Home Products Welding / Soldering Project Delay Tube + Pole shoe automatic welding machine

Delay Tube + Pole shoe automatic welding machine

The delay tube + pole shoe automatic welding machine completes the delay component of hydraulic magnetic circuit breakers: tray-fed infeed, vibratory pole shoe feeding with anti-drop vacuum handling, spring-presence detection before welding, and DC resistance welding — designed to run in line with our oil filling and assembly machine.

DC resistance welding · Automatic equipment

Delay Tube + Pole Shoe Automatic Welding Machine for Hydraulic Magnetic Circuit Breakers

The delay tube + pole shoe automatic welding machine completes the delay component of a hydraulic magnetic circuit breaker: it automatically welds the pole shoe onto the oil cup shell assembly — a shell already filled with damping oil and fitted with its plunger and spring — using DC resistance welding. The operator places positioning trays of filled delay tubes onto the infeed conveyor; from there, infeed, pick-up, pole shoe feeding, detection, and welding all run automatically.

Two engineering details define this machine. First, every oil cup shell is checked for the presence of its internal spring before welding is enabled — an incomplete assembly is caught before the weld, not scrapped after it. Second, the pole shoe pick-up uses a vacuum system with a dedicated anti-drop design, eliminating the dropped-part stoppages that plague suction handling of small steel parts. Fixtures, electrode geometry, and welding parameters are customized to your part drawings.

Standard delivery: 80 working days | Spring-presence detection before welding | Anti-drop pole shoe handling

Delay tube and pole shoe automatic welding machine for hydraulic magnetic circuit breakers

Delay tube + pole shoe automatic welding machine — DC resistance welding with pre-weld spring detection

What is a Delay Tube + Pole Shoe Welding Machine?

In hydraulic magnetic circuit breaker production, the delay tube (oil cup) is built up in stages: the shell is filled with a metered dose of damping oil, and the plunger and spring are assembled inside. The final step is welding the pole shoe — the magnetic-circuit component — onto the filled shell to complete the subassembly. This step carries a particular risk profile: by the time the assembly reaches the welding station, it already contains its oil fill and internal parts, so any unit welded in an incomplete state is an expensive scrap. A delay tube + pole shoe welding machine automates the step with that risk in mind. Filled delay tubes arrive in positioning trays — the operator places full trays onto the infeed conveyor, and a cylinder-driven gripper transfers each tube to the welding station. Pole shoes are oriented and fed by a vibration bowl, then picked up by a vacuum system with an anti-drop design that keeps the small steel part secure through the transfer. Before any weld is executed, a detection station verifies that the spring is present inside the oil cup shell; only complete assemblies proceed. The weld itself is DC resistance welding, applying controlled weld energy to join the pole shoe to the shell. Because the trays match the matrix output of the upstream oil filling and assembly machine, the two machines connect into a continuous delay tube production cell. As a non-standard custom machine, the tray interface, gripper fixtures, electrode geometry, and welding parameters are engineered around your specific component drawings.

Tray-based conveyor infeed
Operator places full positioning trays on the conveyor; infeed and gripper transfer run automatically.
Spring-presence detection
Every shell is checked for its internal spring before welding — incomplete assemblies never get welded.
Anti-drop pole shoe handling
Vacuum pick-up with a dedicated anti-drop design keeps the pole shoe secure during transfer.
DC resistance welding
Controlled weld energy joins the pole shoe to the oil cup shell with stable, repeatable results.

Technical Specifications

Automatic pole shoe welding onto filled delay tube (oil cup) assemblies: tray-based infeed, vibratory pole shoe feeding, pre-weld spring detection, anti-drop vacuum handling, and DC resistance welding.
Applicable product Delay tube (oil cup) assemblies of hydraulic magnetic circuit breakers — shell filled with damping oil, plunger, and spring — welded with the pole shoe
Welding technology DC resistance welding
Delay tube feeding Operator places positioning trays on the infeed conveyor; automatic infeed with cylinder gripper transfer to the welding station
Pole shoe feeding Vibration bowl feeding to the welding station; vacuum pick-up with anti-drop design
In-line detection Spring-presence check inside the oil cup shell before welding is enabled
Power supply 380V, 50Hz, 10kW
Machine dimensions L1600 × W1400 × H1900 mm
Delivery time 80 working days

Detailed Process Flow

The welding cycle runs in six automatic steps after tray loading:

  1. Tray loading – The operator places positioning trays of filled delay tubes onto the infeed conveyor.
  2. Automatic infeed & pick-up – The conveyor indexes the trays forward and a cylinder-driven gripper transfers each delay tube to the welding station.
  3. Pole shoe feeding – The vibration bowl orients and feeds pole shoes; the vacuum pick-up with anti-drop design transfers each pole shoe securely to the welding position.
  4. Spring-presence detection – Before welding, the detection station verifies the spring is present inside the oil cup shell; incomplete assemblies are rejected without being welded.
  5. DC resistance welding – The pole shoe is welded onto the oil cup shell with preset welding parameters.
  6. Unloading – The completed delay tube assembly is discharged and the cycle continues.

Core Technical Advantages (Custom Non‑Standard Design)

Detection before welding protects yield

A delay tube reaching this station already carries its oil fill, plunger, and spring — real invested value. Catching a missing spring before the weld means the assembly can be corrected; discovering it after welding means scrapping the whole filled unit.

Anti-drop handling for small steel parts

Suction handling of small, heavy steel parts like pole shoes is notoriously drop-prone. The dedicated anti-drop vacuum design keeps the part secure through the transfer, protecting both cycle time and the workpieces below.

Direct line integration with the oil filling machine

The tray-based infeed accepts the matrix tray output of the upstream oil filling and assembly machine, connecting the two processes into a continuous delay tube production cell without re-orientation or manual sorting.

Stable DC resistance welding

DC resistance welding applies controlled, repeatable weld energy to the pole shoe joint — consistent weld quality on an assembly whose delay characteristic has already been precisely set by the filling process.

Trusted by industry leaders

ABB
DELIXI
EKF
KRIPAL
HPL
CHAC
Schneider
IEK GROUP
SUNIR
Bevone
Weg
HUYU
RAAD
WALTONE
HAVELLS
C&S electric

Applications and Integration

Hydraulic magnetic circuit breaker manufacturing – Final welding step of the delay tube / oil cup subassembly
Delay tube production cells – Direct tray interface with the upstream oil filling and assembly machine
Filled-assembly welding – Processes where detection before welding protects already-invested component value
Custom OEM projects – Shell geometries, pole shoe designs, and tray interfaces engineered to order

Custom Engineering & Delivery

1. Part analysis & fixture design Sample oil cup shells & pole shoes required
2. Welding process validation Weld trials on your actual parts
3. Manufacturing & assembly 80 working days standard delivery
4. Pre-FAT At Benlong factory with customer parts
5. Installation & commissioning On-site
6. Final SAT & training Acceptance report

Request a Custom Pole Shoe Welding Machine Quote

Send us your oil cup shell and pole shoe drawings, your tray specification, and your production targets. Our engineers will configure the infeed, feeding, detection, and welding stations around your exact component design.

Inquire Now

WhatsApp: +86 150 5837 0007 | Email: xsb@benlongkj.cn | English & Chinese support

Why Choose Benlong for Welding Automation?

  • 15+ years designing welding and assembly equipment for low‑voltage electrical products
  • Pre-weld spring-presence detection engineered to protect the value already invested in filled assemblies
  • Anti-drop vacuum handling for reliable pole shoe transfer
  • Tray interface matched to the upstream oil filling and assembly machine for full line integration
  • Global service and spare parts support

Typical Custom System Includes

Automatic welding equipment consisting of: · Infeed conveyor for positioning trays; Cylinder-driven gripper transfer; Vibration bowl pole shoe feeder; Vacuum pick-up with anti-drop design; Spring-presence detection station; DC resistance welding unit; PLC with HMI; Installation commissioning; One-year warranty

Frequently Asked Questions

What exactly does this machine weld?

It welds the pole shoe onto the oil cup shell assembly of a hydraulic magnetic circuit breaker delay tube — a shell that has already been filled with damping oil and fitted with its plunger and spring — using DC resistance welding. Fixtures and electrodes are customized to your part drawings.

Why is the spring detected before welding?

Because the assembly already contains its oil fill and internal parts, a unit welded with a missing spring cannot be reworked — it becomes scrap, including the oil and plunger already invested in it. Detecting the spring before the weld means incomplete assemblies are rejected while they can still be corrected.

How does the machine prevent pole shoe drops during handling?

The pole shoe is picked up by a vacuum system with a dedicated anti-drop design that keeps the part secure through the transfer to the welding position — addressing the drop-prone nature of suction handling on small, heavy steel parts.

Can it run in line with the oil filling and assembly machine?

Yes — that is the intended configuration. The infeed conveyor accepts the positioning trays produced by the upstream oil filling machine’s matrix tray loading, so the two machines form a continuous delay tube production cell with the operator only moving trays between them.

What information is needed for a quotation?

Drawings or samples of your oil cup shell and pole shoe, your tray specification, target capacity, and your factory’s power supply conditions. Our engineers will then propose the machine configuration. Standard manufacturing delivery is 80 working days.

All specifications subject to final technical agreement. Benlong Automation – custom welding and assembly solutions for low‑voltage electrical products.

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WhatsApp
+86 150 5837 0007
Email
xsb@benlongkj.cn