Custom Overmolding & Plastic Encapsulation

플라스틱 코팅 네오디뮴 자석

OSENC manufactures custom plastic coated neodymium magnets with partial or full encapsulation, overmolded housings, mounting inserts and application-specific magnetization. We engineer the polymer wall, working gap and magnetic circuit together so the finished component meets both protection and magnetic performance requirements.

  • Partial & Full Encapsulation
  • Insert Molding & Overmolding
  • Custom Housings, Holes & Inserts
  • MOQ 1 for Prototype Projects

Send the finished-part drawing. OSENC will review the NdFeB core, polymer structure, magnetization, working distance, mounting geometry and service environment as one engineered assembly.

Send Your Drawing for Engineering Quote
Illustrative plastic coated neodymium magnet configurations

Custom Plastic Coated Magnet Capabilities

OSENC supplies the magnet core and the polymer structure as a finished magnetic component. The released drawing controls the final dimensions, active magnetic face, mounting interfaces and inspection requirements.

자석 코어소결 NdFeB
형상Disc, block, ring and custom magnetic assemblies
캡슐화Partial encapsulation, full encapsulation and functional plastic housings
제조 방식Insert molding, overmolding, CNC plastic housing, prototype tooling, single-cavity and multi-cavity production tooling
폴리머 옵션ABS, PP, TPE, TPU, PU, PTFE, acrylic and nylon
Mounting FeaturesThrough hole, countersunk, counterbore, brass insert, steel insert and threaded insert
착자Axial, diametrical, through-thickness, length, width and multipole magnetization
시제품 수량MOQ 1 for custom magnet projects
검사Finished dimensions, encapsulation condition, critical interfaces and magnetization; project-specific magnetic or mechanical validation when specified
Illustrative custom plastic coated magnet shapes and mounting features

What Are Plastic Coated Neodymium Magnets?

Plastic coated neodymium magnets combine a solid sintered NdFeB core with a separate polymer shell, overmold or functional housing. Unlike plastic-bonded magnets, the magnetic core remains a dense permanent magnet rather than magnetic powder mixed into resin.

Plastic coated is not plastic bonded. OSENC keeps the NdFeB core and the polymer structure as separate engineered elements so the finished component can be designed around protection, installation and magnetic output.

OSENC engineers these parts from the finished-part drawing because the polymer geometry directly controls final OD, length, hole position, active-face wall thickness, mounting features and magnetic working gap.

Plastic Wall Thickness Is Part of the Magnetic Circuit

OSENC treats the polymer wall on the active magnetic face as part of the magnetic design. Plastic is non-magnetic, so increasing the wall thickness increases the working distance between the NdFeB core and the target. That added gap can reduce usable field or pull force at the real operating position.

1. Lock the Magnet Core

We define the core geometry, magnetic grade requirement and magnetization direction against the finished assembly.

2. Control the Protective Wall

We control active-face wall thickness separately from structural reinforcement, ribs, mounting bosses and other non-magnetic zones.

3. Define the Test Interface

We lock the target material, steel thickness, working gap and test condition when Gauss or pull-force acceptance is part of the drawing.

OSENC engineering rule: we do not maximize plastic thickness by default. We balance the minimum protective wall required by the structure with the magnetic output required at the operating gap.
Illustrative measurement of plastic wall thickness on a magnet assembly

Already have a drawing? Send it to OSENC for magnet grade, polymer structure and working-gap review before tooling or prototype release.

Send Drawing

Working-Gap Magnetic Performance Test for Plastic Coated Magnets

Plastic wall thickness changes the non-magnetic distance between the NdFeB core and the target. For projects where field strength, holding force or slide resistance is critical, OSENC can validate the finished plastic-coated magnet at five defined working gaps: 0.0 mm, 0.5 mm, 1.0 mm, 1.5 mm and 2.0 mm.

Working Gap Magnetic Measurements Mechanical Measurements
0.0 mmSurface Gauss
Working-gap Gauss
Normal Pull Force
Shear / Slide Force
0.5 mmSurface Gauss
Working-gap Gauss
Normal Pull Force
Shear / Slide Force
1.0 mmSurface Gauss
Working-gap Gauss
Normal Pull Force
Shear / Slide Force
1.5 mmSurface Gauss
Working-gap Gauss
Normal Pull Force
Shear / Slide Force
2.0 mmSurface Gauss
Working-gap Gauss
Normal Pull Force
Shear / Slide Force

Magnetic Field Record

OSENC records Surface GaussWorking-gap Gauss at the agreed measurement position and orientation. This separates the field measured at the finished magnet surface from the field available at the real operating distance.

Holding & Sliding Force Record

OSENC records Normal Pull ForceShear / Slide Force when these values are part of the project acceptance criteria. The test interface is fixed before validation so the results are repeatable and comparable.

Test-condition control: Gauss and force values are only meaningful when the test setup is fixed. OSENC defines the target material, steel thickness, surface condition, contact area, magnet orientation, working gap, pull direction and slide direction before test data is released. The five gap points above define the standard project test matrix; actual acceptance values remain product-specific.

Need magnetic performance at a real assembly gap? Send the finished plastic wall, target steel, working distance and required force or field. OSENC can build the 0–2.0 mm gap matrix into the prototype validation plan.

Request Working-Gap Review

Partial Encapsulation, Full Encapsulation and Overmolded Assemblies

Partial Plastic Encapsulation

OSENC applies plastic only where the design requires protection, identification, spacing, gripping or a mechanical interface. The active magnetic face, mounting face or another functional area can remain exposed when the drawing requires direct magnetic contact or a defined interface.

Insert molding is a manufacturing route, not a coverage percentage. OSENC defines the coverage boundary from the finished component drawing.

Full Plastic Encapsulation

OSENC encloses the NdFeB core more completely when the component requires stronger isolation from moisture, corrosion exposure, chipping or direct contact with surrounding equipment.

Before tooling release, we define the sealing boundary around seams, holes, inserts and other penetration points so the encapsulation structure matches the specified environmental and mechanical exposure.

Illustrative partial and full plastic encapsulation structures

Plastic Materials and BOM Control

OSENC works with ABS, PP, TPE, TPU, PU, PTFE, acrylic and nylon for custom encapsulation projects. We do not treat these polymer families as interchangeable. The project BOM locks the actual material specification against the required environment, geometry and manufacturing route.

Polymer OptionEngineering RoleOSENC Locks Before Production
ABSRigid housing, appearance, color and molded interfacesResin grade, temperature, UV exposure, chemicals and wall thickness
PPLightweight rigid parts and many wet or chemical-contact structuresChemical, concentration, temperature, exposure duration and dimensions
TPE / TPU / PUSoft contact, grip, cushioning and flexible overmolded surfacesHardness, abrasion, oil or chemical exposure, UV and temperature
PTFELow-friction and demanding chemical-contact requirementsProcess route, wall thickness, working gap and full-assembly temperature
AcrylicRigid visual, colored or functional housing conceptsImpact, fastening, chemical exposure and geometry
NylonTough structural features and wear-resistant molded partsMoisture absorption, dimensional stability, temperature and chemicals
OSENC BOM control: Material, Manufacturer, Grade, Color, Hardness, Temperature Rating and Chemical Compatibility are locked in the project production file. We do not use a generic resin-family name as a substitute for the released material specification.

Process boundary: the available polymer families do not imply that every material is suitable for every molding route. OSENC releases the resin grade and manufacturing process together for each project.

Illustrative polymer protection options for neodymium magnets

For Chemical-Contact Requirements

OSENC selects the protection route against the exact chemical, concentration, temperature, exposure time and finished-component geometry. PTFE can be specified when its material properties match the application, while other projects may be better served by a thinner coating or another polymer housing.

비교 PTFE coated magnets, epoxy coated magnets, and the neodymium magnet coating guide.

Plastic Encapsulation vs. Other Magnet Protection Options

OSENC selects the protection route from the working environment, magnetic gap, mechanical interface and expected surface contact. A molded plastic housing is the right solution when the project needs more than a thin protective coating.

Protection RouteBest FitMain Design Trade-Off
Rigid plastic encapsulationEnvironmental barrier plus molded mounting or locating featuresAdds wall thickness and magnetic working gap
Soft elastomer / rubber coatingSurface protection, friction and impact cushioningSoft layer can deform and also increases working gap
Epoxy coatingThin corrosion-protection layer where a housing is unnecessaryDoes not create the same mechanical enclosure as a molded shell
PTFE protectionLow-friction or application-specific chemical-contact requirementsMaterial and processing route must match the project geometry
Conventional plated NdFeBMinimum magnetic gap in a controlled environmentProvides less physical isolation from moisture, impact or direct chemical contact

If friction and anti-slip behavior are the primary requirements, use an OSENC rubber coated magnet rather than forcing a rigid plastic housing into the wrong application.

Custom Engineering, Mounting and Magnetization

Mechanical Integration

OSENC integrates the magnet into the finished component rather than treating the polymer as decoration added after the magnetic design.

  • Through holes, countersinks and counterbores
  • Brass inserts, steel inserts and threaded inserts
  • Functional plastic housings, tabs and locating features
  • CNC plastic housing for prototype validation
  • Prototype, single-cavity and multi-cavity tooling routes

Magnetization and Production Sequence

OSENC supports axial, diametrical, through-thickness, length, width and multipole magnetization. The pole layout is released against the magnetic circuit and finished assembly geometry.

For strong NdFeB overmolded assemblies, OSENC can complete the magnetic core and polymer structure before final magnetization so magnetic attraction does not interfere with tooling, positioning or assembly. The released process plan controls the final sequence.

Insert Molding Overmolding Functional Housing Threaded Inserts Multipole MOQ 1
Illustrative countersunk holes and threaded inserts in plastic magnet assemblies

Finished-Part Quality Control

Standard Drawing Inspection

Every released plastic-coated magnet project is inspected against the finished-part drawing for the applicable dimensional, encapsulation and magnetic requirements.

  • Finished OD, length, width, height, holes and critical interfaces
  • Wall thickness and active-face geometry according to drawing
  • Flow mark, parting line, gate mark, flash, short shot and sink mark
  • Bubble, crack, contamination and exposed-magnet defects
  • Magnetization direction and pole pattern

Project-Specific Validation

When the drawing includes magnetic or mechanical acceptance requirements, OSENC adds the agreed validation method to the QC plan.

  • Core retention and anti-rotation
  • Pull-off, drop, impact or shell-integrity checks
  • Surface Gauss and working-gap Gauss at defined measurement positions
  • Normal Pull Force at 0.0 / 0.5 / 1.0 / 1.5 / 2.0 mm working gaps when required
  • Shear / Slide Force at the same defined gap points when required

OSENC locks finished dimensions, magnetic acceptance criteria, operating-temperature requirements and environmental conditions in the project drawing and QC specification. Acceptance values remain product-specific rather than being copied across unrelated plastic-coated magnet designs.

Illustrative magnet quality-control inspection concept

Water, Salt Water and Chemical Exposure

Wet and Water-Contact Applications

OSENC designs fully encapsulated NdFeB assemblies for wet, humid, wash-down and water-contact applications. We define the resin, sealing boundary, holes, inserts and exposure condition in the finished drawing so the protection requirement is tied to a specific component design.

For marine, aquarium or aquaculture projects, OSENC requires the salt concentration, water temperature, immersion duration, cleaning method and any metal insert that crosses the plastic barrier.

Acids, Alkalis, Solvents and Cleaners

OSENC defines polymer compatibility using Chemical + Concentration + Temperature + Exposure Time + Plastic Material. The released resin grade is matched to the stated service condition instead of relying on a generic “acid resistant” or “alkali resistant” claim.

This approach keeps chemical resistance, wall thickness, temperature and assembly geometry inside the same engineering review.

Applications for OSENC Plastic Coated Neodymium Magnets

Aquarium and Aquaculture Equipment

OSENC supplies encapsulated magnetic components for high-humidity, splash and salt-water assemblies where the NdFeB core requires a physical barrier from the environment.

Laboratory and Chemical Equipment

OSENC engineers polymer-protected magnetic assemblies for equipment exposed to defined acids, alkalis, solvents or cleaning media, with the polymer selected against the actual service condition.

Outdoor and Wet-Environment Assemblies

OSENC builds magnetic components for sensors, closures, furniture fixing, material handling and installation systems that require protection from moisture, impact or direct surface contact.

Surface-Sensitive Holding

OSENC uses a polymer interface where direct metal contact must be avoided. When friction and anti-slip behavior are more important than a rigid housing, we move the design to a softer elastomer or rubber-coated structure.

What to Send OSENC for an Engineering Quote

  • 2D drawing, 3D model or dimensioned sketch
  • Finished dimensions and critical tolerances
  • NdFeB grade requirement or operating-temperature target
  • Magnetization direction or pole pattern
  • Polymer preference, color, hardness or surface requirement
  • Required coverage and exposed areas
  • Water, salt water, acid, alkali, solvent, oil or cleaner exposure
  • Chemical concentration, temperature and exposure duration
  • Target material, steel thickness, surface condition and working gap
  • Required validation points: 0.0 / 0.5 / 1.0 / 1.5 / 2.0 mm gap
  • Surface Gauss, working-gap Gauss, Normal Pull Force or Shear / Slide Force acceptance requirement
  • Mounting holes, countersinks, counterbores, inserts, threads, tabs or molded interfaces
  • Prototype and production quantity targets
Illustrative batch production concept for plastic coated magnets

Send Your Drawing for Engineering Quote

Send your drawing, working environment, magnetic requirement and quantity. OSENC will review the magnet core, polymer structure, mounting details and magnetic working gap before quotation and prototype release.

Send Your Drawing for Engineering Quote

자주 묻는 질문

플라스틱 코팅 네오디뮴 자석은 방수되나요?

OSENC designs fully encapsulated NdFeB assemblies for water-contact and wet-environment applications. We define the resin, sealing boundary, holes, inserts and exposure condition in the finished drawing so waterproof requirements are tied to a specific product design rather than a generic coating claim.

플라스틱 코팅을 하면 자력이 감소합니까?

자석이 플라스틱으로 덮였다고 해서 NdFeB 등급 자체가 낮아지는 것은 아닙니다. 다만 플라스틱으로 인해 자석 코어와 대상물 사이의 비자성 거리가 늘어납니다. 따라서 자기장이나 인장력이 중요한 경우 OSENC는 작동면의 벽 두께와 작동 간극을 함께 고려하여 설계합니다.

플라스틱 코팅 자석과 플라스틱 본드 자석은 같은 것인가요?

아닙니다. 플라스틱 코팅 자석은 일체형 NdFeB 코어에 별도의 보호용 폴리머층 또는 하우징을 적용합니다. 반면 플라스틱 본드 자석은 자성 분말과 폴리머 바인더를 혼합한 후 자성 재료 자체를 성형합니다.

OSENC에서 캡슐화에 사용할 수 있는 플라스틱은 무엇입니까?

OSENC는 맞춤형 프로젝트를 위해 ABS, PP, TPE, TPU, PU, PTFE, 아크릴 및 나일론을 사용합니다. 적용 수지 등급은 온도, 화학물질, 경도, 벽 두께, 치수 요구사항 및 제조 방식에 따라 선정됩니다.

OSENC에서 구멍, 카운터싱크 또는 나사산 인서트를 추가할 수 있습니까?

예. 완성품 도면에 형상, 체결부품 및 고정 요구사항이 정의되어 있으면 OSENC는 관통 홀, 카운터싱크, 카운터보어, 황동 인서트, 스틸 인서트 및 나사산 인서를 통합 적용할 수 있습니다.

How does OSENC test magnetic performance through the plastic wall?

For projects with magnetic acceptance requirements, OSENC can test the finished plastic-coated magnet at 0.0, 0.5, 1.0, 1.5 and 2.0 mm working gaps. The validation record can include Surface Gauss, Working-gap Gauss, Normal Pull Force and Shear / Slide Force. Target material, steel thickness, surface condition, contact area, orientation and test direction are fixed before results are released.

What should I send OSENC for quotation?

Send the finished-part drawing, environmental conditions, magnetization direction, working gap, mounting details, quantity and any pull-force or field requirement with a defined test condition.

이번 달 최신 가격 및 사양 받기

빠른 견적 받기(가격 + 리드 타임)

최신 가격, 사양, MOQ 및 배송 옵션을 받아보십시오. 스팸 없이 필요한 정보만 보내드리며, 3-6시간 이내에 답변드립니다.