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基于多元高斯声束模型的圆柱体超声检测声场仿真
引用本文:郭文静,陈友兴,金永,王召巴.基于多元高斯声束模型的圆柱体超声检测声场仿真[J].应用声学,2013,32(5):354-360.
作者姓名:郭文静  陈友兴  金永  王召巴
作者单位:中北大学 电子测试技术国家重点实验室,中北大学 电子测试技术国家重点实验室,仪器科学与动态测试教育部重点实验室,中北大学 电子测试技术国家重点实验室,仪器科学与动态测试教育部重点实验室,中北大学 电子测试技术国家重点实验室,仪器科学与动态测试教育部重点实验室
基金项目:国家自然基金项目(61201412),山西省科技攻关项目(20110321029),山西省青年科技研究基金(2012021011-5)。
摘    要:为了提高圆柱体缺陷检测的准确性,需了解其超声声场分布。针对圆柱体实际检测的要求,本文采用超声水浸检测法。通过多元高斯声束模型分别模拟了实心圆柱体及空心圆柱体中的辐射声场,计算仿真了垂直入射与倾斜入射至圆柱体时的声场,实现了检测声场的可视化。通过计算得出仿真结构与实际理论相符,表明本论文的方法能够应用在圆柱体结构超声声场仿真中。

关 键 词:圆柱体    声场仿真    水浸法    多元高斯声束
收稿时间:2013/4/25 0:00:00
修稿时间:2013/8/23 0:00:00

Simulation of the ultrasonic inspection of sound field of the cylinder based on multi-gaussian beam model
GUO Wen Jing,CHEN You Xing,JIN Yong and WANG Zhao Ba.Simulation of the ultrasonic inspection of sound field of the cylinder based on multi-gaussian beam model[J].Applied Acoustics,2013,32(5):354-360.
Authors:GUO Wen Jing  CHEN You Xing  JIN Yong and WANG Zhao Ba
Institution:National Key Laboratory for Electronic Measurement Technology,North University of China,National Key Laboratory for Electronic Measurement Technology,Key Laboratory of Instrumentation Science,National Key Laboratory for Electronic Measurement Technology,Key Laboratory of Instrumentation Science,National Key Laboratory for Electronic Measurement Technology,Key Laboratory of Instrumentation Science
Abstract:In order to improve the accuracy of the cylinder defect detection, it is necessary to understand the ultrasonic sound field distribution.In view of the cylinder actual testing requirements,this paper adopts immersion testing.Through a multi-Gaussian beam model respectively to simulate the solid cylinder and hollow cylinder in the radiation sound field. Computational simulation of sound filed of vertical incidence and oblique incidence to cylinder,and realizing the visualization of detection of soung field.Calculated the structure of simulation accords with the actual theory, indicates that the method of this paper can be used in the cylinder structure ultrasonic sound field simulation.
Keywords:cylinder    sound  field simulation    immersion  testing  multi-Gaussian  beam
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