Coal port sampling tower spilled coal lifting collection environmental protection vehicle

By designing an environmentally friendly coal ash collection vehicle for coal sampling towers at coal ports, which automatically collects and discharges spilled coal ash using a hydraulic lift and raising mechanism, the problem of coal dust scattering caused by equipment blockage is solved, and environmentally friendly coal ash treatment is achieved.

CN224530518UActive Publication Date: 2026-07-21SDIC CAOFEIDIAN PORT

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SDIC CAOFEIDIAN PORT
Filing Date
2025-07-07
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

During the use of sampling towers at coal ports, equipment blockages caused coal dust to accumulate and spill out. The spilled coal dust fell directly to the ground and was scattered everywhere by the wind, affecting the environment.

Method used

Design an environmentally friendly vehicle for collecting and lifting coal spilled from a coal port sampling tower. The vehicle consists of a fixed base, a hydraulic lift, a housing component, a collection bucket, a lifting mechanism, and a pushing mechanism. The hydraulic lift moves the housing component to the location where the coal ash is spilled. The lifting and pushing mechanisms then automatically collect and discharge the coal ash under inertia.

Benefits of technology

It enables convenient centralized collection and discharge of coal ash, preventing coal dust from scattering and protecting the environment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a coal port sampling tower spilled coal lifting and collecting environmental protection vehicle and belongs to the technical field of sampling tower spilled coal collection. Mainly includes: fixed base, the upper end of the hydraulic elevator is fixedly installed with a containing assembly, the upper end of the containing assembly is fixedly installed with a collecting barrel on one side, the upper end of the containing assembly is movably installed with a cover assembly on the other side, the spilled coal ash is collected through the collecting barrel and the probe slot opened in the upper end of the hollow long box, after the coal ash in the discharge slot is collected, the corresponding cover plate can be used for covering the probe slot, meanwhile, the containing assembly can be moved to the coal ash pouring position through the fixed base and universal wheels, after the corresponding block is opened, one end of the concave sliding block and the built-in flat plate is lifted through the starting electric telescopic rod, so that the coal ash accumulated on the upper end of the built-in flat plate is discharged from the discharge slot under the action of inertia after the built-in flat plate is inclined, and the use is convenient.
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Description

Technical Field

[0001] This utility model relates to the field of coal collection technology from sampling towers, specifically to an environmentally friendly vehicle for lifting and collecting coal spilled from sampling towers at coal ports. Background Technology

[0002] Coal sampling towers at coal ports are core facilities for modern port coal quality testing. They are primarily used to automate, intelligently manage, and unmanned coal sampling operations. Key components of the sampling tower include a sampling head module, a primary sampler, a bucket elevator, a primary feeding and cleaning chain, a vibrator, a waste crusher, a dust removal system and collection (combined with a moisture-proof sample collection tank), and residual material handling (returning waste material to the main material flow via a bucket elevator or screw conveyor). During operation, the numerous pieces of equipment and complex procedures can lead to coal dust accumulation within the sampling tower, which can then spill out.

[0003] Currently, if any equipment in the production process becomes clogged, causing coal dust to accumulate and spill, the spilled coal dust will fall directly to the ground. If it is not collected and treated in a centralized manner, it will be scattered everywhere by the wind, thus affecting the environment.

[0004] It should be noted that the information disclosed in this background section is only for understanding the background technology of this application concept, and therefore may include information that does not constitute prior art. Utility Model Content

[0005] Based on the aforementioned problems in the existing technology, the problem to be solved by this application is to provide an environmentally friendly vehicle for collecting and lifting coal spilled from a coal port sampling tower. This addresses the issue that when equipment blockage occurs during the production process, leading to the accumulation and spillage of coal dust, the spilled coal dust falls directly to the ground. If it is not collected and treated centrally, the coal dust will scatter everywhere under the influence of wind, thus affecting the environment.

[0006] The technical solution adopted by this application to solve its technical problem is: a coal port sampling tower spill coal lifting and collection environmental protection vehicle, including a fixed base and universal wheels respectively fixedly installed at the four corners of the lower end of the fixed base. A hydraulic lift is fixedly installed at the upper end of the fixed base. A controller is set on one side of the hydraulic lift. A receiving component is fixedly installed at the upper end of the hydraulic lift. A collection bucket is fixedly installed on one side of the upper end of the receiving component. A sealing component is movably installed on the other side of the upper end of the receiving component. A box cover component is hinged to one side of the outer wall of the receiving component through a hinge.

[0007] The receiving component includes a hollow elongated box and a lifting mechanism that is movably mounted on the upper part of the bottom surface of the hollow elongated box. The lifting mechanism is configured to concentrate and discharge the coal ash accumulated in the hollow elongated box. A pushing mechanism is slidably mounted on the upper end of the lifting mechanism. The pushing mechanism is configured to automatically push and discharge the coal ash accumulated on the upper end of the lifting mechanism under the action of inertia when the lifting mechanism changes angle.

[0008] Furthermore, an insertion groove is provided in the middle of one side of the upper end of the hollow long box, and a discharge groove is provided in the middle of one side of the outer wall of the hollow long box. Multiple square empty blocks are provided linearly and equally spaced on one side of the opening of the discharge groove.

[0009] Furthermore, the lifting mechanism includes a built-in plate and sliding grooves formed on both sides of the upper end of the built-in plate. A connecting groove is formed on the lower side of one end of the sliding groove, and a slot is formed in the middle of one side of the inner wall of the sliding groove. A connecting shaft is movably installed at the lower end of one end of the built-in plate.

[0010] Furthermore, concave sliding blocks are fixedly installed on both sides of the lower end of the built-in flat plate. An H-shaped round rod is slidably installed in the inner cavity of the concave sliding block. A connecting block is movably installed in the middle of the outer surface of the H-shaped round rod. An electric telescopic rod is fixedly installed at the lower end of the connecting block.

[0011] Furthermore, the pushing mechanism includes a moving block and T-shaped sliders fixedly installed on both sides of the lower end of the moving block.

[0012] Furthermore, the sealing assembly includes a corresponding cover plate and handles fixedly installed on both sides of the upper end of the corresponding cover plate.

[0013] Furthermore, the box cover assembly includes a corresponding block and a hollow cube fixedly installed on one side of the outer wall of the corresponding block, with screws threaded into the inner cavity of the hollow cube.

[0014] The beneficial effects of this application are: the coal port sampling tower coal spillage lifting and collection environmental protection vehicle provided by this application, through the coordinated use of a fixed base, hydraulic lift, receiving component, collection bucket, discharge trough, electric telescopic rod, concave sliding block and built-in plate, so that the coal ash accumulated on the upper part of the built-in plate is automatically discharged from the discharge trough under the action of inertia after the built-in plate tilts, which is convenient to use.

[0015] In addition to the purposes, features, and advantages described above, this application has other purposes, features, and advantages. A further detailed description of this application will be provided below with reference to the figures. Attached Figure Description

[0016] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments and descriptions of this application are used to explain this application and do not constitute an undue limitation of this application. In the drawings:

[0017] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model;

[0018] Figure 2 This is a three-dimensional structural diagram of the housing component of this utility model;

[0019] Figure 3 For the present utility model Figure 2 Enlarged view of point A;

[0020] Figure 4 This is a three-dimensional structural diagram of the lifting mechanism of this utility model;

[0021] Figure 5 For the present utility model Figure 4 Enlarged view of point B.

[0022] The following are the labeling elements in the figure:

[0023] 1. Fixed base; 2. Casters; 3. Hydraulic lift; 4. Controller; 5. Receiving assembly; 51. Hollow long box; 511. Insertion slot; 512. Discharge slot; 513. Square empty block; 52. Lifting mechanism; 521. Built-in flat plate; 522. Sliding groove; 523. Connecting groove; 524. Slot; 525. Connecting shaft; 526. Concave sliding block; 527. H-shaped round rod; 528. Connecting block; 529. Electric telescopic rod; 53. Pushing mechanism; 531. Moving block; 532. T-shaped slider; 6. Collection bucket; 7. Cover assembly; 71. Corresponding cover plate; 72. Handle; 8. Box cover assembly; 81. Corresponding block; 82. Hollow square block; 83. Screw. Detailed Implementation

[0024] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0025] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0026] like Figures 1-2As shown, a coal port sampling tower spillage collection and environmental protection vehicle includes a fixed base 1 and casters 2 fixedly installed at the four corners of the lower end of the fixed base 1. A hydraulic lift 3 is fixedly installed on the upper end of the fixed base 1. A controller 4 is provided on one side of the hydraulic lift 3 to control the lifting and adjusting of the hydraulic lift 3. A receiving component 5 is fixedly installed on the upper end of the hydraulic lift 3. A collection bucket 6 is fixedly installed on one side of the upper end of the receiving component 5. The collection bucket 6 is set to collect coal ash into the inner cavity of the receiving component 5. A sealing component 7 is movably installed on the other side of the upper end of the receiving component 5 to seal the slot at the upper end of the receiving component 5. A box cover component 8 is hinged to one side of the outer wall of the receiving component 5 to control the opening and closing of the discharge port of the receiving component 5.

[0027] Hydraulic lift 3 is a current technology and is not limited here. It can be installed by purchasing finished products from the market, such as DP series push-pull force gauges.

[0028] The receiving component 5 includes a hollow elongated box 51 and a lifting mechanism 52 that is movably mounted on the upper part of the bottom surface of the inner cavity of the hollow elongated box 51. The lifting mechanism 52 is configured to concentrate and discharge the coal ash accumulated in the inner cavity of the hollow elongated box 51. A pushing mechanism 53 is slidably mounted on the upper end of the lifting mechanism 52. The pushing mechanism 53 is configured to automatically push and discharge the coal ash accumulated on the upper end of the lifting mechanism 52 under the action of inertia when the angle of the lifting mechanism 52 changes.

[0029] like Figure 3 As shown, a probe groove 511 is provided in the middle of one side of the upper end of the hollow long box 51. The probe groove 511 is designed to be used in conjunction with the collection bucket 6 to collect coal ash. A discharge groove 512 is provided in the middle of one side of the outer wall of the hollow long box 51. The discharge groove 512 is designed to be used to centrally discharge the collected coal ash. Multiple square empty blocks 513 are provided linearly and equally spaced on one side of the opening of the discharge groove 512.

[0030] like Figure 5 As shown, concave sliding blocks 526 are fixedly installed on both sides of the lower end of the built-in flat plate 521. An H-shaped round rod 527 is slidably installed in the inner cavity of the concave sliding block 526. A connecting block 528 is movably installed in the middle of the outer surface of the H-shaped round rod 527. An electric telescopic rod 529 is fixedly installed at the lower end of the connecting block 528. The electric telescopic rod 529 is designed to drive the connecting block 528 to rise, so that the H-shaped round rod 527 movably installed in the middle of the connecting block 528 is movably installed in the inner cavity of the concave sliding block 526.

[0031] like Figure 2As shown, the sealing assembly 7 includes a corresponding cover plate 71 and handles 72 fixedly installed on both sides of the upper end of the corresponding cover plate 71. The corresponding cover plate 71 is movably installed on the upper end of the probe groove 511 and is sealed thereon.

[0032] The box cover assembly 8 includes a corresponding block 81 and a hollow square block 82 fixedly installed on one side of the outer wall of the corresponding block 81. The other side of the corresponding block 81 is movably installed on one side of the outlet groove 512 through a hinge limit. A screw 83 is threadedly connected in the inner cavity of the hollow square block 82. The hollow square block 82 and the square empty block 513 are correspondingly set and pass through the center. The screw 83 passes through the mating nut for threaded fixation.

[0033] In this application, the fixed base 1 drives the hydraulic lift 3, the receiving component 5, and the collection bucket 6 to the position where the coal ash falls. The collection bucket 6 and the probe groove 511 opened on the upper end of the hollow long box 51 collect the scattered coal ash. After the coal ash in the discharge groove 512 is full, the probe groove 511 can be sealed by the corresponding cover plate 71. At the same time, the fixed base 1 and the universal wheels 2 move the receiving component 5 to the coal ash dumping position. After opening the corresponding block 81, the electric telescopic rod 529 is activated to drive the concave sliding block 526 and one end of the built-in plate 521 to be lifted. Thus, the coal ash accumulated on the upper end of the built-in plate 521 is automatically discharged from the discharge groove 512 under the action of inertia after the built-in plate 521 tilts. It is convenient to use.

[0034] like Figure 4 As shown, the lifting mechanism 52 includes a built-in plate 521 and sliding grooves 522 opened on both sides of the upper end of the built-in plate 521. A connecting groove 523 is opened on the lower side of one end of the groove of the sliding groove 522. The connecting groove 523 is set to facilitate the discharge of coal ash accumulated in the inner cavity of the sliding groove 522. A retaining groove 524 is opened in the middle of one side of the inner wall of the sliding groove 522. The retaining groove 524 is set to limit and fix the T-shaped slider 532. A connecting shaft 525 is movably installed on the lower end of one end of the built-in plate 521. The two ends of the connecting shaft 525 are movably installed on both sides of the lower end of the inner wall of the discharge groove 512.

[0035] like Figure 5 As shown, the pushing mechanism 53 includes a moving block 531 and T-shaped sliders 532 fixedly installed on both sides of the lower end of the moving block 531. The T-shaped sliders 532 are slidably installed in the inner cavities of the sliding groove 522 and the slot 524, respectively, so that the moving block 531 moves and sets its position following the inertia of the built-in flat plate 521.

[0036] In this application, after one end of the built-in plate 521 is lifted by the electric telescopic rod 529, the movable block 531, which is slidably installed on one side of the upper end of the built-in plate 521, will automatically slide down under the action of inertia, thereby scraping off the coal ash accumulated on the upper end of the built-in plate 521, accelerating the feeding speed of the coal ash, and cleaning the accumulated ash on the upper end of the built-in plate 521.

[0037] In summary: Through the coordinated arrangement of the fixed base 1, hydraulic lift 3, receiving component 5, collection bucket 6, insertion groove 511, discharge groove 512, corresponding cover plate 71, electric telescopic rod 529, and concave sliding block 526, the coal ash accumulated on the upper part of the built-in plate 521 is automatically discharged from the discharge groove 512 under the action of inertia after the built-in plate 521 tilts. Through the coordinated arrangement of the built-in plate 521 and the moving block 531, the coal ash accumulated on the upper part of the built-in plate 521 is scraped off, and the accumulated ash on the upper part of the built-in plate 521 can be cleaned.

[0038] The above are merely preferred embodiments of this application and are not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A coal port sampling tower spill coal lifting and collection environmental protection vehicle, comprising a fixed base (1) and casters (2) respectively fixedly installed at the four corners of the lower end of the fixed base (1), a hydraulic lift (3) fixedly installed at the upper end of the fixed base (1), and a controller (4) provided on one side of the hydraulic lift (3), characterized in that: The upper end of the hydraulic lift (3) is fixedly installed with a receiving component (5), a collection bucket (6) is fixedly installed on one side of the upper end of the receiving component (5), a cover component (7) is movably installed on the other side of the upper end of the receiving component (5), and a box cover component (8) is hinged to one side of the outer wall of the receiving component (5). The receiving component (5) includes a hollow elongated box (51) and a lifting mechanism (52) that is movably mounted on the upper end of the bottom surface of the hollow elongated box (51). The lifting mechanism (52) is configured to concentrate and discharge the coal ash accumulated in the hollow elongated box (51). A pushing mechanism (53) is slidably mounted on the upper end of the lifting mechanism (52). The pushing mechanism (53) is configured to automatically push and discharge the coal ash accumulated on the upper end of the lifting mechanism (52) under the action of inertia when the angle of the lifting mechanism (52) changes.

2. The environmentally friendly coal collection and lifting vehicle for coal spillage from a coal port sampling tower according to claim 1, characterized in that: The hollow long box (51) has an insertion groove (511) in the middle of one side of the upper end, and an discharge groove (512) in the middle of one side of the outer wall of the hollow long box (51). Multiple square empty blocks (513) are linearly and equally spaced on one side of the groove opening of the discharge groove (512).

3. The environmentally friendly coal collection and lifting vehicle for coal spillage from a coal port sampling tower according to claim 1, characterized in that: The lifting mechanism (52) includes a built-in plate (521) and sliding grooves (522) opened on both sides of the upper end of the built-in plate (521). A connecting groove (523) is opened on the lower side of one end of the groove of the sliding groove (522), and a slot (524) is opened in the middle of one side of the inner wall of the sliding groove (522). A connecting shaft (525) is movably installed on the lower end of one end of the built-in plate (521).

4. The environmentally friendly coal collection and lifting vehicle for coal spillage from a coal port sampling tower according to claim 3, characterized in that: Concave sliding blocks (526) are fixedly installed on both sides of the lower end of the built-in flat plate (521). An H-shaped round rod (527) is slidably installed in the inner cavity of the concave sliding block (526). A connecting block (528) is movably installed in the middle of the outer surface of the H-shaped round rod (527). An electric telescopic rod (529) is fixedly installed at the lower end of the connecting block (528).

5. The environmentally friendly coal collection and lifting vehicle for coal spillage from a coal port sampling tower according to claim 1, characterized in that: The pushing mechanism (53) includes a moving block (531) and T-shaped sliders (532) fixedly installed on both sides of the lower end of the moving block (531).

6. The coal sampling tower spillage collection and environmental protection vehicle for coal ports according to claim 1, characterized in that: The sealing assembly (7) includes a corresponding cover plate (71) and handles (72) fixedly installed on both sides of the upper end of the corresponding cover plate (71).

7. The environmentally friendly coal collection and lifting vehicle for coal spillage from a coal port sampling tower according to claim 1, characterized in that: The box cover assembly (8) includes a corresponding block (81) and a hollow block (82) fixedly installed on one side of the outer wall of the corresponding block (81). A screw (83) is threadedly connected to the inner cavity of the hollow block (82).