Structure of ardealite slag discharging field and preparation method of structure

A technology of phosphogypsum and slag discharge field, which is used in manufacturing tools, ceramic forming workshops, ceramic forming machines, etc., can solve the problem of shortening belt frame, belt service life, high risk factor of slag discharge operators, and adaptability of belt conveyor frame. It can reduce the input cost, reduce the slope height, and reduce the risk factor.

Active Publication Date: 2017-02-01
GUIZHOU KAILIN GRP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the wet-process phosphoric acid production process, a large amount of phosphogypsum waste residue will be produced, but due to the long-term discharge of phosphogypsum waste residue in the phosphogypsum slag discharge site, the piled material will cause a high slope of the slag discharge site, and now The belt conveyor setting methods in the prior art are all set from top to bottom or horizontally, so that it can achieve the purpose of reducing energy consumption, and in the above-mentioned setting process, the belt conveyor frame is set so that the belt conveyor frame can Adapt to the height of the slag discharge field, and then achieve the purpose of slag discharge and reduce energy consumption; however, the above-mentioned settings easily cause the belt frame to be unstable, making the belt frame easily deformed, and shortening the service life of the belt frame and belt ; And it also makes the risk factor of slag discharge workers higher
[0003] For this reason, many steel products and steel bars are used in the prior art to improve

Method used

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  • Structure of ardealite slag discharging field and preparation method of structure
  • Structure of ardealite slag discharging field and preparation method of structure
  • Structure of ardealite slag discharging field and preparation method of structure

Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0036] Example 1

[0037] Such as figure 1 As shown, a structure of a phosphogypsum slag discharge yard is provided with a base layer 2, which is stepped. On the same step as the base layer 2, there are a rolling layer 1 and a high tower 3, and the rolling layer 1 is located at the high Before tower 3, prefabricated slabs 7 are laid on the upper surface of rolled layer 1; there is a gap between rolled layer 1 and high tower 3 on the next step, and it forms a pit with base layer 2; the top of high tower 3 is set Platform 4; the prefabricated board 7 is close to the end of the high tower 3 on the same step is provided with a first motor 5, a third motor 9 is provided in the above-mentioned pit, and a first motor 5 is provided on the platform 4 directly opposite to the first motor 5 The second motor 8, the first motor 5, the second motor 8, and the third motor 9 are connected by a conveyor belt 6. In the process of slagging, the conveyor belt 6 carries out slagging in the direction...

Example Embodiment

[0038] Example 2

[0039] Such as figure 2 As shown, on the basis of Example 1, everything else is the same as Example 1, a structure of a phosphogypsum slag discharge field. The rolled layer 1 is inclined to the end of the high tower 3 on the same step and is The horizontal plane of the base layer 2 forms an angle α. The size of the included angle is determined by the structure of the rolled layer, especially by the length of the rolled layer, and the height g of the rolled layer near the end of the high tower and the height e away from the 3 end of the high tower are stable and determined , When the length of the rolled layer is longer, the angle will be smaller.

[0040] In addition, the included angle can also be determined by the thickness of the rolled layer after determining the length of the rolled layer in the process of determining.

Example Embodiment

[0041] Example 3

[0042] Such as figure 2 , 3 As shown in 4, on the basis of embodiment 1, the others are the same as in embodiment 1, a structure of a phosphogypsum slag discharge yard, and the end surface of the rolled layer 1 near the end of the high tower 3 on the same step is trapezoidal , The lower base length f is 8m, the upper base length d is 6m, and the height g is 1.5m; the end face of the rolled layer 1 away from the high tower 3 on the same step is trapezoidal, the lower base length f is 8m, and the upper base length d is 6m, height e is 4m. The pit is 10m deep; the third motor 9 is arranged on the bottom of the pit. The distance b from the center of the third motor 9 to the horizontal plane of the platform 4 is 8 m. The step horizontal distance c from the center of the second motor 8 to the base layer 2 is 12 m. The distance a between the center of the first motor 5 and the center of the second motor 8 is 80 m. The length of the rolled layer 1 is 60-70m.

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Abstract

The invention relates to the technical field of ardealite slag discharging field structures, in particular to a structure of an ardealite slag discharging field and a preparation method of the structure. By obliquely arranging a compacted layer, in the process of ardealite slag discharging treatment of the slag discharging field, a belt conveyor can effectively convey materials upwards, and a third motor is arranged in a pit in a combined mode, so that the power consumption of conveying with the belt conveyor is reduced; the stability of the belt conveyor in the conveying process is improved, deformation of a rack of the belt conveyor can be reduced, and the safety coefficient is increased; and by arranging the compacted layer, the rack of the belt conveyor can effectively adapt to various slag discharging fields, and the input cost of the rack of the belt conveyor is reduced.

Description

technical field [0001] The invention relates to the technical field of phosphogypsum slag discharge yard structure, in particular to a structure of phosphogypsum slag discharge yard and a preparation method thereof. Background technique [0002] In the wet-process phosphoric acid production process, a large amount of phosphogypsum waste residue will be produced, but due to the long-term discharge of phosphogypsum waste residue in the phosphogypsum slag discharge site, the piled material will cause a high slope of the slag discharge site, and now The belt conveyor setting methods in the prior art are all set from top to bottom or horizontally, so that it can achieve the purpose of reducing energy consumption, and in the above-mentioned setting process, the belt conveyor frame is set so that the belt conveyor frame can Adapt to the height of the slag discharge field, and then achieve the purpose of slag discharge and reduce energy consumption; however, the above-mentioned sett...

Claims

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Application Information

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IPC IPC(8): B28B15/00C04B28/14
CPCB28B15/00C04B28/143C04B7/00C04B14/02C04B18/24
Inventor 秦勇甘贵
Owner GUIZHOU KAILIN GRP CO LTD
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