| Brand Name: | WANSHIDA |
| Model Number: | Q43L-6300A |
| MOQ: | 1 set |
| Price: | Negotiable |
| Delivery Time: | 80days |
| Payment Terms: | T/T |
The Q43L-6300A is a heavy-duty Hydraulic Gantry Shear developed for scrap yards, steel-processing companies, dismantling operations and metal recycling facilities.
It combines 630 tons of cutting force with a 7000 × 1800 × 900 mm loading box and an 1800 mm cutting width. The cutting frequency has been optimized to approximately 3–4 cuts per minute, while the finished cutting length can be adjusted from approximately 200 to 600 mm.
For buyers handling long sections, plates, bars and mixed steel scrap, the main benefit of this Scrap Metal Shear is not simply higher cutting force. It helps turn loading, feeding, hold-down and cutting into a more continuous process and reduces dependence on manual pre-cutting.
Many scrap yards receive material that is difficult to handle directly.
Long structural scrap, steel plates and mixed sections may occupy excessive storage space and require additional cutting before transportation or downstream processing.
When manual torch cutting becomes a major part of daily production, customers may face higher labor costs, inconsistent processing speed and more complicated yard operations.
A gantry shear provides a more mechanized way to reduce oversized scrap into manageable lengths.
The 7000 mm loading box provides enough space for longer and irregular materials.
Instead of cutting every long piece before feeding, the material handler can load larger batches directly into the machine.
Mixed scrap can shift when subjected to cutting force.
The hold-down system controls the material position before each cutting action, helping the machine process irregular scrap more consistently.
Different scrap buyers and downstream processes may require different material sizes.
The cutting length can be adjusted within approximately 200–600 mm, giving the operator more flexibility when preparing scrap for transportation or further processing.
Heavy-duty hydraulic cutting generates heat during long working periods.
The water-cooling system helps manage hydraulic oil temperature and supports more stable continuous operation.
Scrap is loaded into the chamber by a material handler.
The feeding mechanism moves material toward the shear head. The hold-down system then controls the scrap before the hydraulic cutting system performs the cut.
This process repeats as material moves forward, reducing oversized scrap into shorter pieces that are easier to store, transport and process.
For larger recycling yards, this workflow can reduce unnecessary manual handling and pre-cutting.
| Item | Specification |
|---|---|
| Model | Q43L-6300A |
| Cutting Force | 630 Ton |
| Loading Box Size | 7000 × 1800 × 900 mm |
| Cutting Width | 1800 mm |
| Max. Cutting Capacity | Square Bar 120×120 mm / Round Bar Φ125 mm / Plate 60×1700 mm |
| Cutting Frequency | Approx. 3–4 Cuts/Min |
| Cutting Length | Approx. 200–600 mm, Adjustable |
| Control | PLC Automatic Control + Remote Control |
Maximum cutting sizes are reference values for ordinary steel. Final suitability depends on material strength, dimensions and shape.
Provides more room for long sections and irregular mixed scrap, reducing unnecessary pre-cutting before feeding.
Designed for size reduction of suitable steel scrap, plates, bars and structural sections.
The current cutting frequency has been optimized to approximately 3–4 cuts per minute for improved processing rhythm.
Provides a wide working area for processing mixed scrap rather than only individual bars.
Finished material size can be adjusted according to transportation, storage or downstream requirements.
Allows operators to coordinate machine operation with material-handler loading more conveniently.
The current configuration mainly includes:
Project-specific requirements may include:
The final supply scope should follow the confirmed quotation and technical agreement.
The current cutting frequency is approximately 3–4 cuts per minute, but this should not be directly converted into one fixed TPH figure.
Actual capacity varies according to:
scrap bulk density, dimensions, thickness, material mix, loading quantity, material-handler efficiency and required cutting length.
Dense heavy scrap and loose mixed light scrap may produce very different hourly tonnage even when processed by the same machine.
For projects with a defined throughput target, actual scrap information should be reviewed before confirming capacity.
The Q43L-6300A can be evaluated for:
It is particularly suitable for medium-to-large recycling projects that already use material handlers and want to reduce reliance on manual torch cutting.
Technical confirmation is recommended for:
Maximum cutting sizes should not be treated as universal limits for every steel grade.
After production, factory testing can cover feeding, hold-down, cutting, PLC control, remote operation, the hydraulic system and the cooling system.
If the buyer has specific scrap requirements, FAT material and acceptance conditions can be discussed in advance.
For transportation, the machine may be dismantled into suitable sections according to the shipping plan. Installation, hydraulic connection, electrical connection and commissioning are then completed at the customer's site according to the supplied technical documentation.
Operating and maintenance documents, hydraulic and electrical information, spare-parts support and remote technical assistance can be provided according to the final machine configuration.
Routine maintenance mainly focuses on:
cutting blades, hydraulic oil, seals, pipelines, motors, hydraulic pumps and the cooling system.
Preparing commonly used spare parts in advance can help reduce unnecessary downtime during long-term operation.
It is mainly intended for suitable steel scrap, plates, round bars, square bars and structural sections. Material strength and dimensions should be confirmed before final selection.
The long loading box allows more long and irregular scrap to be loaded directly and reduces unnecessary pre-cutting.
The current cutting frequency is approximately 3–4 cuts per minute.
Yes. The reference cutting length is approximately 200–600 mm.
Hourly capacity depends on scrap density, dimensions, thickness, loading efficiency and cutting length. A fixed TPH should be confirmed according to actual material conditions.
Water cooling helps control hydraulic oil temperature during extended heavy-duty operation.
Yes. Voltage, frequency and phase requirements should be confirmed before production.
Typical items include cutting blades, hydraulic seals, pipeline seals and selected filtration or electrical components. The final list depends on the confirmed machine configuration.
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