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    • 1. 发明授权
    • Lubricating apparatus
    • 润滑装置
    • US3862544A
    • 1975-01-28
    • US22157772
    • 1972-01-28
    • MCNEIL CORP
    • CALLAHAN JAMES JSNOW JOHN PROCTER
    • F01M1/04F16N7/30F01B7/18F01B31/10
    • F16N7/30F01M1/04
    • Lubricating apparatus for automatically providing a constant supply of lubricant to air operated tools during the operation of such tools, including an expansible and contractible pump chamber having an intake port for connection with a supply of lubricant and a delivery port for delivering lubricant from the pump chamber to the tool being lubricated. The apparatus includes a main air passage for connection with a source of air under pressure for driving the tool, and a normally closed control valve controls flow through the main air passage and is movable to an open position to permit flow through the air passage in response to a pressure drop between the upstream and downstream sides of the valve caused by starting the tool into operation. Means operable in response to air flow through the main passage causes the pump chamber to alternately expand and contract and pump lubricant to the working parts of the tool so long as the tool is in operation. The cycle of the pump can be selectively adjusted to increase or decrease the rate of flow of lubricant to the tool.
    • 润滑装置,用于在这种工具的操作期间自动提供润滑剂供给气动工具,包括具有用于与润滑剂供应连接的进气口的可膨胀和可收缩的泵室,以及用于从泵室输送润滑剂的输送口 到被润滑的工具。 该装置包括用于与用于驱动工具的压力下的空气源连接的主空气通道,并且常闭控制阀控制通过主空气通道的流动并且可移动到打开位置以允许响应地流过空气通道 到通过启动工具进行操作而导致的阀的上游侧和下游侧之间的压降。 能够响应于通过主通道的空气流动而可操作的装置使得泵室在工具运行时交替地膨胀和收缩并将润滑剂泵送到工具的工作部件。 可以选择性地调节泵的循环以增加或降低润滑剂流向工具的速度。
    • 3. 发明授权
    • Method and apparatus for controlling the cure of a rubber article
    • 用于控制橡胶制品固化的方法和装置
    • US3819915A
    • 1974-06-25
    • US39854173
    • 1973-09-17
    • MCNEIL CORP
    • SMITH T
    • B29C35/00B29C33/02B29C35/02B29D30/06G06F19/00G06F15/46B29H5/02
    • B29D30/0601B29C35/0288B29C2037/903B29D2030/0677B29K2021/00B29L2030/00
    • Disclosed is an apparatus and method for controlling the cure of a rubber compound according to the cross-link concentration thereof. The method and apparatus recognizes that most cures can be divided into two distinct reaction periods, an induction period where little, if any, cross-linking of the molecular structure occurs and a cross-linking period where the majority of the chemical vulcanization reaction occurs, and controls the cure accordingly. Based on signals from a temperature sensitive probe embedded in the rubber, the induction time period is calculated using the Arrhenius equation and a known activation energy. This calculated induction time is compared to a predetermined value and upon a match, calculation of the percent cross-link concentration is initiated using a known activation energy and compared with a predetermined percentage cross-link value. When the rubber compound is cured to the desired percentage of crosslink concentration, the curing process can be terminated.
    • 公开了根据其交联浓度控制橡胶化合物固化的装置和方法。 该方法和装置认识到,大多数固化可以分为两个不同的反应时段,其中发生分子结构的交联很少(如果有的话)的诱导期和发生大部分化学硫化反应的交联期, 并相应地控制治愈。 基于嵌入在橡胶中的温度敏感探针的信号,使用Arrhenius方程和已知的活化能计算诱导时间。 将该计算的诱导时间与预定值进行比较,并且在匹配时,使用已知的活化能量开始计算百分比交联浓度并与预定百分比交联值进行比较。 当橡胶化合物固化至所需的交联浓度百分比时,可以终止固化过程。
    • 4. 发明授权
    • Collision energy absorber
    • 冲击能量吸收器
    • US3819219A
    • 1974-06-25
    • US30880872
    • 1972-11-22
    • MCNEIL CORP
    • PAMER K
    • B60R19/32B60R19/08F16F9/10
    • B60R19/32
    • A collision bumper connected to one of two relatively movable rigid parts of a pair of energy absorbing devices, the other parts of which are connected to the frame of a vehicle. The parts of the respective energy absorbing devices connected to the vehicle frame comprises rigid plate-like members provided with apertures through which rod-like portions of the parts connected to the bumper projects with a close but free sliding fit. Rigid tubular-like members extend from the bumper sides of the platelike members and surround flexible tube-like members having their one ends sealed about the apertures in the platelike members and their other ends sealed to the rod-like portions. The ends of the rigid parts of the devices opposite to the ends connected to the bumper are fixed to the bottom of cup-like relatively heavy tube like elastic members enclosed in cup-like rigid members and having their open ends sealed about the apertures to the platelike members. The open ends of the rigid cup-like members normally abut against the plate-like members and the relative depths of the elastic and cup-like members are such that the elastic members are under tension. The tube-like and elastic members are filled with liquid and the rod-like portions have axially extending grooves of decreasing cross section to meter the flow of fluid from the bumper side of the plate-like members to the other.
    • 碰撞保险杠连接到一对能量吸收装置的两个相对移动的刚性部件中的一个,其另一部分连接到车辆的车架。 连接到车架的相应的能量吸收装置的部件包括设置有孔的刚性板状构件,连接到保险杠的部件的杆状部分通过孔突出,并且具有紧密但自由的滑动配合。 刚性的管状构件从板状构件的保险杠侧延伸并且围绕柔性管状构件,其一端围绕板状构件中的孔密封,并且其另一端被密封到杆状部分。 与连接到保险杠的端部相对的装置的刚性部分的端部固定到杯状相对较重的管的底部,如同封闭在杯状刚性构件中的弹性构件,并且其开口端围绕孔密封到 板状构件。 刚性杯状构件的开口端通常抵靠板状构件,并且弹性和杯状构件的相对深度使得弹性构件处于张力下。 管状和弹性部件填充有液体,并且棒状部分具有横截面减小的轴向延伸的凹槽,用于测量流体从板状部件的保险杠侧流到另一个。
    • 6. 发明授权
    • Lubricant injection system
    • 润滑剂注射系统
    • US3609066A
    • 1971-09-28
    • US3609066D
    • 1969-11-13
    • MCNEIL CORP
    • WEGMANN JEROME B
    • F04B7/04F04B9/107F04B9/117F04B9/127F04B23/02F16N27/00F04B17/02F16N7/34
    • F04B23/023F04B7/04F04B9/107F04B9/1176F04B9/127F16N27/00
    • A lubricant supply line from a lubricant pump supplies a number of serially connected injectors, each of which has a connection with a bearing to be lubricated. A timing arrangement cyclically starts and stops the pump to supply and to release pressure in the lubricant supply line. Each injector is constructed so that, when the inlet pressure thereto rises, an accurately measured amount of lubricant is forced to its bearing connection and the risen inlet pressure is serially applied to the next injector in the series so that it subsequently forces a like measured amount of lubricant to its bearing connection. An accumulator is connected to the outlet of the last injector and becomes operative after the last injector has functioned. Thereafter the pump stops to release built-up pressure which causes serial recharging of the injectors to ready them for accurately measured lubrication during the next cycle. During this recharging event, only the first injector returns a relatively small amount of lubricant to the pump and each injector receives its recharge from the next one, except the last one which receives its recharge from the accumulator. The accumulator also serves as a malfunction indicator for the system.