• High Energy Isotropy AlNiCo Alloy
  • High Energy Isotropy AlNiCo Alloy
  • High Energy Isotropy AlNiCo Alloy
  • High Energy Isotropy AlNiCo Alloy
  • High Energy Isotropy AlNiCo Alloy
  • High Energy Isotropy AlNiCo Alloy

High Energy Isotropy AlNiCo Alloy

Shape: Various
Application: Industrial Magnet
Coating: as Customer Requirement
Type: Permanent
Composition: AlNiCo Magnet
Transport Package: Neutral Paper Carton Packing
Customization:
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Basic Info.

Model NO.
YX Series
Specification
ROHS, SGS, CE
Trademark
Yuxiang
Origin
Fujian, China (Mainland)
HS Code
850511900
Production Capacity
100000 Piece/Pieces / Month

Product Description

Isotropy AlNiCo Alloy
General Introduction
1, Alnico alloys make strong permanent magnets, and can be magnetized to produce strong magnetic fields.

2, Of the more commonly available magnets, only rare-earth magnets such as neodymium and samarium-cobalt are stronger

3, Alnico magnets produce magnetic field strength at their poles as high as 1500 gauss or about 3000 times the strength of Earth's magnetic field

4, Some brands of alnico are isotropic and can be efficiently magnetized in any direction.
High Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo AlloyHigh Energy Isotropy AlNiCo Alloy
5, Other types, such as alnico 5 and alnico 8, are anisotropic, with each having a preferred direction of magnetization, or orientation.


6, Anisotropic alloys generally have greater magnetic capacity in a preferred orientation than isotropic types

Feature:
1. Certification: ISO9001: 2000
2. Working temp.: Up to 800 degree C
3. Strong anti-demagnetization

For more detail info, please feel free to visit our website or inquire us at any of your convenience
 
Magnetic Property
Characteristics
Grade
Max Energy Product
(BH)max
Residual Induction
Br
Coercive Force
HcB
Intrinsic Coercive Force
Hcj
Recoil Permeability µrec Density
d
Temp. Coefficient α(Br) Curie Temp. Tc Proposal Coercive Field
MGOe
(kJ/m3)
KGs
(mT)
Oe
(KA/m)
Oe
(KA/m)
- g/cm3 %/K °C KOe
(KA/m)
AlNiCo 8/5 1.0-1.2
(8.5-9.5)
5.3-6.2
(530-620)
560-620
(45-50)
590-650
(47-52)
4.5 6.8 -0.02 750 2.5
(200)
AlNiCo 10/5 1.2-1.4
(9.5-11)
6.3-7.0
(630-700)
600-700
(48-56)
630-730
(50-58)
5.0 6.8 -0.02 780 2.5
(200)
AlNiCo 12/5 1.4-1.6
(11-13)
7.0-7.5
(700-750)
630-700
(50-56)
660-730
(53-58)
5.0 7.0 -0.02 800 2.5
(200)
AlNiCo 14/5 1.6-1.9
(13-15)
7.3-8.0
(730-800)
590-630
(47-50)
620-660
(50-53)
5.0 7.1 -0.02 790 2.5
(200)
AlNiCo 14/8 1.8-2.0
(14-16)
5.5-6.1
(550-610)
950-1100
(75-88)
1000-1150
(80-92)
3.2 7.1 -0.01 850 3.8
(300)
AlNiCo 18/10 2.0-2.4
(16-19)
5.7-6.2
(570-620)
1150-1250
(92-100)
1240-1340
(99-107)
3.2 7.2 -0.01 860 3.8
(300)
 

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