Specifications
1. Rice and Wheat Grain Combine Harvester
2. Engine Power: 55KW (75HP)
3. Working width: 2000mm
4. HST Gear Box
Model |
4LZ-2.0D |
Working Efficiency |
0.53 ~ 0.80Hectare/Hr |
Overall Dimensions (L x W x H) |
4750×2350×2360 mm |
Weight |
2400 kg |
Engine |
Diesel Engine |
Model |
498BZT |
Rated Power |
 75 hp (55kw) / 2400 rpm |
Chassis |
 |
Rubber Track |
400x90x48 |
Transmission |
HST F:3 / R:3 |
Ground Pressure |
≤18 Kpa |
Min. Ground Clearance |
240 mm |
Header |
 |
Cutting Width |
2000 mm |
Type of Lifting |
Hydraulic |
Lifting of Reel |
Hydraulic |
Steering |
Hydraulic |
Conveyor |
Chain rack tooth type |
Threshing Cylinder |
Tangential Flow + Axial Flow, Dual Spike-tooth type |
Cleaning |
Fan (front blowing + rear suction) + Sieving + re-thresher |
Paddy fill Method |
Grain Tank & Bag |
Grain Tank |
250 ~ 300 kg |
Total Loss |
 |
Rice |
≤3% |
Wheat |
≤1.5% |
Breakage |
≤2.0% |
Impurity |
≤2.0% |
Specifications
1. Rice and Wheat Grain Combine Harvester
2. Engine Power: 55KW (75HP)
3. Working width: 2000mm
4. HST Gear Box
Model |
4LZ-2.0D |
Working Efficiency |
0.53 ~ 0.80Hectare/Hr |
Overall Dimensions (L x W x H) |
4750×2350×2360 mm |
Weight |
2400 kg |
Engine |
Diesel Engine |
Model |
498BZT |
Rated Power |
 75 hp (55kw) / 2400 rpm |
Chassis |
 |
Rubber Track |
400x90x48 |
Transmission |
HST F:3 / R:3 |
Ground Pressure |
≤18 Kpa |
Min. Ground Clearance |
240 mm |
Header |
 |
Cutting Width |
2000 mm |
Type of Lifting |
Hydraulic |
Lifting of Reel |
Hydraulic |
Steering |
Hydraulic |
Conveyor |
Chain rack tooth type |
Threshing Cylinder |
Tangential Flow + Axial Flow, Dual Spike-tooth type |
Cleaning |
Fan (front blowing + rear suction) + Sieving + re-thresher |
Paddy fill Method |
Grain Tank & Bag |
Grain Tank |
250 ~ 300 kg |
Total Loss |
 |
Rice |
≤3% |
Wheat |
≤1.5% |
Breakage |
≤2.0% |
Impurity |
≤2.0% |
Sorting Bucket is a sorting algorithm that works by distributing the elements of an array into a number of buckets, and then sorting each bucket individually using another sorting algorithm. The buckets are usually implemented as arrays, and the number of buckets is typically chosen to be the same as the number of distinct elements in the input array. This algorithm is particularly useful when the input array contains a large number of elements that are uniformly distributed over a range of values. The time complexity of the algorithm is O(n+k), where n is the number of elements in the input array, and k is the number of buckets.
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