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    • 1. 发明专利
    • Vulcanizer and method of manufacturing vulcanized tire
    • VULCANIZER和制造VULCANIZED TIRE的方法
    • JP2010179638A
    • 2010-08-19
    • JP2009027631
    • 2009-02-09
    • Bridgestone Corp株式会社ブリヂストン
    • KOSHIIO TAKAYUKIMATSUO TATSUOFUKUI TAKESHITSUJI DAIKO
    • B29C33/02B29C35/02B29L30/00
    • PROBLEM TO BE SOLVED: To perform vulcanization under constant heating conditions at all times without being affected by the external temperature.
      SOLUTION: In a vulcanizer, a mold unit 2 comprising an upper mold 10 configured so as to be freely elevated and lowered, a lower mold 12 and a segment 14 is heated by steam, heating gas or the like made to flow through passages of upper and lower platens 20, 22 and a slider 16 and, when the upper mold 10 is lowered to close the mold unit 2 in which an unvulcanized tire is stored, a cylindrical vacuum barrier wall 33 disposed around an upper bolster plate 34 is lowered integrally with the upper mold 10 and the lower end part of the upper mold 10 is fitted to a cylindrical lower barrier wall 38 to form a space F1 surrounding the whole of the mold unit 2. By turning the space F1 to a prescribed vacuum state, a vacuum heat-insulation layer insulated from the external air is formed and the mold unit 2 is heated in such the state.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 待解决的问题:在恒定加热条件下始终进行硫化,而不受外部温度的影响。 解决方案:在硫化机中,包括被配置为自由升高和降低的上模具10的模具单元2,下模具12和段14由蒸汽,加热气体等加热以使其流过 上压板20和下压板22的通道和滑块16,并且当上模具10下降以关闭其中存储有未硫化轮胎的模具单元2时,设置在上垫板34周围的圆柱形真空阻挡壁33是 与上模10和上模具10的下端部一体地嵌合在圆筒形下阻挡壁38上,形成围绕整个模具单元2的空间F1。通过将空间F1转动到规定的真空状态 形成与外部空气绝缘的真空绝热层,并且在这种状态下加热模具单元2。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • タイヤ内面塗装装置及びタイヤ内面塗装装置における塗装方法
    • 轮胎内表面涂层设备中的轮胎内表面涂层和涂覆方法
    • JP2015047834A
    • 2015-03-16
    • JP2013182902
    • 2013-09-04
    • 株式会社ブリヂストンBridgestone Corp
    • FUKUI TAKESHI
    • B29C33/02
    • 【課題】タイヤ内面に、塗装液の塗りむら、塗り残し、及び塗装時の液だれがなく塗装を施す。【解決手段】タイヤ内面に塗装液を塗布するタイヤ内面塗装装置であって、多軸のロボットアーム20の先端に取り付けられ、塗装液を吐出する塗装ガン10と、前記塗装ガン10に取り付けられ、タイヤTの塗装面との距離を測定する非接触距離センサSと、前記塗装ガン10の目標経路を設定する手段と、設定した前記目標経路のデータを格納する記憶手段と、前記非接触距離センサS及び前記目標経路のデータに基づき前記多軸のロボットアーム20を制御して、前記塗装ガン10をタイヤTの塗装面から一定距離に維持し、前記目標経路に沿って前記タイヤTに対して相対移動させる制御を行う制御手段と、を有する。【選択図】図1
    • 要解决的问题:涂覆轮胎内表面而没有施加涂布溶液的不均匀性,未涂覆区域并滴落在涂层上。解决方案:轮胎内表面涂覆装置用于用涂布溶液涂覆轮胎内表面,并且包括 涂覆枪10,其连接到多轴机器人臂20的尖端并排出涂布溶液;非接触式距离传感器S,其附接到涂覆枪10以测量到待涂覆表面的距离 轮胎T,设置涂料枪10的目标路径的装置,存储目标路径的数据的存储装置,以及根据来自非接触式距离传感器S的数据控制多轴机器人手臂20的控制装置,以及 在目标路径上的数据,以便将涂料枪10保持在与轮胎T的被涂覆表面规定距离处,并且相对于轮胎T沿着目标路径移动涂覆枪10。
    • 3. 发明专利
    • Method and device for mounting clamp ring to bladder
    • 用于将夹环安装到刀片的方法和装置
    • JP2012091438A
    • 2012-05-17
    • JP2010241857
    • 2010-10-28
    • Bridgestone Corp株式会社ブリヂストン
    • FUKUI TAKESHIMATSUO TATSUOKOSHIIO TAKAYUKI
    • B29C33/02B29C35/02B29L30/00
    • PROBLEM TO BE SOLVED: To quickly mount a clamp ring to a bladder 12 while saving labor.SOLUTION: After supplying the bladder 12 to a turning base 41 to be gripped at its one end part by one-side outer/inner ring pieces, the turning base 41 and the bladder 12 are half-rotated around a turning shaft. Thereafter, the ring pieces are mutually fastened by a fastening tool 119 in hand. Next, after half-rotating the turning base 41 and the bladder 12 around the turning shaft, the other end part of the bladder 12 is gripped by the other-side outer/inner ring pieces 21, 24. Next, these ring pieces are mutually fastened by the fastening tool 119. As the ring pieces to be fastened are positioned on the upper side in both times of fastening the ring pieces, the fastening work by a worker M using the fastening tool 119 in hand becomes quick and easy, and labor saving also can be attained.
    • 要解决的问题:快速将夹环安装到气囊12上,同时节省劳力。 解决方案:将气囊12供给到通过单侧外圈/内圈片在其一端部夹紧的转动基座41上时,转动基座41和气囊12围绕转动轴半转。 此后,环件通过紧固工具119在手中相互紧固。 接下来,在转动底座41和气囊12围绕转动轴半旋转之后,气囊12的另一端部被另一侧外圈/内圈片21,24夹紧。接下来,这些环件相互 由紧固工具119固定。由于在紧固环件两次时要紧固的环件位于上侧,所以使用手中的紧固工具119的工人M的紧固工作变得快速容易,并且劳动 也可以节省成本。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Heat source recovery apparatus and heat source recovery method
    • 热源恢复装置和热源恢复方法
    • JP2010188589A
    • 2010-09-02
    • JP2009034517
    • 2009-02-17
    • Bridgestone Corp株式会社ブリヂストン
    • KOSHIIO TAKAYUKIMATSUO TATSUOFUKUI TAKESHITSUJI DAIKO
    • B29C33/04
    • Y02P70/26
    • PROBLEM TO BE SOLVED: To provide a heat source recovery apparatus and heat source recovery method by which the retaining of hot water in an underground pit is prevented when possible and the discharged hot water is rapidly removed from the underground pit even when the hot water as the heat source discharged from a bladder is in large amounts.
      SOLUTION: The heat source recovery apparatus 1 for recovering the heat source supplied to the bladder inserted inside a green tire by a elevating means mounted in the underground pit 31 includes; a heat source cradle 4 positioned below the bladder and above the bottom of the underground pit 31 and receiving the heat source discharged from the bladder; and a heat source recovering tank 80 positioned above the bottom of the underground pit 31, below the heat source cradle 4 and recovering the heat source discharged from the heat source cradle 4.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种热源回收装置和热源回收方法,其中尽可能地防止地下坑中的热水的保留,并且即使当 作为从膀胱排出的热源的热水量大。 解决方案:用于回收通过安装在地下坑31中的升降装置供给到插入生胎的胎体的热源的热源回收装置1; 位于气囊下方并位于地下坑31的底部上方并接收从气囊排出的热源的热源支架4; 以及位于热源支架4下方的地下坑31的底部上方的热源回收槽80,并回收从热源支架4排出的热源。(C)2010,JPO&INPIT