Shanghai Fair Indonesia 202611—12 November 2026

Teknologi Inovasi

Shanghai Zhishu Chuangneng Technology Co., Ltd.

One-stop 3D Printing Service Provider Non-metallic & metal 3D printing | R&D and sales of metal 3D printing equipment | Modeling & practical training Empower ideas to come true. Build an inclusive creative platform and energize everyone innovation.

Produk & keunggulan

C200 metal 3D printing equipment

The C200 (economic compact printer) features an integrated control system, a compact body, low deployment threshold, small footprint, and a choice of single/dual lasers. The dual-laser version can enhance small batch production efficiency and can be placed in studios, dentistry, and for rapid verification of small parts, making it an economical device.

M200 metal 3D printing equipment

M200 metal 3D printer (small industrial printer, small R&D/medical prototype model) High-precision molding, strong detail expression, fine spot size, supports Python scripting, facilitating secondary development for thin-layer printing, suitable for dentures, implants, precision structural parts, and lightweight lattice samples. Single/dual laser options available, with the dual-light version enhancing small-batch production efficiency; inert gas protection ensures stability, excellent oxygen content control, and prevents oxidation when printing titanium alloy, cobalt-chromium alloy, and stainless steel. Easy operation, lightweight process, comes with a simple process kit, requires less powder, and allows for quick powder replacement, suitable for new material development, process exploration, product prototype iteration, low operation and maintenance costs, low deployment threshold, can be placed in the laboratory, suitable for research institutes, dentistry, and rapid verification of small parts.

M300 metal 3D printing equipment

The M300 metal 3D printer (a versatile medium-sized basic model, a mainstay for mold/automotive prototyping) boasts a moderate build volume and strong versatility. It strikes a balance between sample size and equipment investment, making it a primary choice for parts prototyping, conformal cooling molds, and lightweight automotive structural components. Multiple laser configurations are available (single/dual/quad laser), with the quad-laser version significantly enhancing surface scanning efficiency. When printing mold inserts and radiators in bulk, productivity is notably boosted. The bidirectional powder spreading system ensures even and stable powder spreading, while the air path smoke and dust circulation purification system optimizes the airflow within the chamber, effectively removing molten pool splashes and ensuring mechanical consistency across the entire part. The part density can reach over 99.9%. The open process software platform supports custom scanning strategies and zoning parameters, facilitating material development for process engineers. It can be integrated with MES and supports production data traceability.

M450 metal 3D printing equipment

M450 metal 3D printer (medium-to-large size industrial mass production model, mainstream for aviation molds) The large-scale forming cylinder can directly print large molds and aviation structural components, reducing the need for part disassembly and welding and ensuring overall mechanical performance. Single/dual laser configurations are optional. The dual-laser version boasts a maximum forming speed of 65cm³/h, achieving an efficiency improvement of approximately 70% compared to the single-laser version, making it suitable for medium-volume industrial production. The full-format printing exhibits excellent consistency, with optimized wind field simulation, stable temperature field across the entire forming area, and the ability to print multiple parts on the same plate with mechanical performance fluctuations of less than 5%. The powder closed-loop management system integrates large-capacity powder supply, recovery, and screening, achieving high powder utilization rates, reducing manual contact with powder, and enhancing safety. With one-click printing and automatic generation of full-process reports, the printing process is monitored in real time, and parameters are automatically archived, meeting the quality traceability requirements in the aviation and military industries.

M460 metal 3D printing equipment

The M460 metal 3D printer (a high-efficiency model dedicated to multi-laser molds/shoe molds) can integrally form conformal cooling waterways, micron-sized breathable micropores, and fine sole textures, replacing chemical etching with digital texturing. With multi-laser batch printing and variable layer thickness technology, it significantly shortens the mold opening cycle for shoe molds, enhances the production capacity and yield of shoe sole foaming, and is suitable for digital mass production of EVA, RB, and popcorn sole molds. It can accurately reproduce patterns at the 0.01mm level. The upper powder feeding + high-speed bidirectional powder spreading structure ensures faster powder spreading speed, with a precision-adjustable scraper, strong compatibility for thick layer technology, and further improves production efficiency. The fully open process data package supports customers in independently developing new material process packages, and is compatible with various refractory metals such as nickel-based high-temperature alloys, aluminum alloys, titanium alloys, and high-strength steels. The overall safety interlock system has been comprehensively upgraded, providing multiple alarm protections for explosion prevention, pressure, and oxygen content. It can be integrated with automated production lines and is suitable for building digital factories.

M500 metal 3D printing equipment

M500 metal 3D printer (large-size multi-laser high-efficiency mass production model/high-efficiency model dedicated to large shoe molds) With a large build platform, it supports parallel scanning with four lasers and collaborative zoned scanning with four galvanometers, significantly enhancing build efficiency. It is suitable for mass production of large parts and offers outstanding productivity advantages. The high-precision optical system ensures stable beam quality and high control accuracy in multi-laser overlapping areas, with no significant degradation in mechanical properties in the overlapping area, guaranteeing uniform quality for large parts. The closed powder management system ensures that powder conveying, screening, and recycling are all carried out in a sealed environment, reducing powder loss and dust safety risks, and meeting the clean production requirements of military and medical industries. The wide layer thickness process range supports variable layer thicknesses from 20 to 90μm, ensuring surface quality in fine areas with thin layers and speeding up production in solid areas with thick layers, balancing accuracy and efficiency. The equipment is designed with modularity, allowing independent maintenance of the build cylinder, powder module, and filtration module, resulting in short downtime for maintenance and higher production line utilization

M700 metal 3D printing equipment

The M700 metal 3D printer, designed for ultra-large build sizes and specifically tailored for large-scale components, boasts an expansive build chamber. It is primarily targeted at aerospace and energy equipment industries, where it can directly print large, complex, and integrated structures. The printer features dynamic inert atmosphere control within its large cavity, a high-capacity recirculation air path, and precise oxygen content control, enabling long-duration printing of easily oxidizable materials such as high-temperature alloys and titanium alloys. Its heavy-duty, high-precision Z-axis motion system offers strong load-bearing capacity, high Z-direction repeatability, and excellent layer stability for large prints, thereby reducing the risk of deformation in large parts. The automated powder feeding, cleaning, and screening system is ideal for modular powder stations in large-scale additive manufacturing facilities. With independent powder processing units and a large powder capacity, it allows for the separation of printing and powder processing stations, enhancing operational safety and catering to high-end equipment manufacturing.

M800 metal 3D printing equipment

The M800 metal 3D printer, a super-large industrial-grade flagship model, features a large-size forming cylinder, catering to the integrated part manufacturing of aviation main load-bearing components, ships, nuclear power, and heavy equipment, meeting the needs of ultra-large-scale additive manufacturing. With multi-laser synchronous scanning and a comprehensive thermal balance temperature control design, it compensates for uneven temperature fields in the ultra-large forming chamber, thus inhibiting warping and cracking of large parts and enhancing the one-time success rate for large components. The printer integrates a fully automated powder closed-loop production line interface, which can be connected to automated powder conveying, cleaning, and screening systems, supporting unmanned continuous production and ideal for large-scale additive manufacturing factories. The hardware is designed with redundancy and safety in mind, featuring multiple layers of protection for the gas circuit, oxygen control, and motion systems, ensuring high reliability for long-duration continuous production.

M1200 metal 3D printing equipmentM800 metal 3D printing equipment

The M1200 metal 3D printer (a meter-scale ultra-large format strategic equipment dedicated to giant components) is targeted at aerospace, large rocket structural components, ultra-large satellite structures, and heavy equipment with ultra-large integrated complex components. It can form ultra-long-sized parts and is the core equipment for additive manufacturing of large monolithic parts. With a multi-laser array and multi-galvanometer zoned scanning, it balances ultra-large forming surface and forming efficiency. Equipped with a high-precision optical system, it ensures uniform forming quality across the entire surface. The intelligent wind field and temperature control system in the large cavity suppresses splashes and smoke dust accumulation during large-scale forming, mitigates part deformation caused by temperature gradients, and improves the yield of large parts. The whole process is digitally controlled, with a built-in multi-sensor cluster that monitors oxygen content, pressure, temperature, and powder spreading status in real time. Massive process data storage meets the requirements of high-end industry audits and quality systems. The modular split layout separates the forming host, powder processing unit, and dust filtration unit, reducing the weight of each individual device and facilitating lifting and deployment in the factory; it can serve as the core host of an additive manufacturing production line.

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