| Max Short Circuit Current | 30-45 KA |
| voltage | 380 V, 220 V, 440V |
| Max Force | 6000-15000 N |
| Supply Ability | 10 sets per month |
| rated duty cycle | 50% |
| After-Sales Service | Free spare parts, field installation, commissioning, training, video and online support |
| After Warranty Service | Video technical support, Online support and Spare parts |
| Duty Cycle | 50% |
| Product Name | Capacitor Discharge Energy Storage Resistance Projection Welder for Stainless Steel Stud Bolt Nut Spot Welding |
| Max Welding Thickness | 3.0+3.0 to 6.0+6.0 mm |
| Packaging Details | wooden box |
| Rated Capacity | 100-250 KVA |
| rated capacity | 100-250KVA |
| warranty | 1 Year |
| Power Supply | 3-Phase 380V / 220V / 440V |
| Usage | Projection welding of studs, bolts, nuts, screws, and spot welding |
| usage | Weld Nut Screw Bolt Stud |
| Delivery Time | 25-45 working days |
| After-sales Service Provided | Free spare parts, Field installation, commissioning and training |
| Payment Terms | L/C,D/A,D/P,T/T |
| Brand Name | Xinwei |
| Certification | CE, RoHS, ISO |
| Place of Origin | Sichuan, China |
View Detail Information
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Product Specification
| Max Short Circuit Current | 30-45 KA | voltage | 380 V, 220 V, 440V |
| Max Force | 6000-15000 N | Supply Ability | 10 sets per month |
| rated duty cycle | 50% | After-Sales Service | Free spare parts, field installation, commissioning, training, video and online support |
| After Warranty Service | Video technical support, Online support and Spare parts | Duty Cycle | 50% |
| Product Name | Capacitor Discharge Energy Storage Resistance Projection Welder for Stainless Steel Stud Bolt Nut Spot Welding | Max Welding Thickness | 3.0+3.0 to 6.0+6.0 mm |
| Packaging Details | wooden box | Rated Capacity | 100-250 KVA |
| rated capacity | 100-250KVA | warranty | 1 Year |
| Power Supply | 3-Phase 380V / 220V / 440V | Usage | Projection welding of studs, bolts, nuts, screws, and spot welding |
| usage | Weld Nut Screw Bolt Stud | Delivery Time | 25-45 working days |
| After-sales Service Provided | Free spare parts, Field installation, commissioning and training | Payment Terms | L/C,D/A,D/P,T/T |
| Brand Name | Xinwei | Certification | CE, RoHS, ISO |
| Place of Origin | Sichuan, China | ||
| High Light | 440v capacitor discharge spot welder ,440v capacitor discharge spot welding machine ,weld nut capacitor discharge spot welder | ||
This heavy-duty capacitor discharge energy storage projection welder is purpose-built for manufacturers seeking repeatable, high-integrity metal joints on stainless steel fasteners such as studs, nuts, and bolts. Unlike conventional AC welders that depend on utility grid stability, this unit banks energy in capacitor modules and releases it in a controlled, instantaneous pulse. The result is consistently strong nuggets with minimal heat-affected zone, even when the incoming line voltage fluctuates. With a chassis weighing 2000 kg, the machine absorbs reaction forces and maintains electrode alignment through rapid, continuous duty cycles, which makes it a practical foundation for automated fastener welding cells or high-throughput manual lines.
From a procurement standpoint, the equipment delivers value well beyond its purchase price. The capacitor discharge method reduces electrode wear and lowers overall energy draw, while the automatic welding cycle removes operator-dependent variables such as hold time and trigger force. Production managers gain predictable output rates, quality inspectors see a tighter spread in peel-test results, and maintenance teams benefit from a simplified electrical architecture with fewer contactors and transformers under load. Whether your shop handles automotive brackets, appliance sub-assemblies, or specialty stainless fasteners, this projection welder is configured to improve first-pass yield and lower per-part cost.
Each weld draws from fully charged capacitors, meaning the energy delivered is predetermined and identical across every cycle. This removes the common defect of cold welds or expelled metal that appears when shop voltage sags during peak load periods, giving quality teams a stable process window.
The reinforced box-style frame and rigid guide columns keep upper and lower electrodes parallel under full clamping force. Thicker materials and larger fasteners no longer cause frame spring-back, which directly translates into symmetrical weld nuggets and extended tooling life.
Because peak current is delivered in milliseconds rather than sustained over many cycles, copper electrodes experience less localized heating and pitting. Shops routinely report fewer dressing stops and longer intervals between electrode replacement, lowering both consumable spend and line stoppages.
The machine follows a fixed sequence: load fastener, initiate cycle, apply force, discharge energy, and release. Every parameter—clamping pressure, weld energy, and cycle time—is locked by the controller, preventing operator error and allowing a semi-skilled worker to produce parts that meet certified weld schedules.
The unit can be wired for 380V, 220V, or 440V three-phase input, making it straightforward to integrate into existing plant electrical layouts across different regions without additional transformation headaches.
| Industry | Typical Workpiece | Welding Mode |
|---|---|---|
| Automotive Component Supply | Nut plates, stud brackets, seat track fasteners | Projection welding on zinc-coated or stainless steel |
| Metal Enclosures & Cabinetry | Bolted hinge mounts, threaded bosses on sheet metal | Capacitor discharge spot and projection welding |
| Electrical Panel Fabrication | Ground studs, mounting screws on cabinets and boxes | High-force projection welding of threaded hardware |
| Appliance Manufacturing | Stainless fasteners on frames, panels, and liners | Semi-automatic load with automatic discharge cycle |
The system first rectifies three-phase incoming power and charges a capacitor bank to a preset voltage. When the welding command initiates, the controller fires the discharge circuit, releasing the entire stored charge in a few milliseconds through the transformer and into the workpiece. Because the energy pulse is shaped by capacitor bank size and charge voltage rather than by grid conditions, the heating profile at the projection point is steep and consistent. The mechanical head, rated for up to 15000 N clamping force in larger models, forges the softened material as it cools, creating a solid-state bond without excessive surface melting. This short weld time minimizes oxidation and prevents distortion on thin stainless sections.
| Parameter | Unit | DN(B)-100 | DN(B)-160 | DN(B)-200 | DN(B)-250 |
|---|---|---|---|---|---|
| Rated power | KVA | 100 | 160 | 200 | 250 |
| Power input | V | 3φAC 380V | 3φAC 380V | 3φAC 380V | 3φAC 380V |
| Max. short circuit current | KA | 30 | 35 | 40 | 45 |
| Duty cycle | % | 50 | 50 | 50 | 50 |
| Max. force | N | 6000 | 6000 | 10000 | 15000 |
| Electrode length | MM | 450 | 450 | 450 | 500 |
| Working stroke | MM | 80 | 80 | 80 | 80 |
| Cooling consumption | L/min | 20 | 20 | 20 | 20 |
| Max. welding capacity | MM | 3.0+3.0 | 4.0+4.0 | 5.0+5.0 | 6.0+6.0 |
The machine is designed primarily for projection welding of stainless steel studs, nuts, and bolts onto sheet metal or formed parts. Conventional spot welding of similar alloys is also supported within the rated capacity range, and the controller allows fine adjustment of discharge energy to fit part thickness from roughly 3.0+3.0 mm up to 6.0+6.0 mm depending on the model selected.
Begin with the combined thickness of your materials and the projected contact area of the fastener. If you are welding fasteners up to M8 on 3 mm sheet, the DN(B)-100 is sufficient. Larger flanges or thicker base metal require the clamping force and short-circuit current of the 200 or 250 KVA versions, which deliver up to 15000 N of electrode force.
Yes. The welding cycle is triggered by a standard PLC-friendly signal, and the two optional nut conveyors shown in the detail images allow semi-automatic part feeding. Customers have also combined the welder with robotic loading arms by connecting to the machine’s external I/O for start and ready status.
Because power is drawn from the grid over a charging window rather than during the weld instant, the peak demand on your supply line is substantially lower. This can reduce demand charges on your electricity bill and lessens the need for heavy-duty distribution upgrades in an existing plant.
Send us your workpiece drawings and production requirements. Our engineering team will evaluate your application, configure the optimal solution, and provide a detailed proposal with electrode design and automation integration options.
Send Drawing | Request Welding Test | Get Custom Solution
Company Details
Business Type:
Manufacturer
Year Established:
2003
Total Annual:
$35000000-$50000000
Employee Number:
70~95
Ecer Certification:
Verified Supplier
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