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Iron removal device for mineral processing

A technology of minerals and collection bins, applied in grain processing, magnetic separation, solid separation, etc., can solve the problems that iron cannot be separated, quantitative feeding cannot be carried out, and feeding is too much, so as to avoid uneven feeding and facilitate differentiation. Collect, ensure the effect of validity

Pending Publication Date: 2021-06-25
KUNMING UNIV OF SCI & TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The purpose of the present invention is to provide a mineral processing iron removal device to solve the problem that the mineral processing iron removal device proposed in the above-mentioned background technology cannot carry out quantitative feeding, and it is easy to cause the problem that iron cannot be separated due to excessive feeding

Method used

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  • Iron removal device for mineral processing
  • Iron removal device for mineral processing
  • Iron removal device for mineral processing

Examples

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Embodiment Construction

[0046] see Figure 1-2, an iron removal device for mineral processing, comprising: a main body 1; the main body 1 includes: a main bin 101, the main bin 101 has a rectangular hollow structure, and a mineral collection port 102 is arranged in the middle left side of the main bin 101; a limit slide Rail 103, which is arranged on the lower left side of the main compartment 101, and the limit slide rail 103 is vertically distributed with the main compartment 101, and the limit slide rail 103 is connected to the limit slide block 104 outside; the positioning knob 105, which wears Set on the inner side of the limit slider 104, and two positioning knobs 105 are provided, and the other side of the limit slider 104 is connected with a mineral collection bin 106; the limit slider 104 and the mineral collection bin 106 are fixedly connected , and the mineral collection bin 106 forms a sliding structure between the limit slider 104 and the limit slide rail 103 and the main bin 101. The l...

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Abstract

The invention discloses an iron removal device for mineral processing, and relates to the technical field of mineral processing. The iron removal device comprises a main body, a separation mechanism and a feeding mechanism, the separation mechanism is arranged on the upper side of the interior of the main body, and the upper end of the main body is connected with the feeding mechanism; and the feeding mechanism comprises a feeding bin, and the feeding bin is of a calabash-shaped hollow structure. A conveying belt is integrally formed by the insulating connecting pieces and the electromagnetic rod which are connected at intervals, the conveying belt is driven to rotate by matching a driving wheel with a driving motor, and the electromagnetic rod is electrified by matching conductive pieces arranged at the two ends of the electromagnetic rod, so that the electromagnetic rod adsorbs iron in minerals in the mineral conveying process. When the mineral is conveyed to the left end, the mineral falls into a mineral collecting bin due to the gravity of the mineral, iron continues to be conveyed through adsorption of the electromagnetic rod, when the mineral is conveyed to the notches of the conductive pieces, the electromagnetic rod is powered off, the iron falls into the iron collecting bin due to the gravity of the iron, and the work of separating the iron in the mineral is achieved.

Description

technical field [0001] The invention relates to the technical field of mineral processing, in particular to an iron removal device for mineral processing. Background technique [0002] Minerals are natural compounds with a certain chemical composition, which have stable phase boundaries and crystallization habits. The crystal form and symmetry of minerals are determined by the internal crystallization habit; the hardness, luster and electrical conductivity of minerals are determined by the nature of chemical bonds; the color and specific gravity of minerals are determined by the chemical composition and tightness of bonding of minerals. When identifying minerals, the morphology and physical properties of minerals have become the most commonly used symbols for identifying minerals because of their easy identification. Iron ore is the most common mineral. In the process of iron ore processing, iron in iron ore needs to be separated. to the iron removal device. [0003] The m...

Claims

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Application Information

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IPC IPC(8): B03C1/20B03C1/005B02C4/08B02C4/28B02C4/42
CPCB03C1/20B03C1/005B02C4/08B02C4/28B02C4/42Y02P10/20
Inventor 童雄吴雅菡谢贤张明天
Owner KUNMING UNIV OF SCI & TECH
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