 模具夹具
    • JP2010110948A
    • 2010-05-20
    • JP2008284143
    • 2008-11-05
    • Mitsubishi Heavy Ind LtdMitsubishi Heavy Industries Plastic Technology Co Ltd三菱重工プラスチックテクノロジー株式会社三菱重工業株式会社
    • KUGA KAZUYOSHIUCHIDA NOBUHIROSUZUKI KOJIKARIYA TOSHIHIKO
    • B29C45/64B29C45/76
    • PROBLEM TO BE SOLVED: To provide a mold clamping device which can minimize mechanical damage generated in the component of the mold clamping device even when non-uniform mold clamping force is applied thereto.
      SOLUTION: The mold clamping device 10 includes: a base frame 11; a fixed die plate 12; a movable die plate 13; a movable die plate moving means which moves the movable die plate 13 forward/backward in relation to the fixed die plate 12; a hydraulic pressure mold clamping cylinder 18 formed in the fixed die plate 12; and a plurality of tie bars 17 in which a ram 16 formed at each one end is arranged in the hydraulic pressure mold clamping cylinder 18, and the other end is fixed to the movable die plate 13. By adjusting the supply of a hydraulic fluid to the hydraulic pressure mold clamping cylinder 18, a fixed mold 14 and a movable mold 15 are clamped through the tie bars 17. In the process of a mold clamping operation, the device detects stress generated in a prescribed part of the mold clamping device 10, and, when the detected stress exceeds a prescribed standard stress, stops the mold clamping operation.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种即使在施加不均匀的合模力的情况下也能最小化在夹紧装置的部件中产生的机械损伤的模具夹紧装置。 解决方案:合模装置10包括:基架11; 固定模板12; 活动模板13; 可移动模板移动装置,使可动模板13相对于固定模板12向前/向后移动; 形成在固定模板12中的液压模具夹紧缸18; 以及多个连杆17,其中,在每个一端形成的冲头16布置在液压模具夹紧缸18中,另一端固定到可动模板13上。通过调节液压流体的供给 液压模具夹紧缸18,固定模具14和可移动模具15通过连接杆17夹紧。在模具夹紧操作过程中,该装置检测在合模装置10的规定部分产生的应力, 并且当检测到的应力超过规定的标准应力时,停止模具夹紧操作。 版权所有(C)2010,JPO&INPIT
    • 6. 发明专利
    • TEMPERATURE DETECTING SENSOR
    • JPH0961257A
    • 1997-03-07
    • JP22166295
    • 1995-08-30
    • MITSUBISHI HEAVY IND LTD
    • UCHIDA NOBUHIRO
    • G01K7/16
    • PROBLEM TO BE SOLVED: To make it possible to detect the temperature increase instantaneously when ambient temparature rises up higher than the temperature to be detected by providing a heater, which increases the holding temperature of a sensor, in the inside of the sensor. SOLUTION: A linear heater 9 is wound around a conductor 6 constituting a temperature detecting sensor 3, which is arranged so as to surround an object of temperature detection 4 in a spiral pattern. A current is conducted through the heater 9 from a power supply 8 for the heater connected to a control unit 2. The temperature of the sensor 3 is kept at the temperature slightly lower than the temperature to be detected. When the sensor 3 itself is heated higher than the detecting temperature by the heat generated in the object 4, the resistance value of a semi-insulator 7 between an outer film 5 of the sensor 3 and the conductor 6 is lowered, and the current is conducted to the ground. Therefore, the control unit 2 is operated, and an alarm light 1 is lit. In this constitution, the rising time from the holding temperature of the sensor 3 itself to the detecting temperature is shortened. Therefore, troubles and accidents can be instantaneously detected.
    • 7. 发明专利
    • SURFACE HEAT FLUX MEASURING INSTRUMENT
    • JPH07146189A
    • 1995-06-06
    • JP29327793
    • 1993-11-24
    • MITSUBISHI HEAVY IND LTD
    • UCHIDA NOBUHIRO
    • G01K17/20G01N25/18
    • PURPOSE:To provide a surface heat flux measuring instrument which can measure the surface temperature and heat flux of a heat-resistance material accurately and for a long time and obtain an improved measurement result in real time without spending much time. CONSTITUTION:A plurality of thermocouples 51-53 are buried to a retention member 6 along the depth direction with a specific spacing and a sensor part 1 where a heat-insulating material 7 is provided so that the side surface and the lower surface of the retention member 6 are covered is buried to a heat- resistance material 9 to be measured while only a measurement surface 11 of one edge in the depth direction of the retention member 6 is exposed. The measurement surface 11 of the sensor part 1 and the surface of the heat- resistance material 9 around it are covered with a heat-resistance coating 8, temperature data measured by thermocouples 51-53 of the sensor part 1 are sent to an operation part 3 via a scanner amplifier 2, the operation part 3 calculates the surface temperature and heat flux via heat conduction inverse analysis operation, and then the operation result by the operation part 3 is fed to a display 4 for showing in real time.
    • 8. 发明专利
    • PARISON CONVEYING DEVICE
    • JPH0957824A
    • 1997-03-04
    • JP21699695
    • 1995-08-25
    • MITSUBISHI HEAVY IND LTD
    • SHIMODAIRA KATSUYOSHIUCHIDA NOBUHIRO
    • B65G17/32B29C49/06B65G47/84
    • PROBLEM TO BE SOLVED: To provide a parison conveying device, with which a parison can be taken out of an injection molder and immediately supplied in a single row to a blow molder in order to efficiently and continuously perform the molding of a parison and the blow molding of a container. SOLUTION: This parison conveying device has a pin conveyor, which is formed by winding a belt 44b provided pins 44a hangingly thereon around rollers 41 and 42, an air carrying conveyor, in which parisons are hung between a plurality of rows of hanger rails consisting of a semicircular arcuate part and a straight part and transferred by means of the air jetted from air nozzles 47, cam rails 46, each of which is arranged opposite to the semicircular arcuate part so as to push the parison outwards, a stopper 48 and a counter 49 provided at the downstream side outlet of the air carrying conveyor and a controlling device for controlling the running of the device. In the order for successively transferring from the rows at the downstream side of the air carrying conveyor to the rows at its upstream side, a predetermined number of parisons are fed from the respective rows to a parison conveyor 17 at a blow molder side.