0086-574-86666833
sales@mag-spring.com
Search

SmCo Magnets Technical Information

Contact Us to Get Started

SmCo Magnets (samarium cobalt magnets) permanent magnets are a family of rare earth magnets made from alloys of samarium and cobalt, hence the name. Unlike other types of rare earth magnets.  SmCo Magnets (samarium cobalt magnets) are an excellent choice for applications where the magnet will be exposed to corrosion. By being more resistant to corrosion than their neodymium counterparts.

 

Mag Spring can make :

 

  1. 1Sintered SmCo Magnetic Properties
    1. Sintered SmCo Magnetic Properties and Grade list ;
    2. Demagnetization curves at various temperatures of sintered SmCo magnets  from 0℃  to 300℃  (500℃)
    3. Magnetic Properties of UHT high temperature magnets-SmCo magnets 22G on 20℃ , 300℃  and 500℃  and Their Demag Curve.
  2. Max Dimension and Tolerance of Sintered SmCo Magnets
    1. Sintered SmCo Magnets Shape Type and its Max Dimension
    2. General Tolerance for sintered SmCo Magnets in different process
    3. Geometric Tolerance for sintered SmCo gnets in different process
  3. Mainly Coating of Sintered SmCo Magnets
  4. Mechanical and physical properties of sintered SmCo Magnets
  5. The process for Sintered SmCo Magnets
  6. SmCo5 and SmCo17
    1. SmCo5 magnets feature
    2. Sm2Co17 magnets feature
  7. How to Buy Samarium Cobalt Magnets?

 

1. Sintered SmCo Magnetic Properties

 

1.1 Sintered SmCo Magnetic Properties list :

Material Grade Br Hcb Hcj (BH)max Tc Tw α(Br) β(Hcj)
    T KGs KA/m KOe KA/m KOe KJ/m³ MGOe -%/℃ -%/℃
SmCO5 Sm2Co17 XGS16L 0.81-0.85 8.1-8.5 517-669 6.5-8.4 636-955 8--12 111-127 14-16 800 250 0.02 0.2
XGS18L 0.85-0.90 8.5-9.0 525-708 6.6-8.9 636-955 8--12 127-143 16-18 800 250 0.02 0.2
XGS20L 0.90-0.94 9.0-9.4 533-732 6.7-9.2 636-955 8--12 143-159 18-20 800 250 0.02 0.2
XGS22L 0.94-0.97 9.4-9.7 533-740 6.7-9.3 636-955 8--12 159-175 20-22 800 250 0.02 0.2
XGS24L 0.97-1.02 9.7-10.2 541-756 6.8-9.5 636-955 8--12 175-191 22-24 800 250 0.03 0.2
XGS26L 1.02-1.05 10.2-10.5 541-764 6.8-9.6 636-955 8--12 191-207 24-26 800 250 0.03 0.2
XGS28L 1.05-1.08 10.5-10.8 541-780 6.8-9.8 636-955 8--12 207-223 26-28 800 250 0.035 0.2
XGS30L 1.08-1.11 10.8-11.1 541-796 6.8-10.0 636-955 8--12 223-239 28-30 800 250 0.035 0.2
XGS32L-A 1.11-1.13 11.1-11.3 549-804 6.9-10.1 636-955 8--12 239-246 30-31 800 250 0.035 0.22
XGS32L-B 1.13-1.15 11.3-11.5 550-805 6.9-10.1 636-955 8--12 246-255 31-32 800 250 0.04 0.25
XGS33L 1.15-1.17 11.5-11.7 558-815 7.0-10.2 636-955 8--12 246-262 31-33 800 250 0.045 0.25
XGS16M 0.81-0.85 8.1-8.5 573-669 7.2-8.4 955-1433 12--18 111-127 14-16 800 300 0.02 0.2
XGS18M 0.85-0.90 8.5-9.0 605-708 7.6-8.9 955-1433 12--18 127-143 16-18 800 300 0.02 0.2
XGS20M 0.90-0.94 9.0-9.4 637-732 8.0-9.2 955-1433 12--18 143-159 18-20 800 300 0.02 0.2
XGS22M 0.94-0.97 9.4-9.7 645-740 8.1-9.3 955-1433 12--18 159-175 20-22 800 300 0.02 0.2
XGS24M 0.97-1.02 9.7-10.2 661-764 8.3-9.6 955-1433 12--18 175-191 22-24 800 300 0.03 0.2
XGS26M 1.02-1.05 10.2-10.5 685-788 8.6-9.9 955-1433 12--18 191-207 24-26 800 300 0.03 0.2
XGS28M 1.05-1.08 10.5-10.8 693-812 8.7-10.2 955-1433 12--18 207-223 26-28 800 300 0.035 0.2
XGS30M 1.08-1.11 10.8-11.1 700-828 8.8-10.4 955-1433 12--18 223-239 28-30 800 300 0.035 0.2
XGS32M-A 1.11-1.13 11.1-11.3 708-852 8.9-10.7 955-1433 12--18 239-246 30-31 800 300 0.035 0.22
XGS32M-B 1.13-1.15 11.3-11.5 716-860 9.0-10.8 955-1433 12--18 246-255 31-32 800 300 0.04 0.25
XGS33M 1.15-1.17 11.5-11.7 726-870 9.1-10.9 955-1433 12--18 246-262 31-33 800 300 0.045 0.25
XGS14 0.74-0.81 7.4-8.1 540-609 7.0-7.9 0.07 0.07 96--111 12--14 800 300 0.02 0.2
XGS16 0.81-0.85 8.1-8.5 597-669 7.5-8.4 ≥1433 ≥18 111-127 14-16 800 300 0.02 0.2
XGS18 0.85-0.90 8.5-9.0 621-708 7.8-8.9 ≥1433 ≥18 127-143 16-18 800 300 0.02 0.2
XGS20 0.90-0.94 9.0-9.4 653-732 8.2-9.2 ≥1433 ≥18 143-159 18-20 800 300 0.02 0.2
XGS22 0.94-0.97 9.4-9.7 677-740 8.5-9.3 ≥1433 ≥18 159-175 20-22 800 300 0.02 0.2
XGS24 0.97-1.02 9.7-10.2 693-772 8.7-9.7 ≥1433 ≥18 175-191 22-24 800 300 0.03 0.2
XGS26 1.02-1.05 10.2-10.5 748-796 9.4-10.0 ≥1433 ≥18 191-207 24-26 800 300 0.03 0.2
XGS28 1.05-1.08 10.5-10.8 756-820 9.5-10.3 ≥1433 ≥18 207-223 26-28 800 300 0.035 0.2
XGS30 1.08-1.11 10.8-11.1 788-836 9.9-10.5 ≥1433 ≥18 223-239 28-30 800 300 0.035 0.2
XGS32-A 1.11-1.13 11.1-11.3 812-860 10.2-10.8 ≥1433 ≥18 239-246 30-31 800 300 0.035 0.22
XGS32-B 1.13-1.15 11.3-11.5 820-870 10.3-10.9 ≥1433 ≥18 246-255 31-32 800 300 0.04 0.25
XGS33 1.15-1.17 11.5-11.7 830-880 10.4-11.0 ≥1433 ≥18 246-262 31-33 800 300 0.045 0.25
XGS14H 0.74-0.81 7.4-8.1 557-629 7.0-7.9 ≥1990 ≥25 96--111 12--14 800 350 0.02 0.2
XGS16H 0.81-0.85 8.1-8.5 605-669 7.6-8.4 ≥1990 ≥25 111-127 14-16 800 350 0.02 0.2
XGS18H 0.85-0.90 8.5-9.0 629-708 7.9-8.9 ≥1990 ≥25 127-143 16-18 800 350 0.02 0.2
XGS20H 0.90-0.94 9.0-9.4 661-732 8.3-9.2 ≥1990 ≥25 143-159 18-20 800 350 0.02 0.2
XGS22H 0.94-0.97 9.4-9.7 685-740 8.6-9.3 ≥1990 ≥25 159-175 20-22 800 350 0.02 0.2
XGS24H 0.97-1.02 9.7-10.2 700-772 8.8-9.7 ≥1990 ≥25 175-191 22-24 800 350 0.03 0.2
XGS26H 1.02-1.05 10.2-10.5 756-796 9.5-10.0 ≥1990 ≥25 191-207 24-26 800 350 0.03 0.2
XGS28H 1.05-1.08 10.5-10.8 764-820 9.6-10.3 ≥1990 ≥25 207-223 26-28 800 350 0.035 0.2
XGS30H 1.08-1.11 10.8-11.1 796-836 10.0-10.5 ≥1990 ≥25 223-239 28-30 800 350 0.035 0.2
XGS32H-A 1.11-1.13 11.1-11.3 820-860 10.3-10.8 ≥1990 ≥25 239-246 30-31 800 350 0.035 0.22
XGS32H-B 1.13-1.15 11.3-11.5 830-880 10.4-11.0 ≥1990 ≥25 246-255 31-32 800 350 0.04 0.25
XGS33H 1.15-1.17 11.5-11.7 840-890 10.5-11.1 ≥1990 ≥25 246-262 31-33 800 350 0.042 0.28
 
Sm2Co17-LT XGS14LT 0.74-0.81 7.4-8.1 557-629 7.0-7.9 ≥1592 ≥20 96--111 12--14 840 350 Temp.  α(Br) 
  XGS16LT 0.81-0.85 8.1-8.5 605-669 7.6-8.4 ≥1592 ≥20 111-127 14-16 840 350 -50--20℃ +0.005%/℃
  XGS18LT 0.85-0.90 8.5-9.0 629-708 7.9-8.9 ≥1592 ≥20 127-143 16-18 840 350 20--200℃ -0.008%/℃
  XGS20LT 0.90-0.94 9.0-9.4 661-732 8.3-9.2 ≥1592 ≥20 143-159 18-20 840 350 200-300℃ -0.011%/℃

 

There are many kinds of High temperature magnets , such as Alnico magnets have lowest reversible temperature coefficient and can work at temperature up to 600 Celsius degree, but its BHmax( can only up to about 10-12MGOe) is very smaller than Neodymium Magnets (its BHmax is from 30-54MGOe), they are mainly used in various instruments. Most SmCo magnets can working up 300 Celsius Degree and Special high super temperature smco magnets can working  up to 550 celsius degree, but its magnetic energy product can only up to 26MGOe , or  up to 32MGOe with max working temperature is 300 Celsius degree. They are more brittle than neodymium magnets.
 

1.2 Demag curve

Demagnetization curves of XGS33H with temperature from  20℃ to 300℃

img

 

1.3 Magnetic Properties of UHT high temperature magnets-SmCo magnets 22G on 20℃ , 300℃  and 500℃    

Material Grade Br Hcb Hcj (BH)max Tc Tw Test Temp
    T KGs KA/m KOe KA/m KOe KJ/m³ MGOe
Sm2Co17 22G 0.95-1.0 9.5-10 >=715.5 >=9 >=1988 >=25 175-183 22-23 800 500 20
    0.84-0.86 8.4-8.6 >=556.5 >=7 >=1194 >=15 127-143 16-18 800 500 300
    >=0.7 >=7000 >=469.6 >=5.9 >=517 >=6.5 >=96 >=12 800 500 500

Demagnetization curves of UHT high temperature magnets from 20 ℃ to 300℃ 

img

 

 

 

Demagnetization curves of UHT high temperature magnets on 500℃ 

img

 

 

2. Maximum Dimension and Tolerance of Sintered SmCo Magnets

2.1 Sintered SmCo Magnets Shape Type and its Max Dimension

Shape Picture Dimenion Recommended Maximum
Dimension/mm Dimension/mm
Block img L ≤100 ≤ 200
W ≤80 ≤100
T ≤50 ≤120
Cylinder img D ≤100 ≤130
T ≤50 ≤100
Ring img D ≤100 ≤120
d ≤60 ≤80
     
T ≤50 ≤60
Segment img L ≤80 ≤100
W ≤60 ≤100
H ≤60 ≤100
a 0-180°C

Note 1:  the three sizes noted above, only one or two of the largest sizes can be produced. M is the magnetization direction. Above pictures shown only the introduction of conventional shape products, we can also produce various shapes of samarium cobalt products, welcome to inquire with drawings.

2. When the dimensions in multiple directions are large, our special bonding process can be used.

3. Because the samarium cobalt material is very brittle, the thickness of the product with a large outer diameter or a large square should not be too thin, and the wall of a large ring product should not be too thin. The specifics should be determined according to shapes and magnetization directions, etc.

2.2 General Tolerance for sintered SmCo Magnets in different process
img

2.3 Geometric Tolerance for sintered SmCo  Magnets in different process

img

 

3. Mainly Coating of Sintered SmCo Magnets

Nickel, Zink or Epoxy are available to avoid easy chips happening during assembling;

4. Mechanical and physical properties of sintered SmCo Magnets

Item Unit SmCo5 Sm2Co17
Density g/cm3 8.1-8.5 8.3-8.5
Curie Temperature 700-750 800-850
Recoil Permeability   1.00-1.05 1.00-1.1
Vickers Hardness Hv 450-500 500-600
Electrical Resistivity Ω·cm 5-6×10-5 8-9×10-5
Compressive Strength Mpa 420-680 700-830
Thermal Conductivity W/m·k   12
Coefficient of Thermal Expansion(C ⊥) 10-6/℃ 13 11
Coefficient of Thermal Expansion(C //) 10-6/℃ 6 8
Saturation Field kA/m >1600 >3200

 

5.The Process for SmCo Magnets

Preparation of Raw Materials → Melting and Casting →  Crushing → Jet Milling → Orienting and Pressing → Vacuum Sintering and Aging→ Magnetic Properties Inspection → Machining → Surface Treatment → Magnetizing →Inspection and Packing → Delivery.

 

6. SmCo5 and SmCo17 Magnet

Samarium cobalt magnets can be divided into two categories based on their composition: SmCo5 and Sm2Co17, which are the first and second generation rare earth permanent magnet materials.  

6.1 SmCo5 magnets feature

1:5 Samarium Cobalt magnet, also known as SmCo5 magnet, is a magnetic material made from metal samarium, cobalt, or a partial replacement of samarium with metal praseodymium, in a certain proportion, through smelting, crushing, pressing, and sintering. The maximum magnetic energy range of each grade is between 16-25, with a maximum working temperature of 250°C. The maximum magnetic energy product is lower than that of 2:17 samarium cobalt magnets, but the mechanical properties and ductility are slightly better than those of Sm2Co17 magnets. It is relatively easy to machine, and the product is less brittle than Sm2Co17 magnets, making it suitable for processing into shapes and specifications that are difficult to machine with 2:17 samarium cobalt, such as thin disks, squares, rings, and various complex shapes. Additionally, the magnetization magnetic field of 1:5 samarium cobalt magnet can be smaller than that of 2:17 samarium cobalt magnet. Generally, a 40,000 gauss magnetic field is sufficient for saturation magnetization, while a Sm2Co17 high coercivity samarium cobalt magnet requires a magnetic field of 60,000 gauss or higher. The rare earth content in the formula of 1:5 samarium cobalt magnet is as high as nearly 40%, so the price is higher than that of 2:17 samarium cobalt magnet. Users can reasonably choose to use 1:5 or 2:17 samarium cobalt magnets according to their own usage conditions when designing.

6.2 Sm2Co17 magnets feature

2:17 Samarium Cobalt magnet, also known as Sm2Co17 magnet, is a magnetic material made from metal samarium, cobalt, copper, iron, and zirconium, in a certain proportion, through smelting, crushing, pressing, sintering, and aging. The maximum magnetic energy product range of each grade is between 20-35, with a maximum working temperature of 350°C. Due to its low temperature coefficient and good corrosion resistance, Sm2Co17 magnets have magnetic properties that exceed neodymium iron boron magnets at high temperatures, making them widely used in aerospace, military, high-temperature motors, automotive sensors, various magnetic drives, magnetic pumps, and microwave devices.2:17 samarium cobalt is very brittle and is not easily processed into complex shapes or very thin sheets and thin-walled rings. Additionally, due to its brittleness, 2:17 samarium cobalt is prone to small chips during product processing, handling, inspection, and magnetization processes. As long as it does not affect the magnetic performance or function, these chips should be considered acceptable. Because the composition contains iron, its corrosion resistance is slightly worse than that of SmCo5, and plating may be required in special environments. It is particularly important to note that users must handle with care during assembly to avoid attracting two magnets or magnetizing them to iron objects, which can cause the magnets to break or injure people. Sm2Co17 magnets are not easily saturated during magnetization. If users need to magnetize them themselves, they must understand the size of the magnetic field of the magnetization equipment and then choose the appropriate grade.

 

7. How to Buy Samarium Cobalt Magnets?

If you want to buy right Samarium Cobalt Magnets, Please tell us the following information if possible.

  1. Any drawing or Shape,Dimension and tolerance ;

  2. SmCo Magnet Grade or Detailed Magnetic properties;

  3. Almost no need coating because its own materials is corrosion resistance. But Nickel , Zink or Epoxy are available to avoid easy chips happening during assembling;

  4. Direction of magnetization of Samarium Cobalt Magnets, magnetized or not magnetized for shipment;

  5. Other requirement if possible;

  6. Quantity, delivery way (sea shipment or air shipment );

  7.  Any Seaport or airport nearby your company.

 

Let’s Work on Your Next Permanent Magnet Project
Companies All Around The World Trust MAG SPRING® for awesome project creations
Contact Us to Get Started
sales@mag-spring.com 0086-574-86666833
No. 99 Lipu Road Xiepu Zhenhai Ningbo
Contact Details
sales@mag-spring.com 0086-574-86666833
No. 99 Lipu Road Xiepu Zhenhai Ningbo
Contact Us Now
Name can't be empty
Email error!
Company can't be empty
Message can't be empty