Potato Harvester Gearbox

We Can Replacement of Bondioli & Pavesi Model as Follows

EPT2021 Potato Harvester Gearbox
Potato Harvester Gearbox EPT2021
USERATIOINPUTOUTPUT
r.p.mKwHpN.mN.mr.p.m
 SPEED MULTIPLIER1:3.905401013169432106
1:3.0540
1000
14
21
19
29
247
204
82
68
1620
3000
1:2.54540
1000
17
25
23
34
299
239
118
94
1372
2540
1:2.08540
1000
21
29
28
40
364
281
175
135
1123
2080
 SPEED REDUCER2.08:1540
1000
12
18
16
25
221
176
460
365
260
481
2.54:1540
1000
9
13
12
18
156
126
397
321
213
394
3.00:1540
1000
7
10
9
14
117
98
351
295
180
333
3.90:1540
1000
4
6
5
8
65
56
254
219
138
256
EPT2041 Potato Harvester Gearbox
Potato Harvester Gearbox EPT2041
USERATIOINPUTOUTPUT
r.p.mKwHpN.mN.mr.p.m
 SPEED MULTIPLIER1:4.12540
1000
21
32
29
44
377
309
92
75
2225
4120
1:3.10540
1000
24
37
33
51
429
358
139
116
1674
3100
1:2.58540
1000
28
43
38
58
494
408
192
158
1393
2580
1:2.08540
1000
31
48
42
65
546
457
263
220
1123
2080
 SPEED REDUCER2.08:1540
1000
19
29
26
40
338
281
704
585
260
481
2.58:1540
1000
15
24
21
32
273
225
705
580
209
388
3.10:1540
1000
11
17
15
23
195
162
605
501
174
323
4.12:1540
1000
8
12
11
16
143
119
590
492
131
243
EPT2061 Potato Harvester Gearbox
Potato Harvester Gearbox EPT2061
USE

 

RATIO

 

INPUTOUTPUT
r.p.mKwHpN.mN.mr.p.m
 SPEED MULTIPLIER1:5.33540

1000

24

36

32

49

416

344

78

65

2878

5330

1:4.50540

1000

29

45

40

61

520

429

116

95

2430

4500

1:3.10540

1000

38

59

52

80

677

562

218

181

1674

3100

1:2.58540

1000

38

59

52

80

677

562

262

218

1393

2580

1:1.93540

1000

38

59

52

80

677

562

351

291

1042

1930

SPEED REDUCER1.93:1540

1000

25

38

34

52

442

365

854

705

280

518

2.58:1540

1000

22

34

30

46

390

323

1007

834

209

388

3.10:1540

1000

18

27

24

37

312

260

968

806

174

323

4.50:1540

1000

11

17

15

23

195

162

878

727

120

222

5.33:1540

1000

8

12

11

17

143

119

763

637

101

188

EPT2071 Potato Harvester Gearbox
Potato Harvester Gearbox EPT2071
USE

 

RATIO

 

INPUTOUTPUT
r.p.mKwHpN.mN.mr.p.m
 SPEED MULTIPLIER1:4.11540

1000

45

69

61

94

794

660

193

161

2219

4110

1:3.10540

1000

54

82

73

112

950

787

306

254

1674

3100

1:2.58540

1000

60

92

82

125

1067

878

414

340

1393

2580

1:1.93540

1000

60

92

82

125

1067

878

553

455

1042

1930

 SPEED REDUCER1.93:1540

1000

37

57

50

77

651

541

1256

1044

280

518

2.58:1540

1000

32

50

44

68

572

478

1477

1233

209

388

3.10:1540

1000

24

37

33

51

429

358

1331

1111

174

323

4.11:1540

1000

18

28

25

38

325

267

1337

1097

131

243

Why Choose Our Potato Harvester Gearbox

Potato Harvester Gearbox Manufacturers

1. Durable Construction for Harsh Conditions: Our potato harvester gearbox is made of high-strength, wear-resistant materials designed to withstand demanding agricultural environments. It resists dirt, moisture, and extreme loads, ensuring long-lasting performance even in tough field conditions.

2. Precision Engineering for Efficiency: The gearbox is designed with advanced gear systems that deliver optimal power transmission. This ensures smooth operation, reduces energy loss, and maximizes efficiency during harvesting, helping you save time and fuel costs.

3. Customizable Settings for Versatility: Our gearbox offers adjustable speed and torque settings, allowing it to adapt seamlessly to various soil types and harvesting conditions. This versatility ensures minimal crop damage and higher-quality yields.

4. Enhanced Crop Protection: With precision controls and optimized movement, our gearbox minimizes mechanical stress on potatoes during the harvesting process. This reduces bruising and damage, ensuring better crop quality and higher market value.

Common Applications of Potato Harvester Gearbox

Potato harvester gearboxes are utilized in various agricultural applications to facilitate the harvesting of potatoes efficiently. Some common applications of potato harvester gearboxes include:

(1) Harvesting Potatoes: The primary application of a potato harvester gearbox is in machinery designed for efficiently digging, separating, and collecting potatoes. It ensures precise power transmission to components like digging blades and conveyors, minimizing crop damage and optimizing harvesting speed in various soil conditions.

(2) Harvesting Sweet Potatoes: Similar to standard potato harvesting, sweet potato harvesters rely on gearboxes to manage the delicate extraction of tubers. These gearboxes provide controlled torque and speed to prevent bruising or breaking of the softer sweet potatoes, ensuring a high-quality yield.

(3) Harvesting Onions: Potato harvester gearboxes are also adapted in onion harvesting machines. They power mechanisms that gently lift onions from the soil, shake off debris, and transport them for collection. The gearbox ensures proper handling to protect the onions’ delicate outer layers.

(4) Harvesting Carrots: In carrot harvesting, the gearbox drives specialized equipment that digs and lifts carrots while maintaining their structural integrity. Its role is critical in powering synchronized components to handle different soil types and avoid damage to the long, slender roots.

Potato Harvester Gearbox Applications
Potato Harvester Gearbox Applications
Potato Harvester Gearbox Applications
Potato Harvester Gearbox

How Does the Potato Harvester Gearbox Work?

The potato harvester gearbox is a key component in the potato harvesting process, playing a crucial role in the operation of potato harvesters. Here is how the gearbox works in harvesting potatoes:

(1) Power Input: The gearbox begins its operation by receiving mechanical power from the tractor’s PTO. This power input is crucial as it drives the entire harvesting operation. The PTO shaft transfers rotational energy directly to the gearbox, which is specifically calibrated to handle and convert this energy into usable mechanical force for the harvester.

(2) Gear Operation: Inside the gearbox, the received power causes the gears to engage. These gears are designed to multiply the tractor’s power through mechanical advantage. Depending on the gear ratio, which can be adjusted according to the requirements of the harvest, the gears convert the speed and torque of the incoming power to the optimal levels needed for efficient harvesting.

(3) Speed and Torque Adjustment: The gearbox has the capability to adjust the speed and torque of the output according to the harvesting conditions. This adjustment is vital for matching the harvester’s speed with the required operational pace, ensuring that the machinery moves at the right speed to efficiently dig up and process potatoes without damage.

(4) Digging Mechanism: The adjusted power output from the gearbox drives the digging mechanisms, such as blades or tines, which penetrate the soil. These mechanisms are crucial for loosening the soil around the potatoes and lifting them from the ground. The efficiency of this stage depends on the precise operation of the gearbox to maintain the right speed and force.

(5) Separation and Conveyance: After the potatoes are dug up, they need to be separated from the soil and conveyed to the storage area of the harvester. The gearbox powers various components like sieves, belts, and rollers that help in separating the potatoes from the debris and moving them along the harvester. The ability to adjust the speed of these components via the gearbox is crucial for handling the potatoes gently and minimizing damage.

Potato Harvester Gearbox

Gearbox for Harvesting Potato

Agricultural PTO Shaft for Potato Harvester Gearbox

The agricultural PTO shaft and the potato harvester gearbox work together to power and operate potato harvesting machinery efficiently. The PTO shaft serves as a key connector between the tractor and the harvester, transferring mechanical energy from the tractor’s engine to the gearbox. This transfer of power is essential for driving the various components of the harvester, such as digging blades, conveyors, and sieving mechanisms.

The PTO shaft is specifically designed to handle high torque and rotational speeds, ensuring a steady and reliable power supply to the potato harvester gearbox. As the PTO shaft rotates, it delivers power to the gearbox, which then regulates and distributes this power to different parts of the harvesting machine. The gearbox converts the high-speed rotation of the PTO shaft into optimized torque and speed levels required for digging, separating, and transporting potatoes.

This connection is critical for synchronizing the harvester’s operations. The PTO shaft ensures continuous power flow, while the gearbox enables precise control over the machinery’s movements, adapting to different soil types and harvesting conditions. Together, they ensure the efficiency, durability, and effectiveness of the potato harvesting process, minimizing crop damage and maximizing yield. This seamless integration makes the PTO shaft and gearbox indispensable components in modern agricultural harvesting systems.

Agricultural PTO Shaft for Potato Harvester Gearbox

We Can Also Provide Potato Harvester

A potato harvester is a specialized agricultural machine designed to efficiently and effectively harvest potatoes from the soil while minimizing damage to the crop. This equipment plays a critical role in modern farming, as it significantly reduces the time, labor, and effort required compared to manual harvesting methods. Potato harvesters are used by farmers to ensure a high yield, preserve crop quality, and streamline the harvesting process.

The primary function of a potato harvester is to dig into the soil, extract potatoes, and separate them from dirt, rocks, and plant debris. The machine typically consists of a digging mechanism, such as blades or shares, that penetrates the soil to loosen it and lift the potatoes. Once unearthed, the potatoes and soil are moved onto a series of conveyors or sieving belts powered by a gearbox. These belts shake off dirt and debris while allowing the potatoes to travel through the machine.

Some advanced potato harvesters are equipped with cleaning systems, which further remove soil and plant material, and sorting mechanisms that separate potatoes based on size or quality. The cleaned and sorted potatoes are then transported to a collection bin or loaded directly into a trailer for storage or transport.

Potato harvesters are available in various types, including single-row, multi-row, and self-propelled models, catering to small, medium, and large-scale farming needs. Self-propelled models are typically used for large-scale operations due to their high efficiency and ability to work in challenging field conditions.

By automating the harvesting process, potato harvesters not only save time and labor but also reduce crop wastage and ensure uniform harvesting. This makes them an indispensable tool in modern agricultural practices, especially for farmers aiming to maximize productivity and profitability.

Potato Harvester
Potato Harvester

Type of Potato Harvester Gearbox for Sale

A Potato Harvester Gearbox is a critical mechanical component in agricultural machinery specifically designed for harvesting potatoes. It serves as the power transmission system that drives various moving parts of the potato harvester, ensuring efficient and reliable operation in challenging field conditions. The gearbox transfers power from the tractor’s power take-off (PTO) or engine to mechanisms like conveyor belts, sieving systems, cutting blades, and digging tools. Its role is to manage torque and speed, enabling the harvester to dig potatoes from the soil, separate them from dirt and debris, and transport them to collection bins.

Built to endure harsh environments, potato harvester gearboxes are made from durable materials like hardened steel or cast iron. They are often sealed to protect the internal gears from dust, moisture, and other contaminants. Depending on the model, these gearboxes may feature multiple gear ratios or shifting options to optimize performance for different soil types and harvesting conditions. Proper lubrication and maintenance are vital to ensure long-lasting, efficient operation of the gearbox, which plays a key role in maximizing productivity and minimizing downtime during harvesting.