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High temperature stability block magnets grade L42SHT

0.01~100.0 USD
Min. Order: 1 Piece/Pieces
Trade Term: FOB
Payment Terms: L/C, T/T
Supply Ability: 1800 tons annual
Place of Origin: Zhejiang

Company Profile

Location: Ningbo, Zhejiang, China (Mainland)
Business Type: Manufacturer
Main Products: Magnet Arc, Industrial Magnets, Car Magnets, Customer Design Magnets, NdFeB Magnets

Product Detail

Model No.: TCND-LT501
Means of Transport: Ocean, express, Air, Land
Shape: Block
Type: Permanent
Composite: NdFeB Magnet
Brand Name: TONGCHUANG MAGNET
application: motor magnet
Grade: L38SHT,L42SHT,L35UHT,L38EHT...
Coating: NICUNI
Certification: TS16949,ISO9001
HS Code: 85051110
Country of Origin: Ningbo,China
Production Capacity: 1800 tons annual
Packing: carton, pallets
Delivery Date: 15-25 days
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Product Description

Product name:High temperature stability block magnets grade L42SHT
Model No:TCND-LT501
High temperature stability block magnets grade L42SHT
High temperature stability block magnets grade L42SHT
The Magnetic Properties of L42SHTHigh Temperature Resistance Neodymium Magnets
Residual Induction - Br = 12.8 - 13.2 kGs / 1,280 - 1,320 mT
Coercive Force - Hcb ≥ 12.4 kOe / ≥ 987 kA/m
Intrinsic Coercive - Hcj ≥ 20 kOe / ≥ 1,592 kA/m
Maximum Energy Product - (BH)max = 40 - 43 MGOe / 318 - 342 kJ/m3
Maximum Working Temperature - Tw = 150°
Some other magnetic properties or our L-T grades magnets,Grade L38SHT,L42SHT,L35UHT,L38EHT... please refer to our Magnetic properties of Sintered NdFeB magnets:
Magnetic properties of Sintered NdFeB magnets:
GradeRemanenceCoercive ForceIntrinsic Coercive ForceMax. energy productMax.
Operating
Temperature
BrHcbHcj(BH )Tw
max
mTkA/mkA/mkJ/m3
(kGs)(kOe)(kOe)(MGOe)
N351170-1220≥868≥955263-28780 °C
(11.7-12.2)(≥ 10.9)(≥ 12)(33-36)
N381220-1250≥899≥955287-31080 °C
(12.2-12.5)(≥ 11.3)(≥ 12)(36-39)
N401250-1280≥907≥955302-32680 °C
(12.5-12.8)(≥ 11.4)(≥ 12)(38-41)
N421280-1320≥915≥955318-34280 °C
(12.8-13.2)(≥ 11.5)(≥ 12)(40-43)
N451320-1380≥923≥955342-36680 °C
(13.2-13.8)(≥ 11.6)(≥ 12)(43-46)
N481380-1420≥923≥876366-39080 °C
(13.8-14.2)(≥ 11.6)(≥ 12)(46-49)
N501400-1450≥796≥876382-40680 °C
(14.0-14.5)(≥ 10.0)(≥ 11)(48-51)
N521430-1480≥796≥876398-42260°C
(14.3-14.8)(≥ 10.0)(≥ 11)(50-53)
35M1170-1220≥868≥1114263-287100 °C
(11.7-12.2)(≥ 10.9)(≥ 14)(33-36)
38M1220-1250≥899≥1114287-310100 °C
(12.2-12.5)(≥ 11.3)(≥ 14)(36-39)
40M1250-1280≥923≥1114302-326100 °C
(12.5-12.8)(≥ 11.6)(≥ 14)(38-41)
42M1280-1320≥955≥1114318-342100 °C
(12.8-13.2)(≥ 12.0)(≥ 14)(40-43)
45M1320-1380≥995≥1114342-366100 °C
(13.2-13.8)(≥ 12.5)(≥ 14)(43-46)
48M1370-1430≥1027≥1114366-390100 °C
(13.7-14.3)(≥ 12.9)(≥ 14)(46-49)
50M1400-1450≥ 1033≥1114382-406100 °C
(14.0-14.5)(≥ 13.0)(≥ 14)(48-51)
35H1170-1220≥868≥1353263-287120 °C
(11.7-12.2)(≥ 10.9)(≥ 17)(33-36)
38H1220-1250≥899≥1353287-310120 °C
(12.2-12.5)(≥ 11.3)(≥ 17)(36-39)
40H1250-1280≥923≥1353302-326120 °C
(12.5-12.8)(≥ 11.6)(≥ 17)(38-41)
42H1280-1320≥955≥1353318-342120 °C
(12.8-13.2)(≥ 12.0)(≥ 17)(40-43)
45H1320-1360≥963≥1353342-366120 °C
(13.2-13.6)(≥ 12.1)(≥ 17)(43-46)
48H1370-1430≥955≥1353366-390120 °C
(13.7-14.3)(≥ 12.5)(≥ 17)(46-49)
35SH1170-1220≥876≥1592263-287150 °C
(11.7-12.2)(≥ 11.0)(≥ 20)(33-36)
38SH1220-1250≥907≥1592287-310150 °C
(12.2-12.5)(≥ 11.4)(≥ 20)(36-39)
40SH1240-1280≥939≥1592302-326150 °C
(12.5-12.8)(≥ 11.8)(≥ 20)(38-41)
42SH1280-1320≥987≥1592318-342150 °C
(12.8-13.2)(≥ 12.4)(≥ 20)(40-43)
45SH1320-1380≥ 1003≥1592342-366150 °C
(13.2-13.8)(≥ 12.6)(≥ 20)(43-46)
28UH1040-1080≥764≥1990207-231180 °C
(10.4-10.8)(≥ 9.6)(≥ 25)(26-29)
30UH1080-1130≥812≥1990223-247180 °C
(10.8-11.3)(≥ 10.2)(≥ 25)(28-31)
33UH1130-1170≥852≥1990247-271180 °C
(11.3-11.7)(≥ 10.7)(≥ 25)(31-34)
35UH1180-1220≥860≥1990263-287180 °C
(11.8-12.2)(≥ 10.8)(≥ 25)(33-36)
38UH1220-1250≥876≥1990287-310180 °C
(12.2-12.5)(≥ 11.0)(≥ 25)(36-39)
40UH1250-1280≥ 899≥1990302-326180 °C
(12.5-12.8)(≥ 11.3)(≥ 25)(38-41)
42UH1280-1320≥ 899≥1990318-342180 °C
(12.8-13.2)(≥ 11.3)(≥ 25)(40-43)
28EH1040-1080≥780≥2388207-231200 °C
(10.4-10.8)(≥ 9.8)(≥ 30)(26-29)
30EH1080-1130≥812≥2388223-247200 °C
(10.8-11.3)(≥ 10.2)(≥ 30)(28-31)
33EH1130-1170≥876≥2388247-271200 °C
(11.3-11.7)(≥ 10.5)(≥ 30)(31-34)
35EH1170-1220≥876≥2388263-287200 °C
(11.7-12.2)(≥ 11.0)(≥ 30)(33-36)
38EH1220-1250≥899≥2388287-310200 °C
(12.2-12.5)(≥ 11.3)(≥ 30)(36-39)
40EH1250-1280≥899≥2388302-326200 °C
(12.5-12.8)(≥ 11.3)(≥ 30)(38-41)
28AH1040-1080≥787≥2624207-231230 °C
(10.4-10.8)(≥ 9.9)(≥ 33)(26-29)
30AH(1080-1130)≥819≥2624223-247230 °C
(10.8-11.3)(≥ 10.3)(≥ 33)(28-31)
33AH1130-1170≥843≥2624247-271230 °C
(11.3-11.7)(≥ 10.6)(≥ 33)(31-34)
35AH(1170-1220)≥ 876≥2624263-287230 °C
(11.7-12.2)(≥ 11.0)(≥ 33)(33-36)
38AH1220-1250≥ 899≥2624287-310230 °C
(12.2-12.5)(≥ 11.3)(≥ 33)(36-39)

1.The NdFeB magnet properties change as the temperature changes. Ordinarily, when the temperature is up, the magnet properties are down. We use αBr, βHcj measuring the temperature stability of NdFeB magnet.
       αBr: Reversible Temperature Coefficient of Br,
                
                Br(20): Br at 20 ,           Br(T): Br at T
       βHcj: Reversible Temperature Coefficient of Hcj
               
               Hcj(20): Hcj at 20 ,            Hcj(T): Hcj at T
Usually, the industrial standards ofβHcj: is over -0.7%/℃, while theβHcj: of our developed magnet is less than -0.4%/℃, it helps our magnets with excellent temperature stability.
2. Application which needs the high temperature stability
High temperature stability magnets are mainly used in car motors, EPS, brake motors, servo motors and other permanent magnet motors.
3. Correlative temperature coefficient data
Grade
Serial NO.
Conventional Formula
T-Series
L-TSeries
αBr
-0.11~-0.128%/℃
-0.1-0.11%/℃
-0.09~-0.1%/℃
βHcj
-0.6~-0.7%/℃
-0.55~-0.6%/℃
-0.4~-0.55%/℃
Notes: TheαBr, βHcj is relative to aspect ratio, square degree chart(BH curve) etc. Higher the aspect ratio is, higher the working temperature can be. Our recommended aspect ratio is over 0.5.
The data of a certain grades, please feel free to contact us. Ordinarily, if you have the requests on αBr, βHcj, please inform the details while placing the order. Sample test is needed before mass production.
For more details, please consult our engineer.

The Physical properties of sintered NdFeB material
Physical properties of sintered NdFeB material
PropertiesUnitStandard
Curiepoint310~380
Reversible temperature coefficientof Br%/℃-0.09~-0.13
Reversible temperature coefficientof Hcj%/℃0.4~0.7
Maximumworking temperature80230
Densityg /cm3≥7.47.8
VickershardnessHV550650
BendingstrengthMPa250
TensilestrengthMPa80
CompressivestrengthMPa1050
SpecificresistanceµΩ·cm150
ThermalconductivityW/(m℃)68
Thermal expansion10-6 /℃5(parallel to the orientation)
1.5(Perpendicularto the orientation)

Our advantages: 1. Original factory with professional technical and servers.
                            2. Strict quality control systems under certification TS16949 and ISO 9001
                            3. Latest facilities to support R&D, quality control, process control, final product inspection
                            4. Very low prices due to our production well controlled , process optimization,
                            5, Fast lead time
                            6. Motto: partnership with all customers

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