ST-CQD-125
From precision molding of automotive parts and integrated stamping of home appliance components, to the forming of general machinery parts and mass production of hardware products, stamping and forming technology provides an efficient, stable, and economical processing solution. It helps various industries achieve large-scale, high-quality, and low-cost manufacturing goals.
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🚗Automotive Parts 🏠 Home Appliances ⚙️ General Machinery 🛋️Furniture & Hardware 🔌Electrical Enclosures 🔨Metal Fabrication |
Detailed description
Advantages & Features
Compared to traditional impact punching, pneumatic punching equipment offers the following core advantages
| Icon | Feature | Technical Advantage | Customer Benefit |
|---|---|---|---|
| 🛠️ | High-Quality Punching Forming | Utilizes pneumatic pressure control and precise stroke adjustment to achieve uniform deformation, smooth surfaces, and burr-free results. | Consistent forming quality, reduced secondary processing, and improved product appearance. |
| ⚙️ | Easy Operation & Maintenance | Simple pneumatic system structure ensures fast response, low failure rate, and easy maintenance and part replacement. | Low technical skill requirements, reduced downtime, and low maintenance costs. |
| 🔄 | Wide Compatibility & Flexibility | Capable of handling various materials (e.g., metal, plastic) and shapes by changing dies and adjusting pressure/stroke. | Versatile machine suitable for multi-variety, small-batch flexible production. |
| 💰 | Cost-Effective & Economical | Low initial investment, energy-efficient, compact design, and overall lower operating costs compared to hydraulic or servo systems. | Fast ROI, ideal for small-to-medium scale production and automated line integration. |
| 🚀 | High Production Efficiency | Rapid response of pneumatic drive enables short punching cycles and supports continuous high-speed operation for mass production. | Increased production, shorter lead times, and enhanced production capacity flexibility. |
Multi-Industry Precision Component Solutions
| Stamped products | ||
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| Riveted assembly products | ||
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Device Function Description

Shun Tai Riveting Machine Specifications Table
Shun Tai Stamping Equipment series offer comprehensive parameter support, covering core specifications such as pressure, stroke, speed, and more, complete with 2D/3D technical drawings and detailed parameter tables. We also provide highly flexible customization services to meet the specific product and process requirements of different customers. For customized solutions or more detailed technical data, please contact Shun Tai Technology.
| Item | Parameter | Item | Parameter | |
| Pressure Range P | 7.5KN | Input Pressure | 0.3~0.8Mpa | |
| Stroke S | 50-200mm | Worktable Thickness | 30mm | |
| Riveting Time T | 0.1~9.9S | Overall Dimensions | 500 * 550 * (920+S)mm | |
| Maximum Mold Height H1 | 345mm | Weight | 70kg | |
| Minimum Mold Height H2 | 345-Smm | Power Supply | AC110-250V 50/60Hz | |
| Throat Depth A | 95mm | Operating Temperature | -30 ℃~ 50℃ | |
| Working Pressure | 0.3~0.8Mpa | Packaging Dimensions | 570×620×1350mm | |
| Worktable Dimensions | 240*200mm | Equipment Gross Weight | 95kg |
Applications of rivets
Our servo riveting machine intelligently adapts to various materials and structures for complex process requirements.
| No. | Material Category | Specific Materials | Supported Structures | Processing States | Process Characteristics |
| 1 | Aluminum & Alloys | Aluminum (Al) Aluminum Alloys |
○ Hollow
◐ Semi-Hollow ● Solid |
✅ Heat treated
✅ Not heat treated |
Anti-deformation algorithm ensures mark-free surfaces; adaptive to oxide layers. |
| 2 | Copper & Alloys | Pure Copper (Cu) Brass/Bronze Copper Alloys |
○ Hollow
◐ Semi-Hollow ● Solid |
✅ Heat-Treated ✅ Non Heat-Treated |
Anti-galling mode for soft materials; special thermal process for high conductivity. |
| 3 | Carbon & Alloy Steels | Carbon steel
Alloy steel |
○ Hollow
◐ Semi-Hollow ● Solid |
✅ Heat-Treated ✅ Non Heat-Treated |
High-torque mode with dynamic pressure compensation for varying hardness. |
| 4 | Stainless Steels | Austenitic Ferritic Martensitic |
○ Hollow
◐ Semi-Hollow ● Solid |
✅ Heat-Treated ✅ Non Heat-Treated |
Low-speed, high-force control is used to prevent work hardening, and special process parameters are applied for stainless steel materials. |
| 5 | Special Alloys | Titanium Alloys Nickel-Based Alloys |
○ Hollow
◐ Semi-Hollow ● Solid |
✅ Heat-Treated ✅ Non Heat-Treated |
Optional inert gas protection process for reactive & hard-to-form materials. |
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Riveting Shape Selection and Application
Our stamping forming technology enables the processing of various shapes, including flat forming, flanging, drawing, embossing, and custom complex surfaces, meeting diverse requirements for structural strength and assembly space. We offer standard mold solutions (M1–M9) and support customized mold design to ensure efficient, precise, and structurally compact forming results.

Equipment detailed design
| Featuring an adjustable stroke design, it flexibly adapts to different part sizes and process requirements. The machine body is made of high-quality carbon structural steel, precisely machined and treated to ensure long-term stable operation and positioning accuracy. The worktable adopts a multi-slot modular design, compatible with various fixtures, enhancing production flexibility. The integrated control box combines the operation panel, speed control unit, and protection functions, achieving simple and efficient human-machine interaction. | ![]() |
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Uses precise pneumatic control and air cylinder drive technology, equipped with adjustable-speed industrial-grade cylinders suitable for a variety of materials and process requirements. Offers parameter configuration and customization services. Ideal for the automotive, appliance, and machinery industries, providing efficient and cost-effective linear driving solutions. |
| This high-performance air source processor is an integrated pressure regulation and purification device that provides a stable output working pressure of 0.2–0.8 MPa (corresponding to 2–8 kgf/cm²). It supports multi-stage fine adjustment and features a pressure gauge for clear display. With built-in filtration, pressure regulation, and lubrication functions (model BFC-3), it ensures that the pneumatic system receives clean, stable, and lubricated compressed air, effectively extending the service life of pneumatic components and improving equipment reliability and process consistency. | ![]() |
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This dual-hand button control box is specially designed for the safe operation of pneumatic equipment. It adopts a dual-hand simultaneous press start mechanism to effectively prevent accidental triggering and ensure operator safety. The control box features a rugged housing with IP54 protection rating, suitable for industrial on-site environments. The buttons provide clear tactile feedback and are ergonomically designed. It is suitable for equipment requiring dual-hand coordination such as punching, riveting, and bending operations, and can be integrated into automated production lines or used as an independent safety unit to enhance equipment operation standardization and production safety. |
Servo riveting machine dimensions diagram

Equipment mass production site

Equipment mass production site
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Trademarks and ISO certificates
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Riveting machine software copyright
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Servo riveting machine patent
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Other certificates
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SHUNTAI Technology Factory Video
SHUNTAI Technology Company Profile

Ningbo Shuntai Automation Co., Ltd. originated from the Automation Division of Hongheng Precision. Since 2005, the company has dedicated itself to the R&D and manufacturing of automation technology, and began independent operation in 2015. As a National High-Tech Enterprise certified with ISO standards, the company boasts an R&D and management team with decades of industry experience, possessing profound technical expertise and exceptional project management capabilities. The company specializes in providing innovative and intelligent integrated automation and digital solutions for high-end electronics manufacturing, advanced semiconductor equipment, precision electronic components, and automotive parts. In the areas of rotary riveting and press riveting processes, we hold multiple core patents and software copyrights, continuously driving improvements in process precision and efficiency. Located in the Ningbo High-tech Zone, the company benefits from a strategic position close to Beilun Port, Ningbo Bonded Zone, and the Free Trade Zone, ensuring efficient logistics and a strong ability to respond swiftly to global market demands. Shuntai Automation is driven by R&D and committed to becoming a world-leading partner for high-end automation solutions.
SHUNTAI Technology Workshop Showcase
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SHUNTAI Technology
We look forward to working with you to reach new heights in the manufacturing industry!
Related products
| Pressure Range P | 2.8 KN |
|---|---|
| Stroke S | 50-200 mm |
| Riveting Time T | 0.1~9.9 S |
| Stroke Frequency N | 0.1~30 min⁻¹ |
| Max Die Height H1 | 345 mm |
| Min Die Height H2 | 345-S mm |
| Throat Depth A | 95 mm |
| Working Pressure | 0.3~0.8 Mpa |
| Operating Temperature | -30 ~ 50 ℃ |
| Worktable Size | 240×200 mm |
| Worktable Thickness | 30 mm |
| Overall Dimensions | 500×550×(920+S) mm |
| Weight | 60 kg |
| Power Supply | 220V 50Hz |
| Input Pressure | 0.3~0.8 Mpa |
| Packing Dimensions | 570×620×1300 mm |
| Gross Weight | 85 kg |
| Pressure Range P | 2.8 KN |
|---|---|
| Stroke S | 50-200 mm |
| Riveting Time T | 0.1~9.9 S |
| Stroke Frequency N | 0.1~30 min⁻¹ |
| Max Die Height H1 | 345 mm |
| Min Die Height H2 | 345-S mm |
| Throat Depth A | 95 mm |
| Working Pressure | 0.3~0.8 Mpa |
| Operating Temperature | -30 ~ 50 ℃ |
| Worktable Size | 240×200 mm |
| Worktable Thickness | 30 mm |
| Overall Dimensions | 500×550×(920+S) mm |
| Weight | 60 kg |
| Power Supply | 220V 50Hz |
| Input Pressure | 0.3~0.8 Mpa |
| Packing Dimensions | 570×620×1300 mm |
| Gross Weight | 85 kg |
| Pressure Range P | 2.8 KN |
|---|---|
| Stroke S | 50-200 mm |
| Riveting Time T | 0.1~9.9 S |
| Stroke Frequency N | 0.1~30 min⁻¹ |
| Max Die Height H1 | 345 mm |
| Min Die Height H2 | 345-S mm |
| Throat Depth A | 95 mm |
| Working Pressure | 0.3~0.8 Mpa |
| Operating Temperature | -30 ~ 50 ℃ |
| Worktable Size | 240×200 mm |
| Worktable Thickness | 30 mm |
| Overall Dimensions | 500×550×(920+S) mm |
| Weight | 60 kg |
| Power Supply | 220V 50Hz |
| Input Pressure | 0.3~0.8 Mpa |
| Packing Dimensions | 570×620×1300 mm |
| Gross Weight | 85 kg |
| Pressure Range P | 2.8 KN |
|---|---|
| Stroke S | 50-200 mm |
| Riveting Time T | 0.1~9.9 S |
| Stroke Frequency N | 0.1~30 min⁻¹ |
| Max Die Height H1 | 345 mm |
| Min Die Height H2 | 345-S mm |
| Throat Depth A | 95 mm |
| Working Pressure | 0.3~0.8 Mpa |
| Operating Temperature | -30 ~ 50 ℃ |
| Worktable Size | 240×200 mm |
| Worktable Thickness | 30 mm |
| Overall Dimensions | 500×550×(920+S) mm |
| Weight | 60 kg |
| Power Supply | 220V 50Hz |
| Input Pressure | 0.3~0.8 Mpa |
| Packing Dimensions | 570×620×1300 mm |
| Gross Weight | 85 kg |












































