• 利用纳米压入测仪测试了不同组织结构下硬度弹性

    The hardness and elastic modulus of the alloy were investigated by means of nano-indentation technology.

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  • 同时采用DSC纳米压痕仪仪器,测试薄膜的相变温度显微硬度弹性模量

    Meanwhile, the phase transition temperature, micro-hardness and elastic modulus were analyzed by DSC, nano-indenter and the other instruments.

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  • 纳米痕试验结果表明通过改变沉积负偏压C_2H_2流可以提高薄膜硬度和弹性模量

    The nano-indentation results show through changing the deposited voltage and C_2H_2 gas flux rate could increase the hardness and elastic modulus of the films.

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  • 进一步增加调制周期,两调制层之间产生共格界面破坏薄膜中的交变应力场,薄膜硬度和弹性模量也随之降低

    Further increasing modulation period leads to the emerge of incoherent interface and the destroy of alternating stress field, accompanied by the decreased mechanical properties.

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  • 研究了人工林马尾松纤维零距强度、细胞壁的纵向弹性模量硬度力学指标。

    The tensile strength, modulus of elasticity(MOE) and hardness of Pinus massoniana fibers were determined by using zero-span tension and nanoindentation technique.

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  • 该文利用原位成像纳米压痕技术研究了针叶材管细胞壁不同之间纵向弹性(MOE)硬度方面差异

    In situ imaging nanoindentation was used to characterize the differences in longitudinal Modulus of Elasticity (MOE) and hardness of different cell wall layers of softwood tracheids.

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  • 结果表明镀层较高晶镀层具有更高硬度弹性模量疲劳抗力

    The results indicate that microcrystalline deposit with low phosphorus content has higher hardness, modulus and fatigue resistance than the amorphous deposit with high phosphorus content.

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  • 金属间化合物复合作用下,复合涂层具有硬度弹性模量耐磨性耐蚀性。

    The hardness, Young's modulus, wear resistance, and corrosion resistance of the coating are higher due to the recombination action of amorphous and inter-metallic compounds.

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  • w增加复合材料弹性、抗弯强度断裂韧性增大硬度减小

    With W content increasing, the elastic module, flexural strength and fracture toughness increase, but the Vickers 'hardness decreases.

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  • 增加网络结点密度纤维硬度都会使网络弹性模量增加。

    The elastic property of the network will increase with the junction density and fiber stiffness of fiber networks. 4.

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  • 增加网络结点密度纤维硬度都会使网络弹性模量增加。

    The elastic property of the network will increase with the junction density and fiber stiffness of fiber networks. 4.

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