
FULLY FOLDED HYDRAULIC JACK ENGINE CRANE HOIST LIFTING COMPACT
Modelo 3D
- Formatos disponíveis: Rhinoceros: 3dm 8.94 MB3DS MAX all ver.: 3ds 1.74 MBBlender: blend 4.75 MBCollada: dae 5.29 MBAutoCAD (native): dwg 3.74 MBAutodesk FBX: fbx 5.96 MBGLB / GLTF: glb 2.30 MBIGES: iges 1.68 MB3DS MAX: max 10.45 MBWavefront OBJ: obj 3.36 MBACIS: sat 4.80 MBSketchUp: skp 2.59 MBSTEP: step 2.09 MBStereolithography: stl 3.68 MB
- Polígonos:255116
- Vértices:196976
- Animados:No
- Textura:No
- Equipados:No
- Materiais:
- Low-poly:No
- Coleção:No
- Mapeamento UVW:No
- Plugins Utilizados:No
- Pronto para impressão:No
- Scan 3D:No
- Conteúdo adulto:No
- PBR:No
- Treinamento de IA:No
- Geometria:Poly NURBS
- UVs não embalados:Unknown
- Visualizações:481
- Data: 2025-06-10
- ID do Item:578550
- Avaliação:
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Included File Formats
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• - STL (.stl) – Exported mesh geometry; may be suitable for 3D printing with adjustments
• - STEP (.step, .stp) – CAD format using NURBS surfaces
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• - SketchUp (.skp) – Compatible with all SketchUp versions
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• - Rhino (.3dm) – Provided for Rhino users
Model Info
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• - Rendered using Luxion KeyShot
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More Information About 3D Model :
**FULLY FOLDED mode of COMPACT HYDRAULIC JACK ENGINE CRANE HOIST LIFTING**
The "fully folded mode" refers to a specific, non-operational configuration of a compact hydraulic engine crane, hoist, or lifting apparatus. This mode is an inherent design feature of many modern engine cranes intended to maximize space efficiency during storage and transport.
A compact hydraulic engine crane is a piece of mechanical lifting equipment typically used in automotive repair, workshop settings, and other environments requiring the lifting and maneuvering of heavy objects, particularly vehicle engines and transmissions. It generally consists of a base structure with legs, a vertical mast, an articulated or telescopic boom, a hydraulic cylinder acting as the lifting mechanism, and often wheels or casters for mobility in its operational state.
The fully folded mode represents the state where the structural components of the crane have been deliberately collapsed, retracted, and secured into the most compact possible arrangement. This transformation is achieved through the manipulation of designed pivot points, hinges, and locking mechanisms (such as pins, bolts, or latches) that allow the main components to fold inward, downward, or upward against the central frame or mast.
Key characteristics of the fully folded mode include:
1. **Reduced Footprint and Volume:** The most significant feature is the dramatic decrease in the crane's spatial requirements. The spread legs of the operational base are typically folded vertically or inward, and the extendable boom is retracted to its shortest length and pivoted down. The mast may also incorporate a folding joint in some designs.
2. **Secured Components:** In this mode, all movable parts are locked or fastened to prevent accidental unfolding or movement during handling or storage. Locking pins or latches hold the legs, boom, and potentially the mast securely in their folded positions.
3. **Specific Orientation:** The resulting folded structure is often designed to stand upright on a smaller base area or lean against a wall, minimizing floor space usage. Some designs may be relatively flat for horizontal storage.
4. **Enhanced Portability (when folded):** While heavy, the folded configuration is generally easier to handle and transport. Some cranes include smaller wheels or handles specifically for maneuvering the unit when it is in its folded state.
The primary purpose of the fully folded mode is to facilitate convenient storage in confined spaces, such as small workshops, garages, or transport vehicles, where the operational dimensions of the crane would be prohibitive. This mode transforms a substantial piece of equipment into a more manageable unit for storage against a wall or placement in a corner, thereby optimizing floor space utility.
Transitioning between the operational and fully folded modes requires manual intervention to disengage and re-engage the locking mechanisms and articulate the components according to the crane's design specifications. This process is essential for the practical use and long-term storage of compact hydraulic engine cranes.
KEYWORDS: Engine crane, hydraulic crane, fully folded, folded mode, storage configuration, compact storage, lifting equipment, hydraulic jack, hoist, portability, transport, workshop, garage, space-saving, foldable design, collapsible, automotive repair, heavy lifting, boom, legs, chassis, frame, articulated, pins, latches, collapsed state, compact mode, shop crane, lifting mechanism, hydraulic cylinder.
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