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In recent years, with the development of society and the rising labor costs year by year, factories have faced difficulties in recruiting workers as well as high labor expenses. As a result, more and more manufacturers are looking to use custom-made assembly line equipment to address these issues. However, since most such custom assembly line systems are developed based on specific products, many manufacturers lack clear standards to follow during the actual manufacturing process. Therefore, I will now explain the three principles for manufacturing custom assembly line equipment: 1. Technical principle: The technical principle refers to the requirement that various performance indicators related to the design, manufacture, and operation of mechanical equipment must meet corresponding standard specifications. It includes not only static technical indicators but also dynamic technical indicators. For example, static technical parameters of mechanical equipment such as power, strength, service life, and efficiency ; Dynamic technical parameters such as thermal stability, wear resistance, and friction resistance. Therefore, when carrying out design work, it is essential to ensure that the technical specifications of the equipment components are met, so as not to affect the use of the equipment. II. Standardization Principle When designing mechanical equipment, it is essential to ensure standardization in all aspects of the work, which can be analyzed from two perspectives: one is conceptual standardization. During the design process, professional terms, units of measurement, symbols, and the like are inevitably involved. Therefore, it is essential to meet the corresponding design standards; any errors can affect the proper operation of mechanical equipment. On the other hand, method standardization. During the design process, if relevant tests, measurements, and other such tasks are required, they must be carried out at designated locations, following strictly the methods specified in the relevant standards and regulations, in order to ensure the proper performance of the mechanical equipment. III. Safety Principles When designing, the following points should be taken into account regarding safety: 1) Part safety. The quality of the equipment’s components must meet the relevant design standards; moreover, during use, they should not suffer from excessive deformation or breaking, so as to avoid any negative effects resulting from poor design. 2) Work safety. When carrying out the design, it is essential to ensure the safety of the staff and to guarantee the smooth progress of related work. 3) Environmental safety. When carrying out design, it is essential to assess the impact of mechanical equipment on the surrounding environment, such as mechanical noise and exhaust pollution, and to take appropriate preventive measures based on the actual conditions. The above three points represent the main principles for designing non-standard assembly line equipment. In the actual design process, these principles need to be taken into consideration together with the characteristics and requirements of the products to be processed, in order to ensure technical excellence, standardization, and safety in the design.