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Developing Test Specification for Vibrating Components on Intelligent Guidance Robots Using Response Spectra

机译:使用响应光谱开发智能引导机器人振动组件的测试规范

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Random vibration and shock testing are used to identify weaknesses in products or to verify if products can survive particular mechanical environment. The procedure of developing shock and vibration test specification for vibrating components on intelligent guidance robots using response spectra is presented in this paper. Fatigue Damage Spectrum (FDS) is used to show the potential error introduced by directly calculating the Power Spectral Density (PSD) of the field measured non-Gaussian signal, and to derive a damage equivalent Gaussian signal with Mile's equation. Shock Response Spectrum (SRS) is calculated for field measured shock signal and an equivalent transient signal is synthesized using mixed sine waves. Envelope is applied to compensate for the dispersion of multiple test results. A case study is given to demonstrate the procedure.
机译:随机振动和冲击测试用于识别产品中的缺点或验证产品是否可以在特定的机械环境中存活。本文介绍了使用响应光谱在智能引导机器人上开发冲击和振动试验规范的振动和振动试验规范。疲劳损伤谱(FDS)用于显示通过直接计算场测量的非高斯信号的功率谱密度(PSD)引入的潜在误差,并通过英里的等式导出损坏等效的高斯信号。针对场测量的冲击信号计算冲击响应频谱(SRS),并且使用混合正弦波合成等效的瞬态信号。施用信封以补偿多个测试结果的分散。给出了案例研究证明了该程序。

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