mql
- 网络语言;微量润滑;微量润滑技术;最小量润滑;微量润滑系统
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The research of application of MQL on vibration drilling has been developed .
开展了MQL技术在轴向振动钻削中的应用研究。
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You can also get more detailed information using CDM and MQL .
您也可以使用CDM和MQL获取更多详细信息。
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MQL theoretical model and application based on capillaries
基于毛细管理论的MQL理论模型及应用
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Cutting forces increase with feed rate in both MQL and dry cutting .
干切削与微量润滑时,切削力均随进给量增加而上升。
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It was found that the tool life is longer under cutting fluid than that under lower temperature MQL .
实验发现,切削液条件下的刀具寿命要优于低温MQL润滑切削。
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MQL Technology in the Green Cutting
绿色切削中的MQL技术
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Changes in cutting forces and cutting temperature indicate that residual stresses would increase to some extent when MQL is adopted .
结合切削力与切削温度的变化表明,当采用微量润滑加工时,表面残余压应力将较硬车削有一定程度的提高。
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FAW TOYOTA engine company crankshaft product line uses carbide tool and MQL technique to process crankshaft oil holes .
一汽丰田(长春)发动机有限公司曲轴生产线采用硬质合金钻头并配合半干式加工(MQL)技术加工曲轴油孔。
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The syntax of an MQL query is as follows
MQL查询语法如下
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Status and Trends of MQL Machining
MQL切削的现状和发展
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MQL provides a powerful expression ability to query data from complex models , such as a left inner joint query against model objects .
MQL提供一个功能强大的表达能力用于从复杂模型中查询数据,例如一个基于模型对象的左内联查询。
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In the TADDM API definitions , the Find operation accepts a query string which follows the syntax of MQL .
在TADDMAPI定义中,Find操作收到一个查询字符串,该字符串遵循MQL语法。
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The required ecological effect of MQL cutting fluids is indicated and some base oils and additives of ecological cutting fluids are presented in the paper .
简述了生态效应对MQL切削液的要求,给出了具有生态效应的几种切削液基油和添加剂,并对其生态性能和切削性能进行了比较。
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By invoking the find operation , MQL will respond to the query with XML content , which is easy to resolve by XPath .
通过调用find操作,MQL使用XML内容响应查询,使用XPath很容易解析XML内容。
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The state - of-art , application , environmental and economical performance and development of the minimal quantities of lubricant ( MQL ) technology is emphasized .
重点介绍了MQL(MinimalQuantitiesofLubricant)技术的研究现状、实际应用、环境及经济性能评价以及尚待进一步解决的问题。
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It is necessary to optimize the supply of oil mist and compressed air in the drilling case of long distance or small diameter using MQL ( Minimal Quantity of Lubrication ) method .
采用了微量润滑技术的钻削在长距或小孔径的条件下有必要对所供给的油雾和压缩空气进行最佳化分析。
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The application of MQL and chilled oil-gas medium could decrease the cutting forces and surface roughness , increase the residual stress . Improving function of the cooling and lubrication media can be affected by cutting parameters .
MQL切削和低温油-气切削方式能显著降低切削力和表面粗糙度,增大残余压应力;切削参数会影响冷却润滑介质对切削过程的改善作用。
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Therefore , from technical applied and sanitary points of view , researches focused on the performance of cryogenic MQL system as well as the ambient air quality characteristics during cryogenic MQL cutting process were conducted in this thesis .
为此,本文从工程应用和环境卫生的角度出发,在开展低温MQL系统性能测试的基础上,重点研究和评价了低温MQL切削环境空气质量特性。
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This study shows that MQL cutting has equivalent or sometimes superior physical and cutting performance in comparison with the conventional cutting with flood coolant supply , such as in cutting-tool wear , cutting resistance and surface roughness .
通过实验并与普通切削油加工方法比较,MQL方法表现出其在刀具磨耗、切削阻抗、工件表面粗糙度影响方面比后者具有更优的物理与加工特性。
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Cryogenic Minimum Quantity Lubrication ( MQL ) is one of the effective techniques to tackle these problems . However , at present , the study aimed at the environmental quality characteristics in cryogenic MQL cutting is still at the exploratory stage .
低温微量润滑(低温MQL)是有效降低切削液负面影响的冷却润滑方式之一,不过目前针对该项技术在切削应用中的环境空气质量特性研究还处于探索阶段。