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    • 2. 发明授权
    • Bottom cooler for a post-manufacture glass container thermal strengthening station
    • 后冷却器用于后制玻璃容器热加固站
    • US08656742B2
    • 2014-02-25
    • US13114779
    • 2011-05-24
    • Robert J. LockhartSteven J. BrownTimothy A. Ringuette
    • Robert J. LockhartSteven J. BrownTimothy A. Ringuette
    • C03B27/06
    • C03B27/062C03B27/06C03B27/065
    • An apparatus for manufacturing strengthened glass containers, and more particularly the construction and operation of a bottom cooler in an apparatus for thermally strengthening glass containers in a glass container manufacturing line at a location intermediate the hot end and the cold end. Glass containers formed at an I.S. machine are conveyed through a special tempering Lehr that heats them uniformly to a high temperature that is short of temperatures at which they may become deformed. Subsequently, the glass containers are rapidly thermally strengthened in a cooling station in which the outer and inner surfaces including all areas of the glass containers are simultaneously cooled to a temperature below the Strain Point of the glass used in the glass containers, with the bottom coolers being used to cool the bottoms of the glass containers.
    • 更具体地,涉及用于在玻璃容器生产线中热玻璃容器生产线中的热端和冷端之间的位置热加强的装置中底部冷却器的制造和操作的装置。 在美国制造的玻璃容器 机器通过特殊的回火Lehr被输送,将它们均匀地加热到低于它们可能变形的温度的高温。 随后,在包括玻璃容器的所有区域的外表面和内表面被同时冷却到低于玻璃容器中使用的玻璃的应变点的温度的冷却站中,玻璃容器被快速热强化,底部冷却器 用于冷却玻璃容器的底部。
    • 4. 发明授权
    • Method of compensating for cutter deflection
    • 补偿刀具偏转的方法
    • US06582166B1
    • 2003-06-24
    • US09425505
    • 1999-10-22
    • Wolfgang M. StrobelRobert J. Lockhart
    • Wolfgang M. StrobelRobert J. Lockhart
    • B23C100
    • G05B19/404Y10T83/0605Y10T409/303808Y10T409/306832
    • A method of cutting planar material with a controlled cutting machine having a cutting tool with a tool tip includes performing a cutting test on various planar materials with the cutting machine under selected cutting conditions which produce deflection forces on the cutting tool due to the interaction of the cutting tool and materials so as to cause the tool tip to offset and move along deviated or offset cutting paths relative to desired cutting paths, and determining compensating offsets in order to align and coincide the actual cutting paths with the desired cutting paths A schedule of the compensating offsets to align and coincide the actual cutting paths with the desired cutting paths is established as determined by the cutting tests. The schedule is to be repeatedly used thereafter for cutting planar material having cutting conditions associated with the schedule. Planar material is cut thereafter along desired cutting paths by advancing the cutting tool and planar material relative to one another and employing the schedule of compensating offsets to control the actual cutting paths to align and coincide with the desired cutting paths when desired cutting paths and corresponding cutting conditions arise.
    • 用具有刀尖的切割工具的受控切割机切割平面材料的方法包括在切割机的各种平面材料上进行切割测试,所述切割机在选定的切割条件下,由于相互作用而在切割工具上产生偏转力 切削工具和材料,以便使工具尖端相对于期望的切割路径偏移或偏移切割路径偏移并移动,并且确定补偿偏移以便将实际切割路径与所需切割路径对准和重合。 通过切割测试确定补偿偏移以使实际的切割路径与所需的切割路径对齐并重合。 此后将重复使用该时间表来切割具有与时间表相关联的切割条件的平面材料。 然后通过使切割工具和平面材料相对于彼此前进地切割平面材料,并且使用补偿偏移的时间表来控制实际的切割路径,以在期望的切割路径和相应的切割时对准和重合所需的切割路径 情况出现。
    • 8. 发明授权
    • Anti-scald valve with shape memory alloy actuator
    • 具有形状记忆合金执行器的防烫伤阀
    • US5584432A
    • 1996-12-17
    • US434594
    • 1995-05-04
    • Robert J. Lockhart
    • Robert J. Lockhart
    • G05D23/02G05D23/00
    • E03C1/041G05D23/025
    • An anti-scald valve including a housing including a fluid flow inlet end and a fluid flow outlet end. A first valve component and a second valve component positioned in the housing between the inlet end and the outlet end. At least one of the first valve component and the second valve component allow fluid flow therethrough, wherein the first valve component includes a first surface for sealably mating with a second surface of the second valve component for cutting off fluid flow at a fluid temperature falling within a predetermined fluid temperature range. At least one of the first valve component and the second valve component is substantially flexible at a component temperature below the predetermined fluid temperature range for allowing fluid flow thereover and wherein at least one of the first valve component and the second valve component includes stiffens when said component temperature falls within the predetermined fluid temperature range for moving the first surface and the second surface into a mating position, which substantially cuts off the fluid flow.
    • 一种抗烫伤阀,包括包括流体流入口端和流体流出口端的壳体。 位于入口端和出口端之间的壳体中的第一阀部件和第二阀部件。 第一阀部件和第二阀部件中的至少一个允许流体流过其中,其中第一阀部件包括用于与第二阀部件的第二表面密封配合的第一表面,用于在流入内部的流体温度下切断流体流动 预定的流体温度范围。 第一阀部件和第二阀部件中的至少一个在低于预定流体温度范围的部件温度下基本上是柔性的,以允许流体在其上流动,并且其中当所述第一阀部件和第二阀部件中的至少一个包括刚体时, 组件温度落在预定流体温度范围内,用于将第一表面和第二表面移动到基本上切断流体流动的配合位置。