• 马氏体细晶粒高强度钢冲击磨损性能进行了研究

    Study on abrasive wear resistance of boronized layer eutecticumed with laser;

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  • 研究了含量珠光体基体铸铁冲击疲劳抗力冲击磨损性能影响

    The effect of carbon and chromium content on the impact fatigue resistance and impact abrasion resistance of pearlitic low chromium cast iron has been investigated in this paper.

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  • 离心冲击磨损性能高于静力金属型磨球,并且在冲击功条件下尤为显著。

    The wear resistance of centrifugal cast grinding ball is higher than that of statically me

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  • 本文论述了不同碳含量碳素钢组织形态冲击磨粒磨损性能关系

    This paper deals with the relation of the microstructure morphology of carbon steels to its impact abrasion resistance.

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  • 比较两材料试样一定时间失重变化情况,表明合金钢冲击腐蚀磨损性能优于高锰钢。

    Wear loss of specimens for these two steels during a certain time show that low carbon high alloy steel is much more resistant to corrosive impact abrasion than high manganese steel.

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  • 结果表明,2.0J冲击条件,中碳合金钢、低碳高合金钢浅层剥落为主,抗冲击腐蚀磨损性能相近

    Results show that the leading mechanisms of both alloys are shallow flaking under 2.0 J impact work, and the anti-impact-corrosion wear are close.

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  • 结果表明,变质处理后合金白口铸铁的微观组织碳化物网络断裂,其抗冲击韧性磨损性能显著提高。

    The results show that the carbide networks in microstructure tend to break, and fracture toughness and wear-resisting properties of the alloy were improved.

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  • 改进MLD - 10冲击腐蚀磨损试验机上,选择三种不同冲击,对以低碳高合金钢的冲击腐蚀磨损性能进行了测试。

    Under three different impact energy, LCHA with Mn in place of Ni were tested with a modified MLD-10 wear tester to investigate their behavior of corrosive impact abrasion.

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  • 改进MLD - 10型冲击腐蚀磨损试验机上,对不同成分的低碳高合金钢的冲击腐蚀磨损性能进行了测试

    LCHA with several variations of composition were tested with a modified MLD-10 wear tester to investigate their behavior under corrosive impact abrasion.

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  • 结果表明冲击两种冲击腐蚀磨损性能机制具有很大的影响

    The results show that the impact energy has great influence on the corrosive impact abrasion properties and wear mechanisms of the two steels.

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  • 结果表明相同试验条件下低合金钢冲击腐蚀磨损性能优于锰钢的。

    The results show that the resistance of low carbon high alloy steel is better than that of the high manganese steel under the same test condition.

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  • 利用单摆划痕冲击加载特性研究了N i - P化学镀层冲击磨粒磨损性能

    Impact abrasive wear behavior of electroless Ni-P coating was researched by means of single-pass pendulum scratching test characterized by impact loading.

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  • 利用单摆划痕冲击加载特性研究了N i - P化学镀层冲击磨粒磨损性能

    Impact abrasive wear behavior of electroless Ni-P coating was researched by means of single-pass pendulum scratching test characterized by impact loading.

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