Item Description
Details Photos:
1.It is geared up with an angular speak to ball bearing, so it can help the external load with the rigid minute and large allowable minute
2.Straightforward assemble, modest vibration
3.It can minimize the motor straight junction (input gear) and inertia
4.Large torsional rigidity
five.Strong effect resistance (five hundred% of rated torque)
6.The crankshaft is supported by 2 columns in the reducer
7.Excellent commencing efficiency & Modest dress in and extended provider lifestyle
eight.Tiny backlash (1arc. Min.) & Use rolling bearing
nine.Powerful influence resistance (500% of rated torque)
10.The amount of simultaneous engagements in between RV gear and needle enamel is large
Benefits:
1. Large precision, high torque
2. Focused technological staff can be on the go to offer layout remedies
three. Manufacturing facility immediate sales good workmanship durable top quality assurance
4. Product good quality troubles have a a single-calendar year warranty time, can be returned for replacement or restore
Firm profile:
HangZhou CZPT Technology Co., Ltd. was proven in 2014. Based on prolonged-phrase accumulated expertise in mechanical design and manufacturing, different sorts of harmonic reducers have been developed in accordance to the various requirements of buyers. The company is in a stage of fast improvement. , Tools and personnel are continuously expanding. Now we have a team of skilled technical and managerial staff, with sophisticated products, complete testing approaches, and solution manufacturing and design and style capabilities. Item design and style and manufacturing can be carried out in accordance to consumer demands, and a selection of large-precision transmission parts this sort of as harmonic reducers and RV reducers have been formed the goods have been sold in domestic and world-wide(This sort of as Usa, Germany, Turkey, India) and have been utilized in industrial robots, equipment equipment, medical products, laser processing, reducing, and dispensing, Brush making, LED equipment production, precision electronic equipment, and other industries have set up a very good status.
In the long term, Hongwing will adhere to the objective of collecting abilities, maintaining shut to the marketplace, and technological innovation, carry forward the price pursuit in the subject of harmonic drive&RV reducers, look for the widespread development of the company and the modern society, and quietly develop alone into a nicely-known model with impartial mental residence rights. Top quality provider in the discipline of precision transmission”.
Energy manufacturing facility:
Our plant has an total campus The amount of workshops is around 300 Regardless of whether it really is from the creation of uncooked components and the procurement of uncooked materials to the inspection of concluded items, we are doing it ourselves. There is a complete production program
HST-I Parameter:
Rated Table | ||||||||||||||
Output rotational velocity (rpm) | 5 | 10 | fifteen | twenty | 25 | thirty | forty | 50 | sixty | |||||
Model | Speed ratio code | Transmission Ratio(R) | Output Torque (Nm) / Enter the ability (kW |
|||||||||||
Rotation of axes | Housing rotation | |||||||||||||
RV-6E | 31 | 31 | 30 | 101 / .07 |
81 / .11 |
72 / .fifteen |
66 / .19 |
62 / .22 |
58 / .25 |
54 / .30 |
50 / .35 |
47 / .40 |
||
forty three | forty three | 42 | ||||||||||||
fifty three.5 | fifty three.5 | 52.5 | ||||||||||||
fifty nine | 59 | 58 | ||||||||||||
seventy nine | 79 | 78 | ||||||||||||
103 | 103 | 102 | ||||||||||||
RV-20E | fifty seven | fifty seven | 56 | 231 / .16 |
188 / .26 |
167 / .35 |
153 / .forty three |
143 / .50 |
135 / .57 |
124 / .70 |
115 / .eighty one |
110 / .92 |
||
81 | 81 | 80 | ||||||||||||
one zero five | one hundred and five | 104 | ||||||||||||
121 | 121 | 120 | ||||||||||||
141 | 141 | 140 | ||||||||||||
161 | 161 | 160 | ||||||||||||
RV-40E | fifty seven | fifty seven | 56 | 572 / .40 |
465 / .65 |
412 / .86 |
377 / 1.05 |
353 / 1.23 |
334 / 1.40 |
307 / 1.71 |
287 / 2.00 |
271 / 2.27 |
||
81 | 81 | 80 | ||||||||||||
a hundred and five | 105 | 104 | ||||||||||||
121 | 121 | 120 | ||||||||||||
153 | 153 | 152 | ||||||||||||
RV-80E | fifty seven | fifty seven | 56 | 1,088 / .76 |
885 / 1.24 |
784 / 1.64 |
719 / 2.01 |
672 / 2.35 |
637 / 2.sixty seven |
584 / 3.26 |
546 / 3.81 |
517 / 4.33 |
||
eighty one | 81 | 80 | ||||||||||||
a hundred and one | one zero one | 100 | ||||||||||||
121 | 121 | 120 | ||||||||||||
153 | 1(153) | 1(152) | ||||||||||||
RV-110E | eighty one | 81 | 80 | 1,499 / 1.05 |
1,215 / 1.70 |
1,078 / 2.26 |
990 / 2.76 |
925 / 3.23 |
875 / 3.sixty seven |
804 / 4.forty nine |
||||
111 | 111 | 110 | ||||||||||||
161 | 161 | 160 | ||||||||||||
a hundred seventy five | 1227/seven | 1220/seven | ||||||||||||
RV-160E | 81 | eighty one | 80 | 2,176 / 1.52 |
1,774 / 2.48 |
1,568 / 3.28 |
1,441 / 4.02 |
1,343 / 4.sixty nine |
1,274 / 5.34 |
|||||
a hundred and one | one zero one | 100 | ||||||||||||
129 | 129 | 128 | ||||||||||||
one hundred forty five | a hundred forty five | 144 | ||||||||||||
171 | 171 | 170 | ||||||||||||
RV-320E | 81 | eighty one | 80 | 4,361 / 3.04 |
3,538 / 4.ninety four |
3,136 / 6.57 |
2,881 / 8.05 |
2,695 / 9.forty one |
2,548 / 10.7 |
|||||
one hundred and one | a hundred and one | 100 | ||||||||||||
118.five | 118.5 | 117.5 | ||||||||||||
129 | 129 | 128 | ||||||||||||
141 | 141 | 140 | ||||||||||||
171 | 171 | 170 | ||||||||||||
185 | 185 | 184 | ||||||||||||
RV-450E | 81 | 81 | 80 | 6,135 / 4.28 |
4,978 / 6.95 |
4,410 / 9.24 |
4,047 / eleven.3 |
3,783 / thirteen.2 |
||||||
101 | 101 | 100 | ||||||||||||
118.five | 118.5 | 117.5 | ||||||||||||
129 | 129 | 128 | ||||||||||||
154.8 | 2013/thirteen | 2000/thirteen | ||||||||||||
171 | 171 | 170 | ||||||||||||
192 | 1347/7 | 1340/seven | ||||||||||||
Note: 1. The allowable output pace is afflicted by obligation cycle, load, and ambient temperature. When the allowable output speed is above NS1, make sure you seek the advice of our firm about the safety measures. 2. Compute the input potential (kW) by the subsequent formula. |
||||||||||||||
Input ability (kW) =(2π*N*T)/(sixty*η/one hundred*ten*10*ten) | N: output pace (RPM) T: output torque (nm) η = seventy five: reducer effectiveness (%) |
|||||||||||||
The enter potential is the reference value. 3. When making use of the reducer at a lower temperature, the no-load running torque will improve, so you should pay consideration when selecting the motor. (refer to p.93 reduced-temperature characteristics) |
T0 Rated torque(Remark .7) |
N0 Rated output velocity |
K Rated life |
TS1 Allowable starting and halting torque |
TS2 Instantaneous optimum allowable torque |
NS0 Allowable optimum output velocity (Remark .1) |
Backlash | Empty length MAX. | Angle transmission error MAX. | A representative worth of beginning performance | MO1 Allowable minute (Remark .4) |
MO2 Instantaneous optimum allowable minute |
Wr Allowable radial load (Remark .ten) |
I Converted price of inertia second input shaft (Remark .5) |
Excess weight |
(Nm) | (rpm) | (h) | (Nm) | (Nm) | (r/min) | (arc.sec.) | (arc.min.) | (arc.sec.) | (%) | (Nm) | (Nm) | (N) | (kgm2) | (kg) |
58 | 30 | 6,000 | 117 | 294 | 100 | 1.five | 1.five | 80 | 70 | 196 | 392 | 2,a hundred and forty | two.63×10-six | 2.five |
2.00×10-6 | ||||||||||||||
1.53×10-6 | ||||||||||||||
1.39×10-six | ||||||||||||||
one.09×10-6 | ||||||||||||||
.74×10-six | ||||||||||||||
167 | 15 | 6,000 | 412 | 833 | 75 | 1. | 1. | 70 | 75 | 882 | 1,764 | 7,785 | 9.66×10-6 | 4.7 |
6.07×10-six | ||||||||||||||
four.32×10-6 | ||||||||||||||
three.56×10-six | ||||||||||||||
two.88×10-six | ||||||||||||||
two.39×10-6 | ||||||||||||||
412 | 15 | 6,000 | 1,571 | 2,058 | 70 | 1. | 1. | 60 | 85 | 1,666 | 3,332 | 11,594 | three.25×10-5 | 9.3 |
2.20×10-5 | ||||||||||||||
one.63×10-five | ||||||||||||||
1.37×10-5 | ||||||||||||||
1.01×10-five | ||||||||||||||
784 | 15 | 6,000 | 1,960 | Bolt tightening 3920 | 70 | 1. | 1. | 50 | 85 | Bolt fastening 2156 | Bolt tightening | Bolt tightening 12988 | 8.16×10-5 | Bolt tightening 13.1 |
6.00×10-5 | ||||||||||||||
4.82×10-five | ||||||||||||||
Pin mix 3185 | Pin mixture 1735 | Pin mixture 2156 | Pin mix 1571 | Pin mixture 12.seven | ||||||||||
three.96×10-five | ||||||||||||||
2.98×10-5 | ||||||||||||||
1,078 | 15 | 6,000 | 2,695 | 5,390 | 50 | 1. | 1. | 50 | 85 | 2,940 | 5,880 | 16,648 | nine.88×10-5 | 17.four |
six.96×10-5 | ||||||||||||||
4.36×10-five | ||||||||||||||
3.89×10-5 | ||||||||||||||
1,568 | 15 | 6,000 | 3,920 | Bolt tightening 7840 | 45 | 1. | 1. | 50 | 85 | 3,920 | Bolt tightening 7840 | 18,587 | 1.77×10-four | 26.four |
one.40×10-four | ||||||||||||||
1.06×10-4 | ||||||||||||||
Pin and use 6615 | Pin and use 6762 | |||||||||||||
.87×10-4 | ||||||||||||||
.74×10-4 | ||||||||||||||
3,136 | 15 | 6,000 | 7,840 | Bolt tightening 15680 | 35 | 1. | 1. | 50 | 80 | Bolt tightening 7056 | Bolt tightening 14112 | Bolt tightening 28067 | four.83×10-four | 44.three |
3.79×10-4 | ||||||||||||||
three.15×10-four | ||||||||||||||
2.84×10-4 | ||||||||||||||
Pin blend 12250 | Pin mixture 6174 | Pin and use 1571 | Pin mixture 24558 | |||||||||||
2.54×10-4 | ||||||||||||||
1.97×10-four | ||||||||||||||
one.77×10-4 | ||||||||||||||
4,410 | 15 | 6,000 | 11,571 | Bolt tightening 22050 | 25 | 1. | 1. | 50 | 85 | 8,820 | Bolt tightening 17640 | 30,133 | eight.75×10-4 | 66.four |
six.91×10-four | ||||||||||||||
5.75×10-four | ||||||||||||||
5.20×10-4 | ||||||||||||||
Pin and use 18620 | Pin and use 13524 | |||||||||||||
4.12×10-4 | ||||||||||||||
3.61×10-four | ||||||||||||||
three.07×10-4 | ||||||||||||||
four. The allowable torque will range in accordance to the thrust load. Remember to validate by the allowable moment line diagram (p.91). 5. The value of inertia instant is the value of the reducer human body. The moment of inertia of the input gear is not provided. 6. For second stiffness and torsion stiffness, make sure you refer to the calculation of inclination angle and torsion angle (p.ninety nine). seven. Rated torque refers to the torque worth reflecting the rated existence at rated output speed, not the info demonstrating the higher restrict of load. Remember to refer to the glossary (p.eighty one) and item assortment stream chart (p.82). eight. If you want to acquire merchandise other than the previously mentioned pace ratio, you should check with our organization. nine. The above specs are received in accordance to the firm’s evaluation approach. Please verify that the product satisfies the use problems of carrying genuine aircraft prior to use. 10. When a radial load is applied to dimension B, remember to use it inside of the allowable radial load assortment. eleven. 1 RV-80e r = 153 is only output shaft bolt fastening variety( P.20,21) |
Apps:
FQA:
Q: What ought to I give when I choose a gearbox/speed reducer?
A: The very best way is to provide the motor drawing with parameters. Our engineer will examine and recommend the most appropriate gearbox design for your reference.
Or you can also supply the below specification as nicely:
one) Kind, design, and torque.
2) Ratio or output pace
3) Operating issue and link approach
4) Quality and set up device title
five) Input manner and enter speed
six) Motor brand product or flange and motor shaft dimensions
US $620-1,300 / Piece | |
1 Piece (Min. Order) |
###
Application: | Motor, Motorcycle, Machinery, Agricultural Machinery |
---|---|
Hardness: | Hardened Tooth Surface |
Installation: | Horizontal Type |
Layout: | Coaxial |
Gear Shape: | Cylindrical Gear |
Step: | Single-Step |
###
Samples: |
US$ 600/Piece
1 Piece(Min.Order) |
---|
###
Customization: |
Available
|
---|
###
Rated Table | ||||||||||||||
Output rotational speed (rpm) | 5 | 10 | 15 | 20 | 25 | 30 | 40 | 50 | 60 | |||||
Model | Speed ratio code | Transmission Ratio(R) | Output Torque (Nm) / Enter the capacity (kW |
|||||||||||
Rotation of axes | Housing rotation | |||||||||||||
RV-6E | 31 | 31 | 30 | 101 / 0.07 |
81 / 0.11 |
72 / 0.15 |
66 / 0.19 |
62 / 0.22 |
58 / 0.25 |
54 / 0.30 |
50 / 0.35 |
47 / 0.40 |
||
43 | 43 | 42 | ||||||||||||
53.5 | 53.5 | 52.5 | ||||||||||||
59 | 59 | 58 | ||||||||||||
79 | 79 | 78 | ||||||||||||
103 | 103 | 102 | ||||||||||||
RV-20E | 57 | 57 | 56 | 231 / 0.16 |
188 / 0.26 |
167 / 0.35 |
153 / 0.43 |
143 / 0.50 |
135 / 0.57 |
124 / 0.70 |
115 / 0.81 |
110 / 0.92 |
||
81 | 81 | 80 | ||||||||||||
105 | 105 | 104 | ||||||||||||
121 | 121 | 120 | ||||||||||||
141 | 141 | 140 | ||||||||||||
161 | 161 | 160 | ||||||||||||
RV-40E | 57 | 57 | 56 | 572 / 0.40 |
465 / 0.65 |
412 / 0.86 |
377 / 1.05 |
353 / 1.23 |
334 / 1.40 |
307 / 1.71 |
287 / 2.00 |
271 / 2.27 |
||
81 | 81 | 80 | ||||||||||||
105 | 105 | 104 | ||||||||||||
121 | 121 | 120 | ||||||||||||
153 | 153 | 152 | ||||||||||||
RV-80E | 57 | 57 | 56 | 1,088 / 0.76 |
885 / 1.24 |
784 / 1.64 |
719 / 2.01 |
672 / 2.35 |
637 / 2.67 |
584 / 3.26 |
546 / 3.81 |
517 / 4.33 |
||
81 | 81 | 80 | ||||||||||||
101 | 101 | 100 | ||||||||||||
121 | 121 | 120 | ||||||||||||
153 | 1(153) | 1(152) | ||||||||||||
RV-110E | 81 | 81 | 80 | 1,499 / 1.05 |
1,215 / 1.70 |
1,078 / 2.26 |
990 / 2.76 |
925 / 3.23 |
875 / 3.67 |
804 / 4.49 |
||||
111 | 111 | 110 | ||||||||||||
161 | 161 | 160 | ||||||||||||
175 | 1227/7 | 1220/7 | ||||||||||||
RV-160E | 81 | 81 | 80 | 2,176 / 1.52 |
1,774 / 2.48 |
1,568 / 3.28 |
1,441 / 4.02 |
1,343 / 4.69 |
1,274 / 5.34 |
|||||
101 | 101 | 100 | ||||||||||||
129 | 129 | 128 | ||||||||||||
145 | 145 | 144 | ||||||||||||
171 | 171 | 170 | ||||||||||||
RV-320E | 81 | 81 | 80 | 4,361 / 3.04 |
3,538 / 4.94 |
3,136 / 6.57 |
2,881 / 8.05 |
2,695 / 9.41 |
2,548 / 10.7 |
|||||
101 | 101 | 100 | ||||||||||||
118.5 | 118.5 | 117.5 | ||||||||||||
129 | 129 | 128 | ||||||||||||
141 | 141 | 140 | ||||||||||||
171 | 171 | 170 | ||||||||||||
185 | 185 | 184 | ||||||||||||
RV-450E | 81 | 81 | 80 | 6,135 / 4.28 |
4,978 / 6.95 |
4,410 / 9.24 |
4,047 / 11.3 |
3,783 / 13.2 |
||||||
101 | 101 | 100 | ||||||||||||
118.5 | 118.5 | 117.5 | ||||||||||||
129 | 129 | 128 | ||||||||||||
154.8 | 2013/13 | 2000/13 | ||||||||||||
171 | 171 | 170 | ||||||||||||
192 | 1347/7 | 1340/7 | ||||||||||||
Note: 1. The allowable output speed is affected by duty cycle, load, and ambient temperature. When the allowable output speed is above NS1, please consult our company about the precautions. 2. Calculate the input capacity (kW) by the following formula. |
||||||||||||||
Input capacity (kW) =(2π*N*T)/(60*η/100*10*10*10) | N: output speed (RPM) T: output torque (nm) η = 75: reducer efficiency (%) |
|||||||||||||
The input capacity is the reference value. 3. When using the reducer at a low temperature, the no-load running torque will increase, so please pay attention when selecting the motor. (refer to p.93 low-temperature characteristics) |
###
T0 Rated torque(Remark .7) |
N0 Rated output speed |
K Rated life |
TS1 Allowable starting and stopping torque |
TS2 Instantaneous maximum allowable torque |
NS0 Allowable maximum output speed (Remark .1) |
Backlash | Empty distance MAX. | Angle transmission error MAX. | A representative value of starting efficiency | MO1 Allowable moment (Remark .4) |
MO2 Instantaneous maximum allowable moment |
Wr Allowable radial load (Remark .10) |
I Converted value of inertia moment input shaft (Remark .5) |
Weight |
(Nm) | (rpm) | (h) | (Nm) | (Nm) | (r/min) | (arc.sec.) | (arc.min.) | (arc.sec.) | (%) | (Nm) | (Nm) | (N) | (kgm2) | (kg) |
58 | 30 | 6,000 | 117 | 294 | 100 | 1.5 | 1.5 | 80 | 70 | 196 | 392 | 2,140 | 2.63×10-6 | 2.5 |
2.00×10-6 | ||||||||||||||
1.53×10-6 | ||||||||||||||
1.39×10-6 | ||||||||||||||
1.09×10-6 | ||||||||||||||
0.74×10-6 | ||||||||||||||
167 | 15 | 6,000 | 412 | 833 | 75 | 1.0 | 1.0 | 70 | 75 | 882 | 1,764 | 7,785 | 9.66×10-6 | 4.7 |
6.07×10-6 | ||||||||||||||
4.32×10-6 | ||||||||||||||
3.56×10-6 | ||||||||||||||
2.88×10-6 | ||||||||||||||
2.39×10-6 | ||||||||||||||
412 | 15 | 6,000 | 1,029 | 2,058 | 70 | 1.0 | 1.0 | 60 | 85 | 1,666 | 3,332 | 11,594 | 3.25×10-5 | 9.3 |
2.20×10-5 | ||||||||||||||
1.63×10-5 | ||||||||||||||
1.37×10-5 | ||||||||||||||
1.01×10-5 | ||||||||||||||
784 | 15 | 6,000 | 1,960 | Bolt tightening 3920 | 70 | 1.0 | 1.0 | 50 | 85 | Bolt fastening 2156 | Bolt tightening | Bolt tightening 12988 | 8.16×10-5 | Bolt tightening 13.1 |
6.00×10-5 | ||||||||||||||
4.82×10-5 | ||||||||||||||
Pin combination 3185 | Pin combination 1735 | Pin combination 2156 | Pin combination 10452 | Pin combination 12.7 | ||||||||||
3.96×10-5 | ||||||||||||||
2.98×10-5 | ||||||||||||||
1,078 | 15 | 6,000 | 2,695 | 5,390 | 50 | 1.0 | 1.0 | 50 | 85 | 2,940 | 5,880 | 16,648 | 9.88×10-5 | 17.4 |
6.96×10-5 | ||||||||||||||
4.36×10-5 | ||||||||||||||
3.89×10-5 | ||||||||||||||
1,568 | 15 | 6,000 | 3,920 | Bolt tightening 7840 | 45 | 1.0 | 1.0 | 50 | 85 | 3,920 | Bolt tightening 7840 | 18,587 | 1.77×10-4 | 26.4 |
1.40×10-4 | ||||||||||||||
1.06×10-4 | ||||||||||||||
Pin and use 6615 | Pin and use 6762 | |||||||||||||
0.87×10-4 | ||||||||||||||
0.74×10-4 | ||||||||||||||
3,136 | 15 | 6,000 | 7,840 | Bolt tightening 15680 | 35 | 1.0 | 1.0 | 50 | 80 | Bolt tightening 7056 | Bolt tightening 14112 | Bolt tightening 28067 | 4.83×10-4 | 44.3 |
3.79×10-4 | ||||||||||||||
3.15×10-4 | ||||||||||||||
2.84×10-4 | ||||||||||||||
Pin combination 12250 | Pin combination 6174 | Pin and use 10976 | Pin combination 24558 | |||||||||||
2.54×10-4 | ||||||||||||||
1.97×10-4 | ||||||||||||||
1.77×10-4 | ||||||||||||||
4,410 | 15 | 6,000 | 11,025 | Bolt tightening 22050 | 25 | 1.0 | 1.0 | 50 | 85 | 8,820 | Bolt tightening 17640 | 30,133 | 8.75×10-4 | 66.4 |
6.91×10-4 | ||||||||||||||
5.75×10-4 | ||||||||||||||
5.20×10-4 | ||||||||||||||
Pin and use 18620 | Pin and use 13524 | |||||||||||||
4.12×10-4 | ||||||||||||||
3.61×10-4 | ||||||||||||||
3.07×10-4 | ||||||||||||||
4. The allowable torque will vary according to the thrust load. Please confirm by the allowable moment line diagram (p.91). 5. The value of inertia moment is the value of the reducer body. The moment of inertia of the input gear is not included. 6. For moment stiffness and torsion stiffness, please refer to the calculation of inclination angle and torsion angle (p.99). 7. Rated torque refers to the torque value reflecting the rated life at rated output speed, not the data showing the upper limit of load. Please refer to the glossary (p.81) and product selection flow chart (p.82). 8. If you want to buy products other than the above speed ratio, please consult our company. 9. The above specifications are obtained according to the company’s evaluation method. Please confirm that the product meets the use conditions of carrying real aircraft before use. 10. When a radial load is applied to dimension B, please use it within the allowable radial load range. 11. 1 RV-80e r = 153 is only output shaft bolt fastening type( P.20,21) |
US $620-1,300 / Piece | |
1 Piece (Min. Order) |
###
Application: | Motor, Motorcycle, Machinery, Agricultural Machinery |
---|---|
Hardness: | Hardened Tooth Surface |
Installation: | Horizontal Type |
Layout: | Coaxial |
Gear Shape: | Cylindrical Gear |
Step: | Single-Step |
###
Samples: |
US$ 600/Piece
1 Piece(Min.Order) |
---|
###
Customization: |
Available
|
---|
###
Rated Table | ||||||||||||||
Output rotational speed (rpm) | 5 | 10 | 15 | 20 | 25 | 30 | 40 | 50 | 60 | |||||
Model | Speed ratio code | Transmission Ratio(R) | Output Torque (Nm) / Enter the capacity (kW |
|||||||||||
Rotation of axes | Housing rotation | |||||||||||||
RV-6E | 31 | 31 | 30 | 101 / 0.07 |
81 / 0.11 |
72 / 0.15 |
66 / 0.19 |
62 / 0.22 |
58 / 0.25 |
54 / 0.30 |
50 / 0.35 |
47 / 0.40 |
||
43 | 43 | 42 | ||||||||||||
53.5 | 53.5 | 52.5 | ||||||||||||
59 | 59 | 58 | ||||||||||||
79 | 79 | 78 | ||||||||||||
103 | 103 | 102 | ||||||||||||
RV-20E | 57 | 57 | 56 | 231 / 0.16 |
188 / 0.26 |
167 / 0.35 |
153 / 0.43 |
143 / 0.50 |
135 / 0.57 |
124 / 0.70 |
115 / 0.81 |
110 / 0.92 |
||
81 | 81 | 80 | ||||||||||||
105 | 105 | 104 | ||||||||||||
121 | 121 | 120 | ||||||||||||
141 | 141 | 140 | ||||||||||||
161 | 161 | 160 | ||||||||||||
RV-40E | 57 | 57 | 56 | 572 / 0.40 |
465 / 0.65 |
412 / 0.86 |
377 / 1.05 |
353 / 1.23 |
334 / 1.40 |
307 / 1.71 |
287 / 2.00 |
271 / 2.27 |
||
81 | 81 | 80 | ||||||||||||
105 | 105 | 104 | ||||||||||||
121 | 121 | 120 | ||||||||||||
153 | 153 | 152 | ||||||||||||
RV-80E | 57 | 57 | 56 | 1,088 / 0.76 |
885 / 1.24 |
784 / 1.64 |
719 / 2.01 |
672 / 2.35 |
637 / 2.67 |
584 / 3.26 |
546 / 3.81 |
517 / 4.33 |
||
81 | 81 | 80 | ||||||||||||
101 | 101 | 100 | ||||||||||||
121 | 121 | 120 | ||||||||||||
153 | 1(153) | 1(152) | ||||||||||||
RV-110E | 81 | 81 | 80 | 1,499 / 1.05 |
1,215 / 1.70 |
1,078 / 2.26 |
990 / 2.76 |
925 / 3.23 |
875 / 3.67 |
804 / 4.49 |
||||
111 | 111 | 110 | ||||||||||||
161 | 161 | 160 | ||||||||||||
175 | 1227/7 | 1220/7 | ||||||||||||
RV-160E | 81 | 81 | 80 | 2,176 / 1.52 |
1,774 / 2.48 |
1,568 / 3.28 |
1,441 / 4.02 |
1,343 / 4.69 |
1,274 / 5.34 |
|||||
101 | 101 | 100 | ||||||||||||
129 | 129 | 128 | ||||||||||||
145 | 145 | 144 | ||||||||||||
171 | 171 | 170 | ||||||||||||
RV-320E | 81 | 81 | 80 | 4,361 / 3.04 |
3,538 / 4.94 |
3,136 / 6.57 |
2,881 / 8.05 |
2,695 / 9.41 |
2,548 / 10.7 |
|||||
101 | 101 | 100 | ||||||||||||
118.5 | 118.5 | 117.5 | ||||||||||||
129 | 129 | 128 | ||||||||||||
141 | 141 | 140 | ||||||||||||
171 | 171 | 170 | ||||||||||||
185 | 185 | 184 | ||||||||||||
RV-450E | 81 | 81 | 80 | 6,135 / 4.28 |
4,978 / 6.95 |
4,410 / 9.24 |
4,047 / 11.3 |
3,783 / 13.2 |
||||||
101 | 101 | 100 | ||||||||||||
118.5 | 118.5 | 117.5 | ||||||||||||
129 | 129 | 128 | ||||||||||||
154.8 | 2013/13 | 2000/13 | ||||||||||||
171 | 171 | 170 | ||||||||||||
192 | 1347/7 | 1340/7 | ||||||||||||
Note: 1. The allowable output speed is affected by duty cycle, load, and ambient temperature. When the allowable output speed is above NS1, please consult our company about the precautions. 2. Calculate the input capacity (kW) by the following formula. |
||||||||||||||
Input capacity (kW) =(2π*N*T)/(60*η/100*10*10*10) | N: output speed (RPM) T: output torque (nm) η = 75: reducer efficiency (%) |
|||||||||||||
The input capacity is the reference value. 3. When using the reducer at a low temperature, the no-load running torque will increase, so please pay attention when selecting the motor. (refer to p.93 low-temperature characteristics) |
###
T0 Rated torque(Remark .7) |
N0 Rated output speed |
K Rated life |
TS1 Allowable starting and stopping torque |
TS2 Instantaneous maximum allowable torque |
NS0 Allowable maximum output speed (Remark .1) |
Backlash | Empty distance MAX. | Angle transmission error MAX. | A representative value of starting efficiency | MO1 Allowable moment (Remark .4) |
MO2 Instantaneous maximum allowable moment |
Wr Allowable radial load (Remark .10) |
I Converted value of inertia moment input shaft (Remark .5) |
Weight |
(Nm) | (rpm) | (h) | (Nm) | (Nm) | (r/min) | (arc.sec.) | (arc.min.) | (arc.sec.) | (%) | (Nm) | (Nm) | (N) | (kgm2) | (kg) |
58 | 30 | 6,000 | 117 | 294 | 100 | 1.5 | 1.5 | 80 | 70 | 196 | 392 | 2,140 | 2.63×10-6 | 2.5 |
2.00×10-6 | ||||||||||||||
1.53×10-6 | ||||||||||||||
1.39×10-6 | ||||||||||||||
1.09×10-6 | ||||||||||||||
0.74×10-6 | ||||||||||||||
167 | 15 | 6,000 | 412 | 833 | 75 | 1.0 | 1.0 | 70 | 75 | 882 | 1,764 | 7,785 | 9.66×10-6 | 4.7 |
6.07×10-6 | ||||||||||||||
4.32×10-6 | ||||||||||||||
3.56×10-6 | ||||||||||||||
2.88×10-6 | ||||||||||||||
2.39×10-6 | ||||||||||||||
412 | 15 | 6,000 | 1,029 | 2,058 | 70 | 1.0 | 1.0 | 60 | 85 | 1,666 | 3,332 | 11,594 | 3.25×10-5 | 9.3 |
2.20×10-5 | ||||||||||||||
1.63×10-5 | ||||||||||||||
1.37×10-5 | ||||||||||||||
1.01×10-5 | ||||||||||||||
784 | 15 | 6,000 | 1,960 | Bolt tightening 3920 | 70 | 1.0 | 1.0 | 50 | 85 | Bolt fastening 2156 | Bolt tightening | Bolt tightening 12988 | 8.16×10-5 | Bolt tightening 13.1 |
6.00×10-5 | ||||||||||||||
4.82×10-5 | ||||||||||||||
Pin combination 3185 | Pin combination 1735 | Pin combination 2156 | Pin combination 10452 | Pin combination 12.7 | ||||||||||
3.96×10-5 | ||||||||||||||
2.98×10-5 | ||||||||||||||
1,078 | 15 | 6,000 | 2,695 | 5,390 | 50 | 1.0 | 1.0 | 50 | 85 | 2,940 | 5,880 | 16,648 | 9.88×10-5 | 17.4 |
6.96×10-5 | ||||||||||||||
4.36×10-5 | ||||||||||||||
3.89×10-5 | ||||||||||||||
1,568 | 15 | 6,000 | 3,920 | Bolt tightening 7840 | 45 | 1.0 | 1.0 | 50 | 85 | 3,920 | Bolt tightening 7840 | 18,587 | 1.77×10-4 | 26.4 |
1.40×10-4 | ||||||||||||||
1.06×10-4 | ||||||||||||||
Pin and use 6615 | Pin and use 6762 | |||||||||||||
0.87×10-4 | ||||||||||||||
0.74×10-4 | ||||||||||||||
3,136 | 15 | 6,000 | 7,840 | Bolt tightening 15680 | 35 | 1.0 | 1.0 | 50 | 80 | Bolt tightening 7056 | Bolt tightening 14112 | Bolt tightening 28067 | 4.83×10-4 | 44.3 |
3.79×10-4 | ||||||||||||||
3.15×10-4 | ||||||||||||||
2.84×10-4 | ||||||||||||||
Pin combination 12250 | Pin combination 6174 | Pin and use 10976 | Pin combination 24558 | |||||||||||
2.54×10-4 | ||||||||||||||
1.97×10-4 | ||||||||||||||
1.77×10-4 | ||||||||||||||
4,410 | 15 | 6,000 | 11,025 | Bolt tightening 22050 | 25 | 1.0 | 1.0 | 50 | 85 | 8,820 | Bolt tightening 17640 | 30,133 | 8.75×10-4 | 66.4 |
6.91×10-4 | ||||||||||||||
5.75×10-4 | ||||||||||||||
5.20×10-4 | ||||||||||||||
Pin and use 18620 | Pin and use 13524 | |||||||||||||
4.12×10-4 | ||||||||||||||
3.61×10-4 | ||||||||||||||
3.07×10-4 | ||||||||||||||
4. The allowable torque will vary according to the thrust load. Please confirm by the allowable moment line diagram (p.91). 5. The value of inertia moment is the value of the reducer body. The moment of inertia of the input gear is not included. 6. For moment stiffness and torsion stiffness, please refer to the calculation of inclination angle and torsion angle (p.99). 7. Rated torque refers to the torque value reflecting the rated life at rated output speed, not the data showing the upper limit of load. Please refer to the glossary (p.81) and product selection flow chart (p.82). 8. If you want to buy products other than the above speed ratio, please consult our company. 9. The above specifications are obtained according to the company’s evaluation method. Please confirm that the product meets the use conditions of carrying real aircraft before use. 10. When a radial load is applied to dimension B, please use it within the allowable radial load range. 11. 1 RV-80e r = 153 is only output shaft bolt fastening type( P.20,21) |
Choosing an Agricultural Gearbox
When selecting a new agricultural gearbox, be sure to consider the following factors: Type of motor, Closed-loop seals, Quality of materials, and Durability. A good agricultural gearbox should be durable, long-lasting, and designed to fit the needs of your specific application. If you’re interested in a new gearbox, Aline Trading P/L provides a complete line of industrial and agricultural gearboxes. The PTO Speed Reducer/Increaser is a special type of gearbox that is designed to maintain the original rotation of the PTO output.
Bevel gearboxes
Bevel gearing is one of the most commonly used types of transmission systems in tractors. Bevel gearing is highly effective in high-load applications, such as farming machinery. With an increased demand for food, agricultural equipment will experience higher wear and tear. In turn, this can result in costly downtime, which means that the equipment will be unable to produce the necessary amount of food. Therefore, agricultural gearboxes must be high-quality to withstand the rigors of agricultural application.
Agricultural gearboxes can come in a variety of designs and sizes. The primary reason for their popularity is their flexibility. A variety of bevel gearboxes can be used to achieve a wide variety of different applications. Agricultural gearboxes, for example, are often multistage units. These units feature beveled gearing that interlock with each other for optimal torque transfer. This type of gearing is also commonly found in self-propelled sugar beet harvesters and corn choppers.
Bevel gears are available in a variety of materials. In general, bevel gears can be made of steel, zinc, aluminum, or stainless steel. Among them, tungsten steel is the most common material. The metal itself is more durable and is resistant to rust. The material used to manufacture these agricultural gearboxes is corrosion-resistant. And while bevel gears are widely available, they are also highly expensive.
A three-way right angle gearbox is another option. These units have one input shaft and two output shafts. Their design allows for easy changes in axis rotation. These gears are designed to provide a smooth power transfer while maintaining minimum backlash. Premium gearmotors include hardened spiral bevel gears and non-magnetic stainless steel shafts. A wide range of shaft styles and ratios is available to meet a wide range of application requirements.
Bevel gears are highly effective in deflection applications, such as agricultural machinery. A deflection of rotation can take place at angles of ninety-degrees, one-third of a turn, and one-half turn. These types of gears are available in standard and angled mounts, and are made to withstand extreme wear and tear. Agricultural gearboxes come in a wide variety of sizes, and can be used for both farm and industrial applications.
Closed-loop seals
A closed-loop elastomeric seal will keep water out of your agricultural gearbox. These are excellent alternatives to desiccant breathers. While they can’t keep water in the gearbox underwater, they can effectively isolate the gearbox from the surrounding atmosphere. This is essential for the safety of your equipment. Read on for more information. Closed-loop seals are available for both left and right-hand oriented shafts.
These closed-loop seals have a high level of wear resistance. In addition to this, they also protect against contamination and lubricant leaking. CZPT and Freudenberg Sealing Technologies developed these advanced seals to increase the performance of their agricultural gearboxes. They are made of a wear-resistant elastomer and ensure no lubricant or contamination is lost. These seals also prevent any product residue from entering the gearbox.
The latest models of agricultural gearboxes feature large PTO shafts for increased power output. PTO shafts vary by major diameter and splines. For example, newer tractors offer 1000/1000E and 540/540E options. Closed-loop seals are a necessary part of agricultural gearboxes, because they keep lubricants in while keeping dust and other external media out.
As the gaskets have a high-load capacity, they must be highly resilient. In the food industry, reliable sealing is critical, as food-grade planetary gearboxes are commonly used. CZPT flange gaskets meet the stringent requirements for dynamic and precision in these applications. A milk carton filling process requires precise motion sequences. Moreover, a gasket that is too thin or too thick can leak and cause damage to the filling process.
Quality of materials
One important factor to consider when selecting an agricultural gearbox is the quality of materials used. Some manufacturers may use cheap materials while others may opt for high quality ones. Quality of materials and craftsmanship are essential for high performance gearboxes. Fortunately, there are several companies that specialize in agricultural gearboxes and can provide quality products at an affordable price. Listed below are some of them. Each one of them has a specific use in the agricultural sector.
Agricultural gearboxes play a vital role in the food production cycle. It is vital to use quality gearboxes to maximize productivity and efficiency. However, a high-quality gearbox will need to withstand harsh operating conditions. Continuous operation, arid and moist environments, and high temperatures all pose challenges. Furthermore, safety regulations must be met. To ensure a high level of productivity, it is important to consider the quality of materials used in an agricultural gearbox.
Agricultural gearboxes are a popular option for agricultural machinery. They can provide a high reduction ratio, up to 2.44:1, and are compatible with offset rotary fillers and hollow output shafts. They are available in a range of horsepower capacities, ratios, and configurations to match a variety of applications. CZPT Gearbox’s 50-degree right-angle bevel gear drive is an example of a quality agricultural gearbox.
Durability
Agricultural gearboxes are critical components of agricultural equipment. The gears they drive supply the power to specific machinery, from irrigation pumps to cement mixers. Their functionality, quality, and durability should be high, because they will be in use for decades to come. If you don’t want to purchase a new agricultural gearbox every few years, consider these tips for choosing the right one:
Proper lubrication is essential to avoid premature gearbox failure and contamination. Aggregate dirt and dust from the fields can cause excessive friction and premature gearbox failure. Proper lubrication is essential to prevent damage-causing friction. Regular oil changes can also help prevent internal failure. Oil particles and other signs of internal malfunction should be noticed by visual inspections. You should also look for strange noises or vibrations, as they may indicate overheating.
In order to ensure the durability of agricultural transmissions, researchers studied 44 tractors over the course of a year. A failure mode was determined for each transmission component, and load amplitude and frequency of failure were determined. Using statistical analysis, the severity of damage was calculated and an accelerated test schedule was devised. This schedule was designed to maximize torque applied to each component. However, the number of gear wheels in a transmission does not need to be identical, so not all gear wheel ratios can be tested. Instead, the optimisation solvers can design a test schedule that can provide reliable results.
CZPT Gearbox Company is one of the world’s leading manufacturers of high-performance agricultural gearboxes. Their engineers can reverse engineer existing designs or create custom gearboxes to meet the specific needs of an agricultural machine. Agricultural gearboxes are an integral part of agricultural machinery, as they transmit power from the input shaft to output shafts and facilitate changes in speed, rotation, and direction. With a CZPT agricultural gearbox, you can be confident that your machine will perform optimally.
editor by czh 2022-12-27