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COMPREHENSIVE PERFORMANCE TEST AND DEBUGGING EXPERIMENT DEVICE FOR ROTARY DRILLING RIG AND EXPERIMENT METHOD

机译:旋转钻机和实验方法的综合性能测试与调试实验装置

摘要

A comprehensive performance test and debugging experiment device for a rotary drilling rig and an experiment method. A dynamometer motor (2) in the experiment device is arranged on a foundation; a torque transmission gear box (10) is fixed on a gear box anchoring plate (13) by means of a gear box adapter plate (12); a speed increasing corner gear box (6) is mounted on the torque transmission gear box (10), and the speed increasing corner gear box (6) is connected to the dynamometer motor (2) by means of a transmission shaft (5), a torque sensor (4) and a motor coupler (3) in sequence; and a driving sleeve (8) is mounted in a connecting shaft (9) of the torque transmission gear box (10), a lower end of the driving sleeve (8) is connected to a hydraulic load oil cylinder (18) by means of a slewing bearing I (14), a slewing support (15) and a tension and pressure sensor (17), the slewing support (15) is fixed in the foundation, and the hydraulic load oil cylinder (18) is connected to a hydraulic station by means of a hydraulic pipeline. The tension and pressure sensor (17) and a load oil cylinder pressure control valve in the hydraulic station are connected to a computer software control system; the torque sensor (4) is connected to the computer software control system; and the dynamometer motor (2) is connected to a distribution room power grid and a water-cooled resistance box in parallel. The control can be made more accurate by using the device, and the device can simulate the actual working condition and has stronger comprehensive data analysis capability.
机译:旋转钻机的综合性能测试与调试实验装置及实验方法。实验装置中的测功机电动机(2)布置在基础上;扭矩传动齿轮箱(10)通过齿轮箱适配器板(12)固定在齿轮箱锚固板(13)上;速度增加角齿轮箱(6)安装在扭矩传动齿轮箱(10)上,并且速度增加角齿轮箱(6)通过传动轴(5)连接到测功机马达(2),扭矩传感器(4)和序列的电动机耦合器(3);并且驱动套筒(8)安装在扭矩传递齿轮箱(10)的连接轴(9)中,驱动套筒(8)的下端通过装置连接到液压负载油缸(18)一个回转轴承I(14),回转支撑件(15)和张力和压力传感器(17),所述回转支撑件(15)固定在基础上,并且液压载荷油缸(18)连接到液压借助液压管道。液压站中的张力和压力传感器(17)和负载油缸压力控制阀连接到计算机软件控制系统;扭矩传感器(4)连接到计算机软件控制系统;测功机马达(2)并联连接到分配室电网和水冷电阻箱。通过使用该设备可以更准确地进行控制,并且设备可以模拟实际工作状态并具有更强的综合数据分析能力。

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