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Created with Pixso. 630 Ton Y83Q-6300C Scrap Metal Shear Baler with 9–12 T/H Capacity for Rebar, Structural Steel and Light Scrap Processing

630 Ton Y83Q-6300C Scrap Metal Shear Baler with 9–12 T/H Capacity for Rebar, Structural Steel and Light Scrap Processing

Merknaam: WANSHIDA
Modelnummer: Y83Q-6300C
MOQ: 1 set
Prijs: negotiable
Levertijd: 50days
Betalingsvoorwaarden: T/T
Detail Informatie
Plaats van herkomst:
China
Certificering:
CE and ISO9001
Model:
Y83Q-6300C
Cilinder duwen /schuifkracht:
630 ton
Maximale werkdruk:
20 MPa
Capaciteit:
9-12 ton/h
Perskamer open maat:
5000x1750x950mm
Bale dimensies (lxwxh):
(500-800) X600X (300-500) mm
Max schroot dikte:
4 mm
Snijsnelheid:
4-6 keer/min
hydraulisch koelsysteem voor olie:
Luchtkoelsysteem
Baler -dimensies (LXWXH):
12950x3510x4700mm
Verpakking Details:
Zeewaardige verpakking
Levering vermogen:
10 sets/maand
Productbeschrijving
630 Ton Y83Q-6300C Scrap Metal Shear Baler
with 9–12 T/H Capacity for Rebar,
 Structural Steel and Light Scrap Processing

The Y83Q-6300C scrap metal shear baler is a heavy-duty hydraulic recycling machine that combines compression, baling and shearing functions in one integrated system.

It is designed for large scrap yards, steel mills, metal processing plants, dismantling centers and industrial recycling facilities that need to process mixed ferrous scrap with different shapes and dimensions.

Unlike a conventional metal baler that only compresses loose material, the Y83Q-6300C first uses hydraulic compression and pushing mechanisms to form irregular scrap into a compact rectangular charge. The built-in 630 ton hydraulic shear then cuts the compressed scrap into the required length.

This combined process reduces scrap volume, improves material consistency and produces furnace-ready scrap that is easier to store, transport and charge into a steelmaking process.

The machine has a large 5000 × 1750 × 950 mm open press chamber, which can accommodate rebar, structural steel, plate offcuts, machinery scrap and compressible steel sections with a reference length of up to 5 meters.

Its reference processing capacity is 9–12 tons per hour, while the cutting speed is approximately 4–6 strokes per minute. These specifications make the machine suitable for medium and large-scale industrial scrap processing applications.

The Y83Q-6300C hydraulic scrap shear baler is powered by a 220 kW motor system and operates at a maximum hydraulic pressure of 20 MPa. An air-cooling system is provided to help control hydraulic oil temperature during operation.

The finished bale dimensions are approximately (500–800) × 600 × (300–500) mm. Bale length and height can be adjusted within the available range to match transport, storage and furnace-charging requirements.

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Cause

Industrial scrap does not arrive in a uniform shape. A recycling facility may receive rebar, angle iron, channel steel, I-beams, plate offcuts, machinery structures and light sheet scrap in the same working area.

Without suitable processing equipment, customers commonly face several problems.

Irregular Scrap Occupies Excessive Storage Space

Long rebar, structural steel and deformed metal parts overlap and create large scrap piles with low bulk density. Considerable floor area is occupied without achieving efficient storage.

Poor Truck and Container Loading Efficiency

Loose scrap contains substantial empty space. Trucks may reach their volume limit before reaching an economical payload, increasing the transport cost per ton.

Long Scrap Is Difficult to Charge into Furnaces

Steel mills normally require furnace charge within certain dimensional limits. Long rebar, steel sections and plate offcuts often need to be reduced before charging.

Separate Baling and Shearing Equipment Requires More Space

Installing one scrap baler and one separate shear increases capital cost, floor-space requirements, labor demand and intermediate material handling.

Mixed Scrap Makes Production Unstable

Light sheet scrap is easy to compress, while structural steel and thick sections require higher cutting force. An unsuitable chamber or shear design can cause feeding difficulties and production interruptions.

Solution

The Y83Q-6300C combines hydraulic compression and shearing in one processing system.

For light scrap, the machine first compresses the loose material into a dense rectangular form and then cuts it into a controlled length.

For rebar, angle iron, channel steel and I-beams, the large loading chamber accepts long material, while hydraulic compression mechanisms stabilize the scrap before it reaches the shear area.

The system helps customers:

  • Reduce the volume of loose steel scrap;
  • Improve truck and container loading density;
  • Cut long scrap into furnace-compatible dimensions;
  • Reduce intermediate transfer between separate machines;
  • Process rebar, structural steel and plate scrap;
  • Achieve a reference capacity of 9–12 tons per hour;
  • Maintain a cutting speed of approximately 4–6 strokes per minute;
  • Control hydraulic oil temperature with an air-cooling system;
  • Produce more uniform scrap for weighing, storage and resale.
Specifications
Item Technical Data
Model Y83Q-6300C
Machine Type Hydraulic Scrap Metal Shear Baler
Pushing / Shearing Force 630 Tons
Maximum Working Pressure 20 MPa
Reference Capacity 9–12 Tons/Hour
Open Press Chamber Size 5000 × 1750 × 950 mm
Bale Size (L × W × H) (500–800) × 600 × (300–500) mm
Bale Cross-Section 600 × (300–500) mm
Recommended Continuous Scrap Thickness Generally ≤3 mm
Reference Maximum Thickness for Ordinary Steel Up to Approx. 4 mm, Subject to Material Confirmation
Cutting Speed 4–6 Strokes/Minute
Hydraulic Oil Cooling System Air-Cooling System
Motor Power 220 kW
Machine Dimensions (L × W × H) 12950 × 3510 × 4700 mm
Machine Weight Approx. 57,000 kg
Reference Maximum Feed Length Up to Approx. 5 m
Operation Method To Be Confirmed According to Final Control Configuration
Main Functions Scrap Compression, Baling and Length Cutting
Reference Cutting Capacity
Scrap Type Reference Maximum Size
Square Steel 100 × 100 mm
Angle Iron 180 × 180 × 15 mm, 3 Pieces
Round Steel Diameter 110 mm
I-Beam 320 × 132 × 11.5 mm
Steel Plate 30 × 450 mm
Channel Steel 320 × 90 × 10 mm

The stated cutting dimensions are reference values. Actual performance depends on steel grade, tensile strength, simultaneous cutting quantity, feeding angle and blade condition.

The capacity of 9–12 tons per hour is a reference range. Actual output depends on scrap form, bulk density, feeding efficiency, cutting length and operating conditions.

Advantages
630 Ton Heavy-Duty Hydraulic Shearing Force

The 630 ton pushing and shearing force supports the compression and cutting of various rebar, steel sections and plate scrap used in industrial recycling.

Integrated Baling and Shearing Functions

The machine compresses loose scrap and cuts the compacted charge into the required length, reducing transfer between separate baling and shearing equipment.

5000 mm Long Loading Chamber

The 5000 × 1750 × 950 mm chamber accommodates long rebar, structural steel and machinery scrap, reducing the need for extensive material preparation.

Reference Output of 9–12 Tons per Hour

The machine is designed for medium and large scrap facilities that require consistent industrial processing capacity.

Cutting Speed of 4–6 Strokes per Minute

The cutting cycle supports continuous production and helps supply steel mills with regularly sized furnace charge.

Adjustable Bale Dimensions

Bale length can be adjusted from approximately 500 to 800 mm, while bale height can range from approximately 300 to 500 mm.

220 kW Hydraulic Power System

The heavy-duty motor configuration supplies power for compression, material pushing and cutting operations.

Air-Cooled Hydraulic Oil System

The air-cooling system does not require an external cooling-water circuit, simplifying installation in sites with limited water supply.

Heavy and Stable Machine Structure

With an approximate machine weight of 57 tons, the structure is designed to remain stable during high-force compression and shearing.

Application

The Y83Q-6300C scrap metal shear baler is suitable for:

  • Large scrap metal recycling yards;
  • Steel mill scrap preparation plants;
  • Metal smelting facilities;
  • Vehicle and machinery dismantling centers;
  • Ship dismantling yards;
  • Structural steel fabrication plants;
  • Rebar and construction scrap processors;
  • Port scrap transfer stations;
  • Resource-recovery facilities;
  • Industrial manufacturing waste centers.

Typical materials include:

  • Scrap rebar and round steel;
  • Angle iron, channel steel and I-beams;
  • Steel plate offcuts;
  • Steel wire and wire rod;
  • Light-gauge steel sheet;
  • Machinery and equipment structures;
  • Steel scrap from dismantling operations;
  • Compressible steel sections up to approximately 5 m long;
  • Other approved ferrous metal scrap.

The stated cutting capacity is mainly based on ordinary carbon steel. High-strength alloy steel, hardened steel, spring steel, railway steel and exceptionally thick materials require separate engineering evaluation.

How It Works
1. Scrap Sorting and Inspection

The operator confirms the scrap type, maximum dimensions and thickness. Sealed containers, explosive items, stones and hazardous materials must be removed.

2. Loading the Press Chamber

Scrap is loaded into the 5000 × 1750 × 950 mm chamber with a grab, crane or other mechanical feeding equipment.

3. Hydraulic Compression

Side compression and pushing mechanisms reduce the loose scrap and form it into a more compact rectangular charge.

4. Material Feeding to the Shear

The compressed scrap is gradually pushed toward the cutting area. Controlled feeding helps determine the final cut length.

5. Hydraulic Shearing

The 630 ton hydraulic shear blade moves downward and cuts the scrap or compressed charge. The reference cutting speed is 4–6 strokes per minute.

6. Repeated Compression and Cutting

The machine repeats the pushing and cutting cycle until the material in the chamber has been processed.

7. Product Discharge

The cut scrap exits the discharge area and can be transferred by conveyor, grab or loading equipment.

8. Storage or Furnace Charging

The processed scrap can be stacked, loaded for transport or supplied directly as furnace charge.

How To Choose
Select According to Scrap Type

Customers should identify whether the main material is light sheet scrap, rebar, structural steel or heavy plate. Each material requires different cutting force and chamber design.

Confirm Maximum Material Dimensions

Provide the maximum dimensions of square steel, round bars, angle iron, channels, I-beams and plates. Daily tonnage alone is not enough for model selection.

Confirm the Required Capacity

The Y83Q-6300C has a reference capacity of 9–12 tons per hour. Higher production requires suitable loading equipment, labor and site organization.

Check Scrap Length

The machine is designed for material up to approximately 5 m long. Longer scrap may require pretreatment or a customized chamber.

Confirm Finished Scrap Dimensions

Customers should verify whether the 500–800 mm length and 600 mm width match transport and furnace requirements.

Plan the Feeding Method

Stable output requires continuous feeding. For industrial projects, grab cranes or mechanical loading systems are generally more suitable than manual feeding.

Verify the Electrical Supply

The motor power is 220 kW. Customers must confirm voltage, frequency, transformer capacity and power-distribution requirements before ordering.

Evaluate the Cooling System

The standard configuration uses air cooling. In high-temperature environments or continuous heavy-duty operation, additional cooling capacity may be required.

Confirm the Control Configuration

The current data does not specify PLC, remote or manual operation. The required automatic cycle, remote control and safety interlocks should be confirmed before production.

FAQ
1. Can the Y83Q-6300C both bale and shear scrap?

Yes. It compresses loose scrap into a compact rectangular charge and then cuts it into the required length.

2. Will the machine always process 12 tons per hour?

The stated 9–12 tons per hour is a reference range. Actual capacity depends on scrap type, bulk density, feeding speed, cutting length and operating conditions.

3. Is the maximum scrap thickness 3 mm or 4 mm?

For continuous processing of light sheet scrap, material up to approximately 3 mm is recommended. Some ordinary steel scrap up to approximately 4 mm may be processed, subject to material width, grade and feeding conditions.

4. Can the machine cut high-strength alloy steel?

The listed cutting capacities mainly apply to ordinary steel. High-strength alloy, hardened, spring or railway steel requires separate calculation.

5. Is air cooling suitable for 24-hour operation?

This depends on ambient temperature, operating load and duty cycle. Additional cooling capacity or a water-cooling system may be recommended for high-temperature or continuous heavy-duty applications.

After-Sales Service

Available support includes:

  • Scrap evaluation and machine selection;
  • Foundation drawings and layout recommendations;
  • English operation manuals and technical documentation;
  • Hydraulic and electrical diagrams;
  • Factory no-load and material testing;
  • Testing photos and operating videos;
  • Remote installation and commissioning support;
  • Overseas engineer installation services;
  • Operator training;
  • Blade, seal and spare-parts recommendations;
  • One-year equipment warranty;
  • Long-term technical and spare-parts support;
  • Voltage, bale-size and control-system customization;
  • Blade and cutting-parameter optimization based on the customer’s scrap.

Before a final quotation is prepared, customers should provide scrap photos, videos, steel grade, maximum dimensions, required hourly capacity and local electrical information.