一种用于混凝土块自动化检测系统的废料装载运输车

By optimizing the structural design of the loading and transport vehicle and adopting technologies such as rectangular frames, universal wheels, and ergonomic handles, the shortcomings of the loading and transport vehicle in terms of stability, operability, and load-bearing capacity have been solved, achieving more efficient and safer transportation results.

CN224511204UActive Publication Date: 2026-07-17SHANDONG TIEZHENG PROJECT EXPERIMENT & INSPECTION CENT +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-12
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing loading and transport vehicles are inadequate in terms of stability, operability, and load-bearing capacity. They are particularly prone to tilting when carrying heavy or uneven loads, making them inconvenient to operate and difficult to turn, thus failing to meet the diverse needs of modern automated industrial environments.

Method used

The rectangular frame structure, casters, bearings, tipping control mechanism, and ergonomically designed push-pull handles improve vehicle stability and ease of operation, and enhance the stability and flexibility of the tipping bucket.

Benefits of technology

It improves the stability and ease of operation of loading and transport vehicles, reduces the labor intensity of operators, increases transportation efficiency and load-bearing capacity, and reduces cargo damage and operational risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种用于混凝土块自动化检测系统的废料装载运输车,整体呈箱式四轮推车结构,由车架、翻斗和有可脚踏操作的翻斗控制机构构成。所述车架由横撑、纵撑和竖撑连接形成矩形框架结构,所述竖撑连接安装板,所述安装板上设置有万向轮和固定轮;所述车架顶端设置有轴承和压紧把手,所述压紧把手对称设置于横撑顶部两侧。所述翻斗通过轴承设置于所述车架上,整体呈矩形结构,且一侧低于其他侧形成倾斜结构,顶端前后两侧设有推拉把手。所述翻斗控制机构设置于横撑与翻斗之间,包括销轴、弹簧和脚踏板,所述销轴经连接杆与脚踏板连接,所述弹簧位于连接杆内侧,用于翻斗卸料后复位。所述装载运输车结构稳定,可与AGV小车配合作业。
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Claims

1. A waste loading and transport vehicle for an automated concrete block inspection system, characterized in that: The device includes a frame, a tipping bucket, and a tipping bucket control mechanism. The frame includes horizontal braces, longitudinal braces, and vertical braces. The vertical braces are located at the bottom of the frame and are connected to a mounting plate. The mounting plate is connected to casters and fixed wheels. The top of the frame has a bearing and a clamping handle. The clamping handles are symmetrically distributed on both sides of the top of the horizontal braces. The bearing is located between the tipping bucket and the frame, and its top is connected to the tipping bucket. The right side of the tipping bucket has an inclined wall. The top of the tipping bucket has a push-pull handle, which is located on the front and rear sides of the tipping bucket. The tipping bucket control mechanism is located between the horizontal braces and the tipping bucket.

2. A waste loading transport vehicle for an automated concrete block inspection system according to claim 1, wherein, The tipping bucket control mechanism includes a pin, a spring, and a foot pedal. The pin is mounted on the tipping bucket and connected to the foot pedal via a connecting rod. The foot pedal is mounted on the cross brace. The spring is located inside the connecting rod.

3. A waste loading transport vehicle for an automated concrete block inspection system as defined in claim 1, wherein, The frame is formed by connecting the horizontal brace, the vertical brace and the longitudinal brace to form a rectangular frame structure. Combined with the swivel casters and the fixed wheels, the swivel casters are located on one side of the frame and the fixed wheels are located on the other side of the frame to ensure anti-rollover capability under high load.

4. A waste loading transport vehicle for an automated concrete block inspection system as defined in claim 1, wherein, The push-pull handle is ergonomically designed, making it easy to operate and reducing the labor intensity of operators.

5. A waste loading transport vehicle for an automated concrete block inspection system as defined in claim 1, wherein, One side of the tipping bucket is tilted and its height is lower than the other sides.

6. A waste loading transport vehicle for an automated concrete block inspection system as defined in claim 1, wherein, The bearing connects the tipper and the frame, and the connection of the bearing allows the tipper to have a greater tilt angle.

7. A waste loading transport vehicle for an automated concrete block inspection system as defined in claim 1, wherein, The top of the cross brace is provided with the clamping handle, which is symmetrically distributed to fix the tipping bucket and enhance its stability.

8. A waste loading transport vehicle for an automated concrete block inspection system according to claim 1, wherein, The loading and transport vehicle works in conjunction with the AGV (Automated Guided Vehicle) to complete automated operations.