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弹簧蓄能激发式旋转冲击钻井装置的研制 被引量:12
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作者 玄令超 管志川 +1 位作者 张会增 刘永旺 《石油机械》 2015年第11期18-21,共4页
旋转冲击钻井技术是在现有钻井工艺条件下提高深井和超深井机械钻速的有效途径之一.利用短螺杆马达带动冲锤产生旋转运动并产生周期性冲击载荷的新思路, 研制了弹簧蓄能激发式旋转冲击钻井装置, 同时对装置的冲击参数进行了测试试验.装... 旋转冲击钻井技术是在现有钻井工艺条件下提高深井和超深井机械钻速的有效途径之一.利用短螺杆马达带动冲锤产生旋转运动并产生周期性冲击载荷的新思路, 研制了弹簧蓄能激发式旋转冲击钻井装置, 同时对装置的冲击参数进行了测试试验.装置的上部分为高转速短螺杆,中间部分为传动和扶正部件, 下部为冲击振套, 其冲击频率为螺杆转速与冲锤齿数的乘积, 采用纯机械碰撞的方式产生和传递冲击载荷.冲击测试试验结果表明, 装置的冲击频率为37 Hz, 冲击力峰值21~32 kN, 单次载荷作用时间4 ms; 装置达到设计要求, 冲击频率和动载可预先设计并可调整, 同时具有良好的稳定性. 展开更多
关键词 旋转冲击 弹簧蓄能式 冲击器 螺杆马达 冲击性能 冲锤
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浅谈一种弹簧冲击器校准方法及其测量值的不确定度评定 被引量:1
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作者 马兴 《科技视界》 2017年第32期59-60,共2页
弹簧冲击器主要用于家用和类似电器产品的外壳、操作杆、手柄、旋钮、指示灯等进行机械强度试验。以保证产品在受到意外和非正常操作时不被损坏,保证产品安全可靠运行。本文介绍一种校准方法及其过程中分析其不确定度分量主要来源。
关键词 弹簧冲击器 不确定度评定
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Dynamic Modeling of Pedestrian Legform and Prediction of Pedestrian Injuries
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作者 Shigeru Ogawa Soma Usui Yudai Kawaguchi 《Open Journal of Modelling and Simulation》 2017年第4期241-252,共12页
Decreasing the death toll of pedestrians in traffic accidents is one of the most urgent tasks to be solved all over the world. This paper describes the prediction of pedestrian injuries for the TRL legform impactor us... Decreasing the death toll of pedestrians in traffic accidents is one of the most urgent tasks to be solved all over the world. This paper describes the prediction of pedestrian injuries for the TRL legform impactor using MATLAB. The TRL legform impactor consists of three parts: a femur, a tibia, and a ligament connecting them. The impactor was physically modelled with springs, dampers and two masses as a dynamic model. The impactor behaves in a translational and rotational motion during the collision with a vehicle. The behavior of the impactor during the crash event was captured by a high speed camera and is regarded as the four-degree-of-freedom system in terms of translational and rotational motions. Pedestrian injuries are evaluated by three physical quantities indexes: the acceleration of the tibia, both the displacement and the bending angle between the femur and the tibia. The physical model for the impactor was expressed mathematically by differential equations. In the case of modelling, the ligament connecting both the femur and the tibia in particular plays an important role. Shear forces were applied to the ligament in translational motions and the bending moments in rotational motion. Differential equations were expressed in the form of a state equation and an output equation by MATLAB. Numerical solutions were obtained by a block diagram with Simulink. As a result, it was found that the predicted injuries agree quite well with their experimented data in terms of acceleration, displacement, and the bending angle mentioned above. 展开更多
关键词 DYNAMIC MODEL spring-Mass MODEL MATLAB PEDESTRIAN INJURIES TRL Legform impactor
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基于响应面法的弹簧冲击器校准装置冲击端优化设计 被引量:4
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作者 高建卓 陈龙 +2 位作者 汪宁溪 骆昕 陈辉 《计量科学与技术》 2022年第9期40-46,共7页
为了提升弹簧冲击器校准装置的检测能力,减少碰撞过程的能量损失,以最小化冲击端结构的变形量和构件质量为优化目标,提出了基于响应面法的冲击端结构优化设计方法。优化结果表明:冲击端结构尺寸与最大变形量的关系呈非线性变化,与质量... 为了提升弹簧冲击器校准装置的检测能力,减少碰撞过程的能量损失,以最小化冲击端结构的变形量和构件质量为优化目标,提出了基于响应面法的冲击端结构优化设计方法。优化结果表明:冲击端结构尺寸与最大变形量的关系呈非线性变化,与质量的关系呈部分线性变化;摆杆冲击端结构在满足强度要求的同时,最大变形量降低了24.59%,质量减少了12.97%,兼顾高强度和轻量化的要求,证明了所提出的基于响应面曲线拟合和多目标变量优化的冲击端结构件优化设计方法的有效性。响应面曲线的优化方法在保证精度的同时提高了优化效率,为弹簧冲击器校准装置的优化提供了新路径。 展开更多
关键词 弹簧冲击器校准装置 响应面法 有限元分析 优化设计
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