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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Fabrication and Characterization of a Low-g Inertial Microswitch With Flexible Contact Point and Limit-Block Constraints
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Fabrication and Characterization of a Low-g Inertial Microswitch With Flexible Contact Point and Limit-Block Constraints

机译:具有柔性接触点和限制块约束的低克惯性微动开关的制造与表征

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摘要

A novel contact-enhanced low-g inertial microswitch has been proposed and fabricated by surface micromachining technology in this paper. A novel segmental circle spring has been designed in the low-g inertial switch, which can decrease its stiffness compared with traditional semicircle spring. The dynamic response of the microswitch is simulated by ANSYS software, which has estimated its threshold acceleration and holding time. The vibrations of proof mass under the applied overload acceleration in the sensitive direction and the opposite direction are both simulated and analyzed, which demonstrates that the rebound of proof mass can be restrained effectively by the introduced limit blocks. The fabricated prototype has been tested by a dropping hammer system. The test results indicate that the threshold acceleration of fabricated inertial switch is ∼25g with holding time ∼650 μs. The overload acceleration of 80g, 120g have been applied on the fabricated prototype, and the test results indicate that the spurious trigger have been eliminated due to the limit blocks, which is in agreement with the simulation results. The acceleration of 100g is applied to the tested inertial microswitch with and without limit block in the opposite sensitive directions, respectively. The test result verifies the function of limit blocks.
机译:本文提出了一种新型的接触增强型低重力惯性微动开关,并通过表面微加工技术进行了制造。低重力惯性开关中设计了一种新颖的扇形圆形弹簧,与传统的半圆形弹簧相比,它可以降低其刚度。微型开关的动态响应通过ANSYS软件进行仿真,该软件已估算出其阈值加速和保持时间。仿真和分析了在施加的过载加速度下,质量块在敏感方向和相反方向上的振动,这表明通过引入限制块可以有效地抑制质量块的反弹。制作的原型已通过落锤系统进行了测试。测试结果表明,所制造的惯性开关的阈值加速度约为25g,保持时间约为650μs。在制造的样机上施加了80g,120g的过载加速度,测试结果表明,由于限制块而消除了虚假触发,这与仿真结果相符。 100g的加速度分别施加到经过测试的惯性微动开关上,分别在相反的敏感方向上带有和不带有限制块。测试结果验证了限位块的功能。

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