China's packaging equipment development direction
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First, Packaging product processing machinery and packaging container processing machinery
1. Multi-layer wide-width high-strength corrugated cardboard and carton equipment. Improve the automation and intelligent control level of continuous production of corrugated board production, die cutting, indentation, printing and box making production lines. Focus on the development of complete sets of equipment, the development of wide-width, 5-layer, 7-layer, 9-layer and high-strength corrugated board production equipment above 2000mm and indentation, die-cutting, box-making, printing (including color printing) complete sets of equipment, as well as moisture, printing, Multi-functional equipment such as boxes.
2. Pulp molding machine. Increase the variety of pulp molding machinery products, and adapt to the production of pulp molded packaging products with different thickness specifications and packaging functions.
3, metal can packaging container processing equipment. Centralized control and frequency conversion technology of steel three-piece can production line. Development of steel two-piece can forming equipment. The development of mercury-free high-speed welding machines, composite tanks, shaped cans, spray cans and other complete cans and equipment, as well as supporting equipment such as necking, glanding and printing.
4. Plastic hollow container processing equipment and mold design and manufacturing technology. Develop high-efficiency energy-saving extrusion heads and wall thickness control systems to develop PET bottle making systems.
5, glass bottle bottle machine. Develop 10 groups and 12 sets of double-drop microcomputer control molding equipment to develop lightweight bottle production technology.
Second, direct packaging machinery
1. Complete sets of beer and beverage equipment. Appropriately develop small and medium-sized beer and beverage canning equipment of 50,000 tons/year or more, and appropriately develop large-scale beer and beverage canning equipments of 100,000 tons/year or above, and adapt to the development direction of “concentrated production of dispersed cans” in the beverage industry. Develop on-site deployment of technical equipment (including packing, unloading, sterilization, labeling, in-situ cleaning, etc.) to develop high-speed, low-loss, accurate measurement, automatic detection and other multi-functional, fully automatic large-scale equipment. The production efficiency of filling, glanding and labeling is coordinated, and the overall technical level of beer and beverage filling is improved.
2. Vacuum and ventilation packaging equipment and devices. Focus on the development of continuous vacuum packaging equipment for large bag capacity (1~10kg), high-efficiency ventilation packaging equipment for charging various gases into bags, and vacuum and ventilation devices for multi-functional packaging machinery. .
3. Aseptic packaging equipment. Development of aseptic packaging systems for liquid and semi-fluid foods and their associated equipment, including disposable packaging products for smaller containers, as well as larger intermediate products for dispensing. Development of aseptic filling systems, cartons for plastic packaging, plastic cups, can forming equipment, and aseptic bag packaging equipment.
4, bag forming? D filling? D sealing equipment. Develop a series of products suitable for different state materials and different packaging weights, solve the adaptability, matching and reliability of the products, and develop to a multi-functional, automatic and high-speed development, and develop high-level automatic powder packaging machines to meet such as The automatic packaging requirements for various powders such as milk powder and washing powder focus on the packaging of milk powder, washing powder, starch and finished food. The development of electronic scale measurement makes it a multi-functional device that can be used independently for packaging and can be molded with various containers, D filling and D sealing equipment, to improve the filling accuracy and speed of powder and pellets. Developed a combined weighing machine with computational control to meet the requirements of high-speed, high-precision metering for weighing different materials.

