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1)  incremental feed
增量进给
2)  feed increment
进给增量
3)  Recharge increment
补给增量
4)  incremental supply
增量供给
1.
This paper analyses affecting factors of stock demand under circulation of restricted stock concretely, and proves causality on relationship between stock incremental supply and stock demand by Granger model,the results show that one-way causal relationship certainly exists, that is, the demand for the stock to some extent impacted by incremental supply of circulation of the restricted stock.
本文对限售股解禁环境下股票需求的影响因素进行了具体分析,并利用Granger模型检验了增量供给与股票需求的因果关系,研究表明二者之间的确存在着单向因果关系,即股票需求在一定程度上受到限售股解禁增量供给的影响。
2.
To explore whether the incremental supply have the impact on the needs of shares or not,the paper adopts empirical research on the gross of lifting the ban on the sale of restricted stock and indexes for demand by the Granger causality test,and has come to causality between them;relevant policy and suggestions has been put forward.
为探索增量供给对股票需求是否产生影响,文章通过Granger因果检验对限售股解禁总量与各股票需求量化指标进行实证研究,得出了限售股解禁总量与各需求量化指标的因果关系,并提出了相关政策建议。
5)  varying feed rate
变进给量
1.
By applying apparatus for piezoelectric ceramic vibration drilling, the me thod of varying feed rates in vibration drilling is used to drill the micro-hol e .
应用压电陶瓷振动台振动钻削装置,采用变进给量振动钻削法加工微小孔,并用工具显微镜对入钻定位误差和出口毛刺进行测量。
6)  Feed rate
进给量
1.
A useful computation method of optimum cutting speed and feed rate;
最优切削速度和进给量的实用算法
2.
An experiment of precise turning Cr12 die steel was carried out to investigate the impacts of cutting speed and feed rate on the surface roughness.
对Cr12模具钢进行了高速精密车削试验,研究了切削速度和进给量对加工表面粗糙度的影响。
3.
The influence of cutting speed and feed rate on the surface roughness of machined blade was investigated.
研究了切削速度和进给量对加工表面粗糙度的影响。
补充资料:缓进给磨削
      用减小进给量、加大磨削深度的办法提高金属切除率的高效率磨削。一般在特制的卧轴平面磨床上,用砂轮周边以大的切削深度 (е=1~20毫米)和慢的进给速度(vW=10~300毫米/分)进行平面或成形磨削(见图),砂轮线速度v=30米/秒左右。缓进给磨削适合于加工各种成形表面和沟槽,特别是淬硬钢和高温合金等高硬度、高强度的难加工金属材料的工件,如燃气透平叶片榫齿等。用这种方法可以从工件毛坯直接磨出所要求的表面形状和尺寸,既能提高效率,又能保证加工质量。由于磨削深度大,砂轮与工件的接触弧长比普通磨削大几倍至几十倍,磨削力、磨削功率和磨削热大幅度增加,故要求机床刚度好、功率大,并设有高压大流量的切削液喷射冷却系统,以便有效地冷却工件,冲走磨屑。缓进给磨削大多采用陶瓷结合剂的大气孔、松组织的超软普通磨料砂轮,以保证良好的自锐性、足够的容屑空间和避免工件表面烧伤;也可采用聚氨脂树脂结合剂砂轮或超硬磨料砂轮。这种磨削的加工效率可比普通磨削高1~5倍, 磨削精度可达2~5微米,表面粗糙度达Ra1.25~0.16微米。
  

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