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Bench vice is a tool used to fix and clamp workpieces, which is widely used in fitter workshop, machining, woodworking and other fields. Its main functions include: Metal processing: fix metal workpieces on drilling machines, milling machines and other equipment to ensure the stability and accuracy of drilling, milling and other operations. Carpentry: Fixing lumber for cutting, sanding, nailing, etc. Bench work: hold the workpiece to facilitate manual operations such as sawing, filing, etc.

Tapping machine worktable is an important part of the tapping machine, which is used to place and fix the workpiece. It is resistant to corrosion, dirt, and impact, can withstand a certain amount of weight, and is suitable for a variety of different applications. Main functions: Workpiece positioning and fixation: ensure the accurate and stable position of the workpiece in the tapping process, and prevent the machining accuracy from being affected by movement. Support tapping operation: provide a stable operation basis for the tapping machine, so that the tap can accurately process the workpiece. Improve the processing efficiency: through reasonable design, such as the turntable table, can achieve multi-station processing, improve production efficiency.


The four-axis rotary table can complete the tasks that the three-axis machine tool can not complete at one time, and can realize the multi-surface processing of the product by rotating, thereby greatly improving the processing efficiency and reducing the clamping times. In particular to convenient processing of cylindrical parts.

Five-axis machining refers to NC machining operations in which the workpiece or machine tool moves along five axes simultaneously. This advanced machining technology allows manufacturers to produce parts with more complex or sophisticated designs at higher speeds and higher quality with little additional machining.



Blast heating regenerative adsorption dryer is a kind of energy-saving compressed air dryer. It uses the blower to extract the moisture in the desorbed adsorbent after the ambient air is heated, which avoids the loss of the finished gas in the heating stage of the micro-thermal regeneration adsorption dryer. Only a small portion of the finished gas is consumed during cold blowing. This type of dryer is suitable for working conditions requiring low regeneration gas consumption. PLC can be used to control the switching of valves. It is also equipped with multi-level protection devices, and the overall performance of the machine is good. Ambient air is used for regeneration heating, and there is no loss of finished gas during heating, which has the advantage of energy saving. If there is any problem with the blower, it will automatically switch to tepid mode and the drying function will continue to operate. Stable dew point, low pressure dew point, low gas consumption. High protection grade: IP55, high efficiency adsorbent. The automatic constant pressure function can prolong the working life of the adsorbent. Advantages of the energy-saving zero gas consumption blast hot dryer: continuous gas supply, unique measures to ensure that there is no gas cut-off when the adsorption tower is switched, and to avoid the impact of instantaneous airflow on the adsorbent when switching. A filtering device is arranged in front of the blower to ensure that the blower and the adsorbent are not polluted, and a pipeline silencer is arranged at the rear end; an external high-efficiency electric heater adopts a constant temperature controller to ensure the constant temperature of the regeneration gas and prevent the adsorbent from overheating. Adsorbents with high performance and high quality are used, and their performance is recognized by the industry. The dew point is stable, the pressure dew point is low, and there is no fluctuation; the airflow distribution structure: the bottom of the drying tower is provided with a bipolar airflow distribution structure. Nsures that the contact time of the compressed air and the adsorbent reaches the specified dew point temperature, simultaneously reduces the impact of airflow on the adsorbent, reduces the abrasion and improves the service life of the adsorbent.

The compression heat regeneration adsorption dryer uses the heat of the high-temperature exhaust of the air compressor to directly heat and regenerate the desiccant, cancels the electric heater of the micro-heat regeneration, and at the same time, because there is no gas consumption during heating and regeneration, the energy consumption is saved to the greatest extent. In order to ensure the regeneration effect and make up for the decrease of the exhaust temperature of the compressor caused by seasonal changes. Auxiliary heaters are available, as well as zero gas consumption compression heat regeneration adsorption dryers. Energy-saving zero gas consumption compression heat dryer features: no need for additional electric heater (conventional pressure dew point); reasonable cylinder design ensures the contact time between compressed air and desiccant; large diffuser ensures that the airflow passes through the desiccant layer evenly, eliminating the channeling phenomenon; The compressed air directly transfers most of the heat to the desiccant. The good cooling effect of the aftercooler ensures the adsorption effect. The powerful water removal function of the synthetic oil-water separator ensures that the liquid water is completely removed before the airflow enters the adsorption cylinder. The equipment adopts novel pneumatic valve and advanced and reliable PLC program controller, which has the characteristics of automatic timing and automatic switching. Stable and reliable operation, not affected by power grid, voltage, electric field, etc. No basic installation is required, and the installation is simple.

The dual-core high-efficiency energy-saving refrigeration dryer changes the single function of the traditional refrigeration dryer, and the microcomputer control panel solves the remote start-stop and fault alarm functions of the central control room required by customers; It simplifies the complex on-site installation process, solves a variety of pain points in installation and use, and will not cause the machine to be unable to use normally due to customer drawing problems or installation errors. It saves a lot of installation time and consumables, and is safer, more efficient, environmentally friendly and convenient. This series of products are divided into water-cooled and air-cooled products. The dual-core high-efficiency energy-saving suction dryer changes the single function of the traditional suction dryer, firstly reduces the temperature to the temperature required by the inlet of the suction dryer by using the cooler, solves the problem of low inlet temperature requirement of the single suction dryer, simplifies the complex on-site installation process, solves various pain points in the installation and use of one machine, and does not cause the machine to be unable to be used normally due to customer drawing problems or installation errors. It saves a lot of installation time and consumables, and is safer, more efficient, environmentally friendly and convenient.




Precision ball screw support seat: specially designed for precision equipment with high requirements, it is the core basic part of the transmission system. Precision manufacturing and innovative design ensure high precision movement and long service life. Core strengths: High precision and stable operation Precision machining ensures micron concentricity and rigidity. The optimized design can effectively eliminate the clearance, suppress the vibration, and realize accurate positioning and smooth running track. Long life, more durable High-quality bearings, enhanced sealing and lubrication design. Anti-wear, anti-pollution, can maintain stability under high speed and high load, significantly reduce wear and prolong the overall service life of the equipment. Easy installation and wide compatibility Modular and standardized design, easy installation and commissioning. Complete product range, compatible with various specifications of ball screw and motor, easy for system integration. Main applications: CNC machine tools, industrial robots, semiconductor equipment, automated production lines, precision measuring instruments and other high-precision transmission fields. Choose this product to build a reliable foundation of precision and durability for your equipment.

This product adopts an integrated structural design, integrates the motor installation benchmark with the equipment support frame, and fundamentally eliminates the cumulative error and micro-deformation caused by the traditional split installation, which is the core foundation for the equipment to achieve and maintain high precision. Core Values: Built-in precision: integrated forming and processing to ensure micron geometric precision of key mounting surface. Excellent rigidity: Optimize the structure, greatly improve the anti-vibration and anti-deformation ability. Performance improvement: directly improve the positioning accuracy, repeatability and running stability of the equipment. Convenient installation: high precision benchmark when leaving the factory, simplifying assembly and reducing debugging. Specially designed for CNC machine tools, semiconductor equipment, precision measuring instruments, industrial robots and other high-precision fields, it is the cornerstone component to achieve excellent motion performance of equipment.


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))
