Solutions

Focusing on processing services, equipment customization, and production line construction, we provide intelligent remanufacturing and intelligent composite additive solutions, covering the full range of needs from single piece repair to large-scale produ

Equipment Customization

Equipment Customization

Intelligent Detection

Testing system: full process intelligent non-destructive testing equipment matrix

In the dimension of equipment customization, we provide an intelligent testing equipment system covering intelligent disassembly, non-destructive testing, failure analysis, and secondary testing, focusing on the quality control requirements of the entire process of additive manufacturing and remanufacturing. The core equipment includes a 3D vision scanning system (accurate identification of component damage morphology and size deviation), nano/micron focal industrial CT (non-contact detection of internal pores, cracks, and incomplete fusion defects), ultrasonic phased array detection system (quantitative evaluation of additive layer and substrate bonding quality), and online infrared imaging monitoring system (real-time tracking of melt pool temperature field and geometric dimensions). By combining multiple detection methods, comprehensive quality monitoring is achieved from powder raw materials, printing process to finished product performance, ensuring consistency and reliability of each batch of products.

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Non standard customization: full process service from testing plan to equipment delivery

We can provide customized services for the entire process from testing scheme design, equipment selection and development to system integration based on specific part types, material systems, quality standards, and testing needs of our customers. The equipment solution can flexibly configure various detection modules such as industrial CT, 3D scanning, infrared thermal imaging, and spectral analysis, supporting internal defect detection, dimensional accuracy verification, and microstructure evaluation of various metal materials such as titanium alloys, high-temperature alloys, and stainless steel. The production line inspection data can be traced and intelligently analyzed throughout the entire process through a customized information system, providing solid data support for quality control in additive manufacturing and remanufacturing, ensuring that every delivered product has evidence to follow and controllable quality.

Intelligent Detection

Equipment Customization

Technical Advantages

Internal wall laser cladding system

○ Schematic content: The backend can be replaced.

○ High integration and stability: Powder, gas, water, and light paths are all integrated into the pipeline

○ Applicable minimum inner diameter of pipe fittings: Ø 33mm

○ Maximum extension length: 4.5m on one side

○ Suitable for blind hole processing: Powder flow, beam 45 ° oblique incidence design

○ Multi functional quick switching: replace the front nozzle to complete various processes such as melting, additive manufacturing, welding, quenching, etc

○ Suitable for multiple materials: can prepare various alloy coatings such as iron-based, nickel based, cobalt based, copper based, composite materials, etc

○ Process online monitoring: Real time monitoring of processing area images and temperature, rapid positioning and alignment of laser inside the tube


Intelligent Detection

Equipment Customization

Technical Background

With the deep evolution of high-end equipment manufacturing towards personalization, precision, and intelligence, traditional standardized equipment is no longer able to meet the manufacturing needs of multiple varieties, small batches, and extreme performance indicators under complex working conditions. Equipment customization technology has become a key link connecting advanced processes and industrial applications. This technology is based on systems engineering theory and integrates cutting-edge methods such as modular design, digital twin, artificial intelligence, and flexible manufacturing. Through multi-dimensional decoupling and reconstruction of customer needs, it achieves precise adaptation of the entire chain from functional definition, architecture design to software and hardware collaborative development. Its core lies in breaking down the information barriers between "equipment process production line", internalizing customer specific material systems, workpiece characteristics, quality standards, and production management logic as the inherent capabilities of equipment, rather than simply stacking external modules. This technological paradigm not only improves the response speed and integration efficiency of equipment to non-standard scenarios, but also promotes the essential transformation of manufacturing equipment from "universal tools" to "specialized capability carriers", providing solid technical support for the large-scale landing of advanced manufacturing technologies such as laser cladding and 3D printing in high-value fields such as aerospace, energy and power, and biomedicine.