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    • 5. 发明申请
    • Crank Gear for a Reciprocating Compressor
    • 用于往复式压缩机的曲轴齿轮
    • US20080276737A1
    • 2008-11-13
    • US10596576
    • 2004-12-06
    • Nicola CampoSimone PratesiFranco Graziani
    • Nicola CampoSimone PratesiFranco Graziani
    • F16H21/18
    • F04B39/0022F02B75/065F02B75/24F04B27/02Y10T74/18184
    • Crank gear (10) for a reciprocating compressor of the type equipped with at least one module which has two lines with two opposite cylinders. The crank gear is suitable for constraining the two cylinders to a crankshaft (20), so as to align the two cylinders, opposite each other with respect to an axis (21) of the shaft (20). The crank gear (10) is equipped with two rods (35), a series of connecting rods (30) and two cross heads (40) and (50). The series of identical connecting rods (30) is symmetrically positioned with respect to the alignment axis (25) of the two cylinders and furthermore the overall barycentre of the series of connecting rods lies on the axis (25) and on the axis (21) of the shaft (20) so that the whole of the shaft (20) is both statically and dynamically balanced.
    • 用于具有至少一个模块的类型的往复式压缩机的曲柄齿轮(10),其具有两个具有两个相对气缸的管线。 曲柄齿轮适于将两个气缸约束到曲轴(20),以使两个气缸相对于轴(20)的轴线(21)彼此相对对准。 曲柄齿轮(10)配备有两个杆(35),一系列连杆(30)和两个十字头(40)和(50)。 一系列相同的连杆(30)相对于两个气缸的对​​准轴线(25)对称地定位,此外,一系列连接杆的整体重心位于轴线(25)和轴线(21)上, 的轴(20),使得整个轴(20)都是静态和动态平衡的。
    • 7. 发明授权
    • Method of determining fuse parameters for a mechanical fuse in a gas compressor
    • 确定气体压缩机中机械保险丝熔丝参数的方法
    • US07380452B1
    • 2008-06-03
    • US11680017
    • 2007-02-28
    • Hamid Reza SarsharVinh K. DoSimone PratesiNicola CampoJeffrey Raynal
    • Hamid Reza SarsharVinh K. DoSimone PratesiNicola CampoJeffrey Raynal
    • G01M19/00
    • F04B49/10
    • A method of determining fuse parameters in a reciprocating gas compressor ensures a safe failure upon exceeding an overload limit. Stresses and bolted joint behavior for critical components in compressor running gear are evaluated using a finite element analysis. Capabilities of the critical components during an overload event are evaluated using a propagation and variances tool. The capabilities of the critical components are compared against overload conditions. At least one of an optimal fuse location and a fuse geometry are determined according to the comparison to establish a safe failure point upon exceeding the overload limit. With a mechanical fuse defining a failure point, critical compressor components can be protected from damage, and personnel can be protected from risk of a gas leakage.
    • 在往复式气体压缩机中确定保险丝参数的方法确保超过过载极限时的安全故障。 使用有限元分析评估压缩机运行装置关键部件的应力和螺栓连接行为。 在过载事件期间关键组件的能力使用传播和方差工具进行评估。 将关键部件的功能与过载条件进行比较。 根据比较确定最佳熔丝位置和熔丝几何形状中的至少一个,以在超过过载极限时建立安全故障点。 通过定义故障点的机械保险丝,可以保护关键的压缩机组件免受损坏,并保护人员免受气体泄漏的危险。