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analytix_cams

Analytix Cams - 机械工程仿真软件

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Analytix Cams使机械工程师可能凭据其从动件活动要求急剧合成凸轮概括;蛘叽酉钟械耐孤指爬,从动件的几何和活动学能够急剧设计,微和谐分析。分析蕴含活动、静态、动态、逆动态和公差分析。随着Analytix仿照软件,能够优化凸轮/从动件与机械系统的交互。而后将DXF导出到CAD或将坐标数据导出到NC/CAM软件。

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以下是若何使用Analytix Cams来合成凸轮概括F鹜,选择凸轮/从动件类型以及旋转方向和从动件偏移等内容。而后选择凸轮旋转领域,指定从动件位移的起头和实现要求,以及所需的曲线类型(如摆线、搁浅或恒定加快度)。

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而后,Analytix/Cams会自动合成其间的正确点,并思考该凸轮/从动件配置中涉及的全数几何图形。

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例如,您能够指定从动轮角杜爪该拥有在凸轮旋转0度和90度之间的35度建改梯形上升,依此类推。高蹬酌户始终能够选择手动微调数据点(或从其他起源插入数据点)。

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活动学和其他数据自动推算,并以表格和图形大局显示:位移,速度,加快度和曲率半径。

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在Analytix Cams中开发的肆意凸轮概括也能够在Analytix mechanical simulation软件中使用,以结合更大机械系统的执行器、连杆或其他零件来分析凸轮活动。

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凸轮设计和机构分析能够在一个职守得起的集成解决规划中急剧实现,使您能够从所需的结尾执行器活动返回到凸轮/从动件设计,反之亦然。

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规格

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凸轮类型

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  • Plate -- oscillating roller follower

  • Plate -- oscillating flat-face follower

  • Plate -- reciprocating roller follower

  • Plate -- reciprocating flat-face follower

  • Linear -- oscillating roller follower

  • Linear -- reciprocating roller follower

  • Barrel -- oscillating roller follower

  • Barrel -- reciprocating roller follower


用法

  • 从动件到凸轮的步骤?是的

  • 凸轮到从动件的步骤?是的

  • 仿照较大机构内部(是的,使用Analytix)

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活动合成功能

  • Dwell

  • 恒定速度/加快度

  • 摆线

  • 建改谐波

  • 建改梯形

  • 建改过弦

  • 345-多项式

  • 4567-多项式

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数字表格和图表

  • 凸轮概括(x-y或r-theta)

  • 移位

  • 速度

  • 加快度

  • jerk

  • S-V-A-J

  • 压力角

  • 曲率半径

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几何选项

  • 顺使仉/逆使仉

  • 左/右

  • 基圆半径/角度

  • 初始角度

  • 从动臂长度

  • 枢轴距离/坐标

  • 左/右偏移尺寸

  • 上/下随动件

  • Barrel半径

  • 从动件半径

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数据互换

  • DXF互换

  • X-Y或R-Theta坐标,造表符分隔的导入/导出

  • Windows复造并粘贴到Excel

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【英文介绍】

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Analytix Cams enables mechanical engineers to quickly synthesize a cam profile given their follower motion requirements. Or...from an existing cam profile, the follower's geometry and kinematics can be quickly designed, fine-tuned and analyzed. With Analytix simulation software, you can optimize the cam/follower interaction with your mechanical system. Then export DXF to CAD or coordinate data to NC/CAM software.

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Here's how Analytix Cams is used to synthesize a cam profile. First, you choose the cam/follower type and such things as direction of rotation and follower offset. Then select a range of cam rotation, specify the starting and ending requirements for follower displacement, and the desired curve type (such as cycloidal, dwell, or constant acceleration).

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Analytix/Cams then automatically synthesizes the precise points in between, taking into account all the geometry involved in that particular cam/follower configuration.

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For example, you can specify that the follower angle should have a modified trapezoidal rise of 35 degrees between 0 and 90 degrees of cam rotation and so on. The advanced user always has the option of fine-tuning the data points manually (or inserting them from another source).

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Kinematic and other data is automatically calculated and displayed in both tabular form and graphical form: displacement, velocity, acceleration, jerk, radius of curvature and pressure angle.

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Any cam profile developed in Analytix Cams can also be used inside Analytix mechanical simulation software to analyze the cam motion in combination with actuators, linkages, or other parts of a larger mechanical system.

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Cam design and mechanism analysis can be done quickly in an affordable, integrated solution, letting you work back from required end-effector motion to cam/follower design or vice versa.

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