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1)  balance wheel
摆轮
1.
The structure of balance wheel for hanging system of energy saving stone sawing machine is optimally designed,the functional formulas of complex movement system are established,the relations of the height of energy storing to elasticity modulus are reduced and the selecting method of optimal value of elasticity modulus is found.
分析了锯石机切削石材的运动机理 ,并对节能型锯石机悬挂系统摆轮机构的结构进行了优化设计 ,建立了复合运动系统、储能高度与弹簧弹性变形系数之间的数学关系式 ,给出了弹簧弹性变形系数最佳值的选择方
2)  epicycloidal whee
外摆轮;外摆线轮
3)  cycloid gear
摆线轮
1.
The fracture reasons of the GCr15 steel cycloid gear were analyzed by means of chemical analysis,metallography examination,grade identification of non-metal inclusions and carbides.
应用化学成分分析,金相组织分析,非金属夹杂物及碳化物检测等方法对GCr15钢摆线轮断裂原因进行了综合分析。
2.
Taking cydid gear-pin rail chainless traction mechanism of MG375W as an example, make theoretical deduction for the profile and the kinematic characteristics of the cycloid gear, and make simulation analysis for some different engaging positions by computer.
以MG375W采煤机的摆线轮与销排无链牵引机构为例,进行了摆线轮齿廓特性及运动特性的理论推导,对不同的啮合工位进行了计算机模拟仿真分析,得出了中心距及节距发生变化引起啮合传动特性的变化规律。
3.
Therefore, study on the prediction and compensation of cycloid gear milling process deflection has important significance in improving machining precision of cycloid gear and transmission accuracy of precision transmission.
摆线轮是精密传动的关键部件之一,属于薄壁件,近几年来由于对薄壁件的变形规律不是很清楚,不能有效地控制其加工精度,有时为了达到设计所要求的精度,只能采用增加打磨工序的方法,这样就大大降低了效率,同时会使零件结构设计受到制造水平的约束,直接影响薄壁结构的零件产品更新换代的先进性,可见,加工变形和加工效率问题成了影响薄壁结构零件加工的重要约束。
4)  cycloid gear
摆线齿轮
1.
Calculation of cycloid gear and numerical control machining;
摆线齿轮计算及数控加工
2.
Finite element analysis on the multi-teeth differenced cycloid gear based on ANSYS
基于ANSYS的多齿差摆线齿轮有限元分析
3.
Compared with the involute planetary gear reducer, the cycloid gear reducer has the same transmission ratio, the number of gear teeth and the similar mechanic properties in use.
根据使用效果等效原则 ,根据摆线齿轮的齿高平均圆直径和当量模数为线索查取渐开线齿轮公差 ,是获得摆线齿轮公差的一种简捷方
5)  swing wheel structure
摆轮结构
1.
This paper recommends the billet ladle-puller of independent innovation,in which a mechanical lift and moving system and swing wheel structure,PLC controlling the speed are adopted so that the system is simple,reliable,easy to maintain and meets the requirements of the heating furnace,discharge conveyer,the arrangement of the building space and ensures the surface quality of the plate produced.
介绍自主创新研制的钢坯托出机,整个系统采用机械升降和行走以及摆轮结构,速度采用PLC控制,简易,可靠,易于维护,满足加热炉、辊道、厂房空间布置的要求,并保证出炉钢板的表面质量。
6)  cycloidal gear
摆线齿轮
1.
The Design of Cycloidal Gear of Polar Coordinates Radial Measuring Technology
摆线齿轮极坐标径向测量技术的研究
2.
Through comparing and analyzing the profile of involute gear with cycloidal gear, a new design scheme of cycloidal gear profile is put forward, in which the profiles both of the right and left face of the gear are designed as the theoretical cycloid curve.
通过对渐开线齿轮与摆线齿轮的齿形进行对比分析 ,提出一种新的摆线齿轮齿形设计方案 :将摆线齿轮左、右齿面的设计齿形取为理论摆线齿形 ,同时使摆线齿轮具有所需的齿厚减薄量。
3.
This paper uses the finite element method and use it to discuss the stress and the strain of a pair of cycloidal gear.
本文运用有限元法,对摆线齿轮在啮合过程中所受的应力、应变进行了分析;给出了载荷在不同位置时,轮齿的变形图和轮齿弯曲应力变化曲线;分析了轮齿的弯曲强度。
补充资料:SZ124摆轮式混砂机操作规程
1、遵守《铸造设备通用操作规程》有关规定。
2、检查操作手柄是否都在静止位置上,行程开关和碰铁位置是否正确。如不在静止位置上,则必须放在静止位置;如位置不正确,则必须调正。
3、检查刮板的磨损是否严重,位置是否适中。如磨损严重,应予更换;如不适中,应予调整。
4、先点动试车,然后空运转3-5分钟,并检查:
a、传动系统和摆轮的运动是否平衡;
b、放砂门启闭是否灵活;确认一切正常后,方可进行生产。
1、
设备运转正常后,按工艺要求,逐步加入混砂料,不准夹入金属块和其它硬块,若
有发现,应立即停机处理。
2、 不准有手取砂样,以免出现人身事故。
3、 工作后,放净混砂盘内的砂子,并清除残留的粘砂。


 

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