Configuration solution for a 500-ton-per-hour basalt production line

Output: 500T/H Configuration: ZG1538 feeder, PE1200*1500 jaw crusher, PF1315 impact crusher, two sets of vibrating screens. Program Introduction: Basalt is the best material for repairing highways, railways, and airport runways. Basalt has advantages...

Configuration solution for a 500-ton-per-hour basalt production line

Output: 500T/H

Configuration: ZG1538 feeder, PE1200*1500 jaw crusher, PF1315 impact crusher, two sets of vibrating screens.

Program Introduction: Basalt is the best material for repairing highways, railways, and airport runways. Basalt has advantages such as low water absorption, poor electrical conductivity, high compressive strength, low crushing value, strong corrosion resistance, and good asphalt adhesion. It is internationally recognized as a good foundation for the development of railway and highway transportation.

Production Line Details

Basalt is a basic volcanic rock. Its main components are silicon dioxide, aluminum oxide, iron oxide, calcium oxide, and magnesium oxide (with small amounts of potassium oxide and sodium oxide). Silicon dioxide is the most abundant component, accounting for approximately 45% to 50%. Basalt is mostly black, dark brown, or dark green. Due to its large particle size, mined basalt material often needs to be crushed into smaller pieces for use in actual production and construction.

configuration solution for a 500 ton per hour basalt production line-0

500 TPH Basalt Crushing and Screening Plant Overview

configuration solution for a 500 ton per hour basalt production line-1

Basalt Aggregate Stockpiles and Processing Area

configuration solution for a 500 ton per hour basalt production line-2

Basalt Crushing Production Line Flow Chart

configuration solution for a 500 ton per hour basalt production line-3

Fully Operational 500 TPH Basalt Production Line

The following is a detailed explanation of the configuration of a common 500T/H basalt production line.

The limestone mined from the mine is fed into the hopper by loaders and trucks. Underneath the hopper, a ZG1538 vibrating feeder evenly feeds the material into a PPE1200*1500 jaw crusher. The crushed mixture is then fed into a PF1315 impact crusher for secondary crushing and shaping. The mixture after secondary crushing and shaping enters a 3YK2670 vibrating screen for primary screening. Unqualified large pieces are returned to a PF1315 impact crusher to produce one type of finished material. The undersize mixture enters a second vibrating screen, a 2YK2670, for secondary screening. The finished stone from the second screening is stacked using a belt conveyor.

Prev

None

All Solutions Next

Configuration solution for a limestone production line with a capacity of 1500 tons per hour.