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详情描述
Grate Cleaning Machines 1) Curved Grate Cleaning Machine: A fixed grate cleaning machine with arc-shaped bars (similar to a 1/4 circle). The rake, driven by the drive unit, pushes the debris up along the arc-shaped bars, achieving debris removal. 2) Inclined Grate Cleaning Machine 3) Vertical Grate Cleaning Machine By rake vertical orientation: 1) Arm Grate Cleaning Machine 2) Chain Grate Cleaning Machine: A cleaning machine with several groups of rakes driven by chains inserted into stationary bars to separate debris from water, model GL. 3) Cable-Pulled Grate Cleaning Machine 4) Rotating Grate Cleaning Machine, also known as a swing grate cleaning machine. No stationary grate; it uses densely packed rakes that, with the movement of the rotating traction chain, retrieve debris from the water, model HF.
Grate Cleaning Machines, classified by installation type
1) Fixed Grating Cleaning Machine 2) Mobile Grating Cleaning Machine 3) Flow-Forward Grating Cleaning Machine 4) Flow-Backward Grating Cleaning Machine
1) Electric-Mechanical Grating Cleaning Machine 2) Pump-Hydraulic Grating Cleaning Machine
1) Automatic Control Grating Cleaning Machines 2) Manual Control Grating Cleaning Machines 3) Automatic-Manual Control Grating Cleaning Machines 4) Water Level Difference Grating Cleaning Machines
1) Coarse Bar Rake Screen Cleaner 2) Fine Bar Rake Screen Cleaner 3) Mesh Rake Screen Cleaner
Grate Cleaning Machine Relevant Standards: CJ/T3065-1997 "Arc Grate Cleaning Machine", HJ/T262-2006 "Technical Requirements for Environmental Protection Products - Grate Cleaning Machine", CJ/T 3048-1995 "Flat Grate Cleaning Machine", JB/T 9046-1999 "Grate Cleaning Machine"
Usage:
Widely used in urban sewage treatment plants, waterworks, and power plant intake, it automatically intercepts and removes floating debris from the water, ensuring the normal operation of downstream processes; it can also be used for solid-liquid separation in textiles, dyeing, coating, leather making, papermaking, sugar production, winemaking, and food processing.
Model Representation Method:
GSHZ-- 1200 X3500 –10
Key Features:
Tightly structured, with simple electrical control for easy automation; excellent corrosion resistance, low energy consumption, and low noise; continuous cleaning action, clean effluent, and high separation efficiency.
Operating Principle:
The equipment consists of special tines made from ABS engineering plastic, nylon, or stainless steel, which are mounted in a specific sequence on a tine shaft to form a closed tine chain. The lower part of the chain is submerged in the water of the inlet channel. As the drive system rotates the sprocket at a constant, directional speed, the entire tine chain moves from top to bottom, separating solid debris from the liquid. The fluid flows out through the gaps between the tines, with the entire operation proceeding continuously.
Due to the unique structural shape of the tines, when the tine chain carries debris to the top for reverse movement, a relative self-cleaning motion occurs between the tines, prompting debris to fall off under gravity. A rotating cleaning brush can be set up at the rear of the equipment to further clean any debris stuck in the tines. Please specify if a purchase order is required.
Technical Specifications:
By equipment width W0 grid machine classification: Single machine GSHZ300-1400 type, parallel machine GSHZ1400-3000 type. Selection is determined by flow rate and lifting height, and different grids are selected according to the size of the separated debris.
| Equipment Width B | 300 | 400 | 500 | 600 | 700 | 800 | 900 | 1000 | 1100 | 1200 | 1300 | 1400 | 1500 | |||||
| Effective Mesh Width B2 | B2=B-160 | |||||||||||||||||
| Total Width of Equipment: B3 | B3=B+350 | |||||||||||||||||
| Effective Aperture | 2、3、5、10、20、30、40、50 | |||||||||||||||||
| Rake Chain Speed | About 2 m/min | |||||||||||||||||
| Motor Power kW | 0.37~0.75 | 0.55~1.1 | 0.75~1.5 | 1.1~2.2 | 1.5~3 | |||||||||||||
| Installation Dimensions | Installation Angle a | 60°、65°、70°、75°、80° | ||||||||||||||||
| Channel Width B1 | B1≧B+70 | |||||||||||||||||
| Channel Deep H | 500~1500 | |||||||||||||||||
| Discharge Height h | $400 to $1,500 (standard at $600) | |||||||||||||||||
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