





Diameter Tolerance: ±0.01 mm Hardness: HRB ≤ 15 Tensile Strength: ≤ 228 MPa Yield Strength: ≤ 103 MPa Elongation: ≥ 16% Characteristics Low tensile and yield strength, high elongation, easy to deform and process, stable performance, excellent oxidation effect with batch-to-batch consistency, low internal stress after post-processing, and customizable special profiles. Applications Suitable as billet material for cold forging and warm forging of aerospace components and high-strength parts.

Diameter Tolerance: ±0.05 mm Hardness: HRB ≤ 15 Tensile Strength: ≤ 228 MPa Yield Strength: ≤ 103 MPa Elongation: ≥ 16% Characteristics Low tensile and yield strength, high elongation, easy to deform and process, stable performance, excellent oxidation effect with consistent quality across batches, low internal stress after post-processing, and customizable special profiles. Applications Suitable as billet material for cold forging and warm forging of aerospace components and high-strength parts.

Outer Diameter Tolerance: < 1 μm Inner Diameter Tolerance: ±0.05 mm (Smooth Inner Wall) Hardness: HRB 88 ± 2 Tensile Strength: > 590 MPa Yield Strength: > 570 MPa Elongation: ≥ 10% Characteristics Stable performance, excellent and consistent oxidation effect, easy to turn, and customizable special profiles are available. Applications Suitable for fields requiring high strength, lightweight, corrosion resistance and high-grade oxidation performance.


The product is designed with single-arm structure. Performance benefits: 1. Extreme space utilization: reduce the space occupied by one support arm, which is especially suitable for automatic layout in multi-machine connection or limited space. 2. Processing diversification: A axis swing angle range of ± 120 °, to meet the needs of diversified processing 3. Maintenance-free design: no mechanical transmission wear, good accuracy retention for long-term use, and reduced maintenance costs. Application scenario: 1. Humanoid robot: bionic fingers, small joints and other micro, precision, multi-angle curved surface of complex structural parts, single-arm structure allows the tool closer to the workpiece, easy to achieve 45 ° swing angle with C-axis rotation, complete bionic milling 2. Aerospace: Small turbine disks, blisks, small structural parts, hydraulic valve bodies and other difficult-to-cut materials such as high-temperature alloys can be processed, and complex features can be clamped at one time. 3. Medical equipment industry: medical equipment: orthopedic implants (artificial joints, bone plates), surgical instruments and other medical equipment implants with high precision and high surface finish 4. Optical manufacturing: optical lens molds, precision optical instrument structures and other ultra-high precision meet the requirements of optical surface.

This product adopts dual torque motor direct drive (double A-axis & C-axis), abandons the traditional mechanical transmission structure, and realizes five-axis linkage processing with zero backlash and high rigidity. Both axes are equipped with high resolution absolute value circular grating to realize full closed-loop control, which can achieve a segmentation accuracy of ± 2.5 arc seconds and a repeated positioning accuracy of 2 arc seconds. Performance benefits: 1. High speed and high dynamic response: A axis is driven by double-arm or single-arm large torque motor to improve the processing efficiency of complex curved surface. 2. Thermal stability and reliability: Aviation grade water cooling technology is adopted to restrain temperature rise and reduce the influence of thermal deformation on processing accuracy. 3. High-rigidity bearing: Equipped with high-rigidity combination bearing, it has excellent radial, axial and overturning rigidity, which can meet the precision linkage processing needs of heavy workpieces (such as 500 kg). Application scenario: 1. Humanoid robot: It can process humanoid robot bionic shell, chest frame, limb transition parts and other large structural parts and complex curved surfaces with deep cavity and negative angle. 2. Aerospace: large superalloy structural parts such as aero-engine blades and turbine disks/impellers 3. New energy industry: motor shell, motor stator silicon steel sheet, lithium electrode sheet cutting and other high-precision parts

This product is directly driven by a high-torque direct-drive torque motor, which completely eliminates the backlash and wear problems caused by traditional mechanical transmission. The unique structural design enables it to be installed and used freely in both vertical and horizontal postures, and one turntable meets the needs of various processing scenarios, which greatly improves the utilization rate of equipment. Performance benefits: 1. Flexible conversion of double postures: It can be used as a horizontal installation to cooperate with the tailstock to realize the precise rotary machining of long-shaft parts; it can also be installed on the working table of the machining center by the vertical fourth shaft to carry out the multi-surface indexing machining of plate and disc parts. 2. High speed and high precision: high resolution absolute value circular grating full closed-loop control is adopted, the positioning accuracy can reach ± 2.5 arc seconds, and the repeated positioning accuracy is 2 arc seconds. 3. High rigidity locking system: hydraulic brake locking mechanism is adopted to ensure the posture stability during heavy cutting. 4. Maintenance-free design: The direct-drive structure has no wear of transmission parts, good accuracy retention after long-term use, and reduces the maintenance cost of users. Application scenario: 1. Humanoid robot: parts with high lightweight and precision requirements, such as precision components of rotary joints, dexterous hands and precision structural parts of small arms. 2. Semiconductor industry: wafer lithography alignment, high-precision rotary scribing/dicing wafer, multi-angle etching and film formation, wafer bonding, die bonding, mounting, wafer/chip AOI inspection, probe testing 3. Aerospace: test and calibration of small and medium-sized engine core components, hydraulic/fuel system precision valve body, inertial navigation equipment


CMZ ultra-high precision coordinate measuring machine is a high-end metrology equipment produced by TZTEK. The Z-axis is made of silicon carbide material, and the machine structure adopts a fixed-bridge design, ensuring the stability of the mechanical structure. The use of linear motors ensures both precision and higher measurement speed and acceleration, meeting the measurement needs of complex components. CMZ series boasts excellent accuracy, high efficiency, and stable performance, helping to achieve precise machining, assembly, and quality control. It is applicable in fields such as metrology, aerospace, national defense, automotive manufacturing, and electronics industry.

CMU high-precision coordinate measuring machine is a high-end measuring equipment produced by TZTEK. It adopts the form of single-side elevated structure, which makes the moving mass lighter and effectively improves the motion performance as well as the stability of accuracy. The use of linear motors provides higher measuring speed and acceleration while ensuring accuracy, which can meet the measurement needs of complex parts with excellent accuracy, high efficiency and stable performance, helping to realize precision machining, assembly and quality control. It can be applied in automobile manufacturing, medical industry, electronics industry and other fields.

CME adopts stable rectangular beam structure to increase the rigidity of the structure, and the structure of the moving bridge design to ensure high efficiency and high precision measurement. CME series is designed to meet the user's basic needs for 3D measurements, with high precision, versatility, automation, flexibility, etc., providing stable and efficient measurement solutions for the production site and R & D centers. It is widely used in machinery manufacturing, mold manufacturing, automotive industry, electronic industry and other fields.
.png)

