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基体材料的英文

  • basis material
  • body material
  • parent material

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  • 例句与用法
  • The mechanical properties of carbon - phenolic depends on the properties of each phase in it , and is evidently influenced by the manufacturing progress , while micro - mechanics provides the way to calculate the macro - mechanical properties of composites according to the properties and geometries of each phase in it , this method was utilized to study the constitutive relation and the characteristic of stress wave propagating in carbon / phenolic composite in this paper , the main progress follows as : the solidification technique of phenol - formaldehyde resin ( pf resin ) had been studied , and then the specimens of solidified pf resin were prepared successfully for study on the constitutive relation of solidified pf resin
    碳酚醛的力学性能与各相的力学性能及体积百分比相关,并受其制备工艺的影响很大,而细观力学是以基体和增强相的实测力学性能数据和两相之间的几何关系为依据来计算复合材料的宏观力学性能,因此,本文采用细观力学方法研究了碳酚醛的本构关系及应力波传播特性。主要进展如下:为了研究碳酚醛的基体材料? ?氨酚醛树脂的本构关系,完成了氨酚醛树脂的固化工艺研究,成功地制备了固化氨酚醛试件。
  • Abstract : the character of electrode material is an important factor affecting and limiting the structure and property of batteries . thereby , the main types and their features , fundamental properties , and preparation methods of the porous substrate materials for battery electrodes was simply introduced , so as to supply the clues for improving the technologies of producing these materials , and to strengthen the necessity of studying their properties and the property relationships
    文摘:简要介绍了电池用多孔金属电极基体材料的主要类型及其特点、基本性能要求和制备方法,旨在提供改善该材料制备工艺的线索和强化其性能及性能关系研究的必要。
  • The core of intelligence system is soft computing and this paper studies the applications of sc for optic fiber smart structure assessment . main works and creative conclusions are presented as follow : 1 . optic fiber sensors and actuators are united with the composite materials to form the smart structures , therefore it regulate itself to fit the surrounding
    所以本文主要讨论了软计算方法在光纤智能结构健康监测中的应用,主要的工作有以下几点:第一,光纤智能结构是将具有仿生命功能的光纤传感器和致动器与基体材料结合,使结构可以自己调整结构参数以适应外界变化。
  • Based on the mechanical properties test for six kinds of resin and seven kinds of composites , the epoxy 6101 - " 70 " system with outstanding performance is selected as matrix material . and with the investigation on high strength s - 2 roving / epoxy , e - fiber / epoxy and hybrid / epoxy system , the e - fiber / epoxy system is selected out optimistically
    文中对六种基体树脂和七种复合材构料进行了力学性能测试,优选出各项性能较优的环氧6101 - “ 70 ”酸酐体系为基体材料;并通过对高强s - 2纱环氧体系、 e -纤维环氧体系和混杂环氧体系三种体系性能的研究,优选出e -纤维环氧体系。
  • Although numerical methods have frequently been used in the study of frc , theoretical analyses of such test methods as pull out tests and single fiber fragmentation tests , seemingly simple , remain to be challenging problems . problems arise when other factors are considered in connection with the various numerical models . these factors include nonlinearities in the properties and / or geometries of the materials , influences of such environmental conditions as temperature ( which is also to be studied in the present work )
    本论文正是针对以往研究中的不足,在对纤维增强复合材料破坏问题进行数值模拟的研究中,综合考虑了纤维和基体材料的非线性效应、纤维和基体材料受外载发生大变形时的几何非线性,以及纤维基体之间界面脱粘时接触单元的非线性效应。
  • So this question must be solved at first . a variety of factors which influence cte mismatch induced thermal stresses such as fiber array , temperature dependent material properties , composites fabrication temperature and pressure has been discussed . on the other hand , the temperature gradient induced thermal stresses is also analysed and factors such as heat treatment conditions , composites fabrication temperature and pressure to influence the stresses are investigated
    本文首先利用ansys模拟基体材料分别处于理想弹性应力状态和理想弹塑性应力状态时,各种因素诸如纤维排布模式、模量等性能参数是否随温度变化以及复合材料制备温度和压力对热膨胀系数不匹配诱导热应力的影响;另外,我们也对温度梯度诱导热应力进行了一定的研究,分析了各种热处理工艺以及材料制备温度、压力对它的影响。
  • The paper introduces that under special technology condition , nona material infiltrates through matrixes of machinery parts to refine crystal grains , increase matrix tenacity , strength and hardness , reduce friction factors and high performance and long lifetime machinery parts are manufactured
    本文介绍在特定的工艺条件下,将纳米材料渗入到机械零件的基体中,使基体材料晶粒细化,韧性增加,强度增加,硬度增加,磨擦因数降低,从而制造出了高性能长寿命的机械零件。
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Last modified time:Sat, 16 Aug 2025 00:29:56 GMT

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