A portable graphene outdoor heating tent
By using a double-layer tent structure and fiberglass pole sleeve connection design, the problems of poor tent insulation and easy loss of support poles are solved, achieving the effect of maintaining the internal temperature of the tent and stable connection of the support poles.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-14
- Publication Date
- 2026-04-07
AI Technical Summary
Existing tents have poor insulation, the support poles are easily lost during transport, and the connection strength between the support poles and the ground is insufficient.
The tent features a double-layer structure, with the inner and outer canopies made of different fabrics. The inner canopy contains multiple layers of fabric to improve insulation performance. The support poles are connected by fiberglass poles and sleeves, with built-in elastic ribs in the fiberglass poles to prevent loss. The bottom feet are fixed with tension screws, and the sleeves are connected to the fiberglass poles to improve stability.
It achieves excellent temperature retention and stable connection of the support poles, preventing the support poles from being lost and improving the comfort and structural reliability of the tent.
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Figure CN119393001B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of tents, and particularly relates to a portable graphene outdoor heating tent. BACKGROUND
[0002] A tent is a shed supported on the ground to shelter from the wind and rain, sunlight and temporary residence, and most of the tents are made of canvas. The components of the tent also include supporting things, such as rod-shaped members that can be removed and shifted at any time. The tent is carried in the form of components in most cases, and is assembled after the carrying path reaches the site. The tent needs various components and tools when assembled, and the name and use method of each component of the tent should be understood to quickly and conveniently set up the tent.
[0003] The existing tent has the technical problem of poor heat preservation performance due to the single-layer structure, and the segmented storage of each supporting rod in storage causes the possibility of loss of the supporting rod in the carrying process. The contact part of the supporting rod of the existing tent with the ground mostly adopts a sleeved protection pipe, and the connection strength is general. SUMMARY
[0004] The present application aims to provide a portable graphene outdoor heating tent to solve the problems in the background.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a portable graphene outdoor heating tent, comprising an inner tent and an outer tent arranged outside the inner tent, wherein the outer tent is provided with supporting rods for supporting the outer tent and the inner tent, the end of the supporting rod is provided with a bottom plug, the supporting rod comprises a plurality of glass fiber rods connected end to end, the glass fiber rods are connected to each other through a sleeve pipe, the outer tent is composed of an outer first tent cloth, an outer second tent cloth, an outer third tent cloth, an outer fourth tent cloth, an outer fifth tent cloth and an outer sixth tent cloth, the edge of the outer first tent cloth away from the outer second tent cloth is provided with a first outer curtain, the edge of the outer sixth tent cloth away from the outer fifth tent cloth is provided with a second outer curtain, a first outer air window is arranged between the outer first tent cloth and the outer second tent cloth, and a second outer air window is arranged at the junction of the outer fifth tent cloth and the outer sixth tent cloth, the lower side of the inner tent comprises an inner bottom tent cloth, an inner first lower tent cloth, an inner second lower tent cloth, an inner third lower tent cloth and an inner fourth lower tent cloth, the upper side of the inner tent is provided with an inner first tent cloth, an inner second tent cloth, an inner third tent cloth, an inner fourth tent cloth and an inner curtain, the bottom plug comprises a tension screw and a plug body, and the inner bottom tent cloth is composed of a direct contact layer, a heat storage layer, a first graphene heat conduction layer, an electric heating layer, a second graphene heat conduction layer and a grounding layer.
[0006] Preferably, the glass fiber rod is internally provided with an elastic rib, the outer wall of the end of the glass fiber rod is further provided with a wall window, the middle part of the sleeve pipe is provided with a pipe cavity, and the inner part of the two ends of the sleeve pipe is provided with a pipe end cavity.
[0007] Preferably, the outer profiles of the glass fiber rod and the sleeve are shuttle-shaped, the end of the glass fiber rod is inserted into the tube end cavity of the end of the sleeve, and the elastic rib is located in the internal space of the glass fiber rod and the tube cavity.
[0008] Preferably, the combination of the outer first cloth and the outer second cloth is sutured and connected, the combination of the outer second cloth and the outer third cloth is sutured and connected, the combination of the outer third cloth and the outer fourth cloth is sutured and connected, the combination of the outer fourth cloth and the outer fifth cloth is sutured and connected, and the combination of the outer fifth cloth and the outer sixth cloth is sutured and connected.
[0009] Preferably, the first outer air window is located on the upper side of the combination of the outer first cloth and the outer second cloth, the second outer air window is located on the upper side of the combination of the outer fifth cloth and the outer sixth cloth, the first outer sealing curtain is sutured and connected with the outer first cloth, the second outer sealing curtain is sutured and connected with the outer sixth cloth, and the adjacent edges of the first outer sealing curtain and the second outer sealing curtain are connected through a zipper.
[0010] Preferably, the four edges of the inner bottom cloth are sutured and connected with the inner first lower cloth, the inner second lower cloth, the inner third lower cloth and the inner fourth lower cloth respectively, the side edges of the inner first lower cloth are sutured and connected with the side edges of the inner second lower cloth and the inner fourth lower cloth respectively, and the side edges of the inner third lower cloth are sutured and connected with the side edges of the inner second lower cloth and the inner fourth lower cloth.
[0011] Preferably, the upper edge of the inner second lower cloth is sutured and connected with the inner first cloth, the upper edge of the inner third lower cloth is sutured and connected with the inner second cloth and the inner third cloth, and the upper edge of the inner fourth lower cloth is sutured and connected with the inner fourth cloth.
[0012] Preferably, the combination of the inner first cloth and the inner second cloth is sutured and connected, the combination of the inner second cloth and the inner third cloth is sutured and connected, the combination of the inner third cloth and the inner fourth cloth is sutured and connected, the combination of the inner fourth cloth and the inner sealing curtain is sutured and connected, and the side edge of the inner sealing curtain away from the inner fourth cloth is connected with the side edge of the inner first cloth through a zipper.
[0013] Preferably, a rope hanging ring is arranged on the upper side of the plug-in pin body, a rod containing cavity is opened in the inner side of the upper side of the plug-in pin body, an inner expansion column is arranged in the rod containing cavity, an inner thread channel is opened in the inner expansion column, a deformation groove is opened on the side wall of the inner expansion column, the end of the glass fiber rod is located in the rod containing cavity, the inner expansion column is located in the end of the glass fiber rod, and the tension screw is located in the inner thread channel.
[0014] The technical effects and advantages of the present application are as follows:
[0015] The portable graphene outdoor heating tent is characterized in that cold air is isolated by a partition between an outer tent formed by an outer first tent cloth, an outer second tent cloth, an outer third tent cloth, an outer fourth tent cloth, an outer fifth tent cloth, an outer sixth tent cloth, a first outer sealing curtain and a second outer sealing curtain, and an inner tent formed by an inner first tent cloth, an inner second tent cloth, an inner third tent cloth, an inner fourth tent cloth and an inner sealing curtain, so that the cold air outside can be prevented from directly contacting the inner first tent cloth, the inner second tent cloth, the inner third tent cloth and the inner fourth tent cloth of the inner tent, and the temperature in the inner tent can be maintained.
[0016] The glass fiber rod is connected through the sleeve, the elastic rib arranged in the glass fiber rod can prevent the glass fiber rod from falling out of the storage bag when the glass fiber rod is in a disassembled state, thereby avoiding the phenomenon of loss of the glass fiber rod, the end of the glass fiber rod is inserted into the plug-in body and locked by means of tightening the tension screw, the plug-in body is sleeved on the outside of the glass fiber rod and embedded in the glass fiber rod through the inner expansion column, so that the end of the glass fiber rod can be better protected, and the scheme of connecting the glass fiber rod and the plug-in body by means of tightening the tension screw has high structural reliability. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a combination state structure schematic diagram of the embodiment of the present application;
[0018] Figure 2 It is a support rod structure schematic diagram of the embodiment of the present application;
[0019] Figure 3 It is an outer tent structure schematic diagram of the embodiment of the present application;
[0020] Figure 4 It is an inner tent structure schematic diagram of the embodiment of the present application;
[0021] Figure 5 It is a glass fiber rod and sleeve connection place cut state structure schematic diagram of the embodiment of the present application;
[0022] Figure 6 It is a sleeve cut state structure schematic diagram of the embodiment of the present application;
[0023] Figure 7 It is an inner bottom tent cloth cut state structure schematic diagram of the embodiment of the present application;
[0024] Figure 8 It is a glass fiber rod and bottom plug-in connection state structure schematic diagram of the embodiment of the present application;
[0025] Figure 9 It is a bottom plug-in disassembled state structure schematic diagram of the embodiment of the present application;
[0026] Figure 10 It is a plug-in body internal structure schematic diagram of the embodiment of the present application.
[0027] In the diagram: 100, Support rod; 1, Fiberglass rod; 101, Elastic rib; 102, Wall window; 2, Sleeve; 201, Pipe end cavity; 202, Pipe middle cavity; 200, Outer canopy; 3, Outer canopy cloth; 4, Outer canopy cloth; 5, Outer canopy cloth; 6, Outer canopy cloth; 7, Outer canopy cloth; 8, Outer canopy cloth; 9, First external vent; 10, Second external vent; 11, First external curtain; 12, Second external curtain; 300, Inner canopy; 13, Inner bottom canopy cloth; 1301, Direct contact layer; 1302, Heat storage layer; 1303, First graphene. 1304 Thermal conductive layer; 1305 Electric heating layer; 1306 Second graphene thermal conductive layer; 1307 Grounding layer; 14 Inner first lower canopy; 15 Inner second lower canopy; 16 Inner third lower canopy; 17 Inner fourth lower canopy; 18 Inner first canopy; 19 Inner second canopy; 20 Inner third canopy; 21 Inner fourth canopy; 22 Inner sealing curtain; 400 Bottom insert; 23 Tensioning screw; 24 Insert body; 2401 Rope hanging ring; 2402 Rod cavity; 2403 Inner expansion column; 2404 Inner threaded channel; 2405 Deformation groove. Detailed Implementation
[0028] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0029] Please see as follows Figures 1-10 The portable graphene outdoor heating tent shown includes an inner canopy 300 and an outer canopy 200 disposed outside it. The outer canopy 200 is provided with a support rod 100 that supports the outer canopy 200 and the inner canopy 300. The end of the support rod 100 is provided with a bottom insert 400. The support rod 100 includes a plurality of fiberglass rods 1 connected end to end. The fiberglass rods 1 can be replaced with flexible carbon fiber rods as needed. The fiberglass rods 1 are connected to each other through sleeves 2. The sleeves 2 are made of aluminum alloy. The fiberglass rods 1 are provided with elastic ribs 101 inside. The elastic ribs 101 are made of rubber.
[0030] The elastic rib 101 can also be a tension spring combined with a PE rope. The outer wall of the end of the fiberglass rod 1 is also provided with a wall window 102, which is convenient for the use of a wrench. The middle of the sleeve 2 is provided with a tube cavity 202, and the two ends of the sleeve 2 are provided with tube end cavities 201. The diameter of the tube cavity 202 corresponds to the elastic rib 101, and the diameter of the tube end cavity 201 corresponds to the diameter of the end of the fiberglass rod 1. The outer contours of the fiberglass rod 1 and the sleeve 2 are both spindle-shaped. The spindle-shaped structure can reduce the possibility of the fiberglass rod 1 breaking from the middle. The end of the fiberglass rod 1 is inserted into the tube end cavity 201 at the end of the sleeve 2. The elastic rib 101 is located in the internal space of the fiberglass rod 1 and inside the tube cavity 202. The fiberglass rod 1 is suspended by rope to lift the outer canopy 200, and the outer canopy 200 is suspended by rope to lift the inner canopy 300 inside it.
[0031] refer to Figure 2 , Figure 5 and Figure 6 The outer canopy 200 is composed of an outer canopy 3, an outer canopy 4, an outer canopy 5, an outer canopy 6, an outer canopy 7, and an outer canopy 8. The outer canopy 3, outer canopy 4, outer canopy 5, outer canopy 6, outer canopy 7, and outer canopy 8 are made of PE fabric. The outer canopy 3 has a first outer curtain 11 on its edge facing away from the outer canopy 4, and the outer canopy 8 has a second outer curtain 12 on its edge facing away from the outer canopy 7. A first external air vent 9 is provided between the outer canopy 3 and the outer canopy 4. The outer canopy 3 and the outer canopy 4 are sewn together.
[0032] The outer second shed fabric 4 and the outer third shed fabric 5 are sewn together at their joints. The outer third shed fabric 5 and the outer fourth shed fabric 6 are sewn together at their joints. The outer fourth shed fabric 6 and the outer fifth shed fabric 7 are sewn together at their joints. The outer fifth shed fabric 7 and the outer sixth shed fabric 8 are sewn together at their joints. A second external air window 10 is provided at the junction of the outer fifth shed fabric 7 and the outer sixth shed fabric 8. The first external air window 9 is located on the upper side of the joint between the outer first shed fabric 3 and the outer second shed fabric 4. The second external air window 10 is located on the upper side of the joint between the outer fifth shed fabric 7 and the outer sixth shed fabric 8. The first outer sealing curtain 11 and the outer first shed fabric 3 are sewn together. The second outer sealing curtain 12 and the outer sixth shed fabric 8 are sewn together. The adjacent sides of the first outer sealing curtain 11 and the second outer sealing curtain 12 are connected by a zipper.
[0033] refer to Figure 4 and Figure 7The lower side of the inner canopy 300 includes an inner bottom canopy 13, an inner first bottom canopy 14, an inner second bottom canopy 15, an inner third bottom canopy 16, and an inner fourth bottom canopy 17. The inner bottom canopy 13, inner first bottom canopy 14, inner second bottom canopy 15, inner third bottom canopy 16, and inner fourth bottom canopy 17 are made of PE fabric. The four edges of the inner bottom canopy 13 are respectively sewn to the inner first bottom canopy 14, inner second bottom canopy 15, inner third bottom canopy 16, and inner fourth bottom canopy 17. The inner bottom canopy 13 is composed of a direct contact layer 1301, a heat storage layer 1302, a first graphene heat-conducting layer 1303, an electric heating layer 1304, a second graphene heat-conducting layer 1305, and a grounding layer 1306. The first graphene heat-conducting layer 1303 and the second graphene heat-conducting layer 1305 are in direct contact with the electric heating layer 1304 to achieve high heat conduction efficiency.
[0034] The grounding layer 1306 has high structural strength. The heat storage layer 1302 is used to absorb the heat emitted by the electric heating layer 1304. The upper edge of the inner second lower cover 15 is sewn to the inner first cover 18. The upper edge of the inner third lower cover 16 is sewn to the inner second cover 19 and the inner third cover 20. The upper edge of the inner fourth lower cover 17 is sewn to the inner fourth cover 21. The joint between the inner first cover 18 and the inner second cover 19 is sewn to the joint between the inner second cover 19 and the inner third cover 20. The joint between the inner third cover 20 and the inner fourth cover 21 is sewn to the inner third cover 20. The inner four-panel fabric 21 and the inner sealing curtain 22 are sewn together at the joint. The side of the inner sealing curtain 22 away from the inner four-panel fabric 21 is connected to the side of the inner one-panel fabric 18 by a zipper. The side of the inner one-panel fabric 14 is sewn together with the sides of the inner two-panel fabric 15 and the inner four-panel fabric 17 respectively. The side of the inner three-panel fabric 16 is also sewn together with the sides of the inner two-panel fabric 15 and the inner four-panel fabric 17. The upper side of the inner canopy 300 is provided with inner one-panel fabric 18, inner two-panel fabric 19, inner three-panel fabric 20, inner four-panel fabric 21 and inner sealing curtain 22.
[0035] refer to Figure 8 , Figure 9 and Figure 10 The bottom insert 400 includes a tensioning screw 23 and an insert body 24. The upper outer circumference of the insert body 24 is provided with a rope hanging ring 2401. The upper inner side of the insert body 24 has a rod cavity 2402. The rod cavity 2402 has an inner expansion column 2403. The inner expansion column 2403 has an internal thread 2404. The side wall of the inner expansion column 2403 has a deformation groove 2405. The end of the fiberglass rod 1 is located inside the rod cavity 2402. The inner expansion column 2403 is located inside the end of the fiberglass rod 1. The tensioning screw 23 is located inside the internal thread 2404.
[0036] This portable graphene outdoor heating tent is installed by inserting the end of the fiberglass rod 1 into the tube end cavity 201 inside the sleeve 2. At this time, the elastic rib 101 inside the fiberglass rod 1 will be located inside the tube cavity 202. The outer first canopy 3, outer second canopy 4, outer third canopy 5, outer fourth canopy 6, outer fifth canopy 7, outer sixth canopy 8, first outer sealing curtain 11 and second outer sealing curtain 12 are used to withstand the adverse effects of the external environment. The inner first canopy 18, inner second canopy 19, inner third canopy 20, inner fourth canopy 21 and inner sealing curtain 22 are used to retain the temperature inside the inner canopy 300. When the fiberglass rod 1 of the support rod 100 and the sleeve 2 are connected to each other, the outer canopy 200 and the inner canopy 300 will be supported by ropes, thereby realizing the construction of the tent. Ground stakes can also be used to assist in the fixation of ropes and rope hanging rings 2401.
[0037] When the electric heating layer 1304 is heated, the temperature of the first graphene thermal conductive layer 1303 and the second graphene thermal conductive layer 1305 on its outer side will be increased. The temperature increased by the electric heating layer 1304 is stored by the heat storage layer 1302. The use of a velvet cloth in the direct contact layer 1301 can provide users with a good tactile feel.
[0038] The above description is merely a preferred embodiment of the invention, but the scope of protection of the invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the invention, based on the technical solution and inventive concept of the invention, should be included within the scope of protection of the invention.
Claims
1. A portable graphene outdoor heating tent, comprising an inner canopy (300) and an outer canopy (200) disposed thereon, characterized in that: The outer canopy (200) is provided with a support rod (100) that supports the outer canopy (200) and the inner canopy (300). The end of the support rod (100) is provided with a bottom insert (400). The support rod (100) includes a number of fiberglass rods (1) connected end to end. The fiberglass rods (1) are connected to each other through sleeves (2). The outer canopy (200) is composed of an outer canopy cloth (3), an outer canopy cloth (4), an outer canopy cloth (5), an outer canopy cloth (6), an outer canopy cloth (7), and an outer canopy cloth (8). The outer canopy cloth (3) is provided with a first outer curtain (11) on the edge facing away from the outer canopy cloth (4). The outer canopy cloth (8) is provided with a second outer curtain (12) on the edge facing away from the outer canopy cloth (7). A first external air window (9) is provided between the outer canopy cloth (3) and the outer canopy cloth (4). A second external air vent (10) is provided at the junction of the outer fifth shed (7) and the outer sixth shed (8). The lower side of the inner shed (300) includes an inner bottom shed (13), an inner first shed (14), an inner second shed (15), an inner third shed (16), and an inner fourth shed (17). The upper side of the inner shed (300) is provided with an inner first shed (18), an inner second shed (19), an inner third shed (20), an inner fourth shed (21), and an inner curtain (22). The bottom plug (400) includes a tensioning screw (23) and a plug body (24). The inner bottom shed (13) is composed of a direct contact layer (1301), a heat storage layer (1302), a first graphene heat-conducting layer (1303), an electric heating layer (1304), a second graphene heat-conducting layer (1305), and a grounding layer (1306). The four edges of the inner bottom fabric (13) are respectively sewn to the inner first bottom fabric (14), inner second bottom fabric (15), inner third bottom fabric (16) and inner fourth bottom fabric (17). The side of the inner first bottom fabric (14) is respectively sewn to the side of the inner second bottom fabric (15) and the inner fourth bottom fabric (17). The side of the inner third bottom fabric (16) is also sewn to the side of the inner second bottom fabric (15) and the inner fourth bottom fabric (17). The upper edge of the inner second lower tarpaulin (15) is sewn to the inner first tarpaulin (18), the upper edge of the inner third lower tarpaulin (16) is sewn to the inner second tarpaulin (19) and the inner third tarpaulin (20), and the upper edge of the inner fourth lower tarpaulin (17) is sewn to the inner fourth tarpaulin (21). The inner first shed fabric (18) and the inner second shed fabric (19) are sewn together at the joint. The inner second shed fabric (19) and the inner third shed fabric (20) are sewn together at the joint. The inner third shed fabric (20) and the inner fourth shed fabric (21) are sewn together at the joint. The inner fourth shed fabric (21) and the inner sealing curtain (22) are sewn together at the joint. The side of the inner sealing curtain (22) away from the inner fourth shed fabric (21) is connected to the side of the inner first shed fabric (18) by a zipper.
2. The portable graphene outdoor heating tent according to claim 1, characterized in that: The fiberglass rod (1) has an elastic rib (101) inside, and a wall window (102) is opened on the outer wall of the end of the fiberglass rod (1). The sleeve (2) has a tube cavity (202) in the middle, and tube end cavities (201) are opened inside both ends of the sleeve (2).
3. A portable graphene outdoor heating tent according to claim 2, characterized in that: The outer contours of the fiberglass rod (1) and the sleeve (2) are both spindle-shaped. The end of the fiberglass rod (1) is inserted into the tube end cavity (201) of the end of the sleeve (2). The elastic rib (101) is located in the internal space of the fiberglass rod (1) and inside the tube cavity (202).
4. A portable graphene outdoor heating tent according to claim 1, characterized in that: The outer first shed cloth (3) and the outer second shed cloth (4) are sewn together; the outer second shed cloth (4) and the outer third shed cloth (5) are sewn together; the outer third shed cloth (5) and the outer fourth shed cloth (6) are sewn together; the outer fourth shed cloth (6) and the outer fifth shed cloth (7) are sewn together; and the outer fifth shed cloth (7) and the outer sixth shed cloth (8) are sewn together.
5. A portable graphene outdoor heating tent according to claim 4, characterized in that: The first external air window (9) is located on the upper side of the joint of the outer first shed (3) and the outer second shed (4), and the second external air window (10) is located on the upper side of the joint of the outer fifth shed (7) and the outer sixth shed (8). The first outer curtain (11) and the outer first shed (3) are sewn together, and the second outer curtain (12) and the outer sixth shed (8) are sewn together. The adjacent sides of the first outer curtain (11) and the second outer curtain (12) are connected by a zipper.
6. A portable graphene outdoor heating tent according to claim 1, characterized in that: The upper outer circle of the plug body (24) is provided with a rope hanging ring (2401). The upper inner side of the plug body (24) is provided with a rod cavity (2402). The rod cavity (2402) is provided with an inner expansion column (2403). The inner expansion column (2403) is provided with an internal thread channel (2404). The side wall of the inner expansion column (2403) is provided with a deformation groove (2405). The end of the fiberglass rod (1) is located inside the rod cavity (2402). The inner expansion column (2403) is located inside the end of the fiberglass rod (1). The tensioning screw (23) is located inside the internal thread channel (2404).
Citation Information
Patent Citations
Graphene outdoor heating tent
CN108643687A
Rest tent
CN219773808U