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Custom Sintered NdFeB Tube Magnets

Custom Neodymium Magnet Tubes

OSENC manufactures custom sintered NdFeB tube magnets to your drawing, with controlled OD, ID, length, coating and magnetization for shaft, sensor, motor and cylindrical assembly designs.

Our current manufacturing range covers OD 1.5–60 mm, ID 0.4–50 mm and lengths from 0.3–120 mm. Send us your OD × ID × H, pole direction and operating conditions, and we will review the complete geometry before quotation.

OD 1.5–60 mmID 0.4–50 mmLength 0.3–120 mmKundenspezifische MagnetisierungBeschichtungsoptionen
1.5–60 mmOuter diameter
0.4–50 mmInner diameter
0,3–120 mmOverall length
120 mmMax magnetic-direction dimension
OSENC custom neodymium magnet tube with straight through bore

What We Control on a Custom Tube Magnet

A tube magnet looks simple until the bore, wall, coating and magnetic circuit all have to work in the same assembly. We control the part as one finished component rather than treating each specification in isolation.

Fertigmaße

We manufacture the OD, bore and overall length as one finished geometry, including the effect of coating on critical fit dimensions.

Bore & Wall Geometry

We review ID, wall thickness and length together because a geometry that works on a short ring may not remain practical on a long tube.

Magnetisierung

We match pole direction to the real magnetic circuit rather than selecting magnetization from the tube shape alone.

Prüfung

We define dimensional, coating and magnetic inspection around the acceptance requirements on your drawing.

Neodymium Magnet Tube at a Glance

GegenstandOSENC Tube Magnet SupplyWhat to Put on the RFQ
WerkstoffGesintertes NdFeBGrade or magnetic target
GeometrieElongated cylindrical magnet with a straight through boreOD × ID × H
OD1.5–60 mmFinished OD and fit requirement
ID0.4–50 mmFinished bore requirement after coating
Länge0,3–120 mmOverall finished length
MagnetgütenN35–N55 plus temperature-grade families reviewed by applicationBetriebstemperatur
MagnetisierungDrawing-controlledPole direction, sensor position or magnetic working faces
BeschichtungNickel, zinc, epoxy and Parylene-based optionsEnvironment and finished fit

Quick Answer: When Should You Use a Neodymium Tube Magnet?

Use a neodymium tube magnet when your design needs a cylindrical NdFeB magnet with a through bore for a shaft, sleeve, guide, cable, fastener or internal assembly clearance.

Compared with a solid cylinder, the bore creates a repeatable mechanical interface. Compared with a short ring, the longer body gives you more axial length for the assembly. The design succeeds when we control the bore, wall geometry, pole direction and actual working gap together.

Product boundary: if the part is short and washer-like, review our Neodym-Ringmagnete. If you need a stainless-steel magnetic tube for ferrous separation in material flow, that belongs to magnetic-separation equipment rather than this product family.
Neodymium magnet tube dimension diagramTechnical diagram showing outer diameter D, inner diameter d, and overall height H. D = OD d = ID H Example: D10 × d7 × H30 mm

Define OD, ID and Length as One Finished Geometry

For OSENC tube magnets, use D = outer diameter, d = inner diameter und H = overall height / length.

Beispiel: D10 × d7 × H30 mm means 10 mm OD, 7 mm ID and 30 mm overall length.

For a straight-bore tube, nominal radial wall thickness is (D − d) / 2. We do not judge manufacturability from wall thickness alone. We review OD, ID, length, grade, grinding allowance, coating and edge condition as one part.

If the tube runs on a shaft or works near a sensor, put the critical fit, concentricity or runout requirement directly on the drawing.

ParameterOSENC RangeEngineering Focus
Outer diameter1.5–60 mmFinished OD, handling and magnetic circuit
Inner diameter0.4–50 mmBore fit, wall thickness and coating build
Height / length0,3–120 mmLong thin-wall geometry and handling risk
Magnetic-direction dimensionUp to 120 mmPole direction fixed on the approved drawing

Long Tubes, Small Bores and Thin Walls Need Full-Geometry Review

Theoretical OD, ID and H ranges cannot be combined arbitrarily. Long tubes, small bores and thin walls increase machining, edge and handling difficulty. Send the complete OD × ID × H combination and we will review the geometry before the production drawing is released.

We Match Magnetization to Your Magnetic Circuit

We select magnetization from the working magnetic circuit, not from tube shape alone. Show us the shaft, sensor position, air gap, mating steel or target field direction on your drawing.

Axial Magnetization

We use axial magnetization when the main magnetic field needs to work through the two annular end faces.

Diametrical Magnetization

We use diametrical magnetization when the field needs to act across the cylindrical body, including suitable rotating and sensing designs.

Radial & Multipole Requirements

For radial or multipole requirements, we review OD/ID ratio, axial length, grade and tooling before quotation.

Select Grade Around Temperature and Geometry

OSENC can review N35–N55 and temperature-grade families including M, H, SH, EH and AH for custom tube magnets.

We select the grade together with OD, ID, wall thickness, operating temperature and the required magnetic circuit. A higher grade is not automatically the better choice if the geometry or temperature requirement points to another solution.

Send us the operating temperature and magnetic target. We will match the grade to the finished part rather than treating grade as an isolated specification.

Coating Options for Neodymium Tube Magnets

OSENC offers nickel, zinc, epoxy und Parylene-based coating options for custom neodymium magnets.

For a tube magnet, coating selection affects more than corrosion resistance. Coating build changes the finished OD, finished ID and actual assembly clearance.

If the bore fits over a shaft or sleeve, specify the required finished ID after coating. We use the finished dimension on the approved drawing as the production target.

For epoxy-coated custom magnets, OSENC's confirmed epoxy coating thickness range is 15–40 μm. We confirm whether the requested Tube geometry and finished tolerance are suitable before production release.

OSENC nickel coated neodymium magnets showing metallic coating finish OSENC epoxy coated neodymium magnets including through-hole geometries

Where We Use Tube-Shaped NdFeB Geometry

Motors & Shaft Rotation

For motor and shaft-mounted designs, we review bore fit, rotor geometry, pole direction, air gap and operating temperature together.

Sensors & Reed-Switch Systems

For sensing applications, send us the sensor location, reading direction and working air gap. We review the tube geometry and magnetization around the detection position.

Actuators & Guided Motion

For actuator designs, we match the tube magnet to the rod, guide, travel direction and magnetic circuit.

Custom Cylindrical Assemblies

We use through-bore geometry when the magnet needs to fit around a shaft, sleeve, cable, guide or internal component that a solid cylinder would block.

OSENC real through-hole neodymium magnet geometries in different sizes OSENC real neodymium through-hole magnet showing bore and coated surfaces

How We Inspect Neodymium Tube Magnets

Your drawing defines what matters. We build the inspection plan around the dimensions and magnetic characteristics that control your assembly.

PrüfungWas wir prüfenWarum das wichtig ist
OD / ID / HFinished dimensions after processing and coatingShaft fit and assembly clearance
Bore & EdgeBore condition, chipping and edge damageThin-wall reliability and assembly protection
BeschichtungCoverage, surface condition and specified thicknessCorrosion protection and finished fit
PolrichtungMagnetization orientationCorrect magnetic circuit
Gauss TestDefined measurement point, orientation and distanceRepeatable magnetic acceptance
Special GeometryConcentricity or runout when specifiedRotating or close-gap assemblies
OSENC dimensional inspection of neodymium magnets with precision caliper OSENC magnet quality inspection equipment including measurement and test systems

Define the Gauss Test Before Comparing Numbers

A Gauss value is meaningful only when magnet size, grade, pole direction, probe position, probe orientation and working distance are fixed. If your project has a magnetic acceptance requirement, send us the measurement point and working gap so we can define the test condition before production.

Send These Details and We Can Review Your Tube Magnet

A complete drawing is best, but you can start with OD × ID × H and the application.

  1. OD × ID × H.
  2. Critical tolerances and bore fit.
  3. Grade or magnetic target.
  4. Magnetization direction or pole layout.
  5. Betriebstemperatur.
  6. Coating and service environment.
  7. Working gap and sensor/shaft/housing position.
  8. Prototype quantity and repeat volume.
  9. Inspection or acceptance requirement.

Start With the Geometry You Have

You do not need a perfect production drawing to start the discussion. Send us the size, application and magnetic working direction you already know.

We will review the tube geometry, grade, coating, magnetization and inspection requirements as one finished part before quotation and sampling.

Send Your Tube Magnet Requirement

Neodymium Tube Magnet vs Ring Magnet vs Magnetic Filter Tube

ProduktWhat It IsGeeignet fürMain RFQ Inputs
Neodymium magnet tubeElongated sintered NdFeB part with a straight through bore.Shafts, sensors, motors, actuators and cylindrical OEM assemblies.OD, ID, H, grade, magnetization, coating, tolerance, quantity.
Neodymium ring magnetShorter through-hole NdFeB geometry, often washer-like.Compact rotors, speakers, sensors, couplings and mounting.OD, ID, thickness, magnetization, coating.
Magnetic filter tube / rodMagnetic-separation component with a protective stainless-steel structure around an internal magnetic circuit.Removing ferrous contamination from product flow.Tube diameter, length, working gap, process material, temperature, cleaning method.

Neodymium Magnet Tube FAQ

What is a neodymium magnet tube?

A neodymium magnet tube is an elongated tube-shaped sintered NdFeB permanent magnet with a straight through bore. OSENC manufactures the geometry to drawing for shaft, sensing, motor and custom cylindrical assembly requirements.

What sizes can OSENC manufacture?

Our current Tube range is OD 1.5–60 mm, ID 0.4–50 mm and H 0.3–120 mm, with a maximum magnetic-direction dimension of 120 mm. We review the complete OD × ID × H combination before production release.

How do I specify the dimensions?

Use D × d × H, where D is OD, d is ID and H is overall length. For example, D10 × d7 × H30 mm means 10 mm OD, 7 mm ID and 30 mm length.

Can OSENC make long, thin-wall neodymium tube magnets?

We review long and thin-wall tube geometries, but feasibility depends on the complete OD × ID × H combination, grade, coating and edge condition. Send the full geometry rather than checking wall thickness alone.

Can OSENC control the finished bore size after coating?

Yes. If ID is a critical fit dimension, specify the finished bore requirement on the drawing. We review coating together with the finished dimensional requirement.

How should I specify magnetization on the drawing?

Show the required north/south pole direction, sensor position or magnetic working faces. If the magnetic circuit is not yet fixed, send us the assembly layout and we can review the suitable magnetization direction with you.

Are neodymium tube magnets always radially magnetized?

No. We match magnetization to the real magnetic circuit. Axial and diametrical arrangements are used for suitable through-hole designs, while radial or multipole requirements receive a geometry and tooling review before quotation.

Welche Beschichtungen sind verfügbar?

OSENC coating options for custom neodymium magnets include nickel, zinc, epoxy and Parylene-based systems. For Tube projects, we select the coating together with corrosion exposure and the required finished OD/ID fit.

Kann ich vor der Serienfertigung zunächst Muster beziehen?

Yes. Sample validation is the right stage to confirm fit, finished dimensions, coating, pole direction and any agreed magnetic test before repeat production.

Send Your OD × ID × H Drawing to OSENC

We manufacture neodymium tube magnets as finished engineered parts. Send the geometry, application, magnetization direction, coating, operating temperature and quantity, and we will review the complete part for quotation.

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