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| Capacity | 200 Ton |
| Automation Grade | Automatic |
| Frame Design | 4-Pillars Type |
| Material | MS |
| Brand | RH |
| Country of Origin | Made in India |
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| Capacity | as per customize |
| Automation Grade | Automatic |
| Color | as per customize |
| Frame Design | 4-Pillars Type |
| Material | MS |
| Brand | RH |
| Country of Origin | Made in India |
Here is a complete overview of SMC Moulding Presses and the variant with Ejector Cylinder:
ποΈ SMC Moulding Presses (Sheet Moulding Compound) π§ Overview:SMC Moulding Presses are heavy-duty hydraulic compression presses specifically designed for moulding SMC materials, which are reinforced polyester composites. These presses ensure high-strength, heat-resistant, and precision-moulded parts.
β Key Features:| Feature | Description |
|---|---|
| Capacity Range | 100 to 1000 Tons (customizable) |
| Frame Type | 4-Pillar / H-Type / Column Type |
| Platen Heating | Electric heaters / Steam / Oil circulation |
| Platen Sizes | 600x600 mm to 2000x2000 mm or more |
| Mould Ejection | Optional Ejector Cylinder |
| PLC Control | For pressure, temperature, and cycle timing |
| Material Feeding | Manual or Robotic Arm |
| Cycle Automation | Fully / Semi-Automatic Options |
An Ejector Cylinder is a hydraulic system integrated into the lower platen or mould base that pushes the moulded part out after the curing cycle is completedβensuring:
Easy demoulding
Protection of product and mould
Time-saving and reduced manual effort
| Ejector System Specs | Typical Values |
|---|---|
| Stroke Length | 50 mm to 200 mm |
| Ejector Force | 10 β 50 Tons |
| Control | Independent / Integrated in main HMI |
| Retraction Auto Mode | Yes |
Automotive panels (bonnet, boot lids)
Electrical enclosures and switchgear parts
Chair backs, tanks, and bathroom units
Tractor and bus body parts
Manhole covers and rooftops
| Parameter | Value |
|---|---|
| Pressing Capacity | 250 Tons |
| Daylight | 800 mm |
| Stroke Length | 500 mm |
| Platen Size | 1200 x 1200 mm |
| Heating Plate Temp | Up to 200Β°C |
| Ejector Cylinder | 20 Ton, 100 mm Stroke |
| Control System | PLC with HMI + Auto Cycle |
| Operation | Hydraulic, Semi-Auto |
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Minimum Order Quantity: 1 Piece
Product Brochure
| Max Load Capacity | 100 Ton |
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Minimum Order Quantity: 1 Piece
| Max Force or Load | 70 Ton |
| Usage/Application | Scrap |
| Material | Stainless Steel |
| Automation Grade | Automatic |
| Phase | Single Phase |
| Color | Blue |
| Voltage | 440 V |
| I Deal In | New Only |
| Country of Origin | Made in India |
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Minimum Order Quantity: 1 Piece
| Max Force or Load | 80 Ton |
| Usage/Application | Cartoon |
| Material | Mild Steel |
| Automation Grade | Automatic |
| Phase | Three Phase |
| Color | Blue |
| Voltage | 440 V |
| I Deal In | New Only |
| Country of Origin | Made in India |
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| Max Force or Load | 100 ton |
| Material | MS |
| Capacity | as per customize |
| Bail Weight | as per customize |
| Brand | RH |
| Automation Grade | Automatic |
| Country of Origin | Made in India |
Hereβs a complete overview of Horizontal Balers β widely used in industries for compacting bulky scrap and fibrous materials into dense, easy-to-transport bales:
β»οΈ Horizontal Balers OverviewDefinition:
Horizontal Balers are heavy-duty machines used to compress and bale materials like metal scrap, paper, cardboard, plastic, coir fiber, etc., in a horizontal compression layout. They are ideal for continuous, high-volume production environments.
Horizontal Loading & Compression:
Material is fed and compressed in a horizontal direction for higher throughput.
Manual, Semi-Automatic or Fully Automatic:
Variants include auto-feeding conveyors, auto-tie systems, and PLC control panels.
Hydraulic Operation:
High-capacity hydraulic cylinders for powerful and reliable compression.
Heavy-Duty Construction:
Fabricated steel body with wear-resistant plates in the compression chamber.
Interlocked Safety Doors & Ejector System:
Safe bale removal with ejector or tilting systems.
One-directional compression
Suitable for soft materials (paper, plastic, etc.)
Cost-effective and compact
Three-directional compression: main ram, top press, and side press
Ideal for metal scrap, MS/SS/Aluminum/Brass turnings
Produces dense, export-quality bales
Designed for paper/cardboard/plastic
Continuous feeding and auto strapping
High speed and minimal labor
| Parameter | Range |
|---|---|
| Pressing Force | 40 β 250 Tons |
| Bale Size (LΓWΓH) | 200Γ200Γ300 mm to 600Γ600Γ800 mm |
| Bale Weight | 30 β 100 Kg (material dependent) |
| Production Capacity | 3 β 8 Tons/hour |
| Cycle Time | 60 β 120 seconds |
| Power Requirement | 10 β 50 HP |
| Material Type | Recommended Baler Type |
|---|---|
| Metal Scrap | Triple Compression Horizontal Baler |
| Coir Fiber | Horizontal Fiber Baler |
| Cardboard/Paper | Auto Horizontal Baler with Auto Tie |
| Plastic (PET/HDPE) | Horizontal Plastic Baler |
| Aluminum/Copper | High-Tonnage Horizontal Metal Baler |
High volume handling capacity
Dense bales for economical transport
Reduced labor and handling costs
Export-ready bale quality
Customizable feed hopper and bale size
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| Max Force or Load | 100 Ton |
| Usage/Application | Industrial |
| Material | Mild Steel |
| Country of Origin | Made in India |
A Four-Side Compression Machine with a 24" Γ 24" platen is typically used to apply uniform pressure from all four sides of a material or component β often in composite forming, insulation panel molding, plywood testing, or foam densification. It ensures even load distribution and dimensional stability during compression.
π Basic Specification Overview| Parameter | Specification |
|---|---|
| Platen Size | 24 inches Γ 24 inches (610 mm Γ 610 mm) |
| Compression Type | Four-sided (horizontal and vertical sides compress) |
| Actuation | Hydraulic (typically), sometimes pneumatic or servo |
| Control | Manual, NC, or CNC depending on application |
| Max Pressure | Commonly 10β200 tons per side (customizable) |
| Stroke/Travel | 200 mm to 1000 mm or more |
| Clamping System | Synchronized or individually controlled rams on all 4 sides |
Four Hydraulic Cylinders: Mounted on each side to press inward.
Central Platen Area: Holds the material/component.
Load Sensors & Pressure Gauges: For accurate force monitoring.
Control Interface: May allow programming for cycle time, dwell time, pressure per side, etc.
Compression molding of composite panels (CFRP, GFRP)
Testing of packaging boxes or materials under uniform load
Laminated board pressing (plywood, fiberboards)
Insulation or foam densification
Molded case parts (e.g., EVA foam or structural parts)
Uniform compression from all directions
Ideal for square molds or large flat panels
Reduces warping and internal stress
Customizable pressure on each side
Good for materials requiring precise shape retention
More complex and costly than top-down presses
Larger footprint and requires careful synchronization
Slower cycle time in manual systems
Heated platens (for thermoset or thermoplastic molding)
CNC synchronization for multi-zone pressure control
Safety interlocks and enclosures
Data logging for R&D or QC environments
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