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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Modeling and computer simulation of ultrasonic/sonic driller/corer (USDC)
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Modeling and computer simulation of ultrasonic/sonic driller/corer (USDC)

机译:超声波/超声波钻机/钻孔机(USDC)的建模和计算机仿真

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Simulation and analytical models for the ultrasonic/sonic drill/corer (USDC) are described in this paper. The USDC was developed as a tool for in-situ rock sampling and analysis in support of the NASA planetary exploration program. The USDC uses a novel drive mechanism, which transfers ultrasonic vibrations of a piezoelectric actuator into larger oscillations of a free-flying mass (free-mass). The free-mass impact on the drill bit creates a stress pulse at the drill tip/rock interface causing fracture in the rock. The main parts of the device (transducer, free-mass, bit, and rock) and the interactions between them were analyzed and numerically modeled to explore the drive mechanism. Each of these interactions is normally described by a time-dependent 2- or 3-D model involving slowly converging solutions, which makes the conventional approach unsuitable for USDC optimization studies. A simplified integrated model using tabulated data was developed to simulate the operation of the USDC on desktop PC and successfully predicted the characteristics of the device under a variety of conditions. The simulated results of the model and the experimental data used to verify the model are presented.
机译:本文介绍了超声/声波钻/钻孔机(USDC)的仿真和分析模型。 USDC被开发为用于原位岩石采样和分析的工具,以支持NASA行星勘探计划。 USDC使用一种新颖的驱动机制,该机制将压电致动器的超声波振动转换为自由飞行质量(自由质量)的较大振动。对钻头的自由质量冲击在钻头/岩石界面处产生应力脉冲,从而导致岩石破裂。对设备的主要部分(换能器,自由质量,钻头和岩石)及其之间的相互作用进行了分析和数值建模,以探讨驱动机理。这些相互作用中的每一个通常由涉及缓慢收敛解的时间相关2或3维模型来描述,这使常规方法不适用于USDC优化研究。开发了一种使用列表数据的简化集成模型,以模拟USDC在台式PC上的操作,并成功预测了各种条件下设备的特性。给出了模型的仿真结果以及用于验证模型的实验数据。

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