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How To Improve Motor Manufacturer User Experience For Armature Commutator Fusing

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Cina Shanghai Wind Automation Equipment Co.,Ltd Sertifikasi
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How To Improve Motor Manufacturer User Experience For Armature Commutator Fusing

How To Improve Motor Manufacturer User Experience For Armature Commutator Fusing

Gambar besar :  How To Improve Motor Manufacturer User Experience For Armature Commutator Fusing Harga terbaik

Detail produk:
Tempat asal: Cina
Nama merek: WIND AUTOMATION
Nomor model: WIND-DC-CW003
Syarat-syarat pembayaran & pengiriman:
Kuantitas min Order: 1 buah
Harga: Bisa dinegosiasikan
Kemasan rincian: Dua palet, satu untuk mesin las, satu untuk perangkat pendingin air 662KGS 1040mm*1040mm*1960mm, 740
Waktu pengiriman: 30 hari kerja
Syarat-syarat pembayaran: T/T
Detil Deskripsi produk
Kondisi: Baru Sumber daya DC: Catu daya DC yang dikembangkan sendiri
Ukuran kawat peleburan: Dari 0,01 mm sampai 1,20 mm untuk jenis armature Perangkat pendingin las: Dengan perangkat pendingin air terpisah
Penyesuaian mudah: Pengoperasian dan pengaturan pengelasan mudah bagi operator Pengelasan kawat besar rentang diameter: Dari 0,01 mm sampai 1,20 mm untuk jenis armature
Metode pendinginan elektroda: Tangki pendingin chiller terpisah Berat Kotor: 662KGS termasuk palet paket

DC Power Supply Spot Welding Machine For Armature Commutator Fusing Hot Staking WIND-DC-CW003

 

 

 

(1) Application:

 

PMDC motor armature with hook commutator, riser commutator

 

 

 

(2) Advantages:

 

 

Fusing Quality Assured

 

Self-developed High frequency 15KHz power supply ensure constant

 

fusing quality

 

 

Wide Application

 

Copper wire wide adaption from 0.01mm~1.20mm(AWG44~AWG17)

 

 

Easy to Operate

 

Easy for the operator,

 

and WIND-DC-CW003 get most repeated order among welding machine

 

 

Opeator friendly device installed since the year 2026

 

How To Improve Motor Manufacturer User Experience For Armature Commutator Fusing 0

 

 

Motor Manufacture JC Feedback

The only difference I see with the new fuser is a safety facture I do like.

The new fuser wont run if the water chiller is not on vs the fuse we purchased last year will run without it on.

The old fuser will run until high temperature alarm if an employee forgets to turn of the water chiller.

 

We’ve had if go in to high temperature a few times because an employee forgets to turn on the chiller.

Other than that, everything is run smoothly. Thank you

 

 

Wind Automation Solution

Thank you very much for your feedback with the detail information!

After discussion,

To let the 1st Fuser have the feature that fuser wont run if the water chiller is not on,
 
The new water flow sensor switch uses pulse detection which is more realiable to detect water flow,
 
Below is the process,
1. Replace a new water flow sensor
 
2. The new fuser have the Wifi fuction on touch screen,
You may exchange the touch screen of 1st and 2nd Fuser
 
3. You may connect your 1st Fuser to Wifi and inform us,
   enginner will be availabe to update the software online,
and you use the new software to verify if the new water flow sensor is workable
 

(3) History of becoming star product:

 

The first two pcs welding machine WIND-DC-CW003’s user was a car motor manufacturer who produce

 

motors and supply to BMW , they used Italy and English imported welding machine and

 

WIND-DC-CW003 worked as backup machine. After several months test user found welding result and quality

 

is same as imported welding machine and ordered 1pc more three years later.

 

High frequency inverter DC power supply is a trend in commutator welding, some supplier said they use

 

high frequency actually they use 2KHz, while Wind Automation can achieve 15KHz, with real and pure DC

 

power supply which achieve constant welding quality!

 

 

 

 

 

 

(4) Fusing machine Parameter:

 

Wire diameter: 0.01~1.2mm

 

Armature OD: 20~100mm

 

Armature stack height:10~100mm

 

Commutator OD:8~70mm

 

Airsource:5~7KG/cm2

 

Welding power: 10~30KW

 

3phase AC 380V 50~60Hz

 

Weight: about 350KGS

 

Fusing power supply: Wind Automation self developed high frequency 15KHz, 500~5000A

 

Control system: Japan Mitsubishi PLC

 

Indexing control: Japan Mitubishi servo positioning system 7'' Touch screen

 

 

 

(5) Feature:

 

Commutator spot welding machine conductor hot staking Fusing for thin or big wire High frequency

 

inverter weld and hot stacking commutator with small big wire thin and big wire, with separate cooling

 

water device (act as a conditioner)

 

How to acheive good fusing quality, below four factors you can check

1. Adjust the fusing current to suitable current

2. Right pressure to the fusing soldering area

3. Fusing time

4. Conductor resistance, it is related to the electrode contacting area

 

 

Please click below picture to view video

 

 

This armature commutator DC spot welding machine is a specialized device for welding motor rotors, utilizing direct current (DC) for resistance welding. Compared to traditional AC spot welding machines, it employs DC or medium-frequency inverter technology, offering advantages such as fast response speed, high energy utilization, and stable and precise welding. It effectively reduces workpiece deformation and ensures consistent weld quality.

 

Core Components and Working Principle armature DC spot welding machine typically consists of the following core components: Power Supply System: This is the heart of the equipment. It generally comprises a rectifier, filter, inverter, and control module. Its function is to convert the input AC power into a stable and controllable DC welding current. * Control System: Responsible for setting and monitoring welding parameters (such as current, time, and pressure) and precisely controlling the welding process according to a preset program. Modern equipment typically features multiple control modes, including constant current, constant voltage, and constant power, as well as self-diagnostic functions. * Welding Actuator: Includes clamps, electrodes, etc., used to hold the workpiece and apply welding pressure. The automated equipment also integrates a multi-axis linkage system and a rotary clamping structure to adapt to the welding needs of rotors of different specifications. The equipment's workflow typically involves placing the rotor workpiece to be welded in the designated position, and the equipment automatically completing the entire process of clamping, positioning, rotation, welding, and unloading.

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