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315T Brookite Powder Block Press 1
Brookite Powder Block: Hydraulic Press Machine

315T Four Column Hydraulic Press for Brookite Powder Block

A Brookite Powder Block Compression 4-Column Hydraulic Press Machine is a specialized industrial compaction system engineered to compress fine brookite powder (titanium dioxide, TiO2) into dense, uniform solid blocks, tablets, or ceramic preforms.

These machines are utilized in advanced ceramics, photocatalytic material manufacturing, pigment production, and refractory fabrication, where loose titanium dioxide mineral powders must be consolidated to minimize airborne dusting, reduce storage volume, and optimize handling or sintering processes.

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

01 — Engineering Considerations

Structural Design & Engineering Considerations (4-Column Architecture)

High-Precision Guidance & Parallelism: Titanium dioxide mineral powders require strict control over compaction uniformity to prevent structural weak points or density gradients. The four-pillar precision-ground column architecture ensures absolute platen parallelism and eliminates lateral play, preventing uneven wall pressures and ensuring consistent block density.

Rigid Load Distribution: Compacting fine mineral powders into high-strength blocks requires continuous high tonnage. The 4-column frame withstands heavy cyclic loads without structural flexing, maintaining exact micro-tolerances between the punches and the die cavity over long operational lifespans.

Abrasion Resistance & Tooling: Because titanium dioxide powders can be abrasive during high-pressure compaction, press tooling, die walls, and punches are engineered with hardened alloy tool steels or specialized wear-resistant carbide inserts to prevent rapid tooling degradation and material contamination.

02 — Technical Specifications

Key Technical Specifications

Feature

Industrial Specification Range

Nominal Compaction Force

40 Tons to 500+ Tons (tailored to block cross-sectional area and target density)

Guide Structure

4 Hard-Chromed, Precision-Ground Steel Pillars with heavy-duty, low-friction bushings

Die & Punch Assembly

Hardened alloy tool steel or specialized wear-resistant carbide inserts designed to handle abrasive mineral powders

Hydraulic Drive

Variable displacement piston pumps or servo-hydraulic systems with smooth proportional pressure control

Control Unit

PLC system with HMI touchscreen interface for programming fill depth, pressing tonnage, dwell time, and automated extraction

03 — Operational Workflow

Operational Workflow

  1. Enclosed Volumetric Feeding: An automated, sealed feed shoe slides precisely over the die cavity to deposit a measured volume of loose brookite powder, minimizing airborne dust and ensuring uniform fill density.
  2. Multi-Stage Compression:
    1. Fast Approach: The top ram lowers quickly to the material surface.
    2. High-Pressure Compaction: The system applies controlled tonnage. A multi-action or dual-punch configuration ensures even particle interlocking and density distribution throughout the depth of the block.
  3. Dwell Phase: Peak pressure is held for a set duration to allow trapped air to evacuate and the mineral particles to firmly settle, minimizing internal stress or cracking.
  4. Controlled Decompression & Ejection: Hydraulic pressure is gradually bled off to prevent surface cracking from elastic springback. A bottom ejection cylinder then cleanly pushes the solid brookite block out of the die cavity for downstream sintering, curing, or packaging.

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