

The machine tool adopts gang tool type, with stable tool changing precision and high structural economy, and can expand the power head to realize turn-milling combined machining. The double spindle adopts servo synchronous electric spindle with high speed, accurate precision and low noise. Taiwan precision linear guide and ball screw pair are adopted, and the ball screw is pre-stretched to improve the rigidity and reduce the influence of cold and hot machine on the processing accuracy. High pressure and large flow water cooling system is adopted, and the tool apron sprays water powerfully, which has the function of breaking chips to prevent the spindle from receiving material and jamming chips.

▼ High rigidity, heavy cutting and high stability: Adopt integral casting inclined lathe bed, 30 ° inclined lathe bed structure, and design with heavy stiffeners to minimize distortion and thermal deformation. ▼ High precision and high dynamic response: high precision ball bearings are used in the front and rear, so that the spindle can obtain high rigidity and extremely high spindle rotation precision; the spindle servo unit has high precision and is convenient for maintenance and repair. ▼ High efficiency: The maximum speed of the main shaft is 4500rpm/min, and the fast movement can reach 30m/min. ▼ Y axis and X axis adopt non-orthogonal structure, and the virtual Y axis structure is obtained by interpolation with X axis, so that the center of gravity of the lathe bed is lower, the structure is compact, and higher cutting rigidity and stability are met.

▼ The integral casting inclined lathe bed with 30 ° inclined guide rail is adopted, so that the operator can easily get on and off the workpiece, and the cutting is smooth. It is designed with thick stiffeners to minimize distortion and thermal deformation. The wide bed and precision rolling linear guideway enable the machine to achieve heavy cutting characteristics and long accuracy retention. ▼ The guide rail adopts the precision ball type linear guide rail, with the rail width of 45mm; the saddle guide rail has a large span, which can support heavy cutting for a long time. ▼ The feed unit uses a 32 mm diameter ball screw with preload at both ends to eliminate the loss of accuracy due to thermal elongation.


Applied to CNC machine tools to detect tool wear, online automatic compensation to meet the needs of automated production, improve processing efficiency and reduce the generation of defective products.

Accurately prevent the occurrence of poor reproduction of CNC machine prices, prevent the production of defective products in the manufacturing process.

On-line detection of product processing size to achieve on-line compensation to prevent the generation of defective products, greatly improving the processing efficiency.



JH5, a domestic horizontal machining center with double exchange worktables, continues the consistent core advantages of Muye equipment, deeply integrates the three characteristics of "high rigidity, high stability and high durability" into the product gene, provides core support for enterprises in the market competition of multi-varieties and fast delivery, and helps parts manufacturing enterprises to cope with the production challenges of rapid changes in the market. JH5 is suitable for a variety of processing scenarios, which can not only be suitable for mass production scenarios, meet the large-scale processing needs of parts suppliers, but also for complex parts processing tasks in the field of general engineering machinery processing.

Makino DA500 machine tool is a high-performance 5-axis vertical machining center, designed to improve the productivity and accuracy of parts processing, which can achieve agile feed axis movement and efficient processing. Processing advantages 1 Efficient machining: Makino DA500 can significantly reduce various non-cutting time, including spindle acceleration, positioning, tool change, tool breakage detection and pallet change time, thus improving the overall machining efficiency. 2. High-precision machining: By using advanced control technology and high-precision sensors, the machine tool can achieve micron-level machining accuracy and meet the machining requirements of high-precision parts. 3 Flexibility: The machine tool is equipped with a wealth of optional specifications and equipment, which can be customized according to the specific needs of customers, such as pallet magazine specifications, turntable functions, etc., to enhance the flexibility and adaptability of processing. Field of application Makino DA500 machine tool is widely used in semiconductor equipment, medical, aerospace, automotive parts and other high-precision, high-efficiency processing fields. Its excellent processing performance and flexibility enable the machine to meet the processing needs of complex parts and improve production efficiency and product quality. In addition, the machine tool is also suitable for occasions requiring rapid production change and processing of various workpiece sizes, which is helpful for enterprises to improve overall production efficiency and competitiveness.

EDAF2i ULTRA is the latest high-precision CNC EDM machine tool launched by Makino Machine Tool. It uses Makino's newly developed micro-EDM control circuit and marble worktable to release powerful machining performance and improve the quality and efficiency of EDM surface to a new height. Processing advantages: Vdi grain surface uniformity, connector corner clearing and melting, electrode loss control, processing efficiency, etc. Applications: ultra-precision connector industry, medical industry, IC packaging industry and other industries with higher requirements for EDM


AC servo motor has been more and more widely used because of its advantages of fast response and high transmission speed. Such as: CNC machine tools, printing equipment, packaging equipment, textile equipment, laser processing equipment, robots, automated production lines, polarimeters and other equipment with relatively high requirements for process accuracy, processing efficiency and reliability.

Cylindrical grinding spindles are specially designed for precision miniature (inner) outer diameter grinding machines.




Using the radius measurement method with the workpiece rotating, the system can measure and analyze functions such as cylindricity, roundness, straightness, coaxiality, concentricity, face run-out, total face run-out, perpendicularity, parallelism, and flatness. It can also analyze surface waviness, spectral analysis, wave height analysis, adjacent disc run-out, and inter-disc step differences.

Translation: This instrument employs the Cartesian coordinate measurement method with a stylus contact approach. It can measure the following dimensions, angles, tolerances, and generate auxiliary elements, as well as perform roughness and waviness analysis: Dimensions: Horizontal distance Vertical distance Linear distance Radius Diameter Angles: Horizontal angle Vertical angle Included angle Positional Tolerances: Parallelism Perpendicularity Form Tolerances: Straightness Flatness Circular profile Auxiliary Generation: Auxiliary points Auxiliary lines Auxiliary circles Roughness Analysis: Arithmetic mean height (Ra) Root mean square height (Rq) Maximum height of the profile (Rz) Peak height (Rp) Total height of the profile (Rt) Skewness (Rsk) Mean spacing of the profile elements (Rsm) Core roughness depth (Rc) Rz (DIN standard) R3z Rz (JIS standard) Maximum peak height (Rpmax) Maximum profile peak height (Rpm) Kurtosis (Rku) Root mean square height of the profile (Rdq/RΔq) Maximum profile valley depth (RδC) Material ratio at a specified section (Mr1, Mr2) Core roughness depth (Rpk) Valley depth of the core roughness (Rvk) Core roughness depth (Rk) Reduced peak height (Rdc) Amplitude parameters (A1, A2) Maximum profile height (Rx) Maximum profile height (AR) Core roughness depth (Rpc) Maximum roughness depth (Rmax) Rz (ISO standard) Profile height (4um) Maximum profile height (Ry) Waviness Analysis: Total waviness height (Wt) Arithmetic mean waviness height (Wa) Maximum waviness peak height (Wp) Maximum waviness valley depth (Wv) Root mean square waviness height (Wq) Core waviness depth (Wc) Kurtosis (Wku) Skewness (Wsk) Maximum waviness height (W) Maximum waviness height (Wx) Maximum waviness height (Wz) Mean spacing of the waviness profile elements (Wsm) Reduced peak height (Wdc) Total waviness height (Wte) Material ratio at a specified section (Wmr) Amplitude parameter (Aw) Material ratio curve (C(Wmr)) Material ratio at a specified section (Wmr(C)) Root mean square waviness height (Wdq/WΔq) Primary Profile Analysis: Total profile height (Pt) Arithmetic mean profile height (Pa) Maximum profile peak height (Pp) Maximum profile valley depth (Pv) Root mean square profile height (Pq) Core profile depth (Pc) Kurtosis (Pku) Skewness (Psk) Root mean square profile height (Pdq/PΔq) Mean spacing of the profile elements (Psm) Reduced peak height (Pdc) Material ratio at a specified section (Pmr(c)) Maximum profile height (Pz) Material ratio at a specified section (Pmr) Material ratio curve (C(pmr))



High precision, large thrust, fast response, energy saving and wide application.

Large output, fast speed, easy to use, suitable for different press mounting occasions.

High precision, can be positioned and analyzed, and can be applied to different press mounting process requirements.