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1)  indentation response
压痕响应
1.
Effects of indenter diameter and relative density of aluminum foam on the indentation response,indentation hardness,energy absorbing capability and energy absorbing efficiency were investigated.
采用圆柱形平压头对闭孔泡沫铝进行了压痕试验,研究了压头直径、泡沫铝相对密度及边界条件对压痕响应、压痕硬度、吸能特性等的影响,并与单向压缩试验结果进行了对比。
2)  Indentation Stress
压痕应力
3)  indentation-strain method
压痕应变法
1.
The indentation-strain method,as a new technique used for residual stress measurment,has got more and more attention due to its feasibility and accuracy.
压痕应变法由于其测试的方便性和准确性而受到越来越多的重视。
2.
The experimental calibration is often needed when the residual stresses are measured with indentation-strain method or blind-hole drilling method.
用压痕应变法或盲孔法测量残余应力时,均需事先进行应力应变曲线的标定。
4)  pressure response
压力响应
1.
Streamline numerical well-testing interpretation model and pressure response for partially perforated wells
部分射开井流线数值试井解释模型及压力响应
2.
The methods include pressure response algorithms for a random multiple deviated well system with random dip,random output changes and array modes and an algorithm of nonlinear programming for deriving well test parameters,which are appropriate for multiple solution characters of multiple deviated well system.
本文提出一套斜井多井系统中单井测试曲线的试井分析方法,其中包括任意倾斜角度、任意变化产量、任意排列形式的任意多口斜井的多井系统压力响应的算法和适合于斜井多井系统多解特征的求解试井参数的非线性规划算法。
3.
On the basis of the research of Ozkan,et al,a practical method for calculating the pressure response of deflecting wells is put forward,and its calculating efficiency is 10 times higher than that of the numerical integrati.
针对上下边界封闭或定压的水平方向无界的板状油藏中,斜井试井解释数值积分计算量大、实用性差的问题,在Ozkan等人的研究基础上,提出了一种实用的计算斜井压力响应的方法,计算效率提高一个数量级。
5)  pressure-response
压力-响应
6)  piezoresponse
压电响应
1.
Domains in-plane and out-plane were detected using piezoresponse in longitudinal and transverse directions, respectively.
应用扫描力显微镜(SFM)的压电响应模式观测未经抛光处理的PZT陶瓷片的电畴结构,用纵向压电响应信号和侧向压电响应信号获得PZT陶瓷材料三维电畴结构。
补充资料:压痕


压痕
rolled pit

yahen压痕(r olled pit)钢材表面缺陷之一,系产品表面上被外物压成的局部凹坑,呈周期性单个或多个断续分布。一般产品表面允许有深度不超过标准规定的压痕。 产生原因是:(1)周期性压痕是由于成品孔或成品前孔、矫直辊、出口辊动导板(见导板)、导辊等粘有凸起物;(2)异物掉在轧件上,经轧后脱落;(3)产品在运送、保管过程中与硬物碰压或产品本身相互格压。 防止和消除办法有:(l)生产中定期检查轧件、轧糟、矫直辊和辊动导板,发现问题及时处理;(2)轧制时防止异物掉在轧件上;(3)吊运产品要平稳,产品包装要平齐,捆扎要牢固,堆放底脚要垫平。 (刘肾才)
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