Leading Cam Design and Analysis Software.
- Logo Design software, free download
- Cam Profile Design software, free download Windows 7
- Cam Profile Design software, free download 2018
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Logo Design software, free download
MechDesigner is leading Cam Design & Analysis software, with powerful capabilities. You can design and analyse all rotary and linear cam types including:
- Barrel Cams
- Globoidal Cams
- Conjugates Cams
- Cylindrical Cams
- Plate Cams
- Groove or Track Cams
- Slot Cams and Ramp Cams
In fact, you can add the Cam and Cam Follower to any of the machine parts, no matter how many parts are in your mechanism.
Cam Design Analysis is seamlessly integrated with all the design tools you need to model your packaging, textile or assembly machine. MechDesigner analyzes and calculates automatically all cam analysis parameters such as
- Pressure Angle
- Radius of Curvature
- Contact Force
- Contact Stress
- Entrainment Velocity.
Cam Profile Design software, free download Windows 7

Blender CAM is an open source solution for artistic CAM - Computer aided machining - a g-code generation tool. Blender CAM is an extension for the free open-source Blender 3d package. It has been used for many milling projects, and is actively developed. If you are a developer who would like to help, don't hesistate to contact me. Tinkercad is a free, easy-to-use app for 3D design, electronics, and coding.
You can plot these for a complete machine cycle with graphs, of course, but the power of MechDesigner is that these variables immediately update as you edit any other design parameter in your machine and mechanism design[link] or your motion design[link].
Equally important, is that you can design any number of cams in one machine model. This allows you to analyse and watch the interactions of the machine tooling, or end-effectors, as you edit any of the design parameters. You can make sure the machine can still do what you need while you also design and analyse the cams.
Cam Profile Design software, free download 2018
MechDesigner is perfect for the design of Packaging, Textile, and Assembly Machines, where there are many cam mechanisms with complex motion-designs and interacting tooling.
MechDesigner is the leading software for cam design and analysis. You can try it free today, for 30 days.
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| HOME > SOFTWARE > ENGINE 4S > Cam Design |
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| Professional Cam and Perfect Camis the ideal and complete software for engineering, team, tuner, etc. developing camshafts. In fact the software allows, to design valve lift law, to calculate cam profile for the main type of valve train system, to verify the valve train system with the spring load calculus and also to analyze the geometry of combustion chamber. | PRESENTATION | VERSION | PURCHASE | INFORMATION |
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Features | The software Professional Cam e Perfect Cam have many features, which are essential to develop the best camshafts. In the table below you can see an overview. Each stage of the development of a camshaft is of great importance for this the software are designed to offer the best computing tools for the design, implementation and verification of operation.In the specific pages you can also see the ease of use of software and how every step allows to have the information fundamental for achieving the desired development. | Professional Cam | Perfect Cam | standard | PRO | BAISC | old | INTAKE and EXHAUST VALVE LIFT LAW DESIGN | real time view of lift, velocity, acceleration and jerk | X | X | symmetry laws | X | X | X | X | asymmetry laws | X | X | X | polydyne (all the types) | X | X | polydyne (three types) | X | X | X | X | polynomial 8° | X | X | X | X | trigonometric | X | X | trigonometric with acceleration ratio variable | X | nt-spline (all the types) | X | X | nt-spline-asymmetric (all the types) | X | X | spline-polydyne (three types) | X | spline-polynomial 8° | X | spline-trigonometric | X | spline-trigonometric with acceleration ratio variable | X | import experimental lift laws | X | X | special algorithm for filtering the data of experimental lift laws | X | X | CAM PROFILE CALCULATION FOR DIFFERENT VALVE TRAIN SYSTEMS | direct flat tappet | X | X | X | X | direct roller tappet symmetric or asymmetric | X | X | X | X | rocker arm | X | X | finger arm | X | X | pushrod - rocker arm - flat tappet | X | X | pushrod - rocker arm - roller tappet | X | X | valve train kinematic simulation | X | cam profile in cartesian coordinates | X | X | X | X | cam profile in polar coordinates | X | X | X | X | drawing of the cam profile in dxf format | X | X | VALVE TRAIN SYSTEM VERIFICATION | automatic springs load calculation | X | X | X | X | import springs load curve observed experimentally | X | X | calculus valve float conditions | X | X | X | X | calculus wear and lubrication conditions | X | X | X | X | calculus valve train friction | X | X | X | X | valve train dynamic simulation | X | CHAMBER COMBUSTION and ENGINE ANALISYS | valve and piston motion simulation in engine cycle | X | valve lift in engine cycle | X | X | geometry roof combustion chamber calculation | X | geometry hemispheric combustion chamber calculation | X | X | valves interference and piston-valves interference calculation | X | X |
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