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  • Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet
  • Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet
  • Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet
  • Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet
  • Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet
  • Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet
Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet

Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet

  • >= 10000 Pieces
    $2.82

Customization:

Customized packaging(Min.Order: 100000 pieces)
Customized logo(Min.Order: 100000 pieces)
Graphic customization(Min.Order: 100000 pieces)

Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Magnetic Field Generation: Designed to provide stable and efficient magnetic fields for motors and welding equipment, enhancing performance in power transmission and energy efficiency.
  • Customized Shape Adaptation: Offers hollow, flat, round, and split-shaped cores to suit specific mechanical designs, ensuring optimal magnetic flux alignment in welding flux systems and motor applications.

Key features

  • 1. Advanced Ferrite Material Technology

  • With a ferrite composition, you can achieve cost-effective and durable magnet cores that resist demagnetization better than neodymium magnets*. The ceramic-based material ensures stability in high-temperature welding environments, outperforming metallic alternatives prone to corrosion.

  • 2. Split Design for Seamless Installation

  • With a split shape, you can easily install the magnet core around existing components without disassembling the system, unlike solid cores*. This design flexibility simplifies integration into motors and welding equipment, reducing downtime during maintenance.

  • 3. Optimized Round Shape for High-Performance Motors

  • With a precision-engineered round and hollow structure, you can enhance magnetic efficiency in motor applications, delivering superior torque and energy efficiency compared to irregularly shaped cores*. The design minimizes energy loss in welding flux systems.

  • 4. Industrial-Grade Scenario Adaptability

  • With a specialized design for welding fluxes, you can ensure reliable operation in high-temperature industrial settings, supporting continuous use in commercial welding equipment*. The split and hollow features address the need for durability in harsh manufacturing environments.

  • 5. Compliance with Safety and Quality Standards

  • With certification to ISO and RoHS standards, you can meet regulatory requirements for industrial equipment manufacturing, ensuring safety and environmental compliance*.

Product details

Customized Ferrite Magnet Ring Core for Welding Fluxes Hollow Flat Round Split Shaped Permanent Motor Magnet

The Customized Ferrite Magnet Ring Core is a high-performance permanent magnet designed for motor applications, featuring a hollow, flat, round, and split shape. Crafted from ferrite material (iron oxide-based), it offers cost-effective magnetic solutions with robust thermal stability. Its modular design enables seamless integration into welding flux systems and motor assemblies, ensuring optimal magnetic field control and durability.

Technical specifications

FeatureSpecificationBenefit
MaterialFerrite (iron oxide-based)Cost-effective, heat-resistant, and durable
ShapeRound ring core (hollow/split design)Easy installation and customizable fit
SizeCustomizable dimensions (e.g., OD 20-100mm, ID 10-80mm, thickness 2-20mm)Versatile for diverse motor requirements
Magnetic PropertiesPermeability: 800–10,000 μ; Coercivity: 200–1,200 kA/mEnhanced motor efficiency and field strength
CertificationsRoHS, REACH compliantEnsures safety and regulatory compliance

Customization guide

Adjustable parameters include:

  • Dimensions: OD, ID, and thickness to match motor specifications.
  • Material Composition: Tailored for higher temperature resistance or magnetic strength.
  • Split Design: Custom gaps to accommodate thermal expansion in high-heat environments.

Get inspired

With its split design and customizable magnetic properties, this ring core is ideal for precision motors, generators, and transformers. Whether optimizing for energy efficiency or extreme durability, these cores deliver reliable performance in demanding industrial applications.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Magnetic Permeability (μ)800 μ+15% (920 μ)+30% (1,040 μ)*
Coercivity (kA/m)200 kA/m600 kA/m1,200 kA/m
Operating Temp (°C)150°C200°C250°C

Supplier's note

  1. Technical Breakthroughs:

    • High Permeability Ferrite: Achieves up to 10,000 μ, enabling 20% faster motor response than traditional iron cores.
    • Split Design: Reduces mechanical stress by 30% in high-heat environments.
    • Tailored Coercivity: The Pro Model’s 1,200 kA/m coercivity triples industry standards, ensuring stability in corrosive or high-vibration settings.
  2. Version Selection Guidance:

    • Base Model: Ideal for standard motors (e.g., household appliances) where cost efficiency is prioritized.
    • Advanced Model: Suited for industrial motors requiring enhanced efficiency (e.g., robotics, HVAC systems).
    • Pro Model: Designed for extreme environments (e.g., electric vehicle drivetrains) where thermal and magnetic stability are critical. With its triple coercivity rating, the Pro Model ensures safe handling of corrosive welding fluxes while maintaining field integrity. Pair its high permeability with split design gaps to mitigate thermal expansion, extending lifespan by up to 40%.

Frequently asked questions

  • Which ferrite magnet ring core model is best suited for welding flux applications?

  • How do I maintain ferrite magnet ring cores for motor use?

  • What are the advantages of ferrite vs. neodymium magnets for welding flux systems?

  • Can ferrite magnet ring cores be customized for split-shaped motor designs?

  • Are ferrite magnet ring cores certified for industrial motor applications?

  • What applications suit round ferrite magnet ring cores besides motors?

  • How durable are ferrite magnet ring cores in high-temperature welding environments?

  • Are these ferrite magnet cores compatible with existing motor components?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Magnetic StrengthMotors, Transformers4500 Gauss (▲▲) / 4000 Gauss (▲) / 3000 GaussEnhanced field control for precision tasksHigher gauss versions may require shielding
Thermal ResistanceHigh-Temperature Welding300°C (▲▲) / 250°C (▲) / 200°COperates in extreme environmentsAdvanced versions may have bulkier designs
Material CompositionPrecision SensorsRare-Earth Alloy (▲▲) / Nano-Ferrite (▲) / FerriteSuperior conductivity and durabilityCost increases with advanced materials
Shape FlexibilityCustomized Industrial EquipmentCustom Shapes (▲▲) / Rectangular/Round (▲) / RoundVersatile for specialized applicationsCustom shapes incur longer lead times
WeightPortable Devices350g (▲▲) / 400g (▲) / 500gEasier integration into lightweight systemsLighter cores may have reduced structural integrity
DurabilityIndustrial Machinery10-Year Lifespan (▲▲) / 7 Years (▲) / 5 YearsReduced replacement costs over timeHigher upfront investment for advanced tiers

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