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More Information About 3D Model :
The subject describes a specialized agricultural system consisting of a moldboard plow configured as a rigid implement attachment, specifically designed for coupling and operation with a pedestrian-controlled (hand walking) tractor powered by a diesel engine. This pairing represents a fundamental stage of mechanization, particularly crucial for smallholder farming operations and cultivation in areas characterized by difficult topography, fragmented land parcels, or limited economic capacity for larger machinery.
Nomenclature and Classification
The prime mover is formally known as a two-wheel tractor (2WT) or power tiller. The use of a diesel engine denotes a unit optimized for heavy-duty, continuous draft work, leveraging the high torque and fuel efficiency inherent in diesel power plants compared to gasoline alternatives. The moldboard plow attachment is categorized as a primary tillage implement, designed to perform the foundational task of soil inversion and deep cutting.
The Moldboard Plow Attachment
The moldboard plow attachment functions by cutting, lifting, and inverting the soil to bury crop residues, control weeds, and aerate the soil profile, thereby preparing a receptive seedbed. For hand walking tractors, the plow is typically a single-bottom design, meaning it possesses only one working unit.
Key components of the attachment include:
- Plow Share: The leading edge responsible for cutting the soil horizontally and vertically.
- Moldboard: A curved plate designed to receive the soil slice from the share, gradually lifting and turning it over, resulting in inversion.
- Landside: A flat structural component that runs parallel to the furrow wall, providing lateral stability and counteracting the sidethrust generated during soil inversion.
- Frog/Standard: The central element to which the share, moldboard, and landside are bolted, connecting the working components to the implement frame and subsequently to the tractor hitch.
Due to the limited weight and stability of the two-wheel tractor, the plows are engineered to manage lighter draft requirements compared to mounted four-wheel tractor plows, focusing on effectiveness in shallower to moderate depths (typically 15 to 25 cm). Some advanced versions may feature a reversible moldboard, allowing the operator to turn all furrows in the same direction without resetting the plow angle relative to the tractor.
### Integration with the Diesel Hand Tractor
The diesel hand walking tractor provides the necessary motive power and transmission system. These machines are characterized by robust, single-cylinder, direct-injection diesel engines, which offer excellent torque characteristics at low operating speeds—critical for maintaining momentum during heavy plowing.
The plow attaches to the tractor via a specialized hitch mechanism, often a quick-release pin hitch or a simplified trailing linkage system specific to the manufacturer. This coupling allows for critical operational adjustments:
- Depth Control: Regulated primarily through the hitch height, often assisted by a gauge wheel or skid on the plow assembly itself, which limits the penetration depth.
- Leveling: The operator manipulates the adjustable handlebars and weight distribution to maintain the correct lateral and longitudinal pitch of the plow, ensuring uniform furrow depth and width.
### Operational Context and Significance
The utilization of this specific diesel-powered moldboard plow system is widespread in intensive, small-scale farming environments (typically fields between 0.5 and 3 hectares). It provides a significant efficiency increase over manual or animal traction methods. The system excels in:
- Paddy Cultivation: The high torque and low ground pressure (when utilizing cage wheels instead of pneumatic tires) make diesel power tillers highly effective in wet rice fields, though specialized rotary tillers are also common for this application.
- Hilly Terrain: The compact size and maneuverability allow the operator to till contours and small plots inaccessible to larger machinery.
- Economic Viability: The lower capital investment and operational cost (fuel efficiency) make this combination a primary driver of agricultural intensification in developing economies.
The effective use of the implement demands considerable physical input and skill from the pedestrian operator, who must constantly balance the tractor’s power against the resistance of the soil to maintain optimal tillage parameters.
KEYWORDS: Moldboard, Plow, Tillage, Hand Tractor, Two-Wheel Tractor, Diesel Engine, Implement, Attachment, Primary Tillage, Power Tiller, Mechanization, Smallholder Farming, Agricultural Engineering, Draft Force, Furrow, Share, Landside, Inversion, Soil Preparation, Pedestrian-Controlled, Single-Bottom Plow, Walking Tractor, Agricultural Implement, Crop Residue, Depth Control, Torque, Traction, Farm Equipment, Soil Dynamics, Asian Agriculture.
STL (Stereolithography, filesize: 39.6 MB), OBJ (OBJ, filesize: 79.5 MB), 3DS (3D Studio, filesize: 24.4 MB), GLTF (glTF, filesize: 26.3 MB), 3DM (Rhinoceros 3D, filesize: 137 MB), BLEND (Blender, filesize: 73.1 MB), FBX (Autodesk FBX, filesize: 24.6 MB), IGE (IGES, filesize: 115 MB), MAX (Autodesk 3ds Max, filesize: 166 MB), DAE (Collada, filesize: 134 MB), SKP (Sketchup, filesize: 66.5 MB), SAT (3D ACIS, filesize: 69.5 MB), DWG (AutoCAD, filesize: 19.2 MB), STP (STEP, filesize: 70.6 MB)