RCYD(C) Series Permanent Magnet Iron Remover - China Suppliers & Factory for Automatic Iron Unloading Solutions
5. The transmission drum of the RCYD (C) series iron remover features a waist-drum structure and incorporates automatic belt deviation correction, enhancing operational stability and reducing the risk of mechanical failures. The dust-proof bearing seat further contributes to the overall durability and reliability of the device, ensuring consistent performance even in harsh operating environments.
RCYD(C) series permanent magnet iron remover is its advanced magnetic circuit, which has been meticulously designed using computer simulation to create a perfect double magnetic pole structure. This design ensures optimal performance and efficiency in removing ferromagnetic substances from the material flow.
The heart of the RCYD(C) series iron remover lies in its use of high-performance NdFeB material as the magnetic source. This material boasts high coercivity, exceptional magnetic field strength, and powerful suction capabilities, making it highly effective in capturing and removing iron particles from the material being processed.
The automatic iron unloading feature of the RCYD(C) series iron remover sets it apart from traditional iron removal methods. As ferromagnetic substances are continuously adsorbed on the iron remover during operation, they are automatically expelled through the rotation of the iron unloading belt, eliminating the need for manual intervention and ensuring a seamless and uninterrupted production process.
RCYD(C) series permanent magnet iron remover is designed for ease of maintenance and boasts a wide application range. Its energy-saving design and extremely low failure rate make it a cost-effective and reliable solution for manufacturers across various industries.
| Model No. | Adaptive belt width | Suspension height | Magnetic intensity | Thickness of materials | Motor power | Adaptive belt speed | Duty type | Weight | Outline dimensions (mm) | ||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| (mm) | (h≤mm) | (≥mT) | (≤mm) | (kw) | (≤m/s) | (kg) | |||||||
| A | B | C | D | E | |||||||||
| RCYD(C)-5 | 500 | 150 | 320 | 80 | 1.5 | 4.5 | continuous | 450 | 1900 | 710 | 935 | 950 | 753 |
| RCYD(C)-6 | 600 | 175 | 320 | 120 | 1.5 | 620 | 2050 | 710 | 1020 | 1050 | 753 | ||
| RCYD(C)-6.5 | 650 | 200 | 320 | 150 | 1.5 | 900 | 2050 | 728 | 1020 | 1200 | 888 | ||
| RCYD(C)-8 | 800 | 250 | 320 | 200 | 2.2 | 1100 | 2250 | 750 | 1300 | 1350 | 1090 | ||
| RCYD(C)-10 | 1000 | 300 | 320 | 250 | 3 | 1820 | 2650 | 889 | 1550 | 1450 | 1335 | ||
| RCYD(C)-12 | 1200 | 350 | 320 | 300 | 4 | 3050 | 2860 | 1010 | 1720 | 1550 | 1515 | ||
| RCYD(C)-14 | 1400 | 400 | 320 | 350 | 4 | 4150 | 3225 | 1050 | 1980 | 1800 | 1755 | ||
| RCYD(C)-16 | 1600 | 450 | 320 | 400 | 5.5 | 5900 | 3350 | 1180 | 2160 | 1950 | 1850 | ||
| RCYD(C)-18 | 1800 | 500 | 350 | 450 | 5.5 | 7800 | 3580 | 1210 | 2450 | 2200 | 2130 | ||
| RCYD(C)-20 | 2000 | 550 | 350 | 500 | 7.5 | 9400 | 3800 | 1300 | 2700 | 2400 | 2410 | ||
What are the benefits of the waist-drum structure in the transmission drum?
The waist-drum structure incorporates automatic belt deviation correction. This enhances operational stability, significantly reduces the risk of mechanical failures, and extends the service life of the belt.
How does the automatic iron unloading feature improve production efficiency?
Traditional systems require manual cleaning of adsorbed iron. The RCYD(C) series automatically expels ferromagnetic substances through the continuous rotation of the iron unloading belt, eliminating manual intervention and ensuring a seamless, uninterrupted production process.
What kind of magnetic source is used in the RCYD(C) series iron remover?
It utilizes high-performance NdFeB (Neodymium Iron Boron) material as the magnetic source. This material is known for its high coercivity, exceptional magnetic field strength, and powerful suction capabilities.
Can this equipment operate reliably in harsh environments?
Yes, the device is equipped with a dust-proof bearing seat that protects internal components from fine particles and debris, ensuring durable and consistent performance even in highly dusty operating environments.
How does the computer-simulated magnetic circuit design help?
The computer simulation optimizes the magnetic circuit to create a perfect double magnetic pole structure. This maximizes the magnetic field depth and strength, ensuring optimal separation efficiency of ferromagnetic materials.

