Characteristics of magnesium alloys: low density, high specific strength/stiffness, good electromagnetic shielding, good thermal conductivity, vibration damping, and machinability. Drawbacks include moderate corrosion resistance and limited high-temperature strength; laboratory applications primarily leverage their advantages in lightweighting and electromagnetic shielding.
Note: Magnesium alloys are generally not used for bases subject to heavy loads—where aluminum alloys are preferred—but are instead utilized for lightweight auxiliary brackets.
Electromagnetic shielding boxes, shielding cavities, and antenna mounts. Magnesium alloys offer high electromagnetic shielding effectiveness, making them ideal for RF and EMC testing; they are significantly lighter than steel shielding boxes, facilitating easy handling.
Mechanical arm linkages, mobile robot chassis, and motion stage brackets. Lightweight properties reduce motor load and improve motion response speed; vibration-damping characteristics minimize vibrations during high-speed movement, making them suitable for research prototypes.
| Material | Characteristics |
|---|---|
| Magnesium alloy | Lightest; offers excellent electromagnetic shielding and vibration damping; poor corrosion and high-temperature resistance. |
| Aluminum alloy | Balanced overall properties; easy to process; superior corrosion resistance compared to magnesium; shielding and damping capabilities are inferior to magnesium alloy. |
| Titanium alloy | Excellent corrosion and high-temperature resistance; expensive and heavy. |
Characteristics of magnesium alloys: low density, high specific strength/stiffness, good electromagnetic shielding, good thermal conductivity, vibration damping, and machinability. Drawbacks include moderate corrosion resistance and limited high-temperature strength; laboratory applications primarily leverage their advantages in lightweighting and electromagnetic shielding.
Note: Magnesium alloys are generally not used for bases subject to heavy loads—where aluminum alloys are preferred—but are instead utilized for lightweight auxiliary brackets.
Electromagnetic shielding boxes, shielding cavities, and antenna mounts. Magnesium alloys offer high electromagnetic shielding effectiveness, making them ideal for RF and EMC testing; they are significantly lighter than steel shielding boxes, facilitating easy handling.
Mechanical arm linkages, mobile robot chassis, and motion stage brackets. Lightweight properties reduce motor load and improve motion response speed; vibration-damping characteristics minimize vibrations during high-speed movement, making them suitable for research prototypes.
| Material | Characteristics |
|---|---|
| Magnesium alloy | Lightest; offers excellent electromagnetic shielding and vibration damping; poor corrosion and high-temperature resistance. |
| Aluminum alloy | Balanced overall properties; easy to process; superior corrosion resistance compared to magnesium; shielding and damping capabilities are inferior to magnesium alloy. |
| Titanium alloy | Excellent corrosion and high-temperature resistance; expensive and heavy. |