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55號(hào)鋼仿生非光滑表面高溫耐磨性試驗(yàn)
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    摘要:

    利用激光微細(xì)加工技術(shù)將根據(jù)仿生非光滑耐磨理論設(shè)計(jì)的仿生非光滑耐磨表面復(fù)制到55號(hào)鋼模型試樣上,在磨損試驗(yàn)機(jī)上進(jìn)行影響凹坑形非光滑表面試樣耐磨性多因素試驗(yàn)。采用試驗(yàn)優(yōu)化設(shè)計(jì)技術(shù)中部分正交多項(xiàng)式回歸設(shè)計(jì)試驗(yàn)方案,得出影響仿生非光滑凹坑表面耐磨性多因素回歸方程。試驗(yàn)結(jié)果表明,各試驗(yàn)因素對(duì)耐磨性影響重要程度依次為溫度、磨損時(shí)間、凹坑直徑、轉(zhuǎn)速和凹坑密度。最后對(duì)非光滑的耐磨機(jī)理進(jìn)行初步分析。

    Abstract:

    The design of partial multinomial regression on wear resistance of specimen was performed according to the techniques of experimental designing optimization method. Test model specimens made of 55 steel with regular concaves were processed by laser texturing technology technique. Investigations into topographical and tribological features were conducted on MG2000 wear and abrasion test machine. As one important test index, wear loss was taken to be detected by using partial polynomial regression plan, and three test factors of temperature (300 ℃, 500 ℃), running time(180s, 300s), rotating speed(400r/min, 600r/min), non-smooth concave unit size(150μm, 200μm, 250μm,300μm)and unit distributing density(250μm,350μm at line and row has been fixed)were selected to investigate the effects on the surface wear loss of 55 steel samples. Multi-factor linear regression equation was derived from test data. According to their importance sorts to test results, the factors are temperature,running time, non-smooth concave unit size, rotating speed, unit distributing density respectively. Main wear-resistance mechanism of the non-smooth concave surface was analyzed at last.

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楊卓娟,韓志武,任露泉.55號(hào)鋼仿生非光滑表面高溫耐磨性試驗(yàn)[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2008,39(12):196-199.[J]. Transactions of the Chinese Society for Agricultural Machinery,2008,39(12):196-199.

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