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ASOM Example Videos and Projects

Here you can download all of our ASOM v7 example and tutorial videos and sometimes also the corresponding project files.

The videos can also be found on our ASOM v7-YouTube-Channel.

Another simplified example for a pedestrian protection kinematic, this one based on a different functional principle.

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Example illustrating the kinematic analysis and interactive optimization of a toggle switch using the kinematics software ASOM v7.

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In this example, a complete design for a tailgate with spindle drive is presented. For this purpose, holding forces are taken into account under multiple constraints such as different ground inclinations, an optional snow load, frictions, a clutch, overload cases, safety margins, efficiency factors, etc.

To observe direction-dependent influences, the complete opening process and the complete closing process are evaluated in real time at the same time using compressed time simulation.

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Example for a pedestrian-protection-kinematics with a four bar system and an actuator.
The animation includes two parts: Normal opening and closing process and the protection-activation process (in slow-motion).

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Example for the calculation of bearing forces on a cylinder piston of a two-stroke engine, taking into account the inertia and moments of inertia.

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Example of a kinematic for a retractable door handle with kinematic synthesis of two kinematics (via serial connection of two synthesis methods) and the simultaneous consideration of different force and stress cases (with or without tension spring AND with or without breakout force, etc.), taking into account further restrictions such as mounting conditions and collision conditions.

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Ellipsograph (Trammel of Archimedes)

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ASOM v7 EXAMPLE Chebyshev Straight Line Mechanism

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ASOM v7 EXAMPLE Chebyshev Parallel Motion Mechanism, Lambda Mechanism

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ASOM v7 EXAMPLE Evans Straight Line Mechanism

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ASOM v7 EXAMPLE Crank-Slider Straight Line Mechanism

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ASOM v7 EXAMPLE Hoecken Straight Line Mechanism

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ASOM v7 EXAMPLE Indicator Mechanism

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ASOM v7 EXAMPLE Conchoidal Straight Line Mechanism

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ASOM v7 EXAMPLE Roberts Straight Line Mechanism

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ASOM v7 EXAMPLE Watt's Linkage

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ASOM v7 EXAMPLE Level luffing crane, Harbor Crane Mechanism

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ASOM v7 EXAMPLE Straight Line Mechanisms: Hart's Inversor Mechanism

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ASOM v7 EXAMPLE Kempe Straight Line Mechanism

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ASOM v7 EXAMPLE Peaucellier Straight Line Mechanism

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ASOM v7 EXAMPLE Roemer Cartwright Straight Line Mechanism

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ASOM v7 EXAMPLE Pantograph Mechanism

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ASOM v7 EXAMPLE Sylvester Kempe Parallel Motion Mechanism

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ASOM v7 EXAMPLE Symmetrical Crank Slider Mechanism

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In this example of a four bar system generated 'on-the-fly' it is demonstrated how the use of a group of several alternative manual force elements makes it possible to kinetostatically determine the required forces (balance forces / manual forces) at several contact points simultaneously, even while these points are modified, singly or as a group.

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In this example the kinematics, and partially also the kinetostatics, of a Cross Trainer are analyzed in ASOM v7.

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ASOM v7 EXAMPLE Interactive Two Point Synthesis

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ASOM v7 EXAMPLE Features for Gas Spring design

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ASOM v7 EXAMPLE Truss Calculation (incl. Making-of)

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ASOM v7 EXAMPLE Truss Calculation

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ASOM v7 EXAMPLE Four bar linkage three position synthesis

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ASOM v7 TUTORIAL-010 Scripts and expressions

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ASOM v7 EXAMPLE lifting screen

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ASOM v7 TUTORIAL-009 Forces and Sensors

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ASOM v7 EXAMPLE Hatch with Gas Spring

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ASOM v7 EXAMPLE Hatch with Tension Spring

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ASOM v7 TUTORIAL-008 kinematic synthesis

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ASOM v7 TUTORIAL-007 creating charts

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ASOM v7 TUTORIAL 006 Motion Control

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ASOM v7 TUTORIAL 005 Degrees of Freedom

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ASOM v7 TUTORIAL-004 simple coordinate input

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ASOM v7 TUTORIAL-003 simple kinematics

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ASOM v7 TUTORIAL-002 overview

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ASOM v7 TUTORIAL 001 Preliminary Notes

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Linkages that have been constructed for a retractable hardtop are used to compare the adaptability of six-bar and four-bar syntheses in ASOM v7. In both cases the highest priority the software has is to preserve the synthesis.

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Creation of a linkage to fold away and store the retractable hardtop of a convertible in ASOM v7. The six-bar synthesis used in this example is based on a Watt linkage.

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Creation of a mechanical design with the Optimizer in ASOM v4. We have formulated quality criteria based on an intended motion, thus creating a rule set. The goal is to optimize the quality index of that rule set.

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An example for the behavior of a four-bar synthesis in ASOM v7.

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Creation of a four-bar synthesis for the height adjustment of a car seat in ASOM v7. Using a real time synthesis the joints can be placed according to the given requirements.

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The incorporation of a DXF drawing and an image into an existing ASOM v7 project, in this case the simulation of a bicycle’s suspension (mountain bike).

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Demonstration of the creation and editing of simple geometric shapes in ASOM v7. Graphical elements can be freely transformed, have individual coloring and become part of the simulation of a linkage.

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