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A Study on the Mechanical Characteristics and Self-Preservation Performance of a Deployment Mechanism with a Large Exhibition Ratio during Its Gathering Process

机译:大展比展开机构展开过程中的力学特性和自保持性能研究

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摘要

In order to study the stress state and stability of a spiral tube and actuator for controlled extension and retraction (STACER) during the launching process of a satellite, finite element software was applied to establish a finite element model of STACER via the explicit dynamics analysis method. The influence of top rod’s radius on the gathering or so called packaging process of STACER was analyzed. The effects of surface friction coefficient and acceleration on the stability were studied during the gathering process. It was found that the top rod radius directly affects the gathering load and the deformation around the rivet of the STACER. When the spring reel is gathered, the friction coefficient between contact surfaces, and the acceleration, work on the stability of STACER. The stability of STACER can be maintained by a friction coefficient with small fluctuations. An unstable state occurs after the STACER is gathered when the direction of acceleration is parallel to the axial direction of the rivet. A mechanical test on the STACER is conducted to verify the reliability and accuracy of the model. The force trend is similar between the finite element result and experimental result. This work will contribute to the theoretical development for designing the radius of the top rod of the spring reel, the surface friction coefficient of the STACER and the position of the spring reel during the launch process of satellites.
机译:为了研究卫星发射过程中螺旋管和可控伸缩装置(STACER)的应力状态和稳定性,应用有限元软件通过显式动力学分析方法建立了STACER的有限元模型。 。分析了顶杆半径对STACER聚集或所谓的包装过程的影响。在收集过程中研究了表面摩擦系数和加速度对稳定性的影响。发现顶杆半径直接影响聚集载荷和STACER铆钉周围的变形。当弹簧卷轴收起时,接触面之间的摩擦系数和加速度会影响STACER的稳定性。 STACER的稳定性可以通过波动小的摩擦系数来保持。当加速度的方向与铆钉的轴向平行时,在收集STACER之后会出现不稳定状态。在STACER上进行了机械测试,以验证模型的可靠性和准确性。有限元结果和实验结果之间的力趋势相似。这项工作将有助于在卫星发射过程中设计弹簧绕线轮顶杆的半径,STACER的表面摩擦系数以及弹簧绕线轮的位置的理论发展。

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