EFFICIENCY PERFECTED. DYNAGEAR DG ECOSYSTEM - FORCES AND SPEEDS with helical teeth and ratio i=5. Feed force [N] Feed speed [m/s]
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1 EFFICIENCY PERFECTED DYNAGEAR DG ECOSYSTEM - FORCES AND SPEEDS with helical teeth and ratio i= TEETH RATIO i = 5 Feed force [N] DE-DG5 m4 DE-DG5 m DE-DG90 m DE-DG90 m2 DE-DG75 m DE-DG75 m2 DE-DG55 m Feed speed [m/s]
2 DE-DG55 TECHNICAL DATA GEAR Ratio i [] n MAX [min - ] 6000 n N [min - ] [Nm] 5 25 [Nm] 5 50 OT [Nm] Weight [kg] 2,5 η 2 [%] >96 >9 PROFESSIONAL Module m [mm] 2 2 Teeth z [] [N] [m/s] 2, 2,5 2,8,,5,8 2,4 2,7 2,9,,7 4,0 [Nm] [Nm] OT [Nm] [µm] [µm] ULTIMATE Module m [mm] 2 2 Teeth z [] [N] [m/s] 2, 2,5 2,8,,5,8 2,4 2,7 2,9,,7 4,0 [Nm] [Nm] OT [Nm] [µm] [µm] An explanation of how to use the tables can be found on pages
3 DIMENSIONS DE-DG55 L SOLID SHAFT WITH SHRUNKEN PINION u 2 b L 5 p p f 4x d k H 0 g6 h d 0 p p o b g x c Module m [mm] 2 Teeth z [] b [mm] 24 b [mm] 25 c [mm] 6 straight [mm] d 0 helical [mm] 8,20 42,44 46,69 5,05 59,42 6,66 g6 [mm] 89 d k [mm] 6,6 g 2 [mm] h [mm] 22 straight [mm] H 0 helical [mm] 4,0 4,22 45,4 48,5 5,7 5,8 L [mm] 87 L 5 [mm] 50 o [mm] 9 q [mm] 9 u 2 [mm] 90 [mm] 9 x [mm] 7 MOTOR ATTACHMENT Flange V V2 V Shaft -Ø d [mm] 9 4 Shaft length l [mm] 2 26 Square u [mm] Pitch circle -Ø v [mm] Centering-Ø w [mm] Threads 4x s [mm] M4 M5 M5 f [mm] Reduced torques apply to the ratio 5. See the gear data for additional technical details. 2 For bearing lifespan and gear efficiency calculations, visit Values were determined at a ratio of 5:. All values assume sufficient lubrication and a well adjusted tooth contact pattern. Additional axial forces reduce the torque values. NOTE: For optimal adjustment of the backlash, it is recommended that the connection structure is designed at least -2 mm larger
4 DE-DG75 TECHNICAL DATA GEAR Ratio i [] n MAX [min - ] 6000 n N [min - ] [Nm] [Nm] OT [Nm] Weight [kg] 4,2 η 2 [%] >96 >9 PROFESSIONAL Module m [mm] 2 2 Teeth z [] [N] [m/s] 2, 2,5 2,8,,5,4,8 4, 4,7 5, 2,4 2,7 2,9,,7,6 4,0 4,4 5,0 5,6 [Nm] [Nm] OT [Nm] [µm] [µm] ULTIMATE Module m [mm] 2 2 Teeth z [] [N] [m/s] 2, 2,5 2,8,,5,4,8 4, 4,7 5, 2,4 2,7 2,9,,7,6 4,0 4,4 5,0 5,6 [Nm] [Nm] OT [Nm] [µm] [µm] An explanation of how to use the tables can be found on pages
5 DIMENSIONS DE-DG75 L SOLID SHAFT WITH SHRUNKEN PINION u 2 b L 5 p p f 4x d k H 0 g6 h d 0 p p o b g x c Module m [mm] 2 Teeth z [] b [mm] b [mm] 25 0 c [mm] straight [mm] d 0 helical [mm] 8,20 42,44 46,69 5,05 59,42 57,0 6,66 70,0 79,58 89, g6 [mm] d k [mm] 6,6 6,6 g 2 [mm] h [mm] straight [mm] ,5 68 H 0 helical [mm] 4,0 4,22 45,4 48,5 5,7 54,65 57,8 6,0 65,79 70,56 L [mm] L 5 [mm] o [mm] 4 4 q [mm] u 2 [mm] [mm] 5 5 x [mm] MOTOR ATTACHMENT Flange V V2 V Shaft -Ø d [mm] 4 9 Shaft length l [mm] 26 4 Square u [mm] Pitch circle -Ø v [mm] Centering-Ø w [mm] Threads 4x s [mm] M5 M5 M6 f [mm] Reduced torques apply to the ratio 5. See the gear data for additional technical details. 2 For bearing lifespan and gear efficiency calculations, visit Values were determined at a ratio of 5:. All values assume sufficient lubrication and a well adjusted tooth contact pattern. Additional axial forces reduce the torque values. NOTE: For optimal adjustment of the backlash, it is recommended that the connection structure is designed at least -2 mm larger
6 DE-DG90 TECHNICAL DATA GEAR Ratio i [] n MAX [min - ] 5000 n N [min - ] [Nm] [Nm] 20 4 OT [Nm] Weight [kg] 8,2 η 2 [%] >96 >9 PROFESSIONAL Module m [mm] 2 2 Teeth z [] [N] [m/s],,5,8 2,8,,5,9 4,4,,7 4,0,0,,7 4,2 4,7 [Nm] [Nm] OT [Nm] [µm] [µm] ULTIMATE Module m [mm] 2 2 Teeth z [] [N] [m/s],,5,8 2,8,,5,9 4,4,,7 4,0,0,,7 4,2 4,7 [Nm] [Nm] OT [Nm] [µm] [µm] An explanation of how to use the tables can be found on pages
7 DIMENSIONS DE-DG90 L SOLID SHAFT WITH SHRUNKEN PINION u 2 b L 5 p p f 4x d k H 0 g6 h d 0 p p o b g x c Module m [mm] 2 Teeth z [] b [mm] b [mm] 25 0 c [mm] straight [mm] d 0 helical [mm] 5,05 59,42 6,66 57,0 6,66 70,0 79,58 89, g6 [mm] d k [mm] g 2 [mm] 6 6 h [mm] straight [mm] ,5 68 H 0 helical [mm] 48,5 5,7 5,8 54,65 57,8 6,0 65,79 70,56 L [mm] L 5 [mm] o [mm] 8 8 q [mm] u 2 [mm] 4 4 [mm] x [mm] MOTOR ATTACHMENT Flange V V2 V Shaft -Ø d [mm] Shaft length l [mm] 4 5 Square u [mm] Pitch circle -Ø v [mm] Centering-Ø w [mm] Threads 4x s [mm] M6 M6 M8 f [mm] Reduced torques apply to the ratio 5. See the gear data for additional technical details. 2 For bearing lifespan and gear efficiency calculations, visit Values were determined at a ratio of 5:. All values assume sufficient lubrication and a well adjusted tooth contact pattern. Additional axial forces reduce the torque values. NOTE: For optimal adjustment of the backlash, it is recommended that the connection structure is designed at least -2 mm larger
8 DE-DG5 TECHNICAL DATA GEAR Ratio i [] n MAX [min - ] 4000 n N [min - ] [Nm] [Nm] OT [Nm] Weight [kg],5 η 2 [%] >96 >9 PROFESSIONAL Module m [mm] 4 4 Teeth z [] [N] [m/s],5,9 4,4 4,7,8 4,2 4,6 5,2,7 4,2 4,7 5,0,2,6,9 4,4 [Nm] [Nm] OT [Nm] [µm] [µm] ULTIMATE Module m [mm] 4 4 Teeth z [] [N] [m/s],5,9 4,4 4,7,8 4,2 4,6 5,2,7 4,2 4,7 5,0,2,6,9 4,4 [Nm] [Nm] OT [Nm] [µm] [µm] An explanation of how to use the tables can be found on pages
9 DIMENSIONS DE-DG5 L SOLID SHAFT WITH SHRUNKEN PINION u 2 b L 5 p p f 4x d k H 0 g6 h d 0 p p o b g x c Module m [mm] 4 Teeth z [] b [mm] 29 9 b [mm] 0 40 c [mm] 6 6 straight [mm] d 0 helical [mm] 70,0 79,58 89, 95,49 76,9 84,88 9,7 06,0 g6 [mm] d k [mm],5,5 g 2 [mm] 6 6 h [mm] 26 5 straight [mm] 59 6, H 0 helical [mm] 6,0 65,79 70,56 7,75 7,20 77,44 8,69 88,05 L [mm] L 5 [mm] o [mm] 2 2 q [mm] u 2 [mm] 7 7 [mm] x [mm] 7 7 MOTOR ATTACHMENT Flange V V2 V Shaft -Ø d [mm] Shaft length l [mm] Square u [mm] Pitch circle -Ø v [mm] Centering-Ø w [mm] Threads 4x s [mm] M8 M8 M0 f [mm] Reduced torques apply to the ratio 5. See the gear data for additional technical details. 2 For bearing lifespan and gear efficiency calculations, visit Values were determined at a ratio of 5:. All values assume sufficient lubrication and a well adjusted tooth contact pattern. Additional axial forces reduce the torque values. NOTE: For optimal adjustment of the backlash, it is recommended that the connection structure is designed at least -2 mm larger
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