

Product advantages: (1) The material utilization rate reaches 90% ~ 95%, which greatly reduces the waste of plates. And (2) that proces flow is simplified, and the proces of punching, forming, contour cutting, tap and the like can be completed by programming once. And (3) that noise pollution is small, the Stam forming and lase cutting processes are reasonably distributed, and the proces technology is optimized. And (4) that flexible proces capacity of the equipment is improved, and the purchase cost of the mould is reduce. (5) It is more convenient to integrate with automatic equipment such as three-dimensional warehouse, automatic loading and unloading, automatic sorting device, etc.

Intelligent flexible bending center is a high-tech product developed and produced for the sheet metal industry to improve production efficiency, reduce labor intensity, reduce labor costs and enhance corporate image. It has been widely used in file cabinets, electrical cabinets, doors, tool cabinets, kitchen utensils, ventilation, air conditioning, purification, education, laboratory equipment and other industries. Applicable to a wide range of materials, mainly stainless steel, carbon steel, copper, aluminum and so on.

▶ New industrial design with simple style, beautiful and elegant appearance ▶ Better parameter ratio, better core configuration, stable performance and easy operation High rigidity frame, worktable mechanical deflection compensation automatic control, to achieve precision bending processing ▶ Advanced assembly technology, more rigorous standards, stable quality control of the whole process







Thermoelectric separation t copper substrate: the circuit part and the thermal layer part of the substrate are on different circuit layers, and the thermal layer part is directly in contact with the heat dissipation part of the lamp bead to achieve the best heat dissipation and heat conduction (zero thermal resistance), generally copper substrate. Thermoelectric separation of copper substrate means that a production process of copper substrate is a thermoelectric separation process, in which the circuit part and the thermal layer part of the substrate are on different circuit layers, and the thermal layer part is directly in contact with the heat dissipation part of the lamp bead to achieve the best heat dissipation and heat conduction (zero thermal resistance).

Double-sided aluminum substrate is a kind of composite material which is made of aluminum metal as the base material and double-sided copper foil and aluminum base layer laminated by epoxy resin adhesive. Its core structure is composed of a circuit layer (copper foil), a thermal insulation layer (epoxy resin substrate) and an aluminum base layer. The double-sided circuit connection is realized through the via-hole technology, and the double-sided interconnection is realized through the laser drilling and electroless copper deposition process. The diameter of the via-hole is less than or equal to 0.3mm [1]. The fabrication process consists of drilling, anodizing the aluminum substrate to form an insulating oxide film with a thickness greater than 10 μM, and press molding with a lamination process [2]. The thermal resistance of the thermal insulating layer of the material directly affects the heat dissipation efficiency of the device, and the typical parameters include a thermal conductivity of ≥ 1.0 W/m · K and a withstand voltage strength of 1000-1500 V. Compared with the traditional FR-4 material, the material can improve the power load carrying capacity by more than 60%. In 2024, the utility model patent proposed to add a heat conduction strip and a frame heat dissipation device to build a three-dimensional heat dissipation path to further improve the heat conduction efficiency. In 2021, the technical literature pointed out that the structure could reduce the thermal resistance to 1.2 ℃ · in ²/W. The test showed that the design could reduce the thermal resistance by 18%. Under the working condition of 30 W/m · K thermal conductivity, The junction temperature of the chip drops by 12 ℃ [1]. It is mainly used in high-power LED lighting modules, new energy automotive power modules and other fields. By 2025, the actual measurement of the product shows that the minimum line width spacing can reach 0.5mm, which meets the needs of complex circuit design.


DMX-800A 1. Whether it is precision parts processing or general mold processing, Youjia's new generation of DMX series vertical machining centers will provide you with impeccable performance. It adopts high-grade cast iron engine body, which is analyzed and designed by ANSYS and NASTRAN. The column "A" shape is strengthened to match the super-large base, and its high rigidity structure ensures long-term stability and accuracy. Equipped with 12000 RPM spindle to meet high surface quality requirements, it is an ideal tool to improve precision machining capacity and quality. 2. The fuselage and castings are made of high-grade Mihanna cast iron, which is stable and deformation-resistant. The main structure is designed by ANSYS/NASTRAN finite element analysis to ensure the best rigidity and stability. 3. The rigidity of the integrated main shaft head is increased by about 5%, the main shaft roller rail achieves high speed and high rigidity, and the bottom of the column is strengthened in the shape of "A". 4. The Z-axis stroke is expanded to 600 mm, the standard 12000 rpm direct-connected spindle is equipped, and the maximum load of the workbench can reach 1200 KG. 5. Excellent fuselage structure with high-speed servo transmission system, X/Y/Z axis fast movement up to 48m/min; The ball screw is directly driven by the same motor to ensure the rigidity and precision of the feed transmission system.

Youjia SMG1100 1. High rigidity. Back wall type gantry structure is adopted. The spindle moves in the X/Z direction. The high-rigidity sliding seat and ram combination adopts a low overhang structure, which greatly reduces the influence of structural deformation on processing, and the whole stroke range is fully supported to ensure good rigidity. The integrated structure of column and beam ensures the minimum Z-direction error during machining load, and has better response characteristics to Y-direction cutting force. The worktable only moves in the Y direction and is supported in full stroke, and there is no eccentric load on the worktable. 2. High speed and high precision. The high rigidity structure is combined with linear motor drive and high precision grating ruler to realize high speed and high precision processing. The fast moving speed can reach 60m/min, and the acceleration can reach 1G. Compared with the traditional screw structure, the linear motor has high responsiveness and no influence of the temperature rise of the screw, thus realizing high-precision processing. The linear motor is equipped with a full-specification cooling system to reduce the impact of motor heating. 3. High-power and high-torque electric spindle, 16000 rpm, 18kW.

Youjia U600X 1. The processing workpiece generates reaction force, which is transferred to each shaft structure to generate load bearing. The suspension mechanism of the moving shaft will also produce load. The structure of U-250 has three wheels without suspension, thus avoiding the load of each axle and maintaining the accuracy more effectively. And 2, that heavy cut also realizes high rigidity and high precision: the three-axis stac full-motion column design does not generate deformation when the X axis and the Y axis move. The resuspension distance between the spindle and the Z axis is extremely short, and the load changes during the movement are extremely low, providing good dynamic accuracy. And 3, the double-side constraint cutter adopts a double-side constraint cutter system, and the closer cutter supports the solid surface to provide more dynamic rigidity and stable precision. The water outlet device in the center of the main shaft improves the deep hole processing capacity, and the cooling water tank is forced to pass through the main uranium center and the cutting tool to reach the cutting point. Roller Guide Roller guides are used for each axis movement to provide better rigidity and reliability.

