A resin adhesive insulated bucket
By designing a detachable insulation cover and sampling mechanism, the problem of inability to repair and sample the damaged heating tube was solved, enabling convenient repair of the heating tube and testing of the insulation effect of the resin adhesive, thus extending the service life of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI HONGCHANG NEW MATERIAL TECH CO LTD
- Filing Date
- 2025-08-06
- Publication Date
- 2026-05-26
AI Technical Summary
In the existing technology, the heating element cannot be repaired when it is damaged, which causes the resin adhesive insulation tank to stop heating and makes it impossible to sample and test the insulation effect of the resin adhesive.
The design incorporates detachable first and second insulation covers connected by bolts for easy inspection and maintenance of the heating element; a sampling mechanism is also included to take samples through sampling tubes to test the insulation effect of the resin adhesive.
It enables convenient maintenance of heating elements, extends the service life of equipment, and can test the insulation effect of resin adhesive, thereby improving the maintainability and testing capabilities of the equipment.
Smart Images

Figure CN224278378U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of thermal insulation bucket technology, specifically to a resin adhesive thermal insulation bucket. Background Technology
[0002] When storing resin binders, it is usually necessary to heat the resin binder to achieve the required viscosity. As shown in Chinese patent application No. 202222094378.5, the technical solution includes a barrel, an electric heating tube, and an insulation layer. The electric heating tube is located inside the barrel and at the bottom of the barrel. The electric heating tube can contact and heat the resin binder inside the barrel. The insulation layer is wrapped around the outside of the barrel. This technical solution can effectively improve heating efficiency, reduce heating energy consumption, and also reduce the risk of resin binder failure.
[0003] However, the following problem still exists in this technical solution: when the heating element is damaged and can no longer heat, the inside of the barrel cannot be removed, making it impossible to repair, which will cause the device to stop heating. Utility Model Content
[0004] The purpose of this invention is to provide a resin adhesive insulation bucket. The first and second insulation covers can be removed from the insulation bucket using a first bolt, which facilitates the inspection and maintenance of the heating tube and extends the service life of this invention. Furthermore, the sampling mechanism allows for the sampling and testing of the resin adhesive inside the insulation bucket to observe its insulation effect, thereby addressing the aforementioned shortcomings in the technology.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a resin adhesive heat preservation bucket, including a heat preservation bucket, a heating mechanism for heating the inside of the heat preservation bucket is provided on the outside of the heat preservation bucket, and two feed pipes are connected to one side of the heat preservation bucket, each feed pipe is provided with a switch valve on the outside.
[0006] Preferably, the heating mechanism includes a first insulation cover on one side of the insulation barrel, a second insulation cover at the bottom of the insulation barrel, heating tubes inside both the first and second insulation covers, a controller on one side of both the first and second insulation covers, the controllers being electrically connected to the heating tubes, and a temperature detector on one side of the insulation barrel, the detection probe of the temperature detector extending into the interior of the insulation barrel for heating the interior of the insulation barrel.
[0007] Preferably, multiple first threaded holes are opened on both sides of the first and second insulation covers, and the same first bolt is threaded inside the two connected first threaded holes for disassembling the first and second insulation covers.
[0008] Preferably, a sampling mechanism is provided on one side of the insulation bucket for sampling the resin adhesive inside the insulation bucket. The sampling mechanism includes a connecting pipe connected to one side of the insulation bucket, a sampling tube inside the connecting pipe, a sealing cap inserted into one side of the connecting pipe, a threaded rod threadedly connected inside the sealing cap, one end of the threaded rod being movably connected to the sampling tube through a bearing, a handle fixedly provided at one end of the sealing cap, and two limiting rods fixedly provided on one side of the sampling tube, one end of the limiting rod penetrating the sealing cap and contacting the handle, for sampling the resin adhesive inside the insulation bucket.
[0009] Preferably, a placement groove is provided on one side of the inside of the heat preservation bucket, and a baffle plate is inserted into the placement groove. A connecting pipe passes through the bottom end of the baffle plate, and a connecting plate is fixedly provided on one side of the baffle plate. A support plate is fixedly provided on one side of the heat preservation bucket, and a support rod passes through the support plate. An insertion hole is provided on the connecting plate, and the support rod is adapted to the insertion hole. A limit cap is threaded to the bottom end of the support rod for fixing the placement groove.
[0010] Preferably, the bottom of the heat preservation barrel is provided with a support mechanism to support the heating mechanism. The support mechanism includes a support frame at the bottom of the heat preservation barrel. Limiting grooves are opened on both sides of the support frame. The same fixing rod is inserted into the two limiting grooves on the same side. The fixing rod and the support frame are both provided with second threaded holes. The same second bolt is threaded into the two connected second threaded holes for supporting the heating mechanism.
[0011] The technical effects and advantages provided by this utility model in the above technical solution are as follows:
[0012] 1. Rotate the first bolt to unscrew it from the two first threaded holes, and then pull the first and second insulation covers to remove them from the insulation barrel. This makes it easier for people to inspect and maintain the heating tube and extend the service life of this utility model.
[0013] 2. Turn the handle, which will drive the threaded rod to rotate. The threaded rod will move the sampling tube to the inside of the insulation bucket. Use the sampling tube to dig out the resin adhesive inside the insulation bucket. This will allow you to test the resin adhesive inside the sampling tube and observe its insulation effect. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.
[0015] Figure 1 This is a front view of the present invention;
[0016] Figure 2 This is a rear view of the present invention;
[0017] Figure 3 This is a schematic diagram of the heating mechanism of this utility model;
[0018] Figure 4 This is a cross-sectional view of the insulated bucket of this utility model;
[0019] Figure 5 This is a schematic diagram of the sampling mechanism of this utility model;
[0020] Figure 6 This is a schematic diagram of the support mechanism of this utility model.
[0021] Explanation of reference numerals in the attached figures:
[0022] 1. Insulated container;
[0023] 2 Heating mechanism, 201 First insulation cover, 202 Second insulation cover, 203 Heating tube, 204 Controller, 205 Temperature detector, 206 First threaded hole, 207 First bolt;
[0024] 3 Sampling mechanism, 301 connecting pipe, 302 sampling pipe, 303 sealing cover, 304 threaded rod, 305 handle, 306 limiting rod, 307 placement groove, 308 baffle plate, 309 connecting plate, 310 support plate, 311 support rod, 312 insertion hole, 313 limiting cap;
[0025] 4. Support mechanism, 401 support frame, 402 limiting groove, 403 fixing rod, 404 second threaded hole, 405 second bolt;
[0026] 5. Feed pipe, 6. Switch valve. Detailed Implementation
[0027] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.
[0028] This utility model provides, for example Figure 1-5 The resin adhesive heat preservation bucket shown includes a heat preservation bucket 1, a heating mechanism 2 for heating the inside of the heat preservation bucket 1 is provided on the outside of the heat preservation bucket 1, and two feed pipes 5 are connected to one side of the heat preservation bucket 1, and each feed pipe 5 is provided with a switch valve 6 on the outside.
[0029] like Figure 3As shown, the heating mechanism 2 includes a first insulation cover 201 located on one side of the insulation barrel 1, a second insulation cover 202 located at the bottom of the insulation barrel 1, heating tubes 203 located inside both the first insulation cover 201 and the second insulation cover 202, a controller 204 located on one side of both the first insulation cover 201 and the second insulation cover 202, the controller 204 being electrically connected to the heating tubes 203, and a temperature detector 205 located on one side of the insulation barrel 1, the detection probe of the temperature detector 205 extending into the interior of the insulation barrel 1.
[0030] Open the switch valve 6 and pour the resin binder into the heat preservation tank 1 through the feed pipe 5. The temperature of the heating tube 203 is controlled by the controller 204 and the temperature inside the heat preservation tank 1 can be detected by the temperature detector 205. The heating tube 203 can heat the inside of the heat preservation tank 1 to keep the resin binder warm.
[0031] like Figure 3 , 6 As shown, both sides of the first heat preservation cover 201 and the second heat preservation cover 202 are provided with multiple first threaded holes 206. The two connected first threaded holes 206 are internally threaded with the same first bolt 207. The bottom of the heat preservation barrel 1 is provided with a support mechanism 4 for supporting the heating mechanism 2. The support mechanism 4 includes a support frame 401 provided at the bottom of the heat preservation barrel 1. Both sides of the support frame 401 are provided with limit grooves 402. The two limit grooves 402 on the same side are internally inserted with the same fixing rod 403. The fixing rod 403 and the support frame 401 are provided with second threaded holes 404. The two connected second threaded holes 404 are internally threaded with the same second bolt 405.
[0032] Rotate the second bolt 405 to pull it out of the second threaded hole 404, then pull down the fixing rod 403 to move it to the bottom of the support frame 401. Then rotate the first bolt 207 to pull it out of the two first threaded holes 206. Then pull the first insulation cover 201 and the second insulation cover 202 to remove them from the insulation bucket 1. This makes it easier for people to inspect and maintain the heating tube 203 and extend the service life of this utility model.
[0033] like Figure 5As shown, a sampling mechanism 3 for sampling the resin adhesive inside the heat preservation bucket 1 is provided on one side. The sampling mechanism 3 includes a connecting pipe 301 connected to one side of the heat preservation bucket 1, a sampling pipe 302 is provided inside the connecting pipe 301, a sealing cap 303 is inserted into one side of the connecting pipe 301, a threaded rod 304 is threadedly connected inside the sealing cap 303, one end of the threaded rod 304 is movably connected to the sampling pipe 302 through a bearing, a handle 305 is fixedly provided at one end of the sealing cap 303, and two limiting rods 306 are fixedly provided on one side of the sampling pipe 302. One end of the limiting rod 306 passes through the sealing cap 303 and contacts the handle 305.
[0034] like Figure 5 As shown, a placement groove 307 is provided on one side of the interior of the heat preservation barrel 1. A baffle plate 308 is inserted into the placement groove 307. A connecting pipe 301 passes through the bottom end of the baffle plate 308. A connecting plate 309 is fixedly provided on one side of the baffle plate 308. A support plate 310 is fixedly provided on one side of the heat preservation barrel 1. A support rod 311 passes through the support plate 310. An insertion hole 312 is provided on the connecting plate 309. The support rod 311 is adapted to the insertion hole 312. A limit cap 313 is threadedly connected to the bottom end of the support rod 311.
[0035] Pull the connecting plate 309 upwards. The connecting plate 309 moves the shielding plate 308 upwards, removing the shielding plate 308 from inside the connecting tube 301. The insertion hole 312 on the connecting plate 309 passes through the support rod 311. Then, rotate the limiting cap 313 to the bottom of the support rod 311 to fix the shielding plate 308. Then, rotate the handle 305, which drives the threaded rod 304 to rotate. The threaded rod 304 moves the sampling tube 302 to the inside of the insulation bucket 1. Use the sampling tube 302 to extract the resin adhesive inside the insulation bucket 1. Then, move the sampling tube 302 back to the inside of the connecting tube 301. Rotate the sealing cap 303 to remove it from the connecting tube 301. This allows you to test the resin adhesive inside the sampling tube 302 and observe its insulation effect.
[0036] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A resin-bonded insulating ladle comprising an insulating ladle (1), characterized in that: The heat preservation barrel (1) is provided with a heating mechanism (2) on the outside to heat the inside of the heat preservation barrel (1); The heating mechanism (2) includes a first heat insulation cover (201) on one side of the heat insulation barrel (1), and a second heat insulation cover (202) at the bottom of the heat insulation barrel (1). Both the first heat insulation cover (201) and the second heat insulation cover (202) have multiple first threaded holes (206) on both sides. The two connected first threaded holes (206) are internally threaded with the same first bolt (207). The heat preservation bucket (1) is provided with a sampling mechanism (3) on one side for sampling the resin adhesive inside the heat preservation bucket (1).
2. A resin-bonded insulating bucket according to claim 1, wherein: The first heat insulation cover (201) and the second heat insulation cover (202) are both equipped with heating tubes (203). The first heat insulation cover (201) and the second heat insulation cover (202) are both equipped with controllers (204) on one side. The controllers (204) are electrically connected to the heating tubes (203). The heat insulation barrel (1) is equipped with a temperature detector (205) on one side. The detection probe of the temperature detector (205) extends into the heat insulation barrel (1).
3. A resin-bonded insulating bucket according to claim 1, wherein: The sampling mechanism (3) includes a connecting pipe (301) connected to one side of the insulated bucket (1), a sampling tube (302) is provided inside the connecting pipe (301), a sealing cap (303) is inserted into one side of the connecting pipe (301), a threaded rod (304) is threaded inside the sealing cap (303), one end of the threaded rod (304) is movably connected to the sampling tube (302) through a bearing, and a handle (305) is fixedly provided at one end of the sealing cap (303).
4. The resin adhesive heat-insulating bucket according to claim 3, characterized in that: Two limiting rods (306) are fixedly provided on one side of the sampling tube (302). One end of the limiting rod (306) passes through the sealing cover (303), and the limiting rod (306) is in contact with the handle (305).
5. The resin adhesive heat-insulating bucket according to claim 3, characterized in that: The heat preservation bucket (1) has a placement groove (307) on one side inside. A baffle plate (308) is inserted into the placement groove (307). A connecting pipe (301) passes through the bottom end of the baffle plate (308). A connecting plate (309) is fixedly provided on one side of the baffle plate (308). A support plate (310) is fixedly provided on one side of the heat preservation bucket (1). A support rod (311) passes through the support plate (310). An insertion hole (312) is provided on the connecting plate (309). The support rod (311) is adapted to the insertion hole (312). A limit cap (313) is threadedly connected to the bottom end of the support rod (311).
6. The resin adhesive heat-insulating bucket according to claim 1, characterized in that: The bottom of the insulated bucket (1) is provided with a support mechanism (4) to support the heating mechanism (2); The support mechanism (4) includes a support frame (401) at the bottom of the heat preservation barrel (1). Limiting grooves (402) are provided on both sides of the support frame (401). The same fixing rod (403) is inserted into the two limiting grooves (402) on the same side. The fixing rod (403) and the support frame (401) are provided with second threaded holes (404). The same second bolt (405) is threaded into the two connected second threaded holes (404).
7. The resin adhesive heat-insulating bucket according to claim 1, characterized in that: The insulated barrel (1) has two feed pipes (5) connected to one side, and each feed pipe (5) is equipped with a switch valve (6) on the outside.