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结合强度

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And the adhesive strength of the coating on the Ti-based cermet was higher than that on the hardmetal.

Ti基金属陶瓷的涂层结合强度高于硬质合金基体的涂层结合强度

Some contri butions have been obtained as follows: 1 Bonding strength of hard coatings is suggested to be evaluated by cyclic loading method.

膜基界面结合强度是表面涂层最基本的问题之一,良好的结合强度是保证涂层得以发挥作用的先决条件,对于工模具上的硬质涂层,膜基结合强度尤为重要。

The factors affecting the adhesion strength of Fe-Mn alloy electrodeposit to the substrate were investigated with the consideration of pretreatment, process parameter and post-treatment.

镀层的结合强度是修复机械零部件的关键指标,本文研究了Fe-Mn合金镀前处理、施镀工艺镀后处理等因素对镀层结合强度的影响及其作用机理。

After they were implanted in animal femora, the bone bonding strength could come up to more than 30MPa after 6 weeks.

在植入体内后,骨结合强度在6内即达30MPa以上,远高于其他对照组的骨结合强度

Finally, we used scratch test to measure the adhesion of nanometer amorphous diamond film on pure ti and co-cr alloys substrates.

采用薄膜结合强度测试仪测试镀膜后试件的膜/基结合强度

The results in this paper are concluded as follows:(1) Rolling contact fatigue has been used to examine the interfacial reaction products and study the mechanism of ion beam intermixing effect on the adhesion of Cr-N coating on steel by IBAD.

对多次冲击条件下薄膜的失效抗力及其与薄膜力学性能之间的关系进行了初步探讨,得到如下结果:(1)用滚动接触疲劳法检测离子轰击导致的界面反应产物和研究离子束共混对钢基体上IBAD沉积Cr-N薄膜结合强度的影响本质,结果表明,滚动接触疲劳能有效地分析界面最薄弱位置和评估界面反应产物,滚动接触疲劳引起的剥落可作为研究界面反应产物对结合强度影响的根据。

College of Economics and Business Administration, Nanjing University of Technology, Nanjing 210009, ChinaAbstract: Steel and polyethylene can be really conglutinated together by using constructional conglutination steel-polyethylene composite pipe technology. Their interfacial intensity is far stronger than other composite pipes, and has no disadvantages compared with the others.

采用结构粘接型聚乙烯钢塑复合工艺技术,可使钢与聚乙烯得到真正意义的&复合&,其界面结合的强度远远大于其他复合管的结合强度,且克服了其他复合管技术所存在的缺点。

The experimental results suggest that the bonding strength of nickel-lanthanum electrodeposits is higher than that of bright nickel.

实验结果,镍-镧镀层与基体的结合强度高于亮镍镀层与基体的结合强度

The forming process for the high-strength, steel-base modified polyformaldehyde composite material in five-layer structure is to melt modified polyformaldehyde by heating and roll to make the melt polyformaldehyde permeate into the gaps between the large-grained spherical copper powder and screw copper nails.

五层结构的高强度钢基改性聚甲醛复合材料的成型过程,是将改性聚甲醛加热熔化,经轧制,使熔融的聚甲醛渗透到大颗粒球形铜粉的间隙中,解决了三层材料复合过程中,熔融的聚甲醛水平流动性远强过垂直方向的渗透性,造成了结合强度低的缺陷,使聚甲醛层与铜粉、螺旋铜钉及基体结合更牢固,提高了其承载和抗剪切的能力。

The forming process for the high-strength, steel-base modified polyformaldehyde composite material in five-layer structure is to melt modified polyformaldehyde by heating and roll to make the melt polyformaldehyde permeate into the gaps between the large-grained spherical copper powder and screw copper nails.

五层结构的高强度钢基改性聚甲醛复合材料的成型过程,是将改性聚甲醛加热熔化,经轧制,使熔融的聚甲醛渗透到大颗粒球形铜粉与螺旋铜钉的间隙中,解决了三层材料复合过程中,熔融的聚甲醛水平流动性远强过垂直方向的渗透性,造成了结合强度低的缺陷,使聚甲醛层与铜粉、螺旋铜钉及基体结合更牢固,提高了其承载和抗剪切的能力。

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