Jiangsu Zane Machinery Technology Co.,ltd

Jiangsu ZANE machinery technology co.,ltd

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Double Nuts DFU2505 Customized C7 C5 C3 Ball Screw And Nut 2505 Ball Screw For CNC

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Jiangsu Zane Machinery Technology Co.,ltd
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City:changzhou
Province/State:jiangsu
Country/Region:china
Contact Person:MrsVivien
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Double Nuts DFU2505 Customized C7 C5 C3 Ball Screw And Nut 2505 Ball Screw For CNC

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Brand Name :ZANE
Model Number :SFU2505
Certification :CE,ISO
Place of Origin :China
MOQ :negotiate
Price :negotiate
Payment Terms :L/C, T/T
Supply Ability :100,000 pcs per month
Delivery Time :Three days at the soonest after order confirmation
Packaging Details :Standard export carton packing, wooden case, foam board inside for protection.
Core components :Bearing
Manufacturing process :Rolled Thread
Material :Cr15
Length :Customized Length
Product name :High Precision Ball Screw
Application :Cnc Machining Parts
Feature :Long Operating Life
Grade :C7, C5, C3
Weight (kg) :5KG
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Double Nuts DFU2505 Customized C7 C5 C3 Ball Screw And Nut 2505 Ball Screw For CNC

Our ball screw has high precision, low noise, smooth, long service life, high cost performance, fast delivery.
Customize various types of ballscrew and nut to help you save time and cost.

Double Nuts DFU2505 Customized C7 C5 C3 Ball Screw And Nut 2505 Ball Screw For CNC

Model Outer diameter lead Steel ball diameter nut size Bead laps Dynamic rated load Static rated load

rigid

kgf/µm

d I Da D A B L W H X Q n Ca Coa k
01204-T4 12 4 2.5 24 40 10 40 32 30 4. 5 - 4x1 902 1884 26
01604-T4 16 4 2. 381 28 48 10 40 38 40 5.5 M6 4x1 973 2406 32
01605-T3 5 3.175 28 48 10 42 38 40 5.5 M6 3x1 780 1168 32
01605-T4 5 3.175 28 48 10 50 38 40 5. 5 M6 4x1 1380 3052 32
01610-T3 10 3.175 28 48 10 57 38 40 5.5 M6 3x1 1103 2401 26
02004-T4 20 4 2.381 36 58 10 42 47 44 6.6 M6 4x1 1066 2987 38
02005-T4 5 3. 175 36 58 10 51 47 44 6. 6 M6 4x1 1551 3875 39
02504-T4 25 4 2. 381 40 62 10 42 51 48 6.6 M6 4x1 1180 3795 43
02505-T4 5 3.175 40 62 10 51 51 48 6.6 M6 4x1 1724 4904 45
02506-T4 6 3. 969 40 62 10 54 51 48 6.6 M6 4x1 2318 6057 47
02508-T4 8 4. 762 40 62 10 63 51 48 6.6 M6 4x1 2963 7313 49
02510-T4 10 4. 762 40 62 12 85 51 48 6.6 M6 4x1 2954 7295 50
03204-T4 32 4 2. 381 50 80 12 44 65 62 9 M6 4x1 1296 4838 51
03205-T4 5 3. 175 50 80 12 52 65 62 9 M6 4x1 1922 6343 54
03206-T4 6 3. 969 50 80 12 57 65 62 9 M6 4x1 2632 7979 57
03208-T4 8 4. 762 50 80 12 65 65 62 9 M6 4x1 3387 9622 60
03210-T4 10 6. 350 50 80 12 90 65 62 9 M6 4x1 4805 12208 61
04005-T4 40 5 3. 175 63 93 14 55 78 70 9 M8 4x1 2110 7988 63
04006-T4 6 3. 969 63 93 14 60 78 70 9 M6 4x1 2873 9913 66
04008-T4 8 4. 762 63 93 14 67 78 70 9 M6 4x1 3714 11947 70
04010-T4 10 6. 350 63 93 14 93 78 70 9 M8 4x1 5399 15500 73
05010-T4 50 10 6. 350 75 110 16 93 93 85 11 M8 4x1 6004 19614 85
05020-T4 20 7. 144 75 110 16 138 93 85 11 M8 4x1 7142 22588 94
06310-T4 63 10 6. 350 90 125 18 98 108 95 11 M8 4x1 6719 25358 99
06320-T4 20 9. 525 95 135 20 149 115 100 13.5 M8 4x1 11444 36653 112
08010-T4 80 10 6. 350 105 145 20 98 125 110 13.5 M8 4x1 7346 31953 109
08020-T4 20 9. 525 125 165 25 154 145 130 13.5 M8 4x1 12911 47747 138
10020-T4 100 20 9. 525 150 202 30 180 170 155 17.5 M8 4x1 14303 60698 162

Ball screw bearing specifications selection


(1) Determine the positioning accuracy;
(2) Determine the lead of the ball screw bearing by the motor and the speed requirement;
(3) Check the nut size to determine the stroke and related data of the shaft end of the screw bearing;
(4) Determine the average axial force and speed by load and speed distribution (acceleration and deceleration);
(5) Determine the pre-pressure from the average axial force;
(6) Determine the dynamic load rating by life expectancy, axial load and speed;
(7) Determine the outer diameter of the screw bearing and the nut form by the basic dynamic load rating, lead, critical speed, and DmN value limit;
(8) The outer diameter, nut, preload, and load determine the rigidity (machine design);
(9) Ambient temperature, total length of the nut to determine the thermal variation and cumulative lead;
(10)Screw bearing rigidity, thermal variation position to determine the pre-tension;
(11)Maximum machine speed, temperature rise time, and screw bearing specifications determine motor drive torque and specifications.

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