- 更多网络例句与凸轮相关的网络例句 [注:此内容来源于网络,仅供参考]
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The technology of error compensation based on Multi-Body system and the design method of cam machining were combined together.
针对精密凸轮加工中存在的精度问题,推导出凸轮磨削中的理想砂轮中心包络线的求解方程,进而将基于多体系统理论的误差补偿技术与凸轮加工设计方法相结合,研究了理想数控指令的生成方法、砂轮轮廓误差的计算方法、精密数控指令和逆变凸轮廓型的求解算法,在此基础上,开发出凸轮精密磨削过程的误差补偿与动态仿真分析软件。
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In a disk device, a base body (10) has a drawing lever (80) for inserting a disk, a discharge lever (100) for discharging the disk, and a slider mechanism for pivoting the drawing lever (80) and the discharge lever (100). The slider mechanism has a first cam groove for sliding a first pin of the drawing lever (80) and a second cam groove for sliding a second pin of the discharge lever (100). The drawing lever (80) pivots when the first pin slides in the first cam groove as the slider mechanism operates, and the discharge lever (100) pivots when the second pin slides in the second cam groove as the slider mechanism operates.
该光盘装置,在基座本体(10)上设置插入光盘的引入杆(80)、排出光盘的排出杆(100)以及使引入杆(80)和排出杆(100)转动的滑动机构;在滑动机构上具有使引入杆(80)的第一销滑动的第一凸轮槽和使排出杆(100)的第二销滑动的第二凸轮槽;通过第一销随着滑动机构的动作在第一凸轮槽内滑动,引入杆(80)进行转动,通过第二销随着滑动机构的动作在第二凸轮槽内滑动,排出杆(100)进行转动。
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Deducing course of the equation of electronic pulse frequency on electronic cam is narrated in this article,at the same time parts of controlling program are been supplied on electronic cam.
论述了电子凸轮通电脉冲频率关系式的推导过程,给出了电子凸轮的部分控制程序框架,揭示了电子凸轮通电脉冲频率与凸轮从动件运动规律之间的内在联系,为实现电子凸轮从动件的速度控制提供了理论依据。
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In respect to the relationship between cam profile and pressure angles, the design method of cam profile with constant pressure angle was discussed and the cam profile was derived by means of the Euler Formula and the FORTRAN program.
在讨论了凸轮轮廓曲线与压力角的关系的基础上,探讨了等压力角凸轮机构轮廓曲线的设计方法,用改进型的欧拉公式经 FORTRAN编程得出相应的轮廓曲线,并着重分析了凸轮机构中基圆半径、偏距和压力角各参数的变化对凸轮轮廓曲线的影响。
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Reducing gear drives cam rotate to top half-turn and link gear of upper gate move, top disc opens and discharges. Spring device makes disc close and replace with displacement of cam. When cam rotates to bottom half-turn link, gear of sub-layer gate moves, below disc opens and discharges. The disc closes little by little with the displacement of cam. These two actions maintain a closed state of either disc on the pipe. So it can discharges and lock air at the same time.?
减速装置带动凸轮旋转至上半圈时,上层阀门的连杆机构互动,阀板逐渐打开卸灰,随着凸轮的旋转,弹簧机构使阀板逐渐关闭复位;凸轮旋转至下半圈时,下层阀门的连杆机构互动,阀板逐渐打开卸灰,随着凸轮的旋转又使阀板逐渐关闭,这样两个动作使管道上阀板始终有一个是关闭状态,因而,可使卸灰与锁气同时达到目的。
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This paper summarizes the domestic and overseas study status and developing direction of cam. On basis of the problem that the idler wheel which is the driven part of the cam machine in CT36-110 spring operating mechanism is destroyed easily, the author get much fact material through inner research, and presents a optimal design imagine of disc cam. Through enough compare and argumentation, this paper presents the optimal design model of the disc cam.
本论文阐述了目前国内外对凸轮的研究状况、发展动态和发展方向,根据云南开关厂CT36-110型弹簧操动机构中盘形凸轮机构的从动件——滚轮易损坏的生产实际,深入调查研究,在掌握大量生产应用实际资料的基础上,提出了对盘彤凸轮进行优化设计的思想,并在充分比较和论证的基础上提出了盘形凸轮的优化数学模型。
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Firstly, a new design method of cam profile has been developed by using finite terms of Fourier Series in the cycle of cam angle as the basic equation of cam profile, so the difficulty of base circle wave existing in the method of resonant cam design can be eliminated. On the other hand, the method proceeds from the acceleration of cam profile, which makes the acceleration not only smooth and continuous, but also easy to be controlled, and the cam profile with good performance can easily be acquired.
此方法用以凸轮包角为周期的富立叶级数有限项作为凸轮型线的基函数,可以免去谐波凸轮设计时控制基圆波动的困难;此方法又是从凸轮型线的加速度曲线入手进行设计,使型线加速度不但光滑、连续,而且形状容易控制,便于设计出动力性能优良的凸轮型线。
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Based on the kinematic and geometric relationships between the cam and its roller-follower turret, the eOEects on the output of the cam mechanism owing to clearances in the grooved cam and in the roller bearing, preload between the cam and its turret wheel and the cam taper angle have been investigated.
基于运动学和几何关系与凸轮及滚子的跟随者炮塔, eoeects对输出的凸轮机构由于以清拆行动,在沟槽式凸轮,并在滚子轴承,预紧力之间的凸轮和其炮塔车轮及凸轮锥度进行了调查。
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Supply contact group, were positive,, mountain hafnium, butt Qi, Wang main parts such as automatic lathes, table lathes have, belts, steam-driven chuck Block, Grinding, open closed claw, Tool,òsmall motors, clutches, cam blanks, chuck, drilling chuck, cam, cam Events, cam thimble, tools, wheel discs, retaining materials arm, S plate, rolling round silk flower attack, attack left tooth wire, drill bits, L-drill, round bars, tungsten steel round bars, die, plate braces, dental regulation, cone, non-ditch attack silk, silk YAMAWA attack Japan, Japan OSG silk attack.
供应洽群、名阳、昌勇、山铪、錡夆、王主等自动车床零配件,有桌上车床、皮带、汽动夹头座、磨刀机、开闭爪、车刀、打油小马达,离合器、凸轮毛胚、夹头、钻尾夹头、凸轮、活动凸轮、凸轮顶针、车刀、砂轮碟,挡料臂、S型板、滚花轮丝攻,左牙丝攻、钻头、左旋钻头、圆棒,钨钢圆棒、板牙、板牙套、牙规、牙轮、无沟丝攻、日本YAMAWA丝攻、日本OSG丝攻。
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Initially, assuming that the contact between cam and tappet is"dry contart", a dynamics model of Hertzin contact stiffness and impact damping is established. Next, with dynamic load on cam—tappet pair from the model, an analysis is made both to unsteady EHD oil film in cam—tappet pair under condition of full and partial lubrtication and to wear characteristics of cam profile. then, according to the fact that the lubrication in cam—tappet contact surface is EHD lubrication, taking the interaction between stiffness and damping of unsteady EHD oil film and rigidity of solid object contact into account, a dynamics equation of valve train relating to the dynamic effect of EHD oil film is built up and solved. Consequently, a further study is made on the dynamic characteristics of valve train under interaction of EHD oil film dynamic behavior and the problem of EHD lubrication in cam—tappet pair. Finally, the dynamic effect of full and partial EHD oil film is studied accordingly.
首先,通过对凸轮—挺杆接触为&干接触&的假设,建立了考虑赫兹&接触刚度&和冲击&阻尼&的配气机构动力学模型,用由此求得的凸轮—挺杆表面动载荷对凸轮—挺杆进行了全膜状态和部分膜状态非稳态弹流润滑分析,并研究了凸轮轮廓的磨损规律;然后,是在凸轮挺杆表面存在弹流动压油膜这一事实的基础上,相当于在动力学方程中考虑非稳态弹流油膜的&刚度&、&阻尼&和固体接触&刚度&的耦合作用,建立并求解了考虑弹流润滑行为动力学效应的配气机构的动力学方程,从而深入地研究了弹流润滑行为与动力学行为耦合作用下的配气机构动力学特征以及凸轮挺杆弹流润滑问题;作为前面工作的对应部分,考虑弹流油膜动力学效应的研究工作也同样分为全膜状态和部分膜状态进行。
- 更多网络解释与凸轮相关的网络解释 [注:此内容来源于网络,仅供参考]
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cam driver:凸轮传动器
cam drawing press | 凸轮式拉延压力机 | cam driver | 凸轮传动器 | cam dwell | 凸轮曲线的同心部分
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cam plastometer:凸轮式塑性计
cam lock bracket 凸轮托座 | cam plastometer 凸轮式塑性计 | cam press 凸轮压力机
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tripping cam:脱开凸轮,跳动凸轮
tripping bracket 防颠肘板 | tripping cam 脱开凸轮,跳动凸轮 | tripping car 自动倾卸车
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Cam Chain:凸轮链系
cam casing || 凸轮箱 | cam chain || 凸轮链系 | cam circle || 凸轮圆
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cam contactor:凸轮接融器
cam case 凸轮箱 | cam contactor 凸轮接融器 | cam controller 凸轮控制器
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cam press:凸轮压力机
cam plastometer 凸轮式塑性计 | cam press 凸轮压力机 | cam pump 凸轮泵
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cam press:轗压机,凸轮压机
轗板,凸轮板 cam plate- | 轗压机,凸轮压机 cam press | 轗轮廓,凸轮轮廓 cam profile
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cam drawing press:凸轮式拉延压力机
cam disc || 凸轮盘 | cam drawing press || 凸轮式拉延压力机 | cam driver || 凸轮传动器
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cam switch:凸轮操纵开关; 凸轮开关
cam surface ==> 凸轮面 | cam switch ==> 凸轮操纵开关,凸轮开关 | cam template ==> 凸轮样板
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cam forming and profiling machine:凸轮仿形机床
cam follower roller ==> 凸轮推杆滚柱 | cam forming and profiling machine ==> 凸轮仿形机床 | cam gear ==> 凸轮机构,凸轮装置,偏心盘