Applicable materials:River pebbles, calcite, quartz stone, marble, pebbles, bentonite, iron ore, bluestone, mountain stone, water slag, limestone, weathered sand, diabase, granite, basalt, etc.
Application scope:River pebbles, calcite, quartz, marble, cobblestone, bentonite, iron ore, bluestone, mountain stone, slag, limestone, weathered sand, diabase, granite, basalt, etc.
The High Pressure Roller Mill (HPRM) is an advanced piece of equipment used for material crushing and grinding, widely applied in mineral processing, industry, and cement production. This article will delve into the features, advantages, and applications of High Pressure Roller Mills across various industries.
The HPRM boasts the following remarkable features:
With technological advancements, the design and materials of the HPRM have seen continuous innovation. For example, the use of new wear-resistant materials has improved the equipment’s durability and lifespan. The introduction of intelligent control systems has enabled real-time monitoring and automation of equipment operations.
The High Pressure Roller Mill (HPRM) stands out as an efficient and energy-saving crushing device that plays a crucial role in mineral processing, industrial, and cement production. Its high crushing ratio, low energy consumption, and broad applicability make it an ideal choice for meeting various crushing needs. If you have more inquiries or requirements regarding the High Pressure Roller Mill, please feel free to contact our sales manager for professional advice and detailed information.
Explore the endless possibilities of High Pressure Roller Mill to enhance your production efficiency and meet your diverse needs.
Customized Crushing Solution for Your Raw Materials
chat online150-300TPH double roller crusher operates through rollers. The mountain stone put into the machine through the inlet, are crushed by the squeezing between the rollers. The discharge size can be controlled by adjusting the gap between the two rollers. If the gap becomes larger, the discharged size becomes larger. While the gap becomes smaller by compressing spring, the discharge size also becomes smaller.
Specification and model
|
Roll diameter (mm) |
Feed size (mm) |
Productive capacity (t/h) |
2PGT400×250
|
φ400
|
≤25
|
2-10
|
2PGT400×400
|
φ400
|
≤25
|
5-12
|
2PGT610×400
|
φ610
|
≤30
|
5-20
|
2PGT750×500
|
φ750
|
≤30
|
10-40
|
2PGT800×600
|
φ800
|
≤40
|
12-50
|
2PGY800×800
|
φ800
|
≤40
|
40-50
|
2PGY800×1000 |
φ800
|
≤40
|
50-80
|
2PGY1000×800
|
φ1000
|
≤40
|
50-80
|
2PGY1000×1000
|
φ1000
|
≤40
|
80-100
|
2PGY1200×1000
|
φ1200
|
≤60
|
100-120
|
2PGY1200×1200
|
φ1200
|
≤60
|
120-150
|
2PGY1500×1000
|
φ1500
|
≤80
|
150-200
|
2PGY1500×1200
|
φ1500
|
≤80
|
200-250
|
2PGY1800×1000
|
φ1800
|
≤100
|
250-300
|
2PGY2000×1200
|
φ2000
|
≤120
|
300-400
|
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