Ice fishing tent

The tent's windward and leeward surface is adjusted through the quadrilateral skeleton structure and locking components, which solves the problem of the tent leaving the ground in windy weather, and realizes the stability and convenient disassembly of the tent, and has sunshade and ventilation functions.

CN116290998BActive Publication Date: 2025-08-19TANGSHAN PENGCHENG OUTDOOR PROD CO LTD
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Patent Information

Application Number
CN202211093940.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-08
Publication Date
2025-08-19
Estimated Expiration
2042-09-08

AI Technical Summary

Technical Problem

Existing tents are prone to break off the ground (ice surface) due to wind in strong weather, especially when fishing for ice.

Method used

The quadrilateral skeleton structure is adopted, and the folding rods on the windward and leeward surface of the tent are adjusted through the locking assembly, so that they gradually move closer to the second horizontal connecting rod, reducing the area of ​​windward and leeward surface contact with the wind, and maintaining a stable state through the locking assembly.

Benefits of technology

It effectively reduces the possibility of tents leaving the ground due to wind, and is easy to disassemble and assemble, has sunshade and ventilation functions, and can adjust the tent structure according to wind direction and wind power.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to an ice fishing tent, which relates to the field of tents and includes a frame and a tent fabric tied to the interior of the frame. The frame includes four first transverse links, four second transverse links, and four vertical links. Every two adjacent first transverse links are hinged to each other, and the four first transverse links are spliced to form a quadrilateral. Every two adjacent second transverse links are fixedly connected, and the four second transverse links are also spliced to form a quadrilateral. One end of each vertical link is spherically hinged to the fixed point of the two second transverse links, and the other end is fixedly connected to the hinge of the two first transverse links. The first transverse links include two hinged folding rods. A locking assembly is connected to the frame to lock the frame in this state. The hinges of the two folding rods on the windward and leeward sides of the tent move toward the second transverse links, thereby folding the tent. The present application has the effect of reducing the possibility of the tent being affected by wind and lifted off the ground (ice surface).
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Description

Technical Field

[0001] The present application relates to the field of tents, and in particular to an ice fishing tent. Background Art

[0002] Modern people live, study and work at a fast pace. Therefore, many people like to fish in their free time. However, fishing requires sunshade tools and a place to rest. Especially in winter, ice fishing also requires a place to shelter from the wind. The emergence of tents can better meet people's needs when fishing.

[0003] Existing tents are usually connected to the ground (ice surface) through ground nails (ice nails). However, in windy weather, the tent may be affected by the wind and fall off the ground (ice surface). Summary of the Invention

[0004] In order to reduce the possibility of the tent being separated from the ground (ice surface) by the influence of wind, the present application provides an ice fishing tent.

[0005] The ice fishing tent provided in this application adopts the following technical solution:

[0006] An ice fishing tent comprises a frame and a tent cloth tied to the inside of the frame, the frame comprising four first transverse links, four second transverse links and four vertical links, every two adjacent first transverse links are hinged to each other, and the four first transverse links are spliced into a quadrilateral, every two adjacent second transverse links are fixedly connected, and the four second transverse links are also spliced into a quadrilateral, one end of each vertical link is ball-hinged to the fixed point of the two second transverse links, and the other end is fixedly connected to the hinge of the two first transverse links, the first transverse link comprises two folding rods hinged to each other, and a locking assembly is connected to the frame to lock the frame in this state, the hinges of the two folding rods on the windward side and the leeward side of the tent move toward the direction close to the second transverse links to fold the tent.

[0007] By adopting this technical solution, when encountering strong winds, the locking assembly is controlled to place the frame in an adjustable state. Subsequently, the first horizontal links on the windward and leeward sides of the tent are adjusted, causing the hinge joints of the two folding rods to move toward the second horizontal link. During this process, the two vertical links on the windward side gradually move toward each other, and the two vertical links on the leeward side also gradually move toward each other, gradually deforming the windward and leeward sides into a triangular shape. This reduces the area of the windward and leeward sides exposed to wind, thereby reducing the possibility of the tent being lifted off the ground (or ice) due to wind.

[0008] Preferably, the skeleton also includes four first angle brackets and four second angle brackets, each first angle bracket includes two first cross bars and a first vertical bar, the two first cross bars are hinged to one side wall of the first vertical bar respectively, each first angle bracket is located between the two first cross connecting bars, and both ends of each first cross connecting bar are threadedly connected to a corresponding first cross bar, each second angle bracket includes two second cross bars and a second vertical bar, the two second cross bars are fixedly connected to each other at one end close to each other, the connection between the second vertical bar and the two second cross bars is ball hinged, each second angle bracket is located between the two second cross connecting bars, and both ends of each second cross connecting bar are threadedly connected to a corresponding second cross bar.

[0009] By adopting the above technical solution, each first horizontal connecting rod is threadedly connected to the corresponding first angle bracket, and each second horizontal connecting rod is threadedly connected to the corresponding second angle bracket, one end of each vertical connecting rod is threadedly connected to the corresponding first angle bracket, and the other end is threadedly connected to the corresponding second angle bracket, which facilitates the disassembly and assembly of the skeleton.

[0010] Preferably, a locking assembly is installed on each of the first transverse connecting rods, and each of the locking assemblies includes a locking rod, one end of which is hinged to the second transverse connecting rod and fastened to the second transverse connecting rod through bolts and nuts, and the other end of the locking rod is fastened to the connection between the two folding rods.

[0011] By adopting the above technical solution and setting the locking rod, the first horizontal connecting rod and the second horizontal connecting rod are locked, so that the frame is in a more stable state.

[0012] Preferably, a long hole is opened on one side wall of the locking rod, a sliding rod is fixedly connected to the connection between the two folding rods, the sliding rod passes through the long hole, and two nuts are threadedly connected to the sliding rod, and the two nuts clamp the locking rod.

[0013] By adopting the above technical solution, the two nuts are rotated and disengaged from the clamping locking rod, and then the slide rod is slid along the long hole, so that the two folding rods can be gradually folded toward each other, and the long hole serves as a guide for the folding of the two folding rods.

[0014] Preferably, each side wall of the tent cloth is provided with a ventilation hole, and each ventilation hole is fixedly connected to a ventilation tube bag, which is located inside the tent, with one end of the ventilation tube bag connected to the ventilation hole and the other end communicating with the inside of the tent.

[0015] By adopting the above technical solution, the arrangement of the ventilation holes and ventilation tube bags facilitates air circulation inside and outside the tent, and when air enters the tent through the ventilation tube bags, the wind direction and wind strength can be determined based on the degree of fluttering of each ventilation tube bag.

[0016] Preferably, a bag rope is installed at one end of the ventilation cylinder bag away from the ventilation hole.

[0017] By adopting the above technical solution, the diameter of the ventilation tube bag can be adjusted by adjusting the pocket rope, so that the intensity of the air intake on each side of the tent can be adjusted.

[0018] Preferably, two reinforcement rods are provided above the frame, and plug-in blocks are fixedly connected to the two ends of each reinforcement rod. A plug-in hole is opened on the upper surface of each first angle bracket, and each plug-in block is plugged into a corresponding plug-in hole and the two reinforcement rods cross each other.

[0019] By adopting the above technical solution, the splicing of the reinforcement frame is facilitated by splicing the reinforcement rods with the frame, thereby strengthening the splicing strength of the tent.

[0020] Preferably, the tent cloth is made of light-shielding material.

[0021] By adopting the above technical solution, it is convenient to provide shade for people inside the tent and block heat radiation.

[0022] In summary, this application includes at least one of the following beneficial technical effects:

[0023] 1. By reducing the area of the windward and leeward sides of the tent exposed to the wind, the possibility of the tent being affected by the wind and leaving the ground (ice surface) is reduced;

[0024] 2. Easy to disassemble and assemble the skeleton;

[0025] 3. It is convenient to judge the wind direction and wind strength according to the fluttering degree of each ventilation bag. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a schematic diagram of the overall structure of a tent according to an embodiment of the present application.

[0027] Figure 2 It is a structural schematic diagram of the first corner bracket according to an embodiment of the present application.

[0028] Figure 3 It is a structural schematic diagram of the second corner bracket according to an embodiment of the present application.

[0029] Figure 4 It is a structural diagram of the embodiment of the present application showing the folding of the skeleton.

[0030] Figure 5 It is a structural schematic diagram of a ventilation tube bag according to an embodiment of the present application.

[0031] Explanation of the accompanying drawings: 1. Tent cloth; 11. Ventilation hole; 2. Frame; 21. Corner bracket group; 211. First corner bracket; 2111. First horizontal bar; 2112. First vertical bar; 2113. Connecting hole; 212. Second corner bracket; 2121. Second horizontal bar; 2122. Second vertical bar; 22. First horizontal connecting rod; 23. Second horizontal connecting rod; 231. Folding rod; 24. Vertical connecting rod; 3. Locking assembly; 31. Locking rod; 311. Long strip hole; 32. Fixed block; 33. Sliding rod; 4. Reinforcement rod; 41. Connecting block; 5. Ventilation tube bag; 51. Pocket rope. DETAILED DESCRIPTION

[0032] The following is combined with Figure 1-Figure 5 This application is described in further detail.

[0033] The present application embodiment discloses an ice fishing tent. Figure 1 An ice fishing tent includes a tent cloth 1 and a quadrangular prism-shaped frame 2. The tent cloth 1 is tied inside the frame 2 and is made of a light-shielding material.

[0034] To facilitate assembly of the frame 2, the frame 2 includes two corner frame groups 21, a first transverse connecting rod 22, a second transverse connecting rod 23, and a vertical connecting rod 24. The two corner frame groups 21 are a first corner frame group and a second corner frame group arranged one above the other. The first corner frame group includes four first corner frames 211, and each two adjacent first corner frames 211 are connected by a first transverse connecting rod 22. The first corner frame group and the four first transverse connecting rods 22 are assembled to form a rectangular frame.

[0035] The second corner bracket group includes four second corner brackets 212. Every two adjacent second corner brackets 212 are connected by a second horizontal connecting rod 23. The second corner bracket group and the four second horizontal connecting rods 23 are also spliced together to form a rectangular frame. Each first corner bracket 211 corresponds to one second corner bracket 212, and every two vertically adjacent first corner brackets 211 and second corner brackets 212 are connected by a vertical connecting rod 24.

[0036] Reference Figure 2 Each first angle bracket 211 includes two first crossbars 2111 and a first vertical bar 2112. The horizontal angle between the two first crossbars 2111 is a right angle. The first vertical bars 2112 are vertically arranged downward. The two first crossbars 2111 are hinged to the side walls of the first vertical bars 2112, and the first crossbars 2111 can rotate vertically relative to the first vertical bars 2112. Each first crossbar 2111 is threadedly connected to a corresponding first cross-link 22, and each first vertical bar 2112 is threadedly connected to a corresponding vertical link 24.

[0037] Reference Figure 3Each second angle bracket 212 includes two second crossbars 2121 and a second vertical bar 2122. The horizontal angle between the two second crossbars 2121 is a right angle. The two second crossbars 2121 are fixedly connected to each other. The second vertical bar 2122 is ball-jointed at the connection with the two second crossbars 2121. The second vertical bars 2122 are vertically arranged upward. Each second crossbar 2121 is threadedly connected to a corresponding second cross-link 23, and each second vertical bar 2122 is threadedly connected to a corresponding vertical link 24.

[0038] Reference Figure 1 and Figure 2 The first cross-link 22 includes two folding rods 231 located in the same straight line. The ends of the two folding rods 231 that are close to each other are hinged to each other, and the ends of the two folding rods 231 that are separated from each other are threadedly connected to the first cross-link 2111 of different first angle brackets 211. Each first cross-link 22 is connected to a locking assembly 3 that locks the frame 2 in the current state.

[0039] In strong winds, to reduce the impact of wind on the tent and prevent it from lifting off the ground (ice), the windward and leeward sides of the tent are reduced in size according to the wind direction. Loosen the locking assembly 3 to allow the frame 2 to deform. Then, push down the hinges of the two folding rods 231 on the windward side of the tent, and simultaneously push down the hinges of the two folding rods 231 on the leeward side of the tent.

[0040] At this point, the first horizontal link 22 on the windward side of the tent and the first horizontal link 22 on the leeward side gradually fold, and the two vertical links 24 on the windward side gradually rotate toward each other, forming a triangle. The two vertical links 24 on the leeward side also gradually rotate toward each other, forming a triangle. The tent is then locked in this position using the locking assembly 3. This reduces the area of the tent's windward and leeward sides, reducing the area of the tent affected by wind and making it less likely to lift off the ground (ice).

[0041] Reference Figure 1 and Figure 4 Each locking assembly 3 includes a vertically arranged locking rod 31. Two fixing blocks 32 are fixedly connected to the upper surface of each second cross-link 23. The lower end of the locking rod 31 is inserted between the two fixing blocks 32. A bolt passes through the fixing blocks 32, the locking rod 31, and the fixing blocks 32 in sequence, and then is threadedly connected to a nut. The bolt and nut securely connect each locking rod 31 to the corresponding second cross-link 2121. A vertically arranged elongated hole 311 is formed in one side wall of the locking rod 31.

[0042] Reference Figure 4 and Figure 5A sliding rod 33 is fixedly connected to the hinge of each of the two folding rods 231. The sliding rod 33 is positioned toward the elongated hole 311 and passes through the corresponding elongated hole 311. Two nuts are threadedly connected to the sliding rod 33. The two locking rods 31 are located between the two nuts. The two nuts clamp the sliding rod 33, and the two folding rods 231 and the locking rod 31 are locked.

[0043] When the windward and leeward sides of the tent need to be folded, the nuts on the sliding rods 33 on the windward side of the tent are loosened, and at the same time, the nuts on the sliding rods 33 on the leeward side of the tent are loosened, allowing the sliding rods 33 to slide along the elongated holes 311. The bolts and nuts at the lower ends of the locking rods 31 on the other two side surfaces are then loosened, allowing the locking rods 31 to rotate around the corresponding second cross-links 23. Sliding the sliding rods 33 on the windward and leeward sides of the tent downward allows the two folding rods 231 to move toward each other and fold, while simultaneously moving the other two side surfaces of the frame 2 toward each other.

[0044] When the tent is folded, the nut on the slide bar 33 is rotated to lock each first cross link 22 with the corresponding locking bar 31, and the bolt and nut at the lower end of the locking bar 31 are rotated to lock the locking bar 31 and the second cross link 23.

[0045] Refer to 1 and Figure 2 To reinforce the tent frame 2, each first corner bracket 211 has an insertion hole 2113 on its upper surface. Two reinforcement rods 4 are positioned above the tent surface. Each reinforcement rod 4 is fixedly connected to a plug-in block 41 at each end, located on the same side of the reinforcement rod 4. The two reinforcement rods 4 are arranged crosswise, and the plug-in block 41 on each reinforcement rod 4 tightly engages with a corresponding insertion hole 2113. To fold the tent, the reinforcement rods 4 are pulled to disengage each plug-in block 41 from its corresponding insertion hole 2113, completing the removal of the reinforcement rods 4.

[0046] Reference Figure 5 Each side of the tent fabric 1 is provided with a ventilation hole 11 to facilitate ventilation within the tent. Each ventilation hole 11 is fixedly connected to a ventilation bag 5. The ventilation bag 5 is located inside the tent, with one end of the ventilation bag 5 communicating with the ventilation hole 11 and the other end communicating with the inside of the tent. This allows people inside the tent to determine the wind direction and wind strength based on the movement of the ventilation bag 5 on each side wall, thereby determining whether the tent is facing windward or leeward, and deciding whether to fold the tent.

[0047] A pocket rope 51 is installed at one end of the ventilation bag 5 away from the ventilation hole 11 , so that the diameter of the ventilation bag 5 can be adjusted by the pocket rope 51 .

[0048] The operating principle of the ice fishing tent in this embodiment is as follows: the person inside the tent determines whether to fold the tent based on the airflow of the ventilator bag 5. When the wind is strong, the ventilator bag 5 on each side wall of the tent determines the windward and leeward sides. The nuts on the sliding rods 33 on the windward and leeward sides of the tent are then loosened, allowing the sliding rods 33 to slide along the elongated holes 311.

[0049] Next, loosen the bolts and nuts connecting the lower ends of the locking rods 31 on the other two sides of the tent. Then, slide the sliding rods 33 on the windward and leeward sides of the tent downward until the second crossbars 2121 on both sides are folded. During this process, the other two sides of the frame 2 move toward each other. Finally, tighten the nuts on each sliding rod 33 and the bolts and nuts on the lower ends of each locking rod 31.

[0050] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. An ice fishing tent, comprising a frame (2) and a tent cloth (1) tied inside the frame (2), characterized in that: The frame (2) includes four first transverse links (22), four second transverse links (23) and four vertical links (24), each two adjacent first transverse links (22) are hinged to each other, and the four first transverse links (22) are spliced to form a quadrilateral, each two adjacent second transverse links (23) are fixedly connected to each other, and the four second transverse links (23) are also spliced to form a quadrilateral, one end of each vertical link (24) is spherically hinged to the fixed position of the two second transverse links (23), and the other end is fixedly connected to the hinge of the two first transverse links (22), the first transverse link (22) includes two folding rods (231) hinged to each other, and a locking assembly (3) is connected to the frame (2) for locking the frame (2) in this state, and the hinges of the two folding rods (231) on the windward side and the leeward side of the tent move in a direction close to the second transverse links (23) so that the tent is folded; A locking assembly (3) is mounted on each of the first transverse connecting rods (22), and each of the locking assemblies (3) includes a locking rod (31), one end of the locking rod (31) is hinged to the second transverse connecting rod (23) and is fastened to the second transverse connecting rod (23) via a bolt and nut, and the other end of the locking rod (31) is fastened to the connection point of the two folding rods (231); A long hole (311) is formed on one side wall of the locking rod (31), and a sliding rod (33) is fixedly connected to the connection point of the two folding rods (231). The sliding rod (33) passes through the long hole (311). Two nuts are threadedly connected to the sliding rod (33), and the two nuts clamp the locking rod (31).

2. The ice fishing tent according to claim 1, characterized in that: The skeleton (2) further comprises four first angle frames (211) and four second angle frames (212), each first angle frame (211) comprising two first transverse bars (2111) and a first vertical bar (2112), the two first transverse bars (2111) being hinged to a side wall of the first vertical bar (2112), each first angle frame (211) being located between two first transverse connecting bars (22), and both ends of each first transverse connecting bar (22) being connected to a corresponding first transverse bar (2111). Threaded connection, each second angle frame (212) includes two second cross bars (2121) and a second vertical bar (2122), the two second cross bars (2121) are fixedly connected at their respective ends, the second vertical bar (2122) and the two second cross bars (2121) are spherically hinged at their connection points, each second angle frame (212) is located between two second cross connecting bars (23), and both ends of each second cross connecting bar (23) are threadedly connected to a corresponding second cross bar (2121).

3. An ice fishing tent according to claim 1 or 2, characterized in that: Each side wall of the tent cloth (1) is provided with a ventilation hole (11), and each ventilation hole (11) is fixedly connected to a ventilation tube bag (5). The ventilation tube bag (5) is located inside the tent, and one end of the ventilation tube bag (5) is connected to the ventilation hole (11), and the other end is communicated with the inside of the tent.

4. The ice fishing tent according to claim 3, characterized in that: A bag rope (51) is installed at one end of the ventilation tube bag (5) away from the ventilation hole (11).

5. The ice fishing tent according to claim 2, characterized in that: Two reinforcing rods (4) are provided above the frame (2), and each reinforcing rod (4) is fixedly connected to a plug-in block (41) at both ends. A plug-in hole (2113) is provided on the upper surface of each first angle frame (211), and each plug-in block (41) is plugged into a corresponding plug-in hole (2113), and the two reinforcing rods (4) intersect with each other.

6. The ice fishing tent according to claim 1 or 2, characterized in that: The tent cloth (1) is a tent cloth (1) made of a light-shielding material.

Citation Information

Patent Citations

  • Folding tent

    CN2463500Y

  • Disaster preventive folding triangular tent

    JP2015010465A