Force Analysis for Working Unit of Mini Tracked Truck

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Abstract:

Mini tracked truck’s working unit is a device constrained by the dual parallelogram. This unit can make the goods remain translational during the process of loading and unloading so as to ensure the work process safe and reliable. Because the device is consisting of two parallelograms in series and using the rail to constrain its trajectory, the institutional force is very complicated. Therefore, this article uses statics method to analyze the force that acts on the working unit, establish the mechanical equations of the main arm cylinder and the lifting arm cylinder. The article respectively gives the simulation of the mechanical properties of the main arm cylinder during the loading process and the lifting arm cylinder during the lifting process basing on MATLAB. Research result provides a theoretical basis for the design of this type of working unit.

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310-316

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Jang shi hong, MATLAB language and mathematical experiments, science press, (2007).

Google Scholar

[2] Shen wen qing, Virtual optimization design and finite element analysis of loader working device, Jilin University, (2005).

Google Scholar

[3] Wang Q Y, Zou H, Zhao M Y, et al. Design and kinematics of a parallel manipulator for manufacturing, Annals of the CIRP. (1997).

Google Scholar

[4] ADAMS/View Version10. l. . (2000).

Google Scholar

[5] VPang G Gary, Definition clarification and review on virtual prototyping, Proceedings of the 2001 ASME Design Technical Conference and Computer sin Engineering Conference, DETC2001/CIE21265. (2001).

Google Scholar

[6] Wang Zhen, Loader working device performance analysis and the comprehensive optimization design, Jilin University, (2011).

Google Scholar

[7] Zhou jian ping, Mechanical optimization design based on MATLAB, Journal of huangshi institute of technology, (2005).

Google Scholar