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    • 1. 发明申请
    • METHOD AND APPARATUS FOR INSPECTING PINHOLE IN SYNTHETIC RESIN BOTTLE
    • 在合成树脂瓶中检查针孔的方法和装置
    • US20100257919A1
    • 2010-10-14
    • US12739581
    • 2008-10-29
    • Yousuke MatsushitaNoboru SawaneYasushi Oobuchi
    • Yousuke MatsushitaNoboru SawaneYasushi Oobuchi
    • G01M3/26
    • G01M3/3272
    • Provided is a pinhole inspecting method for suitably inspecting a pinhole in a bottle compared with conventional pinhole inspection. A reference inner pressure (P1) is a bottle inner pressure obtained directly after closing a supply valve (3) after opening the supply valve (3) for only a predetermined time. Whether the reference inner pressure (P1) is over a previously specified first threshold value (Pth1) or not is checked, and when it exceeds the first threshold value (Pth1), airtight status of the bottle is held for a predetermined time, and then a pressure reduction quantity (ΔP) of the bottle inner pressure from the reference inner pressure is measured after a fixed time. The bottle is judged to have no pinholes only when the value of ΔP is not exceeding the previously specified second threshold value (ΔPth2).
    • 提供了与常规针孔检查相比适合检查瓶中针孔的针孔检查方法。 参考内压(P1)是仅在预定时间打开供给阀(3)之后,在关闭供给阀(3)之后直接获得的瓶内压。 检查参考内压(P1)是否超过先前指定的第一阈值(Pth1),并且当其超过第一阈值(Pth1)时,瓶子的气密状态保持预定时间,然后 在固定时间之后测量来自参考内压的瓶内压力的减压量(&Dgr; P)。 只有当Dgr; P的值不超过先前指定的第二个阈值(&Dgr; Pth2)时,瓶子才被判断为没有针孔。
    • 2. 发明申请
    • BLOW MOLDING MACHINE WITH AIR CONDITIONING
    • 吹瓶机与空调
    • US20100015269A1
    • 2010-01-21
    • US12528319
    • 2008-02-18
    • Yousuke MatsushitaNoboru Sawane
    • Yousuke MatsushitaNoboru Sawane
    • B29C49/78B29C49/42
    • B29C49/46B29C49/06B29C49/4284B29C49/68B29C49/78B29C2049/4632B29C2049/4673B29C2049/4679B29C2049/4697Y02P70/267
    • A blow molding machine with air conditioning that while minimizing the introduction rate of outside air, realizes maintaining of constant temperature in not only a plant building but also the interior of a blow molding machine and production of a bottle as a final configuration with stability in its measurement value. The blow molding machine with air conditioning is constructed so that air for use in biaxially stretching blow molding together with hot air of heating zone (1) and internal air of a plant building is suctioned by means of suction chamber (4), filtered by means of primary filter (6) and secondary filter (7) into clean air, brought into heat exchange with primary cooling coil (8), fed under pressure by air blower (10) and released through low-temperature duct (12) into the interior of the plant building. Further, the construction is made so that housing (3) on its side face is provided with vent (3a) so as to allow reflux of the clean air released into the interior of the plant building and flow into the heating zone (1) and blow zone (2).
    • 具有空调的吹塑机,在最小化外部空气的引入速率的同时,不仅在工厂建筑物中保持恒温,而且实现吹塑机的内部和生产瓶子作为其最终结构的稳定性 测量值。 具有空调的吹塑机构造成使得用于双轴拉伸吹塑的空气与加热区(1)的热空气和工厂建筑物的内部空气通过吸入室(4)抽吸,通过装置过滤 (6)和二次过滤器(7)进入清洁空气,与主冷却盘管(8)进行热交换,在鼓风机(10)的压力下进给,并通过低温管道(12)释放到内部 的厂房。 此外,构造是使得其侧面上的壳体(3)设置有通气口(3a),以便释放到植物建筑物内部的清洁空气回流并流入加热区域(1)和 吹气区(2)。
    • 3. 发明申请
    • PREFORM HEATING SYSTEM
    • 预热加热系统
    • US20100068323A1
    • 2010-03-18
    • US12516627
    • 2007-10-04
    • Yousuke MatsushitaNoboru Sawane
    • Yousuke MatsushitaNoboru Sawane
    • B29C49/78
    • B29C49/6436B29B13/024B29C49/06B29C49/78B29K2067/00B29L2031/7158
    • This invention is configured having a control mechanism which supports a preform 50 and controls the state of rotation of a support member 20 being moved through a heating region so as to control the orientation of the preform 50 with respect to heating devices, the control mechanism having a first magnetic pole member 122a arranged along at least a part of the heating region and a second magnetic pole member 24 fastened at a portion of the support member 20 being moved through the heating region facing the first magnetic pole member 122a, the support member 20 moved through the heating region being set to a rotation state determined by a relationship between the polarity of the first magnetic pole member 122a and the polarity of the second magnetic pole member 24. Due to this constitution, it is possible to provide a preform heating system which can easily make the preform move through the heating region while rotating without greatly sacrificing efficient heating and make the preform move through the heating region without causing rotation of the preform.
    • 本发明构造成具有支撑预成型件50的控制机构,并且控制支撑构件20的旋转状态通过加热区域移动,以便控制预成型件50相对于加热装置的取向,该控制机构具有 沿着加热区域的至少一部分布置的第一磁极构件122a和紧固在支撑构件20的部分的第二磁极构件24移动通过面对第一磁极构件122a的加热区域,支撑构件20 移动通过加热区被设定为由第一磁极构件122a的极性与第二磁极构件24的极性之间的关系确定的旋转状态。由于该构造,可以提供预成型件加热系统 这可以容易地使预成型件在旋转的同时移动通过加热区域而不会极大地牺牲有效的加热并制成预制件 移动通过加热区域而不引起预制件的旋转。
    • 4. 发明授权
    • Method and apparatus for inspecting pinhole in synthetic resin bottle
    • 用于检查合成树脂瓶中针孔的方法和装置
    • US08713993B2
    • 2014-05-06
    • US12739581
    • 2008-10-29
    • Yousuke MatsushitaNoboru SawaneYasushi Oobuchi
    • Yousuke MatsushitaNoboru SawaneYasushi Oobuchi
    • G01M3/34
    • G01M3/3272
    • Provided is a pinhole inspecting method for suitably inspecting a pinhole in a bottle compared with conventional pinhole inspection. A reference inner pressure (P1) is a bottle inner pressure obtained directly after closing a supply valve (3) after opening the supply valve (3) for only a predetermined time. Whether the reference inner pressure (P1) is over a previously specified first threshold value (Pth1) or not is checked, and when it exceeds the first threshold value (Pth1), airtight status of the bottle is held for a predetermined time, and then a pressure reduction quantity (ΔP) of the bottle inner pressure from the reference inner pressure is measured after a fixed time. The bottle is judged to have no pinholes only when the value of ΔP is not exceeding the previously specified second threshold value (ΔPth2).
    • 提供了与常规针孔检查相比适合检查瓶中针孔的针孔检查方法。 参考内压(P1)是仅在预定时间打开供给阀(3)之后,在关闭供给阀(3)之后直接获得的瓶内压。 检查参考内压(P1)是否超过先前指定的第一阈值(Pth1),并且当其超过第一阈值(Pth1)时,瓶子的气密状态保持预定时间,然后 在固定时间之后测量来自参考内压的瓶内压力的减压量(&Dgr; P)。 只有当Dgr; P的值不超过先前指定的第二个阈值(&Dgr; Pth2)时,瓶子才被判断为没有针孔。
    • 5. 发明授权
    • Blow molding machine with air conditioning
    • 吹塑机带空调
    • US08167601B2
    • 2012-05-01
    • US12528319
    • 2008-02-18
    • Yousuke MatsushitaNoboru Sawane
    • Yousuke MatsushitaNoboru Sawane
    • B29C49/42B29C49/68
    • B29C49/46B29C49/06B29C49/4284B29C49/68B29C49/78B29C2049/4632B29C2049/4673B29C2049/4679B29C2049/4697Y02P70/267
    • A blow molding machine with air conditioning that while minimizing the introduction rate of outside air maintains constant temperature in a plant building and the interior of a blow molding machine and production of a bottle as a final configuration with stability in its measurement value. The machine is constructed so that air for biaxially stretching blow molding together with hot air of heating zone and internal air of a plant building is suctioned by suction chamber, filtered by primary filter and secondary filter into clean air, brought into heat exchange with primary cooling coil, fed under pressure by air blower and released through low-temperature duct into the interior of the plant building. Further, a housing on its side face is provided with vent to allow reflux of the clean air released into the interior of the plant building and flow into the heating zone and blow zone.
    • 具有空调的吹塑机在最小化外部空气的引入速率的同时,在工厂建筑物和吹塑机内部保持恒定的温度,并且生产瓶子作为其测量值具有稳定性的最终配置。 该机器的结构使得用于双轴拉伸吹塑的空气与加热区的热空气和工厂建筑物的内部空气被抽吸室吸入,由初级过滤器和二次过滤器过滤成清洁空气,与一次冷却进行热交换 线圈,通过鼓风机在压力下进料,并通过低温管道释放到工厂建筑物的内部。 此外,其侧面上的壳体设置有排气口,以允许释放到工厂建筑物内部的清洁空气回流并流入加热区域和吹风区域。
    • 6. 发明授权
    • Preform heating system
    • 预制加热系统
    • US08137086B2
    • 2012-03-20
    • US12516627
    • 2007-10-04
    • Yousuke MatsushitaNoboru Sawane
    • Yousuke MatsushitaNoboru Sawane
    • B29C49/68B29C31/08
    • B29C49/6436B29B13/024B29C49/06B29C49/78B29K2067/00B29L2031/7158
    • This invention is configured having a control mechanism which supports a preform and controls the state of rotation of a support member being moved through a heating region so as to control the orientation of the preform with respect to heating devices, the control mechanism having a first magnetic pole member arranged along at least a part of the heating region and a second magnetic pole member fastened at a portion of the support member being moved through the heating region facing the first magnetic pole member, the support member moved through the heating region being set to a rotation state determined by a relationship between the polarity of the first magnetic pole member and the polarity of the second magnetic pole member.
    • 本发明构造成具有支撑预成型件的控制机构,并且控制通过加热区域移动的支撑构件的旋转状态,以便控制预成型件相对于加热装置的取向,该控制机构具有第一磁性 极构件,其沿着所述加热区域的至少一部分布置;以及第二磁极构件,其紧固在所述支撑构件的一部分,所述第二磁极构件被移动通过面向所述第一磁极构件的所述加热区域,所述支撑构件移动通过所述加热区域, 由第一磁极部件的极性和第二磁极部件的极性之间的关系确定的旋转状态。