损伤累积时金属结构声学参数的研究

V. Erofeev, A. V. Ilyahinskii, E. Motova, V. Rodyushkin, A. V. Shekoyan
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引用次数: 0

摘要

在使用无损控制方法的工作中,要考虑确定可接受的耐久性或安全资源的问题。结果表明,设计监控程序可以表现为:确定产品材料承受低运行载荷的原始状态零区;此外,使用无损控制方法,测量声学参数(不拆卸产品)。,如弹性声波的速度、非线性声学参数、双频感应速度差等;对产品的金属进行声波扫描,在有显著载荷和信号电压的区域,导致密集的损伤积累(金属的破坏导致裂纹);定义区域“N”,其中取值的金属状态参数表示声学参数(弹性波速度、非线性声学参数、双频感应速度差)相对于零区域同一参数的差值超过既定水平。建立了弹波发射端和接收端在固定基上不同测深频率下的弹性瑞利波延迟(速度)差异与塑性变形存在的规律,以及安全资源时间内非线性声学参数的变化规律;提出利用所观察到的事实作为控制由于工业结构上的塑性变形而导致的材料极限状态的原则的可能性。在此基础上,提出了一种确定生产设施结构材料技术条件的工程方法,该方法允许建立三个运行阶段:可靠运行模式;受控运行模式和临界运行模式。
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ON THE ACOUSTIC PARAMETERS OF METAL CONSTRUCTIONWHEN DAMAGE IS ACCUMULATED
In the work with the use of nondestructive control methods, the issues of determining acceptable durability or safe resource are considered. It is shown that the design monitoring procedure can be presented as follows: determines the original state zero zone, where the material of the product was subjected to low operational loads; further, with the use of nondestructive control methods, the acoustic parameter is measured (without disassembling the product)., such as the speed of elastic acoustic waves, nonlinear acoustic parameter, difference of velocities with twofrequency sensing, etc.; acoustic scanning of the product's metal is performed, in areas where there have been significant loads, signoff voltages, leading to an intensive accumulation of damage (the destruction of metal leading to cracks); defined zone “N” where the metal state parameter, for which the value is taken, characterizing the difference of the acoustic parameter (the speed of elastic waves, nonlinear acoustic parameter, the difference in velocity in twofrequency sensing) relative to the same parameter in the zone of zero exceeds the established level. The regularities established in the work linking the presence of plastic deformation with the difference in the delays (velocity) of elastic Rayleigh waves at different sounding frequencies at a fixed base between the emitter and the receiver of elastic waves, as well as the behavior of a nonlinear acoustic parameter during the safe resource time, suggest the possibility of using the observd fact as a principle for controlling the limiting state of the material due to plastic deformations on industrial structures. Based on the proposed approach, an engineering methodology for determining the technical condition of the material of the structures of production facilities is proposed, which allows to establish three stages of operation: the reliable operation mode; the controlled operation mode and the critical operation mode.
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