This Excellent thermal stability heat resistance flexible adhesive force Black Epoxy coated Arc segment Neodymium Magnet , N48SH grade, the maximum working temperature is 150℃, it belongs to the customized shape neodymium magnet, the outer radius is around 54mm, the thickness is 6mm, the height is 30mm, it's mainly being used in the brushless DC motors
Excellent thermal stability flexible adhesive force Black Epoxy coated Arc segment Neodymium magnet
2025-7-12
This Excellent thermal stability heat resistance flexible adhesive force Black Epoxy coated Arc segment Neodymium Magnet , N48SH grade, the maximum working temperature is 150℃, it belongs to the customized shape neodymium magnet, the outer radius is around 54mm, the thickness is 6mm, the height is 30mm, it's mainly being used in the brushless DC motors, or if you have a plan to buy the arc shaped powerful magnets in the near future, please don't hesitate to let us know, we will not let you down. Black epoxy coated arc magnets are commonly used in a variety of applications that require excellent magnetic performance and durability, such as motors, sensors, medical devices, audio equipment, and more. This professional grade Excellent thermal stability flexible adhesive force Black Epoxy coated Arc segment Neodymium Magnet not only provide stable and reliable magnetic force, but also maintain excellent performance under harsh environmental conditions. Meanwhile, the black color makes the magnets more beautiful and suitable for some special application scenarios.
- Product Name: Excellent thermal stability flexible adhesive force Black Epoxy coated Arc segment Neodymium Magnet
- Magnet Grade: N48SH (Br ≥13.7 kGs, Hcj ≥20 kOe)
- Dimensional Tolerance: +/-0.04
- Operating Temperature: ≤150°C (High-temp versions available)
- Density: ≥7.5 g/cm³
- Surface Magnetic Field: 2,800 Gs
- Magnetic Flux : 2.0 mWb (Fluxmeter-tested)
To enhance this premium quality high torque Excellent thermal stability flexible adhesive force Black Epoxy coated Arc segment Neodymium Magnet’s corrosion resistance, surface quality, and magnetic stability, the following treatments are used:
Edge Reinforcement: Laser cladding with nickel-based alloy at magnet seams (prevents electrochemical corrosion)
Edge Rounding: Reduces magnetic field distortion
Default Coating: Triple layer Ni-Cu-Ni (customizable)
Standard Thickness: Ni (3μm) + Cu (5μm) + Ni (4μm)
Optional Coatings: Gold or silver plating for better conductivity and corrosion resistance
Coating Benefits:
Salt spray resistance and improved oxidation durability
Higher surface hardness and scratch resistance
Enhanced gloss, suitable for exposed parts
Visual Inspection: Under standardized lighting, trained QC staff check for cracks, chipping, inclusions, pores, or oxidation.
Image Measurement System: High-definition cameras and algorithms conduct non-contact 2D measurements, especially for complex or irregular shapes, ensuring efficiency and objectivity in mass production.
Impact & Vibration Test: Simulates shipping and usage conditions to ensure operational stability.
Constant Temperature & Humidity Test: Performed under 85°C and 85% RH for 96–500 hours. Performance and appearance are compared before and after testing.
Defect Elimination: 100% inspection using calipers, projectors, visual checks, and automated systems to reject cracked, chipped, oxidized, or coated-defective magnets.
Uniform Magnetization & Structured Arrangement: Magnets are uniformly magnetized and arranged for optimal packaging based on customer requirements to ensure performance and facilitate automated assembly.
Vacuum Sealed Packaging: Multi-layer vacuum sealing with moisture barriers, desiccants or nitrogen, prevents corrosion and magnetic interference during storage and shipping.
Customized Outer Packaging: Shock-proof, moisture-resistant, and anti-magnetic leakage packaging (e.g., multilayer cartons, plastic boxes, metal shielding) ensures compliance with international logistics standards. Each box includes a product list, labels, and tracking codes.
Q: How to choose the correct magnetization direction?
Axial Magnetization: Magnetic lines flow through thickness — best for concentrated fields
Radial Magnetization: Magnetic lines radiate outward — for uniform field distribution
Multipole Magnetization: Multiple poles along circumference — for complex fields (e.g., motors, sensors)
Q: What is the maximum working temperature of a ring magnet?
Standard N-series: up to 80°C
High-temp grades (SH/UH/EH): up to 150°C–230°C
Dysprosium-enriched formulations can further enhance temperature resistance
Q: Does magnetism decay over time?
Under normal conditions (room temp, dry, no heavy vibration), NdFeB magnets exhibit excellent time stability (<5% loss over 10 years). However, factors like:
Temperature overrun
Strong external magnetic fields
Surface corrosion
Mechanical impact may affect performance.
Dongguan Jinconn New Materials Holdings Co., Ltd. is a publicly listed enterprise offering integrated R&D, manufacturing, and sales of rare earth magnets. Based in Xiaohe Industrial Zone, Daojiao Town, Dongguan, we serve clients across China and globally.
With deep expertise in magnetic materials, we deliver solutions for industries like EVs, smart manufacturing, and electronics. Our strong technical capabilities and product consistency have earned the trust of customers worldwide.
Handle gently: Avoid impacts/drops (brittle material).
Prevent pinching: Slide magnets apart—do not pry.
Polarity check: Install correctly to avoid malfunctions.
Avoid moisture/acids: Store in dry, mild environments.
Keep away from sensitive devices: Hard drives, IC cards, pacemakers, etc.
Custom magnet size, shape, and coating (layers, thickness, color)
Tailored magnetization direction and field strength
Laser engraving service for logos or serial numbers
Packaging and suction force testing for special applications
Contact Us
Phone/WhatsApp/WeChat: +8614716150318
Email: leo@jinconn.com
Address: Xiaohe Industrial Zone, Daojiao Town, Dongguan City, Guangdong Province, China
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