By Hun Guo, Zuo Dunwen, Tang Guoxing

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We take the pulling force of the SMA spring gives out as F0. For pole 1 we know: F1=F0/sin α (1) For pole 2, we also know: F1*L2*cos α=F2*L3 (2) So: F2=F0*L2/(L3*tan α) (α≤450 ) (3) From the formula (3), F2 is not relative with L1 and in order to cut the cost we can keep pole 1 as short as possible. Besides, we can heighten the ratio of L2 to L3 and minish α. 7 the calculation schematic diagram Conclusion A new design of clamping device with memory alloy, orientation disc and telescopic pole is introduced, which is driven by Ni-Ti alloy which has a great capability.

Numerical simulation of FEA has been often used for bending resilience automatic compensation instead of edge resilience of drawn part. This paper has studied the object of automobile cover panel through comparison of captured contour by the analysis of PAM-STAM software. From captured line of contour of relative position of part, contour geometry obtained by calculation of part resilience, can be compared with designed geometry, to judge whether the error between both geometries meets the design need.

In order to reduce cost, they are connected with weding. Pole 2 is used as a lever and the fixed hole is shown, so the pole 2 can’t be rotational. 3. When pole 3 reaches the given angle, it can be fixed with pole 2 through the several hinges. A “Z” shape pole is welded with the disc. At the right part of the “Z” shape pole, it is empty to hold the telescopic pole. The telescopic pole can move back and forward in the “Z” pole and orientated by the adjusting the hinges. 1(a), Pole 4 is designed as Fig 4(a).

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