Air conveying chute (hereinafter referred to as chute) is a pneumatic conveying equipment widely used for conveying dry powdered materials. It is commonly used in the cement industry to transport cement and raw material powder. The inclined groove is made of several ordinary thin steel plates and connected to other accessories with bolts. There is a breathable layer sandwiched between the upper and lower grooves of the groove, and the inclined groove is inclined at a certain angle to the horizontal as a whole.
The upper part of the breathable layer is the material chamber, and the lower part is the gas chamber. When gas with a certain pressure is blown into the gas chamber, it flows through the breathable layer to make the material fluidized. Therefore, the material flows inside the tank like a fluid under the action of gravity, and a ventilation fan is usually used as the air source. The excess air in the material compartment is extracted by the dust collector through the exhaust outlet of the inclined groove.
The inclined chute has no rotating parts in conveying materials, is easy to maintain, has good sealing, is noiseless, operates safely and reliably, consumes less power, is convenient to change the conveying direction, and can feed and unload at multiple points.
The main component of the inclined groove is the breathable layer. The flexible thick (6mm) synthetic fiber fabric used in the design of this series is a new type of breathable layer, which has the advantages of high temperature resistance (up to 150 ℃), corrosion resistance, wear resistance, low moisture absorption, light weight, smooth surface, and long service life. The breathable layer can be installed on site without the need for on-site installation. Each section of the groove is assembled by the manufacturer and connected on site, which reduces installation workload and ensures quality.
The conveying capacity of the inclined chute is shown in the table
Parameter Name Unit Model | XZ-200 | XZ-250 | XZ-315 | XZ-400 | XZ-500 | XZ-630 | XZ-800 | |||
Tank width | mm | 200 | 250 | 315 | 400 | 500 | 630 | 800 | ||
Transportation capacity | a=4° | Cement | t/h | 22 | 40 | 70 | 130 | 220 | 320 | 400 |
Raw material | 16 | 30 | 55 | 100 | 165 | 245 | 310 | |||
a=6° | Cement | 40 | 65 | 120 | 250 | 400 | 610 | 765 | ||
Raw material | 30 | 55 | 90 | 185 | 300 | 455 | 565 | |||
a=8° | Cement | 50 | 8 | 140 | 300 | 470 | 720 | 900 | ||
Raw material | 36 | 65 | 110 | 225 | 355 | 540 | 670 | |||
a=10° | Cement | 30 | 100 | 170 | 380 | 570 | 900 | 1080 | ||
Raw material | 45 | 80 | 140 | 285 | 425 | 670 | 800 | |||
a=12° | Cement | 70 | 120 | 205 | 455 | 685 | 1080 | 1295 | ||
Raw material | 50 | 95 | 165 | 340 | 510 | 805 | 960 |