Performance advantages of PMI FDDC3616 ball screw
High transmission efficiency: The transmission efficiency of ball screw is much higher than that of ordinary sliding screw, which is due to the low friction resistance and energy loss of the ball during rolling. PMI FDDC3616 ball screw further improves the transmission efficiency by optimizing the ball circulation system and thread design, and can achieve higher output speed and greater load capacity at the same input power. For example, in an automated production line, the high transmission efficiency PMI FDDC3616 ball screw can improve production efficiency and reduce energy consumption.
High-precision positioning: The PMI FDDC3616 model ball screw has a high-precision thread and an advanced ball circulation system, which can achieve precise linear motion positioning. Its positioning accuracy can reach the micron level, meeting the needs of equipment with extremely high precision requirements, such as semiconductor manufacturing equipment, precision measuring instruments, etc.
High load-bearing capacity: Due to the use of high-quality materials and reasonable structural design, the PMI FDDC3616 ball screw has a high load-bearing capacity. It can withstand large axial and radial loads and is suitable for various heavy-duty working conditions. In the fields of machining equipment, lifting equipment, etc., the load-bearing capacity of the ball screw is an important performance indicator.
Low noise and vibration: The PMI FDDC3616 ball screw generates less noise and vibration during movement, which is very important for some occasions with high requirements for the working environment. For example, in the fields of medical equipment, laboratory equipment, etc., the ball screw with low noise and vibration can provide a more comfortable and stable working environment.
SCREWSIZE | BALL DIA. |
EFFECTIVE TURNS |
MODIFIEDIOAD CAPACITY (kgf |
NUT | FLANGE | FIT | OIL HOLE |
BOLT | STIFFNESS | ||||||||
0.D. | LEAD | Dynamic (1×10⁶REV) Cam |
Static Coam |
Dg6 | L | A | T | W | G | H | TYPE | S | Q | X | kg//4m | ||
36 | 8 | 4.762 | 5 | 4170 | 12580 | 56 | 127 84 68 34 68 | Ⅱ | 15 | M8×1P | 9 | 133 | |||||
10 12 16 20 36 |
6.35 | 5 5 5 4 2 |
6050 6080 6050 4910 2570 |
16460 16430 16360 12890 6250 |
61 | 153 172 213 217 194 |
91 | 18 | 76 | 34 | 68 | Ⅱ | 15 | M8x1P | 9 | 142 142 142 115 59 |
|
38 | 10 12 16 40 |
6.35 | 5 5 5 3 |
6260 6260 6220 3830 |
17740 17410 17350 10220 |
63 | 155 172 213 282 |
93 | 18 | 783570 | 20 | M8×1P | 9 | 149 149 149 106 |
|||
40 | 5 | 3.175 | 4 | 1760 | 6260 | 60 | 8791 | 18763468 | Ⅱ | 15 | M8×1P | 9 | 111 | ||||
6 | 3.969 | 5 | 3420 | 11810 | 60 | 108 | 91 | 18763468 | Ⅱ | 15 | M8x1P | 9 | 142 | ||||
8 | 4.762 | 4 | 3610 | 11260 | 62 | 118 | 91 | 18 | 76 | 3468 | 15 | M8×1P | 9 | 118 | |||
10 12 15 16 20 40 |
6.35 | 5 5 5 5 4 2 |
6430 6420 6380 6390 5190 2700 |
18440 18410 18350 18330 14450 6950 |
68 | 158 172 226 212 220 210 |
95
98 |
18
18 |
80
83 |
36
37 |
72
74 |
Ⅱ
Ⅱ |
20
20 |
M8×1P
M8×1P |
9
11 |
155 155 155 155 125 64 |
|
12 16 |
7.144 | 5 5 |
7530 7500 |
20800 20730 |
70 | 174 212 |
98 | 18 | 83 | 37 | 74 | 20 | M8×1P | 11 | 158 158 |
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