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Controlling energy characteristics of power press - by energy transfer between air-hydraulic intensifier and hydraulic cylinder linked to drive connecting rods

机译:控制气动压力机的能量特性-通过气液增压器和与驱动连杆相连的液压缸之间的能量传递

摘要

In a conventional power press drive energy is normally lost in the form of heat emitted by the clutch and brake during the press working cycle. In the new system a power press for drawing operations has a hydraulic cylinder (18) linked across the two connecting rods (7a, 7b) of the press eccentric drive shafts (6a, 6b). The chambers of the cylinder are connected by way of directional control valve (19) to a pressure intensifier (28) which acts as an energy storage unit. Also connected to the high pressure side of the pressure intensifier is the hydraulic cylinder (25) for loading the draw ring (21) of the drawing tool. Under valve control the intensifier releases energy allowing hydraulic cylinder to close and accelerate the press ram at the start of the press cycle. Conversely, the cylinder returns oil to the intensifier towards the end of the cycle, thus decelerating the ram. ADVANTAGE - Reduced wear of clutch and brake. More efficient energy usage. Reduced noise.
机译:在常规的动力压力机驱动器中,能量通常以在压力机工作循环期间由离合器和制动器散发的热量的形式损失。在新系统中,用于拉伸操作的动力压力机具有一个液压缸(18),该液压缸跨过压力机偏心驱动轴(6a,6b)的两个连杆(7a,7b)连接。气缸的腔室通过方向控制阀(19)连接到增压器(28),该增压器用作能量存储单元。液压缸(25)也连接到增压器的高压侧,该液压缸(25)用于加载拉伸工具的拉伸环(21)。在阀的控制下,增压器释放能量,使液压缸在压力机循环开始时关闭并加速压力机撞锤。相反,气缸在循环结束时将油返回增压器,从而使撞锤减速。优点-减少离合器和制动器的磨损。能源使用效率更高。降低噪音。

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