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Floor Slabs Press — hydraulic press 1
Industrial Floor Slabs · Hydraulic Press Machine

315 Ton Four Pillar Hydraulic Press for Industrial Floor Slabs

315T Rated Capacity
100 mm/s Slider Down Speed
7–12 mm/s Slider Pressing Speed
90 mm/s Slider Return Speed

01 — Press System

315 Ton Four Pillar Hydraulic Press Machine

This fully automated 315-ton hydraulic press line integrates material loading, hot extrusion mixing, precision pressing, and rapid water-chilled cooling to achieve continuous, high-efficiency manufacturing. The system delivers dense, highly durable, and weather-resistant polymer sand composite slabs with consistent multi-color finishing and minimal cycle times.

Use Case

The integrated 315-ton press line uses an auto-loader and extruder to melt and mix recycled plastics with sand, feeding hot molten material directly into the hydraulic press. Under high compaction force and rapid ~15°C chilled water cooling, the molten mix is molded into dense, void-free industrial floor slabs that cool quickly from 200°C to 60°C for fast demolding.

Final Product Properties

  • Core Applications: Industrial flooring, severe weather footpaths, chemical-resistant factory zones, commercial walkways, and heavy-duty logistics staging areas.
  • Material: Waste Recycled Plastics + Sand + Pigments
  • Products Processed: Plastic Sand Composite Industrial Floor Slabs
  • Why 315 Ton Hydraulic Press: Delivers maximum tonnage compaction required to completely eliminate micro-voids, ensure uniform structural density across large 600x600 mm slab profiles, and achieve 30 to 40 percent weight reduction compared to standard concrete slabs while retaining superior impact resistance.

02 — Technical Specifications

SM 315 HP – Hydraulic Press Machine Complete Technical Data

The SM 315 HP 315-Ton Hydraulic Press Machine delivers reliable high-pressure compaction and precise speed control for polymer sand composite slab manufacturing. Engineered with heavy-duty structural steel and advanced hydraulics, it guarantees uniform density and high operational safety during continuous industrial production.

Capacity

  • Nominal Force: 315 Ton
  • Max Hydraulic Capacity: 315 Ton

Structural Design

  • Construction: Solid heavy duty welded frame
  • Rigidity: High stress resistance dynamic structure

Frame Type

  • Design: Four Column Type Frame

Hydraulic System

  • Drive System: High pressure hydraulic pump unit
  • Fluid Circuit: Advanced proportional control valve manifold

Main Ram Stroke

  • Stroke Length: 600 mm

Working Hydraulic Pressure

  • Operating Pressure: 25 MPa

Daylight Gap

  • Maximum Opening: 1000 mm

Approach Speed

  • Fast Down Speed: 120 mm Sec

Pressing / Drawing Speed

  • Working Press Speed: 8 to 12 mm Sec

Return Speed

  • Fast Up Speed: 100 mm Sec

Bed / Platen Size

  • Bolster Platen Area: 1200 x 1200 mm

Columns

  • Column Count: 4 Solid Steel Columns
  • Column Diameter: 180 mm

Working Envelope

  • Clear Clearance Between Columns: 1000 x 800 mm

Control System

  • System Type: PLC with Human Machine Interface touchscreen

Main Motor Power

  • Electric Motor Capacity: 22 kW

Valves & Hydraulics

  • Valve Components: Cartridge type logic valves

Automation

  • Operation Mode: Auto semi auto and manual modes

Safety Features

  • Protection Systems: Dual optical light curtains emergency stop buttons and over pressure safety valves

SM 315 HP — Model Specifications

  • Nominal Force: 3150 KN
  • Maximum Hydraulic Pressure: 25 MPa
  • Max Opening Height of the Slider: 1000 mm
  • Max Stroke of the Slider: 600 mm
  • Effective Bed Size: 800 × 800 mm
  • Slider Down Speed: 100 mm/s
  • Slider Pressing Speed: 7–12 mm/s
  • Slider Return Speed: 90 mm/s
  • Ejector Cylinder Nominal Force: 300 KN
  • Stroke of the Ejection Cylinder: 300 mm
Production Case Study

315 Ton Polymer Sand Composite Industrial Floor Slabs Production Line

Plastic Sand CompositeMaterial
600 x 600 mmSlab Size
30 TilesOutput/Hour
120 SecondsCycle Time
High molding density output
Consistent slab surface finish
Precise dimension dynamic accuracy
Fast integrated cycle times
Low thermal deformation rate
Optimal energy usage efficiency
Zero structural material defects

03 — Die / Mold System

Precision Single Cavity Industrial Floor Slabs Die Mold Engineering

Designed for high-precision compression molding of heavy-duty polymer sand composite industrial floor slabs, this die system delivers exceptional structural density and wear resistance. It handles continuous high-pressure operations while maintaining strict dimensional accuracy under severe thermal processing conditions.

Technical Specifications (Tooling)

Die Type

  • Configuration: Single Cavity Mold

Die Materials

  • Core and Cavity: Forged alloy steel P20 or H13 grade
  • Mold Base: High tensile structural steel plate

Tool Configuration & Construction

  • Structure: Heavy duty reinforced split frame
  • Cooling System: Integrated high efficiency water channels
  • Ejection Mechanism: Synchronized hydraulic ejector pin array

Key Tooling Features

  • Thermal Management: Balanced water cooling channel placement
  • Material Flow: Optimized runnerless cavity loading design
  • Surface Protection: High durability anti wear coating

Alignment Accuracy

  • Guiding System: Hardened guide pillar and bush set
  • Tolerance: Plus or minus 0.02 mm

Surface Finish

  • Cavity Polishing: Mirror polish chrome plated finish
  • Roughness Level: Ra 0.4 mm

Tool Life

  • Durability: 500000 typical production cycles
Floor Slabs Press — die mould 1
Case Study (Die Performance)

Precision Single Cavity Industrial Floor Slabs Die Mold

Forged P20 or H13 AlloyDie Material
56-60 HRCHardness
Vacuum HardeningHeat Treatment
Superior mold cavity longevity
Consistent dimension accuracy maintained
Excellent surface wear resistance
Zero thermal stress cracking
Minimal tool wear rate
Rapid cooling cycle efficiency
Flawless slab edge forming

04 — Product Application

Where Plastic Sand Composite Industrial Floor Slabs Are Used

Plastic sand composite industrial floor slabs provide an ultra-durable, chemical-resistant flooring solution designed to withstand heavy mechanical impacts and harsh operating environments. They effectively replace traditional concrete paving in demanding industrial facilities by offering superior wear resistance and long-term service life.

Industry Applications

Heavy Manufacturing and Assembly Plants

These slabs endure constant vibration, high static loads, and impact from heavy machinery dropped on factory floors. Their resilient composite matrix absorbs mechanical shocks without cracking or spalling like conventional concrete.

Chemical Processing and Waste Management Facilities

Installed in areas exposed to harsh acids, solvents, oils, and corrosive industrial liquids. The non-reactive polymer-sand material prevents chemical degradation and surface erosion, keeping industrial floor surfaces completely sealed.

Logistics Warehouses and Freight Storage Terminals

Deployed across high-traffic forklift aisles, staging bays, and heavy vehicle loading zones. The high-density surface withstands continuous rolling wheel friction, preventing dusting and maintaining a smooth, safe transit surface.

Outdoor Storage Yards and Mining Equipment Staging Areas

Ideal for rugged external industrial yards exposed to extreme weather variations, freeze-thaw cycles, and heavy equipment loads. Their UV-resistant and waterproof properties prevent structural degradation, moss growth, and surface weathering over time.

Finished Product Gallery

05 — Key Advantages

Why Choose the 315-Ton Sinter Hydraulic Press

The 315-Ton Hydraulic Press delivers maximum structural density and superior wear resistance required for heavy-duty plastic sand composite industrial floor slabs. Its fast pressing action and advanced pressure control optimize production throughput while significantly lowering total manufacturing costs.

Technical & Commercial Benefits

01

Maximum Structural Compaction

Delivers 315 tons of uniform hydraulic pressure to completely eliminate internal micro-voids and air pockets. This guarantees ultra-high density and maximum load-bearing capability for demanding factory conditions.

02

Precise Dimensional Control

Maintains strict thickness and edge tolerances across large 600 x 600 mm slab profiles during pressing. This eliminates uneven surfaces and ensures seamless interlocking or layout alignment during field installation.

03

High Operational Energy Efficiency

Integrates variable pump controls and rapid pressure build-up technology to minimize electrical power usage. Reduced utility consumption directly lowers the overall manufacturing cost per finished composite floor slab.

04

Accelerated Production Output

Achieves a fast 120-second complete cycle time through automated pressing and rapid return hydraulic strokes. The high throughput yields up to 30 slabs per hour to satisfy large-scale industrial paving demands.

05

Extended Tooling and Equipment Service Life

Utilizes smooth proportional hydraulic ramp-up to eliminate mechanical shock loads on the precision die mold. This prevents thermal-mechanical fatigue, extending mold service life and reducing scheduled maintenance downtime.

06

Exceptional Return on Investment

Combines low-cost recycled waste plastics and sand raw materials with fully automated press operation. Manufacturers benefit from reduced labor expenses, lower raw material costs, and high commercial profit margins.