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MECHANICAL TECHNOLOGY MECHANISMS – 4 BAR LINKAGE

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Presentation on theme: "MECHANICAL TECHNOLOGY MECHANISMS – 4 BAR LINKAGE"— Presentation transcript:

1 MECHANICAL TECHNOLOGY MECHANISMS – 4 BAR LINKAGE
The software program that created the simulations shown above is available for FREE at the following website: IOT POLY ENGINEERING 4-06

2 A 4-bar linkage mechanism has a crank that rotates at a constant angular speed. The crank is connected to the coupler which is connected to the follower. The frame does not move. coupler crank follower frame IOT POLY ENGINEERING 4-06

3 4-06 Notice that the crank rotates at a constant angular speed.
In other words, it moves around in a complete circle in a fixed constant amount of time. The animation below shows the position of the crank every 5 degrees of rotation. The coupler provides a constant distance between the movable ends of the crank and the follower. In this example design, the follower does not move at a constant rate. IOT POLY ENGINEERING 4-06

4 There are many possible variations in the design of a 4-bar linkage mechanism. Four examples are given in the diagrams below. coupler crank follower frame IOT POLY ENGINEERING 4-06

5 4-06 A Grashof linkage is a planar four-bar linkage with
S + L < P + Q where S = length of the shortest link L = length of longest link P and Q are the lengths of the two remaining links. 1. Crank-Rocker : a Grashof linkage where the shortest link is the input link (crank). 2. Double-Rocker: a Grashof linkage where the shortest link is the floating link (coupler). 3. Rocker-Crank : a Grashof linkage where the shortest link is the output link (follower). 4. Crank-Crank : a Grashof linkage where the shortest link is the ground link (frame). IOT POLY ENGINEERING 4-06

6 4-06 The mechanism below is a crank-rocker. crank 90 S coupler 180 P
follower Q frame L S + L < P + Q < 275 < 310 IOT POLY ENGINEERING 4-06

7 This mechanism is a crank-rocker
This mechanism is a crank-rocker. Notice that the crank is the shortest link. IOT POLY ENGINEERING 4-06

8 4-06 The mechanism below is a crank-crank. crank 140 P coupler 180 L
follower Q frame S S + L < P + Q < 260 < 270 IOT POLY ENGINEERING 4-06

9 4-06 This mechanism is a crank-crank.
Notice that the frame is the shortest link. IOT POLY ENGINEERING 4-06

10 4-06 This mechanism is a double rocker.
Notice that the coupler is the shortest link. IOT POLY ENGINEERING 4-06

11 HOMEWORK: Design AND DRAW one example of each of the following 4 types of Grashof linkages. The drawings must be NEAT and PRECISE. A Grashof linkage is a planar four-bar linkage with S + L < P + Q where S = length of the shortest link L = length of longest link P and Q are the lengths of the two remaining links. 1. Crank-Rocker : a Grashof linkage where the shortest link is the input link (crank). 2. Double-Rocker: a Grashof linkage where the shortest link is the floating link (coupler). 3. Rocker-Crank : a Grashof linkage where the shortest link is the output link (follower). 4. Crank-Crank : a Grashof linkage where the shortest link is the ground link (frame). IOT POLY ENGINEERING 4-06


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