John Deere 336 Baler Specifications and Features

John Deere 336 Baler Specifications and Features

336 john deere baler specs

The John Deere 336 baler is designed to deliver reliable performance in the field. With a 14-inch plunger stroke and a 48-inch wide pickup, it excels at producing tight, uniform bales. The machine’s 540 RPM PTO speed ensures optimal operation, making it a solid choice for moderate-sized operations.

Specifications include: a bale size of 14″ x 18″ with a capacity to produce up to 36 bales per hour. The baler is powered by a 4-cylinder engine, delivering efficient power to handle high-density material. Its durable construction ensures longevity under demanding conditions, especially in heavy hay or straw production.

When using the John Deere 336 baler, it is recommended to maintain proper bale tension and adjust the PTO speed according to the crop conditions to maximize productivity and minimize wear. Regular maintenance checks, especially for the twine system and pickup mechanism, will extend the machine’s lifespan.

336 John Deere Baler Specifications

The John Deere 336 baler is built for reliable hay and straw baling. It features a bale chamber that efficiently compacts material, providing uniform bales. The machine uses a 14-knife cutting system, offering flexibility in bale size and density. The 336 baler is compatible with a range of tractor models, requiring 40 to 70 PTO horsepower for optimal performance.

The baler’s pickup width measures 60 inches, enabling efficient pickup of material. It has a 5.25-foot wide bale chamber, which allows it to form bales of 14 to 16 inches in diameter. The bale length is adjustable, ranging from 36 to 48 inches. This flexibility is ideal for operators who need consistent bale size for various storage or transportation needs.

The machine’s knotter system is designed for durability, providing secure and tight knots. The 336 John Deere baler uses a standard twine tying mechanism, which ensures each bale is tightly bound and stays intact during handling. The machine’s total weight is approximately 1,100 kg, making it relatively easy to transport between fields.

For those working in demanding environments, the 336 offers optional features like the hydraulic tie system, which can speed up bale formation and reduce operator fatigue. It’s recommended to regularly check the baler’s chain and belt systems to ensure smooth operation and reduce maintenance costs.

Dimensions and Weight of the John Deere 336 Baler

The John Deere 336 Baler is designed for heavy-duty operations while maintaining a manageable size and weight for optimal efficiency. Here are the specific measurements:

  • Length: 3,330 mm (131 inches)
  • Width: 1,870 mm (73.6 inches)
  • Height: 2,130 mm (83.9 inches)
  • Weight: 1,300 kg (2,866 lbs)

This compact size allows the baler to be maneuvered easily in tight spaces, while its weight ensures stability during operation. The weight distribution is evenly balanced, making it suitable for various tasks, from smaller farms to larger operations. Adjusting the tractor for optimal power and performance is recommended based on these dimensions for maximum efficiency.

Hydraulic System and Bale Formation of the John Deere 336 Baler

336 john deere baler specs

The hydraulic system of the John Deere 336 baler plays a pivotal role in both the formation and ejection of bales. It utilizes a highly efficient pump and valve system to engage the plunger and tie mechanism, ensuring smooth and consistent operation. The hydraulic pressure is easily adjustable to meet various field conditions, which allows operators to fine-tune performance based on crop material and baling requirements.

The bale formation process begins with the crop being fed into the chamber, where the plunger compresses it into a dense, tightly packed bale. The hydraulic system controls the timing and speed of the plunger, adjusting to changes in crop density. This precise control minimizes the risk of overloading and ensures that each bale maintains the desired shape and weight.

The John Deere 336 baler is equipped with a reliable hydraulic tie system, which is essential for securing the bales after compression. This system is designed to operate with minimal downtime, ensuring that the operator can focus on other tasks while the bale is securely tied and ejected. With each cycle, the hydraulic system provides consistent tension to ensure the string or twine holds the bale tightly together, preventing it from falling apart during handling and transport.

Hydraulic pressure settings can be adjusted according to the type of crop being baled, providing flexibility to adapt to varying moisture levels and stem sizes. By adjusting the hydraulic pressure, operators can ensure that the baler performs optimally, resulting in better bale density and uniformity. Regular maintenance of the hydraulic system, including checking fluid levels and inspecting hoses for leaks, is essential to maintaining peak performance over time.

Performance and Power Output of the John Deere 336 Baler

The John Deere 336 baler operates with a PTO horsepower requirement of 30-45 HP, ensuring compatibility with most small to mid-sized tractors. Its efficient design allows for a consistent bale formation, optimizing productivity in various field conditions.

With a 5′ wide pickup and a 16-knife system, the baler ensures efficient crop intake and precise bale density. The machine’s power output is directed towards a smooth operation, with its hydraulics supporting the bale formation process. The robust powertrain and transmission work together to maintain optimal speed, even under heavy load conditions, reducing downtime.

For high performance in various crop types, the John Deere 336 is equipped with a flywheel that absorbs the machine’s kinetic energy. This feature helps maintain stable operation during baling, regardless of crop fluctuations, enhancing both reliability and power efficiency.

With its well-designed hydraulic system, the baler offers precise control over bale tension. The system ensures that the bales are formed consistently with the right level of compression, reducing the risk of blockages while improving operator control.