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A whole-process single-machine crushing production line

A production line and full-process technology, applied in the direction of grain processing, etc., can solve the problems of increasing the input cost and operating power consumption of conveying equipment, the large area occupied by the crushing production line, and the inconvenient unified use and management, etc., to achieve compact structure, light weight, The effect of simplifying the number of devices

Inactive Publication Date: 2016-04-13
YIWU BLACK AND WHITE MINING MACHINERY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] (1) A conveyor must be used to complete the logistics transportation between each section of crushing operation, which increases the input cost and operating power consumption of the conveying equipment
[0009] (2) It occupies a large area. Since the conveyor has a conveying upper limit angle (generally <18°, the material will drop if the angle is too large), and the crusher equipment and machine base have a certain height, so the length of each conveyor is the same. Up to 20-35m
The entire crushing production line occupies a large area
[0010] (3) The equipment is installed and operated at a distance, which is not convenient for unified use and management
[0014] However, the fly in the ointment is that the functions (equipment) contained in the "single machine crushing production line" have "beginning" but no "end".

Method used

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  • A whole-process single-machine crushing production line
  • A whole-process single-machine crushing production line
  • A whole-process single-machine crushing production line

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0081] Embodiment 1: as Figure 5 As shown, a full-range single-machine crushing production line includes a feeding box 14, a frame 1, a base 2, a vibrating box 4, a stand 3 and a transmission device, the feeding box 14, the frame 1, and a base 2 and the vibration box body 4 are combined into one from top to bottom.

[0082] Frame 1 is provided with front transmission gear 15, rear transmission gear 16, transmission wheel 17, front movable jaw 9, front toggle plate 10, front eccentric drive shaft 11, rear movable jaw 12, rear toggle plate 13 and rear eccentric drive shaft 14. The front transmission gear 15 and the rear transmission gear 16 are meshed and connected with the transmission wheel 17, the front eccentric drive shaft 11 is connected with the front transmission gear 15, and the rear eccentric drive shaft 14 is connected with the rear transmission gear 16. The front movable jaw 9 is pivotally connected to the front eccentric drive shaft 11 , and the rear movable jaw ...

Embodiment 2

[0089] Embodiment 2: as Figure 8 As shown, the base 2 is arranged on the stand 3 through an elastic support mechanism; the elastic support mechanism includes a spring 6 vertically supported between the base 2 and the stand 3 .

[0090] All the other are with embodiment 1.

Embodiment 3

[0091] Embodiment 3: as Figure 6 As shown, the upper movable jaw plate 18 and the lower movable jaw plate 19 are provided on the side of the front movable jaw 9, and the corresponding upper fixed jaw plate 20 and lower fixed jaw plate 21 are arranged on the frame 1; the upper movable jaw plate 18 and the upper movable jaw plate The fixed jaw plates 20 face each other to form an upper crushing cavity, and the angle of the upper crushing cavity is 18 degrees. The lower movable jaw plate 19 and the lower fixed jaw plate 21 face each other to form a lower crushing cavity, and the angle of the lower crushing cavity is 3 degrees.

[0092] The bottom of the front movable jaw 9 is provided with a front movable hammer plate 22, and the frame 1 is provided with a corresponding front fixed hammer plate 23, and the front movable hammer plate 22 and the front fixed hammer plate 23 confront each other to form a rear bottom cavity. The front hammer plates 23 are provided with mesh holes 26...

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PUM

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Abstract

The invention discloses a full-range single-machine crushing production line which comprises a machine frame, a base, a vibration box body and a stand, wherein a crank rocker device is arranged on the machine frame, a set of crushing auxiliaries which form a lateral crushing cavity is arranged on the crank rocker device, and the other set of crushing auxiliaries which form a bottom crushing cavity is also arranged on the crank rocker device; the machine frame, the base and the vibration box body are integrated into a body from top to bottom; the base is arranged on the stand via an elastic supporting structure; a plurality of layers of screens are arranged in the vibration box body. In the invention, an eccentric shaft and a feeding machine in crushing equipment and an excitation shaft and a coaxial shaft in vibration screen equipment are designed into the full-range single-machine crushing production line, the advantage and the disadvantage of the same eccentric shaft are used, and the full-range operation of feeding, crushing and screening are finished by a single machine. Huge energy consumption of feeding, conveying and screening is completely avoided, and the disadvantage of vibration generated by the crushing movement of a crusher is used for finishing the whole operation of the production line, which changes the disadvantage into the advantage.

Description

technical field [0001] The invention relates to the technical field of crushing production equipment, and more specifically relates to a whole-process single-machine crushing production line. Background technique [0002] Crushing operation is the most basic and common operation in the field of mining machinery. Crushed stone and fine sand, the basic building materials in the construction industry, must be crushed. Mining of non-ferrous metal ores must be crushed before grinding and washing. Cement products in the cement industry are also inseparable from the crushing process. [0003] At present, due to the increasing cost of explosives and labor in raw material mining, in order to reduce mining costs, the size of raw materials is getting larger and larger, but the size of finished materials required is getting smaller and smaller, so the gap between raw materials and finished materials The crushing ratio is getting bigger and bigger, and the crushing task can no longer be...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B02C21/00B02C1/02B02C13/04B02C13/28B02C23/00
Inventor 朱兴良
Owner YIWU BLACK AND WHITE MINING MACHINERY