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非導(dǎo)電超硬磨料砂輪電火花放電修整技術(shù)
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Electrical Discharge Truing/Dressing Technology of Non-electrical Super-abrasive Grinding Wheels
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    摘要:

    提出借助輔助放電材料對非導(dǎo)電超硬磨料砂輪進(jìn)行放電修整的方法,闡述了放電蝕除結(jié)合劑實(shí)現(xiàn)非導(dǎo)電超硬磨料砂輪修銳的基本原理,。通過觀察修銳前后樹脂結(jié)合劑金剛石砂輪表面的微觀形貌,,分析了峰值電流和電流脈寬對砂輪修銳質(zhì)量的影響。結(jié)果表明,,利用輔助放電材料實(shí)現(xiàn)非導(dǎo)電砂輪放電修銳是可行的,,峰值電流是影響脈沖放電能量和修整區(qū)域溫度場的重要因素;適合樹脂結(jié)合劑金剛石砂輪修銳的放電峰值電流不高于

    Abstract:

    3 A,。A novel electrical discharge truing/dressing (EDD) technology which could dress non-electrical super-abrasive grinding wheels such as resin-bonded diamond wheel and vitrified CBN wheel by means of covering electrical material on the surface of wheel was proposed. The principle of removing non-electrical bond during MEDD process was illustrated. The resin-bonded diamond wheel topographies prior and after electrical discharge dressing were observed by VH-800 3-D digital microscope. The results of electrical discharge dressing under different discharge current(ie)and discharge duration(te)were compared. Experimental results indicate that the proposed EDD method is applicable to non-electrical bond wheels. In addition, discharge current has direct influence on the wheel surface topography and the performance of diamond grains. As well as, pulse duration has less influence on the wheel surface topography. The experimental results also reveal that the appropriative discharge current(ie)in dressing resin-bonded diamond wheel process is less than 3A. 

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蔡蘭蓉,楊慧,閆利文,胡德金.非導(dǎo)電超硬磨料砂輪電火花放電修整技術(shù)[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2010,41(7):219-222.Electrical Discharge Truing/Dressing Technology of Non-electrical Super-abrasive Grinding Wheels[J]. Transactions of the Chinese Society for Agricultural Machinery,2010,41(7):219-222.

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