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Design steps There is no strict sequence for the design steps

Design steps There is no strict sequence for the design steps

(Summary description) Carry out working condition analysis to determine the main parameters of the system;

Design steps There is no strict sequence for the design steps

(Summary description) Carry out working condition analysis to determine the main parameters of the system;

  • Categories:Company News
  • Time of issue:2021-11-15 16:45
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The design steps and design requirements of the hydraulic system The hydraulic transmission system is an integral part of the hydraulic machinery, and the design of the hydraulic transmission system should be carried out at the same time as the overall design of the main engine. When starting the design, we must start from the actual situation, organically combine various transmission forms, give full play to the advantages of hydraulic transmission, and strive to design a hydraulic transmission system with simple structure, reliable work, low cost, high efficiency, simple operation and convenient maintenance.

1.1 Design steps There is no strict sequence for the design steps of hydraulic systems, and the steps are often interspersed with each other. Generally speaking, after clarifying the design requirements, proceed roughly as follows.

1) Determine the form of hydraulic actuator;

2) Carry out working condition analysis to determine the main parameters of the system;

3) Develop a basic plan and draw up a schematic diagram of the hydraulic system;

4) Select hydraulic components;

5) Performance check calculation of hydraulic system;

6) Draw work diagrams and prepare technical documents.

1.2

Clear design requirements

Design requirements are the basis for each project design. Before formulating the basic plan and further embarking on the design of each part of the hydraulic system, the design requirements and other aspects related to the design must be clearly understood.

1) Overview of the host: use, performance, process flow, operating environment, overall layout, etc.;

2) What are the actions to be completed by the hydraulic system, the sequence of actions and the interlocking relationship with each other;

3) The movement form and movement speed of the hydraulic drive mechanism;

4) The size and nature of the load of each action mechanism;

5) Performance requirements for speed range, smoothness of motion, conversion accuracy, etc.;

6) Requirements for automation procedures and operation control methods;

7) Requirements for dust-proof, explosion-proof, cold-proof, noise, safety and reliability;

8) Requirements for efficiency and cost.

Develop basic plans and draw hydraulic system diagrams

3.1 Make a basic plan

(1) Develop a speed regulation plan

After the hydraulic actuator is determined, the control of its movement direction and movement speed is the core issue of drafting the hydraulic circuit.

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