China 6 Axis Robot Controller Cycloidal Pin Wheel RV Gear Reducer Robot Arm Robot Joints Gearbox RV-E with Hot selling

Merchandise Description

Details Images:

one.It is geared up with an angular speak to ball bearing, so it can assist the external load with the rigid minute and massive allowable minute
2.Simple assemble, small vibration
3.It can lessen the motor straight junction (input equipment) and inertia
four.Big torsional rigidity
5.Strong effect resistance (five hundred% of rated torque)
six.The crankshaft is supported by 2 columns in the reducer
seven.Excellent beginning efficiency & Tiny dress in and long provider daily life
eight.Tiny backlash (1arc. Min.) & Use rolling bearing
9.Robust affect resistance (500% of rated torque)
ten.The number of simultaneous engagements between RV equipment and needle tooth is huge

Advantages:
one. High precision, substantial torque
2. Committed complex personnel can be on the go to supply layout remedies
three. Factory direct revenue good workmanship tough quality assurance
four. Solution high quality issues have a 1-calendar year warranty time, can be returned for alternative or mend

Organization profile:

HangZhou CZPT Engineering Co., Ltd. was recognized in 2014. Primarily based on long-expression gathered encounter in mechanical layout and manufacturing, numerous kinds of harmonic reducers have been created according to the various needs of customers. The organization is in a phase of rapid development. , Gear and personnel are constantly expanding. Now we have a team of skilled technological and managerial staff, with innovative gear, total screening methods, and item manufacturing and layout abilities. Solution style and generation can be carried out in accordance to customer needs, and a assortment of large-precision transmission factors such as harmonic reducers and RV reducers have been fashioned the goods have been bought in domestic and international(This kind of as United states, Germany, Turkey, India) and have been employed in industrial robots, device resources, health-related tools, laser processing, cutting, and dispensing, Brush making, LED equipment manufacturing, precision electronic equipment, and other industries have set up a great track record.
In the potential, Hongwing will adhere to the objective of accumulating skills, keeping shut to the marketplace, and technological innovation, carry forward the price pursuit in the area of harmonic drive&RV reducers, find the widespread advancement of the organization and the culture, and quietly construct alone into a nicely-identified brand name with independent intellectual house rights. Good quality supplier in the field of precision transmission”.

Power factory:

Our plant has an whole campus The quantity of workshops is about three hundred Whether or not it truly is from the creation of uncooked components and the procurement of raw resources to the inspection of concluded merchandise, we are undertaking it ourselves. There is a comprehensive production system

Parameter:

Rated Table
Output rotational pace (rpm) 5 10 fifteen twenty twenty five 30 forty fifty 60
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
/ .twenty five
54
/ .30
50
/ .35
47
/ .forty
43 43 42
53.five fifty three.5 52.5
59 fifty nine 58
seventy nine seventy nine 78
103 103 102
RV-20E fifty seven fifty seven 56 231
/ .sixteen
188
/ .26
167
/ .35
153
/ .43
143
/ .50
135
/ .fifty seven
124
/ .70
115
/ .81
110
/ .92
eighty one eighty one 80
one hundred and five 105 104
121 121 120
141 141 140
161 161 160
RV-40E 57 57 56 572
/ .forty
465
/ .sixty five
412
/ .86
377
/ 1.05
353
/ 1.23
334
/ 1.forty
307
/ 1.71
287
/ 2.00
271
/ 2.27
81 81 80
a hundred and five one zero five 104
121 121 120
153 153 152
RV-80E 57 57 56 1,088
/ .seventy six
885
/ 1.24
784
/ 1.sixty four
719
/ 2.01
672
/ 2.35
637
/ 2.sixty seven
584
/ 3.26
546
/ 3.81
517
/ 4.33
eighty one eighty one 80
101 one zero one 100
121 121 120
153 1(153) 1(152)
RV-110E 81 eighty one 80 1,499
/ 1.05
1,215
/ 1.70
1,078
/ 2.26
990
/ 2.76
925
/ 3.23
875
/ 3.sixty seven
804
/ 4.49
   
111 111 110
161 161 160
one hundred seventy five 1227/7 1220/7
RV-160E 81 eighty one 80 2,176
/ 1.fifty two
1,774
/ 2.forty eight
1,568
/ 3.28
1,441
/ 4.02
1,343
/ 4.sixty nine
1,274
/ 5.34
     
one hundred and one one zero one 100
129 129 128
a hundred forty five a hundred forty five 144
171 171 170
RV-320E eighty one 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
/ ten.seven
     
a hundred and one 101 100
118.five 118.5 117.five
129 129 128
141 141 140
171 171 170
185 185 184
RV-450E eighty one 81 80 6,135
/ 4.28
4,978
/ 6.95
4,410
/ 9.24
4,047
/ eleven.three
3,783
/ 13.2
       
a hundred and one a hundred and one 100
118.five 118.5 117.5
129 129 128
154.eight 2013/13 2000/thirteen
171 171 170
192 1347/seven 1340/seven
Notice: 1. The allowable output velocity is impacted by obligation cycle, load, and ambient temperature. When the allowable output speed is over NS1, please consult our company about the safety measures.
two. Estimate the input capacity (kW) by the pursuing formula.
Input capacity (kW) =(2π*N*T)/(60*η/one hundred*ten*ten*10)   N: output speed (RPM)
T: output torque (nm)
η =  seventy five: reducer effectiveness (%)
 The enter ability is the reference price.
three. When using the reducer at a lower temperature, the no-load working torque will enhance, so make sure you pay focus when picking the motor.
(refer to p.ninety three low-temperature qualities)

T0
Rated torque(Remark .7)
N0
Rated output speed
K
Rated life
TS1
Allowable beginning and stopping torque
TS2
Instantaneous greatest allowable torque
NS0
Allowable greatest output pace
(Remark .1)
Backlash Empty length MAX. Angle transmission error MAX. A agent worth of starting up efficiency MO1
Allowable moment
(Remark .4)
MO2
Instantaneous maximum allowable second
Wr
Allowable radial load
(Remark .ten)
               I
Converted worth of inertia second enter shaft
(Remark .5)
Bodyweight
(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 2,140 two.63×10-six 2.five
2.00×10-six
1.53×10-six
one.39×10-6
one.09×10-six
.74×10-6
167 15 6,000 412 833 75 1. 1. 70 75 882 1,764 7,785 9.66×10-six 4.seven
6.07×10-six
4.32×10-6
3.56×10-6
2.88×10-six
two.39×10-six
412 15 6,000 1,571 2,058 70 1. 1. 60 85 1,666 3,332 11,594 three.25×10-five 9.3
2.20×10-five
1.63×10-five
1.37×10-5
one.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 eight.16×10-five Bolt tightening thirteen.one
6.00×10-five
4.82×10-5
Pin mix 3185 Pin mixture 1735 Pin blend 2156 Pin mix 1571 Pin blend twelve.seven
3.96×10-five
two.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 17.4
6.96×10-5
4.36×10-five
3.89×10-five
1,568 15 6,000 3,920 Bolt tightening 7840 45 1. 1. 50 85 3,920 Bolt tightening 7840 18,587 one.77×10-4 26.4
one.40×10-4
1.06×10-4
Pin and use 6615 Pin and use 6762
.87×10-4
.74×10-four
3,136 15 6,000 7,840 Bolt tightening 15680 35 1. 1. 50 80 Bolt tightening 7056 Bolt tightening 14112 Bolt tightening 28067 4.83×10-4 44.3
3.79×10-4
3.15×10-four
2.84×10-four
Pin combination 12250 Pin mix 6174 Pin and use 1571 Pin combination 24558
2.54×10-4
1.97×10-four
one.77×10-four
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-four 66.4
6.91×10-four
5.75×10-4
5.20×10-four
Pin and use 18620 Pin and use 13524
four.12×10-4
3.61×10-four
three.07×10-4
4. The allowable torque will fluctuate in accordance to the thrust load. You should verify by the allowable minute line diagram (p.91).
5. The value of inertia instant is the worth of the reducer entire body. The second of inertia of the enter equipment is not included.
six. For second stiffness and torsion stiffness, you should refer to the calculation of inclination angle and torsion angle (p.99).
seven. Rated torque refers to the torque price reflecting the rated life at rated output speed, not the data exhibiting the upper limit of load. Remember to refer to the glossary (p.eighty one) and item assortment movement chart (p.eighty two).
eight. If you want to get merchandise other than the above speed ratio, please check with our business.
nine. The previously mentioned specifications are obtained according to the firm’s evaluation method. Make sure you confirm that the product meets the use circumstances of carrying actual plane just before use.
10. When a radial load is used to dimension B, you should use it within the allowable radial load selection.
eleven. 1 RV-80e r = 153 is only output shaft bolt fastening sort( P.twenty,21)

Exhibition:

Programs:

FQA:
Q: What need to I offer when I decide on a gearbox/velocity reducer?
A: The greatest way is to supply the motor drawing with parameters. Our engineer will examine and advise the most suited gearbox design for your reference.
Or you can also supply the below specification as well:
1) Kind, product, and torque.
2) Ratio or output pace
three) Functioning issue and connection method
4) Top quality and set up device name
5) Input mode and enter velocity
six) Motor model design 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)

|
Request Sample

###

Customization:

###

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)

|
Request Sample

###

Customization:

###

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

An agricultural gearbox is an important part of your machine, especially if it is geared to change the speed, direction, or rotation of the machine. The CZPT Gearbox Company manufactures high-performance agricultural gearboxes to maximize the performance of a farmer’s machine. These gearboxes can be reverse-engineered to work with existing designs or customized to meet the specific requirements of your machine. As the heart of your machine, these gearboxes can help you maximize the efficiency and productivity of your machines.
agriculturalparts

Bevel gearbox

When selecting an agricultural gearbox, make sure to consider the durability of the product. The quality of materials, the design of the mechanism, and functionality of the device will all affect its lifespan. Look for products that can withstand repeated use and will last for many years, as opposed to requiring frequent repairs or replacements. If the device is designed to last a long time, you can save a great deal of money by purchasing a long-lasting version.
A Bevel gearbox is a one-stage, single-stage unit that incorporates spiral and straight bevel gears to transmit rotational power. It is widely used in agricultural machinery, and is available in a wide variety of ratios, horsepower capacity, and configuration angles. One company, CZPT Gearbox, offers a 50deg bevel gear drive, suitable for use in portable grain auger and elevator applications.
The assembly of a bevel gearbox is made up of two sleeves: a lower bevel gear angular gear 3 and an upper bevel gear angle gear 2. Both sleeve assemblies are connected to the tractor’s frame through a mounting bracket. A profiled pin 31 is fixed to the cardan shaft via a threaded bore. This is the pivoting mechanism that allows the upper bevel gear angular gear 2 to pivot relative to the lower bevel gear angular gear 3.
Spiral bevel gears are similar to bevel gears, but have a much higher degree of total coverage. They are more expensive to manufacture and are only suitable for larger agricultural equipment. In addition, spiral bevel gears require more space than straight bevel gears. A spiral bevel gear is more efficient and quieter than a straight bevel gear. Its durability is another consideration. The best choice for your equipment depends on the overall application, speed, and torque requirements.
The bevel gear family is used as deflection gears in three directions. The deflection of rotational movement can take place at angles of 90deg, 120deg, or 135deg. Different types of drive wheels can be used as well, including simple screw drives. Bevel gearboxes can be purchased with standard mounts or in customized versions. Bevel gearboxes also come in aluminum housings.
agriculturalparts

Closed-loop seals

If the climate where you work or live is humid, a closed-loop seal for agricultural gearbox will prevent water from entering and damaging the components inside. A closed-loop seal is a better alternative to desiccant breathers because they keep the gearbox isolated from the atmosphere. This is very important because moisture can cause damage to the machinery and can affect the overall performance. A closed-loop seal is also made of elastomeric material and will not allow water to enter the gearbox.
An agricultural gearbox has many applications. They are essential to the production of agricultural products. The food chain depends on these gearboxes. Even a few minutes of downtime can affect the production of the entire food chain. Whether you need a gearbox for a lawnmower or an entire farming system, it is essential to find a high-quality agricultural gearbox with a closed-loop seal.
The environment in which agricultural equipment operates is notoriously harsh, which is why it is imperative to choose the most reliable and efficient closed-loop seals. Agricultural equipment operates in dusty and dirty conditions. That means the seals must be durable and effective, and they must prevent external media from getting in. The right seal will help the machinery operate at its highest level, and protect both the operator and the environment.
Gaskets are one of the most important components in a gearbox flange joint. When high compressive forces are set in these joints due to a critical load, gaskets start to fail. The gaskets lose their strength and leakage occurs. A gasket’s deformation also plays a major role in sealing performance. This is why detailed analysis is done to evaluate the effect of gasket thickness on deformation and von Mises stress.

Quality of materials

Agricultural gearboxes are an important component of all farming equipment. They are used in nearly every step of the cropping cycle, and are vital to an efficient operation. In addition to efficient performance, these gearboxes must be rugged enough to survive the harsh environments that farmers operate their machinery in. These challenges include continual operation, high and low temperatures, and operation in both moist and arid environments. Safety regulations also pose a unique set of challenges.
A line of high-quality agricultural gearboxes is a great choice. CZPT Gearbox Company manufactures a complete line of gear drives for a variety of agricultural applications. They even design custom gear drives for specific applications, from portable grain elevators to grain carts. These gear drives have a long service life and are competitively priced. They can be used on a variety of types of agricultural machinery, and the company’s engineers are experienced in every aspect of production.
A tractor’s gear box is commonly made of grey cast iron, which is durable and offers good machinability. The material is also vibration-dampening and has good wear resistance. Belt pulleys are typically cast iron and are primarily used for long-distance power transmission. The brake drum, on the other hand, needs to be made of a high-quality material with higher vibration resistance, which is why it must be made of grey iron ASTM A48 Class 35.
agriculturalparts

Durability

Agricultural gearboxes are important for all phases of the food production process. A single component failure can result in significant downtime, costing the farmer money. Hence, you should buy a quality agricultural gearbox. A durable gearbox is easy to maintain and can be accessed in case of problems. However, if you do not have time to maintain your gearbox, you may find it difficult to repair it yourself.
Regular oil changes are also vital for ensuring the longevity of agricultural gearboxes. Agricultural equipment gets dirty in the fields, which can lead to contamination of gearbox components. Improper lubrication causes damage-causing friction. To prevent such friction, change oil regularly. Check for signs of internal malfunctions, such as oil particles on gears or in the pinion shaft. Visual inspections will help you determine the troublesome symptoms before components fail. Symptoms include flaking, fatigue, and noises.
To ensure the durability of agricultural gears, a study was carried out. A 86-kW tractor was used to perform a field test using a gearbox simulation model. The test ended after 107 h, as there were operational and noise issues. A disassembly revealed that the range shift A and B gears had broken teeth. A study of the transmission’s operating parameters revealed that it could be improved by reducing the contact and bending stress.
CZPT Gearbox Company manufactures high-performance gearboxes for various agricultural applications. Their engineers can reverse engineer existing designs or develop custom gearboxes for specific requirements. Agricultural gearboxes are essential for maximizing the performance of farming machinery. They transmit power from an input shaft to an output shaft, enabling the change of rotation, speed, and direction. In other words, a gearbox can help you maximize the efficiency of your agricultural equipment.
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editor by czh 2022-12-12