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Non-standard equipment such as motor assembly lines refers to **specialized non-standard equipment that is not produced in large quantities, but is still needed by various sectors of the national economy. Non-standard equipment on motor assembly lines is not manufactured in accordance with **established unified industry standards and specifications; instead, it is designed and manufactured based on the specific requirements of its own intended use. In the increasingly competitive market environment, industrial enterprises are carrying out institutional and technological innovations, replacing traditional equipment with microcomputer-controlled motor assembly lines and manual operations with mechanical ones, which in turn has increased the demand for motor assembly lines. How to carry out effective design of motor assembly lines has become an issue of concern to relevant organizations and personnel. Therefore, those who design motor assembly lines should possess the following qualities: 1. A solid foundation. As the saying goes, \"A full bottle stays still while a half-full one shakes.\" There are too many designers – let’s call them designers for now – who actually shouldn’t be called designers at all; they are in such a state. There is only a superficial understanding of processing methods, processing accuracy, manufacturing processes, materials, heat treatment, surface treatment, drawing annotations, tolerance selection, basic structure, etc.; it is not possible to independently and correctly draw a part or its schematic diagram. Then don’t complain too much; it’s not yet time for you to complain, or rather, you aren’t qualified to complain. 2. Encourage innovation, but don’t be fixated solely on it. Many people complain about themselves or their companies plagiarizing others’ work; this is an inevitable choice for most enterprises in China. When plagiarizing others, one must digest their work and add one’s own elements, gradually building up expertise until one is able to independently develop the key technologies for a project. 3. Attach importance to calculation. Many designers have never properly calculated anything, or they simply don’t know how to do it. Calculation of bearing life, beam calculations, cylinder capacity, selection calculations for motors, pressure angle and acceleration of cams, minimum pressure angle of rollers, spring force, load on electric cylinders, evaluation of the gap between tracks and products, machine weight and load-bearing capacity of the frame, cutting force required to cut products, and selection of power sources, among others. Experience is important, but who would dare to use something designed by an empiricist without any basis? Even if it works well now, as time or conditions change, it might stop functioning. Why the products of many companies are unreliable? I think it’s often due to insufficient calculation and review. 4. Strengthen communication with customers. The requirements of the party placing orders for non-standard automated equipment such as motor assembly lines must be clear; if they are not clear, it is necessary to communicate with the customer. It is ideal for the customer to have detailed acceptance standards for the motor assembly line, and in cases where such standards do not exist, every detail must be confirmed. It is necessary to clarify the requirements regarding the machine’s operating environment, voltage, air pressure, and other factory conditions; the requirements for controllers, drives, sensors, safety devices, etc.; the requirements concerning the working height and frame structure; the time required to produce a single unit; the limitations on the machine’s dimensions and weight; the product acceptance standards and methods; and the delivery deadline. 5. Listen carefully to the suggestions of the motor assembly personnel. After the motor assembly line is designed, many problems may arise during the motor assembly process; every detail issue encountered on site should be recorded in the drawings so that the same problems do not occur again in the future. This is very important, but it is often overlooked. Founded in 2007, HeliSi is a leading provider of intelligent equipment solutions for the automotive electronics industry in China. Its industrial park covers an area of 16,000 square meters, and it employs over 400 people, including more than 130 mid-to-senior level engineers. It has a modern assembly workshop spanning 10,000 square meters, capable of operating 40 fully automated production lines simultaneously. To date, the company has established branches in Chengdu, Dalian, Ningbo, and Suzhou. The company is primarily engaged in the research, development, production, and sales of intelligent manufacturing equipment, providing high-end equipment and smart factory solutions for industries such as electric drives, electronic controls, electrical components in new energy vehicles, as well as precision electronics. https://www.cnhonest.com/products/370djz.html