A cylinder structure of a large modular mill

A modular, cylinder technology, applied in the direction of grain processing, etc., can solve the problems of high ball loading rate, incapable of dry grinding, high energy consumption, etc., to achieve convenient processing, manufacturing and transportation, dry grinding and wet grinding universal , the effect of high ball loading rate

Active Publication Date: 2021-05-28
SELM BEIJING TECH CO LTD
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  • Summary
  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The commonly used fine grinding or ultrafine grinding equipment (such as vertical spiral stirring mill or horizontal spiral stirring mill) is only suitable for wet grinding, not dry grinding, and fine grinding or ultrafine grinding The method of increasing the flow velocity of the medium, and using this method of increasing the energy input density to achieve grinding, although this grinding method can achieve fine grinding or ultrafine grinding, but when the flow velocity of the medium increases to a certain extent, both When the linear velocity of the medium is high to a certain extent, there is a plastic deformation of the medium due to the strong extrusion between the media. This plastic deformation will eventually be converted into heat, the energy consumption is too large, and the efficiency of converting the input energy into grinding energy is too high. Low, which also results in high mineral processing costs in the field of fine grinding or ultra-fine grinding wet grinding
[0004] In the existing known technology, there is a kind of equipment used for dry grinding and fine grinding, single-tube vibrating mill or multi-tube vibrating mill. Most of this type of vibrating mill adopts the center drive mode, and the cylinder moves circularly around the center. , this kind of movement mode has the violent collision of the steel ball medium, which leads to excessive energy consumption. At the same time, due to the limitation of the structure and the volume of the cylinder, it is impossible to achieve large-scale industrial production. This kind of vibratory mill can only realize small batches, intermittent The processing of ultra-fine powder also fails to meet the needs of large-scale industrial production, high ball filling rate, low energy consumption, and the mass production of ultra-fine mills that are common to both dry and wet grinding.

Method used

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  • A cylinder structure of a large modular mill
  • A cylinder structure of a large modular mill

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Embodiment 1

[0022] Embodiment 1, a cylinder structure of a large modular mill, including several interconnected cylinders 01 . Such as figure 1 As shown, a wear-resistant liner 02 is laid inside the cylinder 01, and the cylinder 01 is a cylindrical structure with both ends penetrating. End flanges 03 are respectively welded at both ends of the cylinder body 01 , and two adjacent cylinder bodies 01 are connected through the end flanges 03 respectively. At least one annular flange 04 is sheathed on the outer surface of the cylinder 01 , and one side of the cylinder is connected to an excitation device installation base 05 through at least one annular flange 04 , and the excitation device installation base 05 is connected to a vibrator. The other side of the cylinder 01 is connected with a counterweight 06 through at least one annular flange 04, and the counterweight 06 is used to adjust the weight of both sides of the cylinder 01; the lower ends of both sides of the cylinder 01 are respect...

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Abstract

The invention relates to the field of mills, and discloses a cylinder structure of a large modular mill, which includes several cylinders connected to each other. End flanges are respectively connected to the two ends of the cylinders. At least one annular flange, one side of the cylinder is connected to the installation base of the excitation device through at least one annular flange; the other side of the cylinder is connected to a counterweight through at least one annular flange, and the counterweight is used to adjust both sides of the cylinder The weight; the lower ends of both sides of the cylinder are respectively provided with spring bases. The invention adopts a vibrating mill and arranges it horizontally to realize dry and wet grinding. An excitation device is arranged on one side of the cylinder, and a counterweight is arranged on one side. The cylinder structure is provided with a spring base and supported by springs. The large size of the mill is well completed, the processing, manufacturing and transportation are convenient, and the modular design of the mill is realized. The invention has excellent features such as high ball loading rate, low energy consumption, and common use for dry grinding and wet grinding.

Description

technical field [0001] The invention relates to the field of mills, in particular to a cylinder structure of a large modular mill. Background technique [0002] The traditional ball mill in the prior art is a rotating cylinder. The rotating cylinder brings the materials and media (such as steel balls) to a certain height and then discharges downward. During the discharge process, the impact grinding between the medium and the materials is completed. During the impact process, along with the speed difference between the grinding media, there will be a rolling speed difference and a grinding speed difference between the grinding media, so that the material will be finely ground. The traditional ball mill is a grinding equipment mainly based on impact grinding, supplemented by rolling and grinding grinding. The speed at which the material and medium rotate against the cylinder is the critical speed of the traditional ball mill. When the rotational speed of the rotating cylinder...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B02C17/18B02C17/10
CPCB02C17/10B02C17/18
Inventor 贾永
Owner SELM BEIJING TECH CO LTD
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