Mock roof tent
The simulated roof tent addresses wind resistance issues by using a self-deploying support frame with a sliding member and insertion rods, ensuring automatic and stable deployment.
Patent Information
- Application Number
- JP2025003634U
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-09-22
- Filing Date
- 2025-10-22
- Publication Date
- 2025-12-22
- Estimated Expiration
- 2035-10-22
AI Technical Summary
Existing tents face challenges with wind resistance due to poorly fixed support frames that require manual labor for installation and are time-consuming.
A simulated roof tent with a support frame featuring symmetrically distributed legs, a roof frame with inwardly inclined rods, and a sliding member that automatically deploys the roof frame without manual adjustment, enhanced by insertion rods for stability and a locking mechanism.
The support frame provides automatic deployment and stability, ensuring the roof tent is securely fixed without manual intervention, enhancing wind resistance and ease of setup.
Smart Images

Figure 0003254105000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a simulated roof tent. [Background technology]
[0002] Tents are widely used for various outdoor work and leisure activities because they are easy to install and portable. However, in actual use, the basic functions of tents, such as wind protection, rain protection, and sun protection, and the convenience of unfolding and folding, are often in conflict. Although the support frame used in currently used tents has a simple structure and is lightweight, it generally requires manual operation to install the support frame in a predetermined position, which is time-consuming and labor-intensive. Meanwhile, the structural design of the tent support frame generally has the problem that it is not firmly fixed, that is, it has a problem that it has poor wind resistance or is not strong enough to resist other external forces. Summary of the Invention
[0003] The present invention provides a simulated roof tent. [Means for solving the problem]
[0004] The technical solutions adopted by this utility model to solve the above technical problems are as follows:
[0005] A simulated roof tent, comprising a support frame, the support frame comprising four support legs distributed symmetrically about four points, and a roof frame hingedly connected to the tops of the support legs, the roof frame comprising first support rods inclined inward and converging, the tops of each first support rod being hingedly connected to a central connecting member, the tops of the support legs being provided with first connecting members, the top ends of the first support rods being hingedly connected to the central connecting member, and the ends of the first support rods being hingedly connected to the first connecting member, and the outer walls of the support legs being provided with first support rods. A simulated roof tent comprising: a sliding member fitted inside the sliding member; a second support rod hingedly connected to the inside of the sliding member; a top end of the second support rod hingedly connected to a lower connecting rod of the first support rod; a first connecting hole provided on a side of the first connecting member; an insertion rod passing through the first connecting hole; an end of the insertion rod riveted to the second support rod; and a rod body of the insertion rod passing through the first connecting hole and sliding within the first connecting hole.
[0006] Preferably, the first support rod includes a first upper connecting rod and a first lower connecting rod hinged to each other, the top end of the first upper connecting rod being hinged to the central connecting member, and the end of the first lower connecting rod being hinged to the first connecting member.
[0007] Preferably, the insertion rod includes a stage a rod body and a stage b rod body, the connection point between the stage a rod body and the stage b rod body is arc-shaped, the end of the stage b rod body is riveted to the second support rod, the stage a rod body passes through the first connecting hole and can slide within the first connecting hole, when the support frame is fully unfolded, the connection point between the stage a rod body and the stage b rod body engages with the first connecting hole, and the stage a rod body is parallel to the first support rod, and when the support frame is fully folded, the top end of the stage a rod body engages with the first connecting hole.
[0008] Preferably, a positioning hole is provided at the upper end of the support leg, and a locking stopper that fits into the positioning hole is installed on the slide member, so that when the support frame and the roof frame are fully unfolded, the stopper of the slide member fits into the positioning hole of the support leg and is locked.
[0009] Preferably, the support leg has a hollow tube structure, a telescopic leg is installed inside the bottom end of the support leg, and a locking stopper is installed at the bottom of the support leg, and the support leg and the telescopic leg are fixed together by the locking stopper engaging with the positioning hole on the telescopic leg.
[0010] Preferably, the roof frame includes a first shrinkage support frame and a second shrinkage support frame installed between adjacent support legs, the first shrinkage support frame and the second shrinkage support frame are installed adjacent to each other, and there are two of each of the first shrinkage support frame and the second shrinkage support frame, and each is installed opposite each other.
[0011] Preferably, the first shrink-support frame includes a plurality of X-shaped shrinkage units hinged to each other, and upper and lower ends of the shrinkage units at both ends of the first shrink-support frame are hinged to a first connecting member and a sliding member, respectively; the second shrink-support frame includes a plurality of X-shaped shrinkage units hinged to each other, and upper and lower ends of the shrinkage units at both ends of the second shrink-support frame are hinged to a first connecting member and a sliding member, respectively.
[0012] Preferably, a connecting rod is connected to and installed outside the upper end connection points of two adjacent contraction units in the middle of the second contraction support frame, a cylindrical locking block protruding outward is installed outside the lower end connection point, and a locking groove that fits with the locking block is installed at the lower end of the connecting rod; the cross section of the second contraction support frame is an isosceles triangle, a second connecting member is connected to the inside of the upper end connection points of two adjacent contraction units in the middle of the second contraction support frame, the heights of the second connecting member and the central connecting member are the same, and a third support rod is installed between the second connecting member and the central connecting member. the third support rod is installed parallel to the ground, and the third support rod includes a second upper connecting rod and a second lower connecting rod which are hinged to each other, the top end of the second upper connecting rod is hinged to the central connecting member, and the end of the second lower connecting rod is hinged to the top end of the second lower connecting rod, and the end of the second lower connecting rod is hinged to the second connecting member; a fourth support rod is hingedly connected to the inner side of the lower end connection points of two adjacent contraction units in the middle of the second contraction support frame, and the top end of the fourth support rod is hingedly connected to the second lower connecting rod of the third connecting rod.
[0013] Preferably, a second connection hole is provided on the side of the second connection member, an insertion rod is also inserted into the second connection hole, the end of the b-stage rod body of the insertion rod is riveted to the fourth support rod, the a-stage rod body passes through the second connection hole and can slide within the second connection hole, when the support frame is fully unfolded, the connection point between the a-stage rod body and the b-stage rod body engages with the second connection hole, and the a-stage rod body is parallel to the third support rod, and when the support frame is fully folded, the a-stage rod body engages with the second connection hole.
[0014] Preferably, the first shrinking support frame is provided with three X-shaped shrinking units, and the second shrinking support frame is provided with four X-shaped shrinking units.
[0015] Compared with the prior art, the simulated roof tent of this utility model has a first connecting hole and a second connecting hole on the first connecting member, the end of the insertion rod inserted into the first connecting hole is riveted to the second support rod, and the end of the insertion rod inserted into the second connecting hole is riveted to the fourth support rod, so that the insertion rod further reinforces the stability of the simulated roof tent, the rod body of the upper end of the insertion rod passes through the first connecting hole and the second connecting hole, and the upper end of the insertion rod automatically slides through the first connecting hole and the second connecting hole as the support frame unfolds and folds, and after the support frame is fully unfolded, the insertion rod The second support rod is parallel to the first or third support rod, ensuring aesthetics after deployment. When the support frame is deployed, the sliding member slides upward, driving the second support rod to deploy upward, and the second support rod drives the first support rod to deploy in the process of moving upward. Therefore, when the sliding member moves upward, the roof frame automatically deploys along with the second support rod. Furthermore, since there is a rigid connection between the second support rod and the insertion rod, after the sliding member reaches a predetermined position, the roof frame is fully deployed in the predetermined position, and no manual adjustment is required. [Brief explanation of the drawings]
[0016] [Figure 1] 1 is a first perspective schematic view of a mock roof tent of the present invention. FIG. [Figure 2] 1A is an enlarged view of the mock roof tent of the present invention. FIG. [Figure 3] FIG. 1B is an enlarged view of the mock roof tent of the present invention. [Figure 4] 1 is a perspective schematic view of a mock roof tent according to the present invention; DETAILED DESCRIPTION OF THE INVENTION
[0017] The present utility model will be described in more detail below in connection with the exemplary embodiments of the drawings.
[0018] As shown in Figures 1 to 4, the simulated roof tent includes a support frame 1, which includes four support legs 11 distributed symmetrically about four points and a roof frame 2 hingedly connected to the tops of the support legs 11, and the roof frame 2 includes first support rods 21 that slope inward and converge, and the tops of each first support rod 12 are hingedly connected to a central connecting member 22.
[0019] A first connecting member 3 is installed on the top of the support leg 11, and the first support rod 21 includes a first upper connecting rod and a first lower connecting rod that are hingedly connected to each other, the top end of the first upper connecting rod is hingedly connected to the central connecting member 22, and the end of the first lower connecting rod is hingedly connected to the first connecting member 3, and the roof frame 2 can be unfolded and folded relative to the support frame 1, and when the support frame 1 is in an unfolded state, that is, the support legs 11 are spaced apart from each other, and the roof frame 2 is in an unfolded state, and when the support frame 1 is in a folded state, that is, the support legs 11 are close to each other, and the roof frame 2 is in a folded state, specifically, the first upper connecting rod and the first lower connecting rod of the first support rod 21 are folded downwards and close to each other.
[0020] A sliding member 4 is fitted to the outer wall of the support leg 11, and a second support rod 23 is hingedly connected to the inside of the sliding member 4, with the top end of the second support rod 23 hingedly connected to the lower connecting rod of the first support rod 21. When the support frame 1 changes from an open state to a folded state, the sliding member 4 slides downward along the support leg 11, and the second support rod 23 changes along with the positional changes of the sliding member 4 and the first support rod 21, specifically, moves gradually downward to approach the support leg 11. When the support frame 1 is completely folded, the sliding member 4 is located at the bottom end of the support leg 1.
[0021] A positioning hole (not shown) is provided at the upper end of the support leg 11, and a locking stopper that fits into the positioning hole is provided on the slide member 4. When the support frame 1 is unfolded, the slide member 4 slides upward along the support leg 11, and when the support frame 1 and the roof frame 2 are fully unfolded, the stopper of the slide member 4 fits into the positioning hole of the support leg 11 and is locked.
[0022] The support leg 11 has a hollow tube structure, and an extendable leg 111 is installed inside the bottom end of the support leg 11, and a locking stopper is also installed at the bottom of the support leg 11. The support leg 11 and the extendable leg 111 are fixed together by the locking stopper which fits into the positioning hole on the extendable leg 111, thereby adjusting the height of the support leg 11.
[0023] A first connecting hole 31 is provided on the side of the first connecting member 3, and an insertion rod 6 is installed through the first connecting hole 31. The insertion rod 6 includes an a-stage rod body 61 and a b-stage rod body 62. The connection between the a-stage rod body 61 and the b-stage rod body 62 is arc-shaped. The end of the b-stage rod body 62 is riveted to the second support rod 23. The a-stage rod body 61 passes through the first connecting hole 31 and can slide within the first connecting hole 31. During the deployment of the support frame 1, the a-stage rod body 6 1 gradually extends from the first connecting hole 31 to the outside of the support frame 1, and when the support frame 1 is fully unfolded, the connection point between the a-stage rod body 61 and the b-stage rod body 62 engages with the first connecting hole 31, and the a-stage rod body 61 is parallel to the first support rod 21, and when the support frame 1 is folded, the a-stage rod body 61 slides into the inside of the support frame 1 along the first connecting hole 31, and when the support frame 1 is fully folded, the top end of the a-stage rod body 61 engages with the first connecting hole 31.
[0024] The roof frame 2 includes a first shrinkage support frame 24 and a second shrinkage support frame 25 installed between adjacent support legs 11, the first shrinkage support frame 24 and the second shrinkage support frame 25 are installed adjacent to each other, and there are two of each of the first shrinkage support frame 24 and the second shrinkage support frame 25, each installed opposite each other.
[0025] The first shrink-support frame 24 includes a plurality of X-shaped shrinkage units that are hingedly connected to one another. In this embodiment, the first shrink-support frame 24 includes three X-shaped shrinkage units, and the upper and lower ends of the shrinkage units on both ends of the first shrink-support frame 24 are hingedly connected to the first connecting member 3 and the sliding member 4, respectively. The second shrink-support frame 25 includes a plurality of X-shaped shrinkage units that are hingedly connected to one another. In this embodiment, the second shrink-support frame 25 includes four X-shaped shrinkage units, and the upper and lower ends of the shrinkage units on both ends of the second shrink-support frame 25 are hingedly connected to the first connecting member 3 and the sliding member 4, respectively. The first shrink-support frame 24 and the second shrink-support frame 25 can be unfolded and folded along with the unfolding and folding of the support frame 1.
[0026] A connecting rod 26 is installed to connect to the outside of the upper end connection points of two adjacent contraction units in the middle of the second contraction support frame 25, a cylindrical locking block 251 protruding outward is installed on the outside of the lower end connection point, a top cover extending outward is installed at the top of the locking groove, and a locking groove 261 is installed at the lower end of the connecting rod 26 to fit with the locking block 251. The cross section of the second contraction support frame 25 is an isosceles triangle, and the role of the connecting rod 26 is to fit with the locking block 251 to provide an intermediate support point for the second contraction support frame 25 after the mock roof tent is fully unfolded, making the whole structure more stable and able to withstand a larger load, a second connecting member 5 is connected to the inside of the upper end connection points of two adjacent contraction units in the middle of the second contraction support frame 25, the second connecting member 5 and the central connecting member 22 are of the same height, and a third support rod 27 is hingedly connected between the second connecting member 5 and the central connecting member 22, and the third The support rods 27 are installed parallel to the ground, and the third support rod 27 includes a second upper connecting rod and a second lower connecting rod that are hinged to each other. The top end of the second upper connecting rod is hinged to the central connecting member 22, and the end is hinged to the top end of the second lower connecting rod. The end of the second lower connecting rod is hinged to the second connecting member 5. A fourth support rod 28 is hinged to the inside of the lower end connection points of two adjacent contraction units in the middle of the second contraction support frame 25. The top end of the fourth support rod 28 is hingedly connected to the second lower connecting rod of the third connecting rod 27, and the third support rod 27 and the fourth support rod 28 can both unfold and fold along with the unfolding and folding of the support frame 1, and when the support frame 1 is folded, the second upper connecting rod and the second lower connecting rod of the third connecting rod 27 move downward in opposite directions, and the fourth support rod 28 moves downward to approach the connecting rod 26.
[0027] a second connecting hole 51 is provided on the side of the second connecting member 5, and an insertion rod 6 is also inserted into the second connecting hole 51; the end of the b-stage rod body 62 of the insertion rod 6 is riveted to the fourth support rod 28, and the a-stage rod body 61 passes through the second connecting hole 51 and can slide within the second connecting hole 51; when the support frame 1 is unfolded, the a-stage rod body 61 gradually extends from the second connecting hole 51 to the outside of the support frame 1; when the support frame 1 is fully unfolded, the connection point between the a-stage rod body 61 and the b-stage rod body 62 fits into the second connecting hole 51, and the a-stage rod body 61 is parallel to the third support rod 27; when the support frame 1 is folded, the a-stage rod body 61 slides into the inside of the support frame 1 along the second connecting hole 51; when the support frame 1 is fully folded, the a-stage rod body 61 fits into the second connecting hole 51.
[0028] The simulated roof tent of this utility model has a first connecting hole 31 and a second connecting hole 51 installed on the first connecting member 3, the end of the insertion rod 6 inserted into the first connecting hole 31 is riveted to the second support rod 23, and the end of the insertion rod 6 inserted into the second connecting hole 51 is riveted to the fourth support rod 28, the insertion rod 6 further reinforces the stability of the simulated roof tent, the rod body of the upper end of the insertion rod 6 passes through the first connecting hole 31 and the second connecting hole 51, the upper end of the insertion rod 6 automatically slides through the first connecting hole 31 and the second connecting hole 51 as the support frame 1 unfolds and folds, and after the support frame 1 is fully unfolded, the insertion rod 6 The second support rod 23 is parallel to the first support rod 21 or the third support rod 27, ensuring a good appearance after deployment. When the support frame 1 is deployed, the sliding member 4 slides upward, driving the second support rod 23 to deploy upward, and the second support rod 23 drives the first support rod 21 to deploy in the process of moving upward. Therefore, when the sliding member 4 moves upward, the roof frame 2 automatically deploys along with the second support rod 23. Furthermore, because there is a rigid connection between the second support rod 23 and the insertion rod 6, after the sliding member 4 reaches a predetermined position, the roof frame 2 is fully deployed in the predetermined position, and no manual adjustment is required.
[0029] Finally, it should be noted that the above embodiments are only for explaining the technical solutions of the present utility model, and are not intended to limit the same. Although the present utility model has been described in detail with reference to the above embodiments, it should be understood by those skilled in the art that modifications may still be made to the technical solutions described in the above embodiments, or equivalent replacements may be made for some of the technical features therein, and such modifications or replacements will not deviate from the essence of the technical solutions and the spirit and scope of the technical solutions of the embodiments of the present utility model.
Claims
1. A simulated roof tent, comprising a support frame (1), the support frame (1) comprising four support legs (11) distributed symmetrically about four points, and a roof frame (2) hinged to the tops of the support legs (11), the roof frame (2) comprising first support rods (21) inclined inward and converging, the tops of each of the first support rods (12) being hinged to a central connecting member (22), a first connecting member (3) being installed at the tops of the support legs (11), the top ends of the first support rods (21) being hinged to the central connecting member (22) and the ends being hinged to the first connecting member (3), and the outer ends of the support legs (11) being hinged to the first connecting member (3). A simulated roof tent comprising: a sliding member (4) fitted into a wall; a second support rod (23) hingedly connected to the inside of the sliding member (4); a top end of the second support rod (23) hingedly connected to the lower connecting rod of the first support rod (21); a first connecting hole (31) provided on the side of the first connecting member (3); an insertion rod (6) passing through and installed in the first connecting hole (31); an end of the insertion rod (6) riveted to the second support rod (23); and a rod body of the insertion rod (6) passing through the first connecting hole (31) and sliding within the first connecting hole (31).
2. 2. The mock roof tent according to claim 1, wherein the first support rod (21) comprises a first upper connecting rod and a first lower connecting rod that are hingedly connected to each other, the top end of the first upper connecting rod being hingedly connected to a central connecting member (22), and the end of the first lower connecting rod being hingedly connected to a first connecting member (3).
3. 2. The mock roof tent according to claim 1, wherein the insertion rod (6) comprises an a-stage rod body (61) and a b-stage rod body (62), the connection between the a-stage rod body (61) and the b-stage rod body (62) is arc-shaped, the end of the b-stage rod body (62) is riveted to the second support rod (23), the a-stage rod body (61) passes through a first connecting hole (31) and can slide within the first connecting hole (31), when the support frame (1) is fully unfolded, the connection between the a-stage rod body (61) and the b-stage rod body (62) fits into the first connecting hole (31), and the a-stage rod body (61) is parallel to the first support rod (21), and when the support frame (1) is fully folded, the top end of the a-stage rod body (61) fits into the first connecting hole (31).
4. The mock roof tent according to claim 1, characterized in that positioning holes are provided at the upper ends of the support legs (11), and locking stoppers that fit into the positioning holes are installed on the slide members (4), so that when the support frame (1) and the roof frame (2) are fully unfolded, the stoppers of the slide members (4) fit into the positioning holes of the support legs (11) and are locked.
5. The mock roof tent according to claim 1, characterized in that the support leg (11) has a hollow tubular structure, a telescopic leg (111) is installed inside the bottom end of the support leg (11), a locking stopper is installed at the bottom of the support leg (11), and the fixation between the support leg (11) and the telescopic leg (111) is achieved by the locking stopper fitting into a positioning hole on the telescopic leg (111).
6. 4. The mock roof tent according to claim 1, 2 or 3, characterized in that the roof frame (2) includes a first shrinkage support frame (24) and a second shrinkage support frame (25) installed between adjacent support legs (11), the first shrinkage support frame (24) and the second shrinkage support frame (25) are installed adjacent to each other, and there are two of each of the first shrinkage support frame (24) and the second shrinkage support frame (25) and they are installed opposite each other.
7. 7. The simulated roof tent according to claim 6, wherein the first shrink-support frame (24) includes a plurality of X-shaped shrinkage units hinged to each other, and upper and lower ends of the shrinkage units at both ends of the first shrink-support frame (24) are hinged to the first connecting member (3) and the slide member (4), respectively; and the second shrink-support frame (25) includes a plurality of X-shaped shrinkage units hinged to each other, and upper and lower ends of the shrinkage units at both ends of the second shrink-support frame (25) are hinged to the first connecting member (3) and the slide member (4), respectively.
8. A connecting rod (26) is connected to the outside of the upper end connection points of two adjacent contraction units in the middle of the second contraction support frame (25), a cylindrical locking block (251) protruding outward is installed on the outside of the lower end connection points, and a locking groove (261) that fits into the locking block (251) is installed at the lower end of the connecting rod (26). The cross section of the second contraction support frame (25) is an isosceles triangle, a second connecting member (5) is connected to the inside of the upper end connection points of two adjacent contraction units in the middle of the second contraction support frame (25), the heights of the second connecting member (5) and the central connecting member (22) are the same, and a third support rod (27) is hinged between the second connecting member (5) and the central connecting member (22). the third support rod (27) is installed parallel to the ground, the third support rod (27) comprises a second upper connecting rod and a second lower connecting rod hinged to each other, the top end of the second upper connecting rod is hinged to the central connecting member (22) and the end thereof is hinged to the top end of the second lower connecting rod, the end of the second lower connecting rod is hinged to the second connecting member (5), a fourth support rod (28) is hinged to the inside of the lower end connection points of two adjacent folding units in the middle of the second folding support frame (25), and the top end of the fourth support rod (28) is hinged to the second lower connecting rod of the third connecting rod (27).
9. 9. The mock roof tent according to claim 8, wherein a second connection hole (51) is provided on a side of the second connection member (5), an insertion rod (6) is also inserted into the second connection hole (51), an end of a b-stage rod body (62) of the insertion rod (6) is riveted to the fourth support rod (28), the a-stage rod body (61) passes through the second connection hole (51) and can slide within the second connection hole (51), when the support frame (1) is fully unfolded, the connection point between the a-stage rod body (61) and the b-stage rod body (62) fits into the second connection hole (51), and the a-stage rod body (61) is parallel to the third support rod (27), and when the support frame (1) is fully folded, the a-stage rod body (61) fits into the second connection hole (51).
10. The simulated roof tent according to claim 7, characterized in that three X-shaped contraction units of the first contraction support frame (24) are installed, and four X-shaped contraction units of the second contraction support frame (25) are installed.