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This post was last edited by nxpsir on 2023-1-10 at 16:19. It shows a screenshot of the expanded diameter of the legend dynamic block for the reactor in the previous direct PID; if anyone is interested, I will explain how to create it when I have time later. The main challenges of this dynamic block are as follows: 1. When the diameter is increased, the thickness of the flange must be increased accordingly; in addition, due to the enlargement of the elliptical head, the upper piping connections need to move as well, both axially and radially. The motor has axial movement. If the upper part is simply scaled, both the length of the connector wire and the size of the motor will be scaled as well. 2. When stretching the diameter, after scaling the inner wall of the lower head, it is more difficult to scale the jacket head than in point 1, as it is necessary to maintain the distance between the jackets unchanged. The notch at the discharge port also needs to remain variable. 3. The direction of the heat medium inlet and outlet of the jacket is reversed. If you first adjust the diameter by scaling, then adjust the height, and finally flip it over – a simple flip is sufficient. However, achieving random sequences of stretching and flipping actions that can change dynamically repeatedly is somewhat difficult.
I’ll keep the sofa for myself; I’ll explain how to create dynamic blocks when I have time.
The blocks that have been created – could they be sent out for students to study?