Assistance type pavement bearing structure paving equipment

By designing a assisted road load-bearing structure paving equipment, and combining a rotating shaft, height adjustment components, and telescopic adjustment components, the equipment's pickup and installation functions are unified, solving the problem of the single function of existing equipment and improving construction efficiency.

CN223660575UActive Publication Date: 2025-12-12CHINA RAILWAY CONSTR HEAVY IND
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Patent Information

Application Number
CN202520282504.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-12-12
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

Existing paving equipment has limited functionality and requires two separate devices for pickup and installation, increasing construction costs and reducing efficiency.

Method used

A power-assisted road surface bearing structure paving equipment was designed, comprising power-assisted mechanical components including a mounting base, a rotating shaft, a height adjustment component, a telescopic adjustment component, and a pickup and installation component. It can realize the linkage of pickup and installation, and is combined with a forklift trolley for picking up and paving material blocks.

Benefits of technology

The equipment achieves multi-functionality, enabling it to simultaneously pick up and install material blocks, improving construction efficiency and adapting to paving needs in different areas.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of paving equipment, in particular to power-assisted pavement bearing structure paving equipment. The equipment comprises a power-assisted mechanical assembly; the power-assisted mechanical assembly comprises a mounting seat, a rotating shaft, a height adjusting part, a telescopic adjusting part and a picking mounting part; the rotating shaft is rotatably arranged on the mounting seat; one end of the height adjusting part is connected with the rotating shaft, and the other end of the height adjusting part is connected with the telescopic adjusting part; the end, away from the height adjusting component, of the telescopic adjusting component is hinged to the pickup mounting component. The power-assisted pavement bearing structure paving equipment provided by the utility model has a picking function and a mounting function, not only can solve the problem of single function of the existing paving equipment, but also can meet the requirements of picking material blocks in different ranges and finish the paving operation of paving areas in different ranges.
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Description

TECHNICAL FIELD

[0001] The utility model relates to paving equipment technical field, concretely relates to a power -assisted road surface bearing structure paving equipment. BACKGROUND

[0002] The installation of road surface bearing structure cannot leave the use of paving equipment. In the installation process of road surface bearing structure, generally involves the picking step and the installation step of road surface bearing structure, and the existing paving equipment mostly only has picking function or installation function, and has the problem of single function. Therefore, in the installation process of road surface bearing structure, two paving equipment are needed to be used separately, one of which is used to complete the picking step of road surface bearing structure, and the other is used to complete the installation step of road surface bearing structure, which not only increases construction cost, but also greatly reduces construction efficiency.

[0003] In summary, it is necessary to provide a power -assisted road surface bearing structure paving equipment with picking function and installation function, to solve the problem of single function of the existing paving equipment. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a power -assisted road surface bearing structure paving equipment, and the specific technical scheme is as follows:

[0005] A power -assisted road surface bearing structure paving equipment, including power -assisted mechanical assembly, the power -assisted mechanical assembly includes mounting seat, rotating shaft, height adjusting part, telescopic adjusting part and picking installation part, the rotating shaft is rotatably arranged on the mounting seat, one end of the height adjusting part is connected with the rotating shaft, and the other end is connected with the telescopic adjusting part, one end of the telescopic adjusting part away from the height adjusting part is hinged with the picking installation part.

[0006] Optionally, the picking installation part includes lifting oil cylinder and suction cup, one end of the lifting oil cylinder is fixed end, and is connected with the telescopic adjusting part, and the other end is operation end, and is connected with the suction cup, the suction cup is connected with the vacuum equipment of outside.

[0007] Optionally, the picking installation part further includes handrail, and the handrail is arranged on the outer shell of the lifting oil cylinder.

[0008] Optionally, the height adjusting part includes first telescopic joint and height adjusting oil cylinder, one end of the first telescopic joint is connected with the rotating shaft, and the other end is hinged with the telescopic adjusting part, one end of the height adjusting oil cylinder is fixed end, and is connected with the mounting seat, and the other end is operation end, and is connected with the telescopic adjusting part.

[0009] Optionally, the first telescopic joint comprises a first joint arm and a second joint arm coaxially arranged with the rotating shaft; one end of the first joint arm is connected with the rotating shaft, and the other end is connected with the second joint arm in a sleeved manner; one end of the second joint arm away from the first joint arm is hingedly connected with the telescopic adjusting component.

[0010] Optionally, the telescopic adjusting component comprises a second telescopic joint and a telescopic oil cylinder; the second telescopic joint comprises a third joint arm and a fourth joint arm coaxially arranged; one end of the third joint arm is hingedly connected with the second joint arm, and the other end is connected with the fourth joint arm in a sleeved manner; one end of the fourth joint arm away from the third joint arm is hingedly connected with the pickup mounting component; one end of the telescopic oil cylinder is a fixed end and is connected with the third joint arm, and the other end is an operation end and is connected with the fourth joint arm.

[0011] Optionally, the power-assisted pavement bearing structure paving device further comprises a mobile carrier; the power-assisted mechanical assembly is arranged on the mobile carrier.

[0012] Optionally, the mobile carrier comprises a forklift trolley.

[0013] Optionally, the forklift trolley comprises a vehicle body and a cab, a vertical guide rail and a lifting platform arranged on the vehicle body; the lifting platform is slidably arranged on the vertical guide rail.

[0014] Optionally, the forklift trolley further comprises a counterweight; the counterweight is arranged on the vehicle body.

[0015] The forklift trolley further comprises a horizontal plate; the horizontal plate is arranged on the lifting platform.

[0016] The technical scheme of the utility model has at least the following beneficial effects:

[0017] (1) The power-assisted pavement bearing structure paving device provided by the utility model adopts a height adjusting component to link a telescopic adjusting component to realize height adjustment of a pickup mounting component, adopts a telescopic adjusting component to realize operation width adjustment of the pickup mounting component through telescopic adjustment, and adopts a rotating shaft to facilitate rotation angle adjustment of the pickup mounting component; the combination of the rotating shaft, the height adjusting component and the telescopic adjusting component can realize pickup of material blocks at different ranges by the pickup mounting component and complete paving work on the paving area at different ranges. The power-assisted pavement bearing structure paving device provided by the utility model has both pickup and mounting functions, can not only solve the single-function problem of existing paving devices, but also meet the pickup of material blocks at different ranges and complete the paving work on the paving area at different ranges.

[0018] (2) The utility model discloses a fork loading trolley is moved to material block area, through drive lifting platform moves to material block bottom fork material block along vertical guide rail, wherein, set up horizontal board on the lifting platform, conveniently provide horizontal load platform, avoid material block slide -down, still can adopt fork loading trolley and transport material block to the paving area.

[0019] In addition to the purposes, features and advantages described above, the utility model has other purposes, features and advantages. The utility model will be further described in detail below with reference to the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0020] The drawings constituting a part of this application are used to provide further understanding of the utility model, and the illustrative embodiments of the utility model and the description thereof are used to explain the utility model, and do not constitute improper limitation on the utility model. In the drawings:

[0021] Figure 1 It is a structure schematic drawing of the power-assisted pavement bearing structure paving equipment operation in an embodiment;

[0022] Figure 2 It is Figure 1 Structure schematic drawing of power-assisted mechanical assembly in

[0023] Figure 3 It is Figure 1 Structure schematic drawing of fork loading trolley in (horizontal board is not shown in the drawing);

[0024] Wherein, 1, power-assisted mechanical assembly, 1.1, mounting seat, 1.2, rotating shaft, 1.3, lifting oil cylinder, 1.4, suction cup, 1.5, handrail, 1.6, first telescopic joint, 1.7, height adjusting oil cylinder, 1.8, second telescopic joint, 1.9, telescopic oil cylinder, 2, fork loading trolley, 2.1, trolley body, 2.2, vertical guide rail, 2.3, lifting platform, 2.4, counterweight, 2.5, horizontal board, A, material block. DETAILED DESCRIPTION

[0025] The technical scheme in the utility model embodiment will be clearly and completely described below with reference to the drawings in the utility model embodiments, and apparently, the described embodiments only are a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skill in the art belong to the range of protection of the utility model.

[0026] Embodiment:

[0027] Referring to Figures 1-3The utility model provides a kind of assisted road surface bearing structure paving equipment, including assisted mechanical assembly 1;The assisted mechanical assembly 1 includes mounting seat 1.1, rotating shaft 1.2, height adjusting component, telescopic adjusting component and pickup mounting component;The rotating shaft 1.2 can be rotatably arranged on the mounting seat 1.1;One end of the height adjusting component is connected with the rotating shaft 1.2, and the other end is connected with the telescopic adjusting component;The end of the telescopic adjusting component away from the height adjusting component is hinged with the pickup mounting component.

[0028] The pickup mounting component includes lifting oil cylinder 1.3 and suction cup 1.4;One end of the lifting oil cylinder 1.3 is fixed end, and is connected with the telescopic adjusting component, and the other end is operation end, and is connected with the suction cup 1.4;The suction cup 1.4 is connected with the vacuum equipment of outside, to provide vacuum suction force when picking up material block A.

[0029] The pickup mounting component further includes handrail 1.5;The handrail 1.5 is arranged on the outer shell of the lifting oil cylinder 1.3, to facilitate the operator to grab handrail 1.5 to accurately complete picking and installing material block A.

[0030] The height adjusting component includes first telescopic joint 1.6 and height adjusting oil cylinder 1.7;One end of the first telescopic joint 1.6 is connected with the rotating shaft 1.2, and the other end is hinged with the telescopic adjusting component;One end of the height adjusting oil cylinder 1.7 is fixed end, and is connected with the mounting seat 1.1, and the other end is operation end, and is connected with the telescopic adjusting component.

[0031] The first telescopic joint 1.6 includes first arm and second arm coaxially arranged with the rotating shaft 1.2;One end of the first arm is connected with the rotating shaft 1.2, and the other end is connected with the second arm sleeve set;The end of the second arm away from the first arm is hinged with the telescopic adjusting component.

[0032] The telescopic adjusting component includes second telescopic joint 1.8 and telescopic oil cylinder 1.9;The second telescopic joint 1.8 includes coaxially arranged third arm and fourth arm;One end of the third arm is hinged with the second arm, and the other end is connected with the fourth arm sleeve set;The end of the fourth arm away from the third arm is hinged with the pickup mounting component;One end of the telescopic oil cylinder 1.9 is fixed end, and is connected with the third arm, and the other end is operation end, and is connected with the fourth arm.

[0033] The assisted pavement load-bearing structure paving equipment further comprises a forklift truck 2; the assisted mechanical assembly 1 is arranged on the forklift truck 2 through the mounting seat 1.1. The forklift truck 2 comprises a vehicle body 2.1 and a cab arranged on the vehicle body 2.1, a vertical guide rail 2.2 and a lifting platform 2.3; the lifting platform 2.3 is slidably arranged on the vertical guide rail 2.2. The forklift truck 2 further comprises counterweights 2.4; the counterweights 2.4 are arranged on the vehicle body 2.1 and arranged on both sides of the vehicle body 2.1 opposite to the lifting platform 2.3; the forklift truck 2 further comprises a horizontal plate 2.5; the horizontal plate 2.5 is arranged on the lifting platform 2.3.

[0034] Referring to Figure 1 , the working process of the assisted pavement load-bearing structure paving equipment is as follows:

[0035] The forklift truck 2 is moved to the material block A area, the lifting platform 2.3 is driven to move to the bottom of the material block A to pick up the material block A, wherein the horizontal plate 2.5 is arranged on the lifting platform 2.3 to provide a horizontal material loading platform and avoid the material block A from falling; then, the forklift truck 2 is used to transport the material block A to the pavement load-bearing structure paving area; according to the height of the material block A on the lifting platform 2.3 and the position of the paving area, the height adjusting cylinder 1.7, the telescopic cylinder 1.9, the lifting cylinder 1.3, the suction cup 1.4, the handrail 1.5 and the rotating shaft 1.2 are combined to realize the picking and installation functions of the material block A.

[0036] During the picking operation, the operator grasps the handrail 1.5 to move the suction cup 1.4 to one side of the lifting platform 2.3 through the rotating shaft 1.2; according to the height of the material block A on the lifting platform 2.3, the height adjusting cylinder 1.7 is started to link the first telescopic section 1.6 to realize the height adjustment of the second telescopic section 1.8, at the same time, the second telescopic section 1.8 links the lifting cylinder 1.3 and the suction cup 1.4 to realize the height adjustment of the suction cup 1.4, until the height of the suction cup 1.4 is adapted to the height of the material block A, the height adjusting cylinder 1.7 stops working; the telescopic cylinder 1.9 links the second telescopic section 1.8 until the telescopic length of the second telescopic section 1.8 can reach the area of the material block A on the lifting platform 2.3; the operator grasps the handrail 1.5 to drive the suction cup 1.4 to pick up the material block A under the action of the slowly descending lifting cylinder 1.3.

[0037] In the installation operation, the operator grasps the handrail 1.5, and through the rotation shaft 1.2, the suction cup 1.4 and the picked material block A are transferred to one side of the paving area; according to the specific position of the paving area, the telescopic oil cylinder 1.9 is used to link the second telescopic section 1.8 until the telescopic length of the second telescopic section 1.8 can reach the paving area; the height adjusting oil cylinder 1.7 is started to link the first telescopic section 1.6 to realize the height adjustment of the second telescopic section 1.8, and at the same time, the second telescopic section 1.8 links the lifting oil cylinder 1.3 and the suction cup 1.4 to realize the height adjustment of the suction cup 1.4, until the height of the material block A on the suction cup 1.4 is close to the paving area, the height adjusting oil cylinder 1.7 is stopped; the operator grasps the handrail 1.5 to drive the suction cup 1.4 to release the material block A and install it on the specific position of the paving area under the slow descending of the lifting oil cylinder 1.3.

[0038] The preferred embodiments of the utility model are described above only, and are not used to limit the utility model, for the person skilled in the art, the utility model can have various changes and changes. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A power-assisted pavement bearing structure paving apparatus, characterized by, The application relates to a power-assisted mechanical assembly (1), which comprises a mounting base (1.1), a rotating shaft (1.2), a height adjusting component, a telescopic adjusting component and a pickup mounting component; the rotating shaft (1.2) is rotatably arranged on the mounting base (1.1); one end of the height adjusting component is connected with the rotating shaft (1.2), and the other end is connected with the telescopic adjusting component; one end of the telescopic adjusting component, which is away from the height adjusting component, is hingedly connected with the pickup mounting component.

2. A force-assisted pavement bearing structure paving apparatus according to claim 1, wherein, The pickup mounting component comprises a lifting oil cylinder (1.3) and a suction disc (1.4); one end of the lifting oil cylinder (1.3) is a fixed end and is connected with the telescopic adjusting component, and the other end is an operation end and is connected with the suction disc (1.4); the suction disc (1.4) is connected with a vacuum device outside.

3. A force-assisted pavement bearing structure paving apparatus according to claim 2, wherein, The pickup mounting component further comprises a handrail (1.5); the handrail (1.5) is arranged on the outer shell of the lifting oil cylinder (1.3).

4. The assistive pavement bearing structure paving apparatus of claim 1, wherein, The height adjusting component comprises a first telescopic joint (1.6) and a height adjusting oil cylinder (1.7); one end of the first telescopic joint (1.6) is connected with the rotating shaft (1.2), and the other end is hingedly connected with the telescopic adjusting component; one end of the height adjusting oil cylinder (1.7) is a fixed end and is connected with the mounting base (1.1), and the other end is an operation end and is connected with the telescopic adjusting component.

5. A force-assisted pavement bearing structure paving apparatus according to claim 4, wherein, The first telescopic joint (1.6) comprises a first joint arm and a second joint arm which are coaxially arranged with the rotating shaft (1.2); one end of the first joint arm is connected with the rotating shaft (1.2), and the other end is connected with the second joint arm in a sleeved mode; one end of the second joint arm, which is away from the first joint arm, is hingedly connected with the telescopic adjusting component.

6. A force-assisted pavement bearing structure paving apparatus according to claim 5, wherein, The telescopic adjusting component comprises a second telescopic joint (1.8) and a telescopic oil cylinder (1.9); the second telescopic joint (1.8) comprises coaxially arranged third and fourth joint arms; one end of the third joint arm is hingedly connected with the second joint arm, and the other end is connected with the fourth joint arm in a sleeved mode; one end of the fourth joint arm, which is away from the third joint arm, is hingedly connected with the pickup mounting component; one end of the telescopic oil cylinder (1.9) is a fixed end and is connected with the third joint arm, and the other end is an operation end and is connected with the fourth joint arm.

7. A power-assisted pavement bearing structure laying apparatus according to any one of claims 1 to 6, characterised in that, Further, a mobile carrier is arranged; the power-assisted mechanical assembly (1) is arranged on the mobile carrier.

8. A force-assisted pavement bearing structure paving apparatus according to claim 7, wherein, The mobile carrier comprises a forklift truck (2).

9. A force-assisted pavement bearing structure paving apparatus according to claim 8, wherein, The forklift truck (2) comprises a vehicle body (2.1), a cab arranged on the vehicle body (2.1), a vertical guide rail (2.2) and a lifting platform (2.3); the lifting platform (2.3) is slidably arranged on the vertical guide rail (2.2).

10. A force-assisted pavement bearing structure paving apparatus according to claim 9, wherein, The forklift truck (2) further comprises a counterweight (2.4); the counterweight (2.4) is arranged on the vehicle body (2.1). The forklift truck (2) further comprises a horizontal plate (2.5); the horizontal plate (2.5) is arranged on the lifting platform (2.3).