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máy phun bột

  • Đừng để những vấn đề phun này làm hỏng sản phẩm của bạn
    Đừng để những vấn đề phun này làm hỏng sản phẩm của bạn
    Jul 30, 2025
    Độ bám dính của bột không chắc chắnĐộ bám dính lớp phủ kém có thể dẫn đến tình trạng bột bị bong tróc hoặc không đều màu. Các nguyên nhân phổ biến như sau:Xử lý bề mặt chưa hoàn thiệnNếu bề mặt nền không được làm sạch kỹ lưỡng, không bị rỉ sét hoặc không được xử lý, bột sẽ không bám dính chặt và lớp phủ sẽ bong ra.Chất giải quyết:. Làm sạch và loại bỏ rỉ sét theo đúng yêu cầu xử lý bề mặt để đảm bảo bề mặt nền sạch và không còn dầu.. Sử dụng các phương pháp xử lý bề mặt phù hợp như phosphat hóa, phun cát, v.v. Có những hạt và gợn sóngSự tích tụ các hạt và gợn nước là những khuyết điểm thường gặp trong quá trình phun, thường biểu hiện bằng các vết lồi hoặc lõm không đều trên bề mặt lớp phủ.Độ nhớt của bột phun quá caoKhi độ nhớt của bột quá cao, bột không thể phân bố đều trong quá trình phun và dễ bị vón cục, tạo thành kết cấu không đều.Chất giải quyết:.Chọn loại sơn phủ bột phù hợp để đảm bảo độ nhớt vừa phải..Điều chỉnh lượng bột phun và áp suất phun của vòi phun để giảm thiểu các vấn đề do bột có độ nhớt cao gây ra.Môi trường phun quá ẩmMôi trường có độ ẩm cao sẽ dẫn đến việc hấp thụ độ ẩm của lớp phủ bột, làm giảm lưu lượng của nó và sau đó ảnh hưởng đến hiệu quả phun, dẫn đến tích tụ sóng nước hoặc hạt.Chất giải quyết:. Kiểm soát độ ẩm của môi trường phun để đảm bảo độ ẩm dưới 50%.. Sử dụng khô lớp phủ bột và tránh sử dụng bột hết hạn hoặc bột hút ẩm trong môi trường ẩm ướt.
    ĐỌC THÊM
  • Intelligent Empowerment of Powder Spraying Machines: Leading the Intelligent Reform of Coating Industry
    Intelligent Empowerment of Powder Spraying Machines: Leading the Intelligent Reform of Coating Industry
    May 12, 2026
    In the wave of Industry 4.0, intelligentization has become the core breakthrough point for the iterative upgrading of industrial equipment, and powder spraying machines are taking the lead in completing the transformation from traditional mechanical equipment to intelligent integrated equipment. It is no longer a simple spraying tool, but a smart terminal integrating perception, analysis, adjustment and execution, rewriting the operation mode of the entire coating industry.   Traditional powder spraying machines rely heavily on manual experience for parameter setting and operation adjustment. Workers need to repeatedly debug according to the shape, material and spraying requirements of workpieces, which not only has high technical threshold, but also easily causes unstable coating quality and inconsistent production standards. With the deep integration of IoT technology, AI algorithm and machine vision, modern powder spraying machines have broken this bottleneck thoroughly.   Machine vision recognition technology endows the spraying machine with "perception ability". It can automatically identify the contour, corner and special structure of irregular workpieces, independently plan the optimal spraying path, and avoid spraying dead angles and powder accumulation. No matter complex hardware parts, automotive accessories or household appliance shells, it can realize adaptive spraying without manual repeated programming.   The embedded intelligent algorithm realizes real-time dynamic optimization of spraying parameters. The equipment can monitor environmental temperature, humidity, powder flow and electrostatic voltage in real time, automatically adjust atomization volume and spraying distance according to changes in the production environment, and always maintain the best coating state. Meanwhile, the cloud interconnection function supports remote monitoring, data synchronization and fault early warning. Enterprises can view production data anytime and anywhere, realize predictive maintenance of equipment, and greatly reduce downtime losses.   Intelligent upgrading also brings qualitative changes to production management. The intelligent powder spraying production line can realize seamless connection with automated manipulators and assembly lines, forming an unmanned full-process operation mode from feeding, pretreatment, spraying to curing. It not only liberates labor, reduces human error interference, but also realizes standardized and streamlined production.   In the future, the intelligent evolution of powder spraying machines will continue to deepen. With the empowerment of digital twin technology and big data analysis, equipment will have stronger self-learning and process optimization capabilities, provide customized spraying solutions for different industries, and become an important cornerstone for manufacturing enterprises to build smart factories.
    ĐỌC THÊM
  • Green Innovation of Powder Spraying Machine: Eco-friendly Development of Low-carbon Coating Era
    May 12, 2026
    Environmental protection and low-carbon have become the inevitable theme of global industrial manufacturing transformation, and powder spraying machines, as key equipment for surface coating, are leading the coating industry to bid farewell to high-pollution and high-energy consumption with continuous green technological innovation, opening a new chapter of sustainable production. Traditional liquid coating processes rely heavily on organic solvents, which will produce a large amount of volatile organic compounds (VOCs) during construction, causing air pollution and also bringing hidden dangers to the occupational health of operators. As a representative of green coating equipment, modern powder spraying machines completely abandon solvent-based raw materials and adopt solvent-free powder coatings, achieving near-zero VOC emissions fundamentally, which perfectly complies with increasingly stringent global environmental protection policies. The optimization of powder recovery system is the core highlight of green innovation of powder spraying machines. Traditional equipment has a low powder utilization rate, and a large amount of excess powder drifts away with the air flow, which not only causes serious material waste, but also pollutes the workshop environment. The new generation of powder spraying machines adopts closed-loop recycling design and high-efficiency dust purification structure, which can recover excess floating powder to the greatest extent, with the powder utilization rate exceeding 95%. The recycled powder can be reused after simple filtering, which greatly reduces production costs while cutting waste emissions. Energy-saving technological innovation runs through the whole operation link of the equipment. Modern powder spraying machines adopt low-power electrostatic control modules and optimized air duct design, effectively reducing electric energy loss during operation. Matching with low-temperature curing technology, it lowers the required curing temperature of powder coatings, shortens heating time, reduces the energy consumption of curing ovens by more than 25%, and realizes double energy saving in spraying and curing links. In addition, the structural design of the equipment also adheres to the green concept. The application of wear-resistant and corrosion-free environmentally friendly materials prolongs the service life of the equipment and reduces the waste generated by equipment replacement. The optimized mute and dust-proof design improves the production workshop environment, reduces noise and dust pollution, and creates a safer and more comfortable working space. Driven by the dual constraints of environmental protection policies and market demand, green upgrading has become the only way for the powder spraying machine industry. Future technological research and development will focus on low-carbon materials, ultra-low energy consumption operation and zero-emission recycling system, helping more manufacturing enterprises realize green transformation and contribute to the global goal of carbon peak and carbon neutrality.  
    ĐỌC THÊM

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