A Hackworth radial mechanism is shown in Figure Q1. Link 2 is pinned to the frame at O. Link 4 has a linear velocity of

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A Hackworth radial mechanism is shown in Figure Q1. Link 2 is pinned to the frame at O. Link 4 has a linear velocity of

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A Hackworth Radial Mechanism Is Shown In Figure Q1 Link 2 Is Pinned To The Frame At O Link 4 Has A Linear Velocity Of 1
A Hackworth Radial Mechanism Is Shown In Figure Q1 Link 2 Is Pinned To The Frame At O Link 4 Has A Linear Velocity Of 1 (798.79 KiB) Viewed 41 times
A Hackworth radial mechanism is shown in Figure Q1. Link 2 is pinned to the frame at O. Link 4 has a linear velocity of 400 mm/s. Link 2 has an angular acceleration of 2 rad/s? (a) Construct the velocity and acceleration diagrams for the mechanism. (15 marks) (b) (5 marks) Determine the magnitude and direction of: (i) Linear velocity of link 8 and angular velocity of link 2 Linear acceleration of link 6 and angular acceleration of link 7 (iii) Acceleration of joint B The position of the mechanism, direction of the velocity of link 4 and the direction of the angular acceleration of link 2 are obtained from the even/odd of the first three digits of your assigned number code. Position of Mechanism 1st godd 1st digit Even Pontin A Position B Direction of Velocity of Link 4 2nd digit Odd 2nd choven To the right Toah left Direction of Acceleration of Link 2 3rd sig lodd 3rd digit Even w CW 2 5 6 Number code: 256943 First digit Even : Mechanism at position B 2nd digit Odd : Velocity of link 4 to the Right 3rd digit even: Acceleration of link 2 is CW (Clockwise)
Position B OA = 300 mm OB = 100 mm AF = 1200 mm BC = 300 mm CD = 600 mm CE = 600 mm 5 7 E C 3 2 A F B Figure Q1
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