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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Error analysis and prototype testing of deepwater pipe flange connection tool
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Error analysis and prototype testing of deepwater pipe flange connection tool

机译:深水管法兰连接工具的误差分析与原型测试

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The key factor for underwater petroleum pipeline flange connection tool is its 20 bolts synchronous lead-in nuts. The alignment accuracy of bolts and nuts is critical for bolts lead-in nuts. In order to analyze the accuracy and design issues of the pipeline flange connection tool, the robot kinematics modeling method is adopted. Using the multi-body kinematics theory to homogeneous transformation matrix, the error model of deepwater pipe flange connection tool is established through total differential of the machinery pose transformation matrix. The error model of the tool is established by computer simulation, and the effect of the structure parameters on the bolt end pose error is analyzed. Based on the method of error matching design, the error in the deepwater pipe flange automatic connection tool is determined. Considering the specific structure of the connection tool, the adjusting mechanism for bolt angle error is also designed. Therefore, the hardware compensation of bolt angle error is achieved successfully, and it improves the positioning accuracy of the bolt end. Tests on bolt lead-in prototype are conducted. The experimental results show that the bolt could successfully lead into the nut and confirm the accuracies of the error model and design of the pipeline flange connection tool.
机译:水下石油管道法兰连接工具的关键因素是其20个螺栓同步导入螺母。螺栓和螺母的对准精度对于螺栓引入螺母至关重要。为了分析管道法兰连接工具的精度和设计问题,采用了机器人运动学建模方法。利用多体运动学理论对均质化转换矩阵进行了分析,通过机械姿态转换矩阵的总微分,建立了深水管法兰连接工具的误差模型。通过计算机仿真建立了工具的误差模型,并分析了结构参数对螺栓端位误差的影响。根据误差匹配设计方法,确定深水管法兰自动连接工具中的误差。考虑连接工具的具体结构,设计了螺栓角度误差的调节机构。因此,成功实现了螺栓角度误差的硬件补偿,提高了螺栓端的定位精度。对螺栓引入原型进行了测试。实验结果表明,螺栓可以成功地插入螺母,并证实了误差模型和管道法兰连接工具设计的准确性。

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