Did you know 38% of soybean farmers report post-harvest losses due to delayed baling? Or that tomato growers waste 22 working days annually switching between equipment? This stops now. Discover how combine harvesters with integrated balers slash operational costs by 40% while boosting output quality.
(combine harvester with baler)
Our soybean combine harvester processes 18 acres/hour while simultaneously creating 800lb density bales. The secret? Patented DualFlow™ technology prevents grain loss during transfer. For tomato harvests, the shock-absorbent FruitShield™ system reduces bruising by 62% compared to standard models.
Feature | AgriMaster 8800 | Competitor Model X |
---|---|---|
Baling Capacity | 25 tons/hour | 18 tons/hour |
Fuel Efficiency | 5.2 gal/acre | 6.8 gal/acre |
Choose your configuration: The tomato combine harvester features adjustable 360° picking heads, while our soybean edition boasts laser-guided stalk sensors. All models include real-time yield monitoring through the AgriSmart™ dashboard.
Kansas soybean farmer Jim Bartlett increased throughput by 55%: "We complete harvest 9 days faster while getting premium prices for perfectly baled straw." California's FreshCrop Farms reduced tomato waste from 8% to 3.2% using our specialized harvester-baler combo.
Join 4,500+ farms already maximizing their harvest. Limited seasonal financing available!
Claim Your Custom Quote Now →(combine harvester with baler)
A: This combination streamlines harvesting and baling in a single pass, reducing labor and time. It’s ideal for crops like wheat or hay, where both grain collection and residue management are critical. The integrated system also minimizes field compaction by reducing multiple machinery passes.
A: Yes, some soybean combine harvesters can be retrofitted with baler attachments. However, compatibility depends on the harvester’s design and power capacity. Consult manufacturers to ensure proper integration for efficient residue baling after soybean harvesting.
A: Tomato combine harvesters often focus on gentle fruit handling, but baler attachments can manage vine residue post-harvest. Specialized balers are required to handle moist, fibrous tomato vines. Ensure the harvester’s power and frame can support the baler’s demands.
A: By combining harvesting and baling operations, it eliminates downtime between processes. This dual functionality reduces fuel costs and labor while maximizing field output. It’s particularly effective for crops requiring immediate residue management, like straw or silage.
A: Regular cleaning of baler twine mechanisms and harvester sieves is essential. Lubricate moving parts frequently to handle increased workload. Inspect hydraulic systems for leaks, as the baler adds complexity to the harvester’s operations.
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In the intricate world of mechanical engineering, gears are the unsung heroes that keep countless machines running smoothly. These toothed wheels are essential components, facilitating the transmission of motion and power. From the robust drive gears that initiate movement to the specialized corn machine gear and returning machine gear designed for specific agricultural equipment, and the complex gearbox assembly that houses multiple gears, as well as the highly precise high precision gear used in demanding applications, each type plays a vital part in different machinery systems.
Mechanical systems, whether in industrial machinery or agricultural equipment, rely on a variety of components to function effectively. Among these essential parts, gears play a pivotal role in transmitting power and motion. From the gearbox gear that forms the core of power transmission within a gearbox to the drive gear that initiates the movement of a system, and the specialized bevel gears that change the direction of motion, gears are integral. In the agricultural sector, components like wheat machine gear and deep tiller gear are vital for the proper functioning of farming equipment, ensuring efficient crop processing and soil cultivation.
In the intricate world of mechanical engineering, certain components play a crucial role in ensuring the smooth operation of machinery, especially in the agricultural sector. From the gears that transfer power to the seats that facilitate meshing, each part contributes to the overall functionality and efficiency. Arc gear, meshing seat, harvester gear shaft, corn gear, and returning gear are among the key elements that are integral to various mechanical systems, particularly those found in agricultural equipment.
In the intricate world of mechanical engineering, a variety of specialized components work in harmony to ensure the smooth operation of machinery. From agricultural equipment to industrial gear systems, components like border inspection assembly, ring gear/gear ring, high frequency gear, meshing seat, and harvester input shaft play crucial and distinct roles. Each of these elements is designed with specific functions in mind, contributing to the overall performance, durability, and efficiency of the machinery they are part of.
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Spread all over the world
our products are exported to various parts of the world. Currently, our products have been exported to more than 40 countries Our products cover Asia, Europe, Africa, South America, North America, and Oceania
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