Dish NdFeB magnet of 3Cr+Zn coating for Speaker

Dish NdFeB magnet of 3Cr+Zn coating for Speaker
Model:HTMAG-Dish
Brand:Dish NdFeB
Origin:Made In China
Category:Electronics & Electricity / Electronic Components / Speaker,Trumpet & Buzzer
Label:Circular Disc Magnet , Parallélépipèdes , supermagnete
Price: US $0.03 / pc
Min. Order:50 pc

Product Description

Dish Magnet has been presented above, want more similar products, please click Supper magnets, Disc magnets, Magnetic disc. Our Disc Magnet is good in quality and competitive in price. We manufacture Disc Magnet and supply OEM,ODM service according to your requirement. 

The Sintered NdFeB magnet has the high remanence, High coercive force, High-energy productand high pertormance/cost ratio. It may be easily formed into various sizes. And we provide the coating of NdFeB magents can be Ni(NiCuNi,Bright Ni,Chemical Ni,Ni+Epoxy,Ni+Cu,Ni+Sn), Zn(Bluz Zn, Color Zn, White Zn), Gold(Au), Silver(Ag), Phospate, Parylene, etc. we can do the special coating in according to customers request. It is especially suitablefor the development of high performance, compact and light products.

1,Super Sintered NdFeB Magnets Shapes
 
ネオジム磁石、円柱型 ネオジム磁石、リング型 ネオジム磁石、丸棒型 ネオジム磁石、角型 ネオジム磁石、セグメント型
ネオジム磁石、ボール型 ネオジム磁石、円柱型皿穴付 ネオジム磁石、角型皿穴付 ネオジム磁石、角型皿穴2付 ネオジム磁石、特殊形状型
 

 

 

 

 

Production Process :

Vacuum Melting

Compositions of neodymium, iron , iron-boron, dysprosium and minor additions including cobalt , copper , gallium, aluminum and others are mixed and induce-melted to form Nd2Fe14B phase and other necessary structures required for high performance permanent magnets. The melting temperature reaches over 1300o C. Usually repeated melting is needed to be produce an even phase and structure distribution .

Crushing or HDDR

The ingots from vacuum melting process are crushed into coarse powder directly , or strip cast followed by HDDR processing into coarse powder .

Jet Milling

The coarse powder further milled into required particles sized about 3 microns in diameter by a jet miller . Those particles become single-domain and anisotropic whichare critical for producing a high coercivity magnet. Jet milling is the most effective way to mill the particles so far.

Pressing

Compact the fined powder to re-produces block magnets. Usually a magnetic field is applied during pressing to align those anisotropic particles in order to produces maximum magnetic output in particular direction. There are two pressing methods, transverse and axial , depend on different application. Isostatic pressing is normally used to further densify magnets to 75-80% .

Vacuum Sintering

The compacted magnets are sintered ate temperature above 1000 o C and for many hours to be solidifiedand compacted further more up to 99% by shrinking its body. A required microstructure between particles for high performance permanent magnets is also formed in this stage. Some following heat-treatments are needed to stabilize the magnets .

Machining

Shrinkage and distortion during sintering is too difficult to control adequately and magnets normally need at least a “ clean up” grind on the surface. Small parts are cut or sliced precisely forma big block to meet the demanding tolerances and different shapes .

Surface Treatment

Various surface treatments can be applied on the final products . They include zinc, nickel ,Ni-Cu-Ni multi-layer, e-coating , epoxy and others. They provide different surface finishing, appearance and corrosion resistance, applicable in different application environments.

Inspection & Packaging

Finally, specific inspection varies by customer specification and needs, including dimensional and magnetic tests. Packaging includes rusty-proof , magnetic shelter and others.

Sintered neo magnets is quite brittle and careful handing and packaging is required.
 
3,Surface Treatment 
Neodymium magnet is easy corroded in acid , salt and moisture environment due to it’s content of rare earth elements. Uncoated Neodymium Iron Boron should not be used in harsh surrounding and requires a protective layer of coating  in order to protect against corrosion . Our magnets offers a variety of different coating suited to the environments of the magnet . The surface treatment usually taken on the magnets is as follows :
1) Metallic Coatings:    Zn, Color-Zn, Ni, Double Ni, Ni-Cu-Ni, Ni+Sn

2)Organic Coatings: Black Epoxy  and Gray Epoxy

3)Others:  Passivation and  Phosphatization

 
Surface Treatment  
 

4,Magnetization of Directions

 

5,Technical Data 

 

Technical data of sintered NdFeB
 
 Performance
Grade

Br mT(kGs)

Hcb kA/m(kOe)

Hcj kA/m(KOe)

(BH)max kj/m3(MGOe)

Max working temperature (Tw)

N35

1170-1220 (11.7-12.2)

≥868(≥10.9)

≥955(≥12)

263-287(33-36)

80℃

N38

1220-1250 (12.2-12.5)

≥899(≥11.3)

≥955(≥12)

287-310(36-39)

80℃

N40

1250-1280 (12.5-12.8)

≥907(≥11.4)

≥955(≥12)

302-326(38-41)

80℃

N42

1280-1320 (12.8-13.2)

≥915(≥11.5)

≥955(≥12)

318-342(40-43)

80℃

N45

1320-1380 (13.2-13.8)

≥923(≥11.6)

≥955(≥12)

342-366(43-49)

80℃

N48

1380-1420 (13.8-14.2)

≥923(≥11.6)

≥955(≥12)

366-390(46-49)

80℃

N50

1400-1450 (14.0-14.5)

≥796(≥10.0)

≥876(≥11)

382-406(48-51)

80℃

 

 

 

 

 

 

33M

1130-1170 (11.3-11.7)

≥836(≥10.5)

≥1114(≥14)

247-263(31-33)

100℃

35M

1170-1220 (11.7-12.2)

≥868(≥10.9)

≥1114(≥14)

263-287(33-36)

100℃

38M

1220-1250 (12.2-12.5)

≥899(≥11.3)

≥1114(≥14)

287-310(36-39)

100℃

40M

1250-1280 (12.5-12.8)

≥923(≥11.6)

≥1114(≥14)

302-326(38-41)

100℃

42M

1280-1320 (12.8-13.2)

≥955(≥12.0)

≥1114(≥14)

318-342(40-43)

100℃

45M

1320-1380 (13.2-13.8)

≥995(≥12.5)

≥1114(≥14)

342-366(43-46)

100℃

48M

1360-1430 (13.6-14.3)

≥1027(≥12.9)

≥1114(≥14)

366-390(46-49)

100℃

 

 

 

 

 

 

33H

1130-1170 (11.3-11.7)

≥836(≥10.5)

≥1353(≥17)

247-271(31-34)

120℃

35H

1170-1220 (11.7-12.2)

≥868(≥10.9)

≥1353(≥17)

263-287(33-36)

120℃

38H

1220-1250 (12.2-12.5)

≥899(≥11.3)

≥1353(≥17)

287-310(36-39)

120℃

40H

1250-1280 (12.5-12.8)

≥923(≥11.6)

≥1353(≥17)

302-326(38-41)

120℃

42H

1280-1320 (12.8-13.2)

≥955(≥12.0)

≥1353(≥17)

318-342(40-43)

120℃

45H

1320-1380 (13.2-13.8)

≥955(≥12.0)

≥1353(≥17)

342-366(43-46)

120℃

48H

1370-1430 (13.7-14.3)

≥955(≥12.5)

≥1353(≥17)

366-390(46-49)

120℃

 

 

 

 

 

 

30SH

1080-1130 (10.8-11.3)

≥804(≥10.1)

≥1592(≥20)

223-247(28-31)

150℃

33SH

1130-1170 (11.3-11.7)

≥844(≥10.6)

≥1592(≥20)

247-271(31-34)

150℃

35SH

1170-1220 (11.7-12.2)

≥876(≥11.0)

≥1592(≥20)

263-287(33-36)

150℃

38SH

1220-1250 (12.2-12.5)

≥907(≥11.4)

≥1592(≥20)

287-310(36-39)

150℃

40SH

1240-1280 (12.5-12.8)

≥939(≥11.8)

≥1592(≥20)

302-326(38-41)

150℃

42SH

1280-1320 (12.8-13.2)

≥987(≥12.4)

≥1592(≥20)

318-342(40-43)

150℃

45SH

1320-1380 (13.2-13.8)

≥1003(≥12.6)

≥1592(≥20)

342-366(43-46)

150℃

 

 

 

 

 

 

28UH

1020-1080 (10.2-10.8)

≥764(≥9.6)

≥1990(≥25)

207-231(26-29)

180℃

30UH

1080-1130 (10.8-11.3)

≥812(≥10.2)

≥1990(≥25)

223-247(28-31)

180℃

33UH

1130-1170 (11.3-11.7)

≥852(≥10.7)

≥1990(≥25)

247-271(31-34)

180℃

35UH

1180-1220 (11.8-12.2)

≥860(≥10.8)

≥1990(≥25)

263-287(33-36)

180℃

38UH

1220-1250 (12.2-12.5)

≥899(≥11.3)

≥1990(≥25)

287-310(36-39)

180℃

40UH

1240-1280 (12.4-12.8)

≥899(≥11.3)

≥1990(≥25)

302-326(38-41)

180℃

 

 

 

 

 

 

28EH

1040-1090 (10.4-10.9)

≥780(≥9.8)

≥2388(≥30)

207-231(26-29)

200℃

30EH

1080-1130 (10.8-11.3)

≥812(≥10.2)

≥2388(≥30)

223-247(28-31)

200℃

33EH

1130-1170 (11.3-11.7)

≥836(≥10.5)

≥2388(≥30)

247-271(31-34)

200℃

35EH

1170-122 (11.7-12.2)

≥876(≥11.0)

≥2388(≥30)

263-287(33-36)

200℃

38EH

1220-1250 (12.2-12.5)

≥899(≥11.3)

≥2388(≥30)

287-310(36-39)

200℃

 

30AH

1080-1150 (10.8-11.3)

≥812(≥10.2)

≥2786(≥35)

223-247(28-31)

250℃

35AH

1170-1220 (11.7-12.2)

≥876(≥11.0)

≥2786(≥35)

263-287(33-36)

250℃

 


Besides above-listed magnetic grade, we also have T and L-T series grades magnets which are derived from the basic ones, such as N45 and N45T, 38SH and L-38SHT. The main properties( Br,Hcj,Hcb ad (BH)max) of them are the same while their little differences are listed as follows:

Other Performance Data

 Performance
Grade

μr

Tc ℃

Density g/m3

aBr %/℃

βHcj  %/℃

Intensity MPa

Compressive Resistance

Bending Resistance

Basic /Grade

1.05

310

7.5

-0.12

-0.7

600-1200

150-380

"T" Grade

1.05

330

7.5

-0.11

-0.6

600-1200

150-380

"L-T"Grade

1.05

350

7.5

-0.10

-0.5

600-1200

150-380



 
Dish NdFeB magnet of 3Cr+Zn coating for Speaker 1Dish NdFeB magnet of 3Cr+Zn coating for Speaker 2Dish NdFeB magnet of 3Cr+Zn coating for Speaker 3Dish NdFeB magnet of 3Cr+Zn coating for Speaker 4Dish NdFeB magnet of 3Cr+Zn coating for Speaker 5

Member Information

NINGBO HAITIAN MAGNETS CO., LTD
Country/Region:Zhe Jiang - China
Business Nature:Manufacturer
Phone:18957407704
Contact:Lucy Yan (Sales Manager)
Last Online:10 Oct, 2024

Related Products of this Company