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1)  driven sheave
从动槽轮
2)  driven gear
从动齿轮
1.
The results show that shrinking inner hole of driven gears is conducted by heating with protective atmosphere and cooling in the iron tube-shaped container for slowly cooling gears,the exceeded tolerance problem of inner hole of driven gears can be better solved,and 90% driven gears can meet the needs of technology reguirement of the production.
通过两种工艺试验证明,采用保护气氛加热入缓冷筒冷却进行收缩齿轮内孔的方法,较好地解决了从动齿轮因孔大超差报废问题,使90%的齿轮达到了产品技术要求。
2.
Effect of superfine Ni powder addition on the sintering process and final properties of driven gears was studied.
研究了经超细化处理的镍粉对从动齿轮烧结工艺和性能的影响。
3.
Driven gear cracking was found in repair.
某从动齿轮在中修时发现开裂。
3)  3-idler
三从动轮
1.
Research on the Structure and Performance of Parallel Gear Pump with 3-idler;
三从动轮并联齿轮泵结构和性能研究
4)  multi-driven gear
多从动轮
1.
The fuzzy optimization design of gear pump with multi-driven gear;
多从动轮齿轮泵的模糊优化设计
5)  driven wheel
从动轮
1.
Taking into account the complex working environment: uneven physiognomy of deep-sea,wheel’s skid,low surrounding visibility and so on,I bring forward the dead reckoning based on the driven wheel.
考虑到深海地貌崎岖不平、车轮打滑、周围能见度低等复杂的工作环境,提出了一种基于从动轮的航位推算定位。
2.
Taking into account complex working environment: uneven physiognomy of deep-sea, wheel s skid, low visibility of surrounding and so on, dead reckoning based on driven wheel for localization was brought forward in this paper.
针对深海地形崎岖不平、车轮打滑、周围能见度低等复杂的工作环境,本文提出了一种基于从动轮的航位推算定位方法。
3.
Taking into account of the complicated situation of uneven topography in deep-sea cobalt crust area,mining vehicle′s wheels frequently skidding,a dead reckoning position method has been designed based on driven wheel.
针对深海钴结壳矿区地形不平坦,采矿车作业环境恶劣,车体打滑严重等复杂情况,设计了一种基于从动轮测速的航位推算定位方法。
6)  driven pulley
从动带轮
补充资料:槽轮机构
      由槽轮和圆柱销组成的单向间歇运动机构,又称马尔它机构。它常被用来将主动件的连续转动转换成从动件的带有停歇的单向周期性转动。槽轮机构有外啮合和内啮合两种形式。外啮合槽轮机构的槽轮和转臂转向相反,而内啮合则相同。单臂外啮合槽轮机构(见图)由带圆柱销的转臂、具有4条径向槽的槽轮和机架组成。当连续转动的转臂上的圆柱销进入径向槽时,拨动槽轮转过2嗚2角;当圆柱销转出径向槽后,槽轮停止转动。转臂转一周,槽轮完成一次转停运动。为了保证槽轮停歇,可在转臂上固接一缺口圆盘,其圆周边与槽轮上的凹周边相配。这样,既不影响转臂转动,又能锁住槽轮不动。为了使槽轮能完成周期性的转停运动,槽轮上的径向槽数不能少于3。为了避免冲击,圆柱销应切向进、出槽轮,即径向槽与转臂在此瞬间位置要互相垂直。在满足不同间停的要求时,可采用多臂的和非对称槽的槽轮机构。槽轮机构一般应用在转速不高、要求间歇地转过一定角度的分度装置中,如转塔车床上的刀具转位机构。它还常在电影放映机中用以间歇移动胶片等。
  

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