Novel barrel separating device

By designing a new type of drum unloading device with heating of the main body of the box and the heat transfer oil coil, the problem of the specialization of the existing device for drummed asphalt has been solved, and the device can efficiently melt and extract asphalt packaged in woven bags, thus improving the applicability and convenience of the device.

CN223591206UActive Publication Date: 2025-11-25ASIAN CONSTR EQUIP GRP CO LTD
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Patent Information

Application Number
CN202422241712.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-02-08
Filing Date
2024-09-13
Publication Date
2025-11-25
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

Existing asphalt drum unloading devices are designed specifically for drummed asphalt and cannot effectively handle asphalt packaged in woven bags, resulting in insufficient applicability.

Method used

A novel drum unloading device is designed, comprising a box body, a drum unloading structure, and a common melting structure. It uses a heat transfer oil coil for heating. The box body is divided into upper and lower parts, with multiple door openings and observation doors, allowing multiple asphalt drums or woven bags to be processed simultaneously. The asphalt is heated and melted by heat transfer oil, and the melted material is extracted using an asphalt pump.

Benefits of technology

It achieves efficient melting and extraction of asphalt packaged in woven bags, improving the practicality and convenience of the device, and can process multiple asphalt containers simultaneously without affecting efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223591206U_ABST
    Figure CN223591206U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of novel barrel separating devices, in particular to a novel barrel separating device which comprises a box body, a barrel separating structure is arranged in the box body, a joint melting structure is arranged in the box body, the barrel separating structure comprises an upper box body, the upper box body is arranged in the box body, and the joint melting structure is arranged in the box body. The box body is divided into an upper box body and a lower box body, a heat conduction oil coil pipe is arranged in the upper box body, a heat conduction oil inlet and outlet is formed in the left side of the heat conduction oil coil pipe, the heat conduction oil coil pipe is arranged in a spiral pipe mode, and gaps are formed between pipes of the heat conduction oil coil pipe. According to the novel barrel separating device, different asphalt barrels or asphalt bags can be melted at the same time, and the practicability and convenience of the device are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a novel bucketing device technical field, concretely is a novel bucketing device. BACKGROUND

[0002] Barreled asphalt as the main mode of long-distance transportation of asphalt, the asphalt is filled into the barrel in liquid form, but as the temperature decreases, it becomes solid. The asphalt needs to be taken out of the barrel and needs to be heated and melted by the asphalt bucketing device. Some manufacturers also use plastic woven bags to package, and liquid asphalt is filled into plastic woven bags, which becomes solid when the temperature decreases. The common asphalt bucketing device mainly consists of a bucketing box, a lifting mechanism, a hydraulic propeller and an electrical control system. The box is divided into two chambers, the upper chamber is a barrel asphalt melting chamber, and the heating coil is evenly distributed around the chamber. The heating pipe and the asphalt barrel mainly exchange heat in a radiation way to achieve the purpose of asphalt bucketing. Several guide rails serve as the track for the asphalt barrel. The lower chamber mainly heats the asphalt removed from the barrel and then pumps it into the asphalt tank by the asphalt pump. The lifting device lifts the asphalt barrel, moves it horizontally and places it on the guide rail. Then the hydraulic propeller pushes the barrel into the upper chamber. At the same time, an empty barrel is ejected from the rear outlet, or a turnover mechanism is used to place the barreled asphalt on the platform, then the oil cylinder operates to turn the oil barrel 180 degrees, and then the hydraulic propeller pushes the barrel into the device.

[0003] The existing asphalt bucketing device uses melted barreled asphalt, and the lifting device or turnover mechanism is designed specifically for asphalt barrels, which is not suitable for asphalt packaged in woven bags. Therefore, a new type of bucketing device is needed to solve the above problems. UTILITY MODEL CONTENTS

[0004] The utility model aims to provide a novel bucketing device to solve the problem of the existing asphalt bucketing device using melted barreled asphalt, and the lifting device or turnover mechanism is designed specifically for asphalt barrels, which is not suitable for asphalt packaged in woven bags.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: a novel bucketing device, comprising: a box body, a bucketing structure is arranged inside the box body, a common melting structure is arranged inside the box body, the bucketing structure comprises an upper box, the upper box is arranged inside the box body, the box body is divided into two parts of the upper box and the lower box, a heat conduction oil coil is arranged inside the upper box, a heat conduction oil inlet and outlet are arranged on the left side of the heat conduction oil coil, the heat conduction oil coil is arranged in a spiral pipe, and gaps are arranged between the pipes of the heat conduction oil coil.

[0006] Preferably, the lower box is of a through structure.

[0007] Preferably, the lower box body left side is provided with an asphalt outlet, and the asphalt outlet is connected with an asphalt pump output end.

[0008] Preferably, the common melting structure comprises door holes, the door holes are arranged in the upper box body, and a plurality of groups of door holes are uniformly arranged in the box body.

[0009] Preferably, the observation door is provided with a handle at the front end.

[0010] Preferably, the upper box body is provided with a partition plate.

[0011] Compared with the prior art, the utility model has the beneficial effects that:

[0012] The novel bucket removing device is provided with a bucket removing structure, in working, the observation door is opened, then the asphalt bucket or asphalt bag is lifted by the forklift, the asphalt bucket or asphalt bag is placed in the door hole and placed on the platform formed by the heat conducting oil coil pipe, then the forklift retreats, the corresponding observation door is closed, and heat loss is prevented. The air in the box body is heated by the heat conducting oil coil pipe, the solid asphalt absorbs heat and melts, after melting, flows down from the gap of the coil pipe, enters the bottom of the lower box body, and the asphalt bucket or plastic woven bag remains on the platform, then the observation door is opened, the empty asphalt bucket or asphalt bag is taken out by the clamp or other tools, and the observation door is closed, and waits for next use. The plurality of door holes can melt different asphalt buckets or asphalt bags at the same time, and do not affect each other, through the design, the novel bucket removing device can melt different asphalt buckets or asphalt bags at the same time, and the practicability and convenience of the device are improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] Fig. 1 It is a three-dimensional structure sectional view of the utility model;

[0014] Fig. 2 It is a three-dimensional structure schematic view of the utility model.

[0015] In the drawing: 111, box body; 2, bucket removing structure; 211, upper box body; 212, lower box body; 213, asphalt outlet; 214, heat conducting oil coil pipe; 215, heat conducting oil inlet and outlet; 3, common melting structure; 311, door hole; 312, observation door; 313, partition plate. DETAILED DESCRIPTION

[0016] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by the ordinary skilled in the art without creative labor are within the protection scope of the present application.

[0017] Please refer to Figs. 1-2 An embodiment provided by the present application:

[0018] A novel decanning device, comprising: a box body 111, the box body 111 is internally provided with a decanning structure 2, the box body 111 is internally provided with a common melting structure 3, the decanning structure 2 comprises an upper box 211, the upper box 211 is arranged inside the box body 111, the box body 111 is divided into two parts of the upper box 211 and a lower box 212, the upper box 211 is internally provided with a heat conducting oil coil pipe 214, the left side of the heat conducting oil coil pipe 214 is provided with a heat conducting oil inlet and outlet 215, the heat conducting oil coil pipe 214 is arranged in a spiral pipe, and gaps are arranged between the pipes of the heat conducting oil coil pipe 214, through the design, the box body 111 can be divided into the upper box 211 and the lower box 212, the upper and lower two parts are not completely separated, there are gaps between the pipes of the heat conducting oil coil pipe 214, the melted asphalt can flow down, the hot heat conducting oil flows in, the coil pipe is heated, so that the whole box inside is heated, and the heat conducting oil flows out from the outlet of the coil pipe into the heater after being cooled, and the heat conducting oil circulates in the heater and the heat conducting oil pipe. The heater comprises but is not limited to a heat conducting oil furnace, a direct heating type burner and an electric heater.

[0019] Further, the lower box 212 is of a through type structure, through the design, the lower box 212 is through, and the melted asphalt of each unit flows into the bottom of the lower box 212.

[0020] Further, the left side of the lower box 212 is provided with an asphalt outlet 213, the asphalt outlet 213 is connected with an asphalt pump output end, through the design, the melted asphalt of each unit flows into the bottom of the lower box 212, and the asphalt pump can be used to extract the melted asphalt.

[0021] Further, the common melting structure 3 comprises door holes 311, the door holes 311 are arranged inside the upper box 211, a plurality of groups of the door holes 311 are evenly arranged inside the box body 111, observation doors 312 are arranged at the door holes 311, the observation doors 312 are hinged to the upper box 211, through the design, a plurality of door holes 311 are arranged side by side on the upper box 211, the observation doors 312 are arranged on each door hole 311, and each observation door 312 can be independently opened and closed, so that the asphalt barrels or asphalt bags are conveniently taken out.

[0022] Further, the front end of the observation door 312 is provided with a handle, through the design, the front end of the observation door 312 is provided with a handle, which can be conveniently opened by the handle.

[0023] Further, the inside of the upper box body 211 is provided with a partition plate 313, the partition plate 313 can separate the space of the upper box body 211, through the design, the upper box body 211 is provided with a plurality of door holes 311 side by side, each door hole 311 is provided with an observation door 312, each observation door 312 can be independently opened and closed, and the partition plate 313 is arranged between the door holes 311, so that the upper box body 211 is divided into different units, when the observation door 312 of one unit is opened, the hot air in the remaining units will not be lost.

[0024] Working principle:

[0025] In work, the observation door 312 is opened, then the asphalt barrel or asphalt bag is lifted by the forklift, the asphalt barrel or asphalt bag is placed in the door hole 311 and placed on the platform formed by the heat conduction oil coil pipe 214, then the forklift retreats, and the corresponding observation door 312 is closed to prevent heat loss. The air in the box body is heated by the heat conduction oil coil pipe 214, the solid asphalt absorbs heat and melts, and after melting, flows down from the gap of the coil pipe and enters the bottom of the lower box body 212. The asphalt barrel or plastic woven bag is left on the platform, then the observation door 312 is opened, the empty asphalt barrel or asphalt bag is taken out by using a clamp or other tools, and the observation door 312 is closed, and the next use is waited. The plurality of door holes 311 can melt different asphalt barrels or asphalt bags at the same time, and do not affect each other, and the operation is completed.

[0026] The above is only a preferred embodiment of the present application, and does not limit the present application in any form; any ordinary technical personnel in the industry can implement the present application according to the drawings and the above; however, any equivalent changes, modifications and evolution of the above disclosed technical content without departing from the technical scheme of the present application can be made by those skilled in the art; meanwhile, any equivalent changes, modifications and evolution of the above embodiments according to the essential technology of the present application are still within the protection scope of the technical scheme of the present application.

Claims

1. A novel de-bottling device comprising: The box body (111) is characterized in that: the box body (111) is internally provided with a barrel removing structure (2), and the box body (111) is internally provided with a common melting structure (3); the barrel removing structure (2) comprises an upper box (211), which is arranged inside the box body (111); the box body (111) is divided into the upper box (211) and a lower box (212); the upper box (211) is internally provided with a heat conducting oil coil pipe (214); the left side of the heat conducting oil coil pipe (214) is provided with a heat conducting oil inlet and outlet (215); the heat conducting oil coil pipe (214) is in a spiral pipe arrangement; and gaps are arranged between the pipes of the heat conducting oil coil pipe (214).

2. A novel decanning device as claimed in claim 1, wherein: The lower box (212) is internally in a through type structure.

3. A novel decanning device as claimed in claim 1, wherein: The left side of the lower box (212) is provided with an asphalt outlet (213), which is connected with an asphalt pump output end.

4. A novel decanning device as claimed in claim 1, wherein: The common melting structure (3) comprises door holes (311), which are evenly arranged in the box body (111) and are arranged inside the upper box (211); the door holes (311) are provided with observation doors (312); and the observation doors (312) are hinged to the upper box (211).

5. A novel decanning device as claimed in claim 4, wherein: The front end of the observation door (312) is provided with a handle.

6. A novel decanning device as claimed in claim 1, wherein: The upper box (211) is internally provided with a partition plate (313), which can separate the space of the upper box (211).