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Mining anti-explosion trackless rubber tire vehicle chassis

A trackless rubber-tired vehicle, mining explosion-proof technology, applied in the directions of axles, wheels, vehicle parts, etc., can solve the problems of insufficient use of road adhesion traction, difficulty in adapting to uneven road surfaces, poor vehicle smoothness, etc., and achieve anti-distortion. Strong ability, increase the ground adhesion, avoid the effect of impact bump damage

Inactive Publication Date: 2014-08-06
山西研弘煤机设备有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] 1. The chassis relies on the frame to carry the load on the vehicle, the center of gravity of the vehicle is high, and the anti-torsion ability is poor;
[0004] 2. The application of rigid through-bridge makes the ride comfort of the whole vehicle poor; even with all-wheel drive, because of the characteristics of rigid through-bridge, it is difficult to adapt to uneven road surfaces and cannot make full use of road adhesion to provide greater traction

Method used

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  • Mining anti-explosion trackless rubber tire vehicle chassis
  • Mining anti-explosion trackless rubber tire vehicle chassis
  • Mining anti-explosion trackless rubber tire vehicle chassis

Examples

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Embodiment Construction

[0018] Such as figure 1 and figure 2 As shown, a mining explosion-proof trackless rubber-tyred vehicle chassis includes an explosion-proof engine 1 located above the front axle 21, a gearbox 2 connected to the explosion-proof engine 1 through a main drive shaft 4, and is located between the front axle 21 and the rear axle 13. The transfer case 16 at the middle rear part, the rear axle planetary gear differential 14 installed on the front end of the rear axle 13, the rear axle 13, the rear service brake 11 connected with the rear end of the rear axle through the rear brake shaft 10, installed on the front The front axle planetary gear differential 20 at the axle rear end, the front axle 21, and the front service brake 24 connected to the front end of the front axle through the front brake shaft 23; the upper rear end of the transfer case 16 is connected with the parking brake 5; The rear output end of the lower part of the transfer case 16 is connected to the rear axle planet...

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Abstract

The invention relates to a mining anti-explosion trackless rubber tire vehicle chassis, belonging to the technical field of coal mine trackless auxiliary transport devices; the mining anti-explosion trackless rubber tire vehicle chassis comprises an anti-explosion engine arranged above a front axle, a gearbox connected with the anti-explosion engine, a main transmission shaft, a power divider arranged on the middle-rear part between the front axle and the rear axle, a rear axle planetary differential arranged on the front end of the rear axle, the rear axle, a rear service brake connected with the rear end of the rear axle through a rear brake shaft, a front axle planetary differential arranged on the rear end of the front axle, the front axle, and a front service brake connected with the front end of the front axle through a front brake shaft; and the mining anti-explosion trackless rubber tire vehicle chassis is characterized by realizing convertible all-wheel drive and rear wheel drive, non-differential and differential conversion of rear wheels, backbone beam type structure, flexible front and rear axles, and independent suspension device.

Description

technical field [0001] The invention belongs to the technical field of mine explosion-proof vehicle chassis, and in particular relates to a mine explosion-proof trackless rubber-tyred vehicle chassis. Background technique [0002] Mining explosion-proof trackless rubber-tyred vehicles are widely used in the transportation of personnel, materials, equipment, etc. entering and leaving the mine. The chassis technologies of trackless rubber-tyred vehicles currently used include: using a non-driven integral steering axle and a mechanically driven rigid through-axle; using an all-wheel drive with a mechanically driven rigid through-bridge. The prior art has the following deficiencies: [0003] 1. The chassis relies on the frame to carry the load on the vehicle, the center of gravity of the vehicle is high, and the ability to resist twisting is poor; [0004] 2. The application of the rigid through-bridge makes the ride comfort of the vehicle poor; even with all-wheel drive, it is...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B60K17/344B60G3/18B60B35/12
Inventor 杨文清其他发明人请求不公开姓名
Owner 山西研弘煤机设备有限公司
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