magnets from Magengine Co., Ltd - Magengine - #10

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Sintered AiNiCo
Sintered AINiCo
Grade
Remanence Br
Coercive Force bHc
nMnscQœrdvity iHc
Max. Energy Product (BH)max
Density
Max. Working Temp.
s,
0.52
0.50
40
0.54
43
1.00-1.25
8-10
6.7
450
7.0
0.70
0.50
40
0.54
43
1.50-1.75
12-14
7.0
450
6.0
0.60
1.20
96
1.35
107
2.25-2.75
18-22
7.2
550
10.0
1.00
0.70
56
0.71
57
3.50-3.80
28-30
7.2
525
11.0
1.10
0.63
50
0.64
51
4.27-4.77
34-38
7.2
525
I 78
0.78
1.30
104
1.33
106
3.90-4.50
31-36
7.2
550
AINiCo8
■ ITi ! ■ fcj ici Māt
7.8
MLNGT38
I 8.0
0.80
1.55
123
1.58
126
4.75-5 30
38-42
7.2
550
MLNGT42
8.8
0.88
1.50
120
1.53
122
5.30-6.00
42-48
7.25
550
0.73
1.90
151
2.05
163
4.75-5.00
38-40
7.2
550
l 73
AINiCo materials, composed primarily of alloys of Aluminum, Nickel, Cobalt, Ferrum and other metal elements. They are characterized by excellent temperature stabilities (Its working temperature can be as high as 550 degrees Centigrade), high residual inductions, and relatively high energies. They are manufactured through either casting or sintering process. Cast magnets may be manufactured in complex shapes, such as horseshoes, not possible with other magnet materials. Sintered AINiCos offer slightly lower magnetic properties but better mechanical characteristics than Cast AINiCos. AINiCo is hard and brittle. Machining or drilling cannot therefore be accomplished by ordinary methods. AINiCo has a low coercive force, and is easily demagnetized if not handled with care.
Cast AINiCo5 is the most commonly used of all the Cast AINiCos. This material is used extensively in rotating machinery, meters, instruments, sensing devices, and holding applications, to name a few.

pageCatalog pdf di En 2012-02-07-15