What is the most important aspect in non-standard automation design?
Theory is the guiding principle for practice, and the failure to achieve theoretical results in practice is often due to the fact that the details in practice do not match the theory. Therefore, it is important to do every detail well; It is not denied that some theoretical foundations are not sound, leading to unexpected errors, so it is important to improve theoretical knowledge reserves. What is the most important aspect of non-standard automation in design?

Q: What are the difficulties in non-standard automation design?
Answer: The plan. Only by understanding the product characteristics and processing technology can feasible and reliable implementation plans be proposed. Only under the guidance of the blueprint drawn by the designer can the project be implemented in an orderly manner and achieve the final effect.
Q: What is the most important aspect of non-standard automation design?
Answer: Nothing is unimportant. Every factor that affects the final acceptance is important, from the overall design scheme to the small screw that cannot be tightened.
Q: Which is better, dead positioning or adjustable mechanism?
Answer: Those who can do death positioning must resolutely do death positioning, and those who need to match positioning must match positioning; Concentrate errors, minimize adjustable mechanisms, avoid equipment debugging with multiple adjustable components matching each other to achieve the final debugging effect, and adjust the coarse and fine adjustment of the mechanism clearly.
Q: What issues should be noted in mechanical design?
Answer:
1. The positioning of the processing object is related to the determination of the overall blueprint and solves the problem of customer needs;
2. The docking positioning between single machines determines the reliability of production connection;
3. The positioning of components in standalone devices determines the compatibility between functional modules;
4. The positioning of parts in components determines the determinability of mechanism actions;
5. Clarify the concepts of positioning and locking, eliminate insufficient positioning, and avoid over positioning;
6. Positioning solves functional problems, and meeting functional requirements is a prerequisite for design.
