A tent that is easy to store based on four-way and three-way connectors
By using four-way three-way connections and transmission mechanisms in the tent, the synchronous operation of the support structure is achieved, which solves the problem of insufficient structural strength and cumbersome construction and storage of the tent under poor weather conditions, and improves the safety and convenience of the tent.
Patent Information
- Application Number
- CN202211670647.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-26
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2042-12-26
AI Technical Summary
The existing tents have insufficient structural strength under poor weather conditions, and the construction and storage process is cumbersome, making it difficult to ensure the neat and closure of the tent cloth.
The design based on four-way three-way connection parts is adopted, and the transmission cooperation of the turbine, drive rod, slider, support oblique rod and drive assembly can achieve synchronous expansion and contraction of the support oblique rod and the support vertical rod, driving the expansion and closing of the tarp, and automatically neatly closing the tarp through the deflection force of the installation plate.
It improves the structural strength and safety of the tent, simplifies the construction and storage process, reduces manual interference, realizes the neat collection of tarpaulins and the automatic storage of solar panels, and improves the convenience and comfort of the tent.
Smart Images

Figure CN115749428B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of tents, and specifically to a tent that is easy to store based on four-way and three-way connectors. Background Art
[0002] A tent is a shed that is propped on the ground to shield against wind, rain, sunlight and for temporary residence. It is mostly made of canvas, and together with the supporting things, it can be disassembled and transferred at any time. Tents are carried in the form of components and assembled on site, so various components and tools are required. Only by understanding the names and usage methods of each component and being familiar with the structure of the tent can the tent be set up quickly and conveniently.
[0003] Existing tents need to ensure that there are enough support poles to support the tent cloth to a greater extent to improve the structural strength of the tent and ensure its supporting performance. However, such tents with many support poles are often difficult to set up and put away, and users need to spend a lot of time and energy setting up and dismantling the tent before and after use, which is extremely inconvenient. In addition, when the tent is disassembled and stored, as the support poles shrink, the originally unfolded tent cloth collapses accordingly. However, during this process, users need to manually pull or press the collapsed tent cloth to ensure the neatness of the tent cloth when it is folded. Otherwise, the part of the tent cloth that is not directly connected to the support poles will collapse randomly, resulting in the tent cloth being laid disorderly outside the support poles, which is not convenient for storing the tent. Moreover, a tent has at least three sides, usually four, and it is difficult for a single person to manually limit three or four tent cloth surfaces at the same time to make them neatly folded. Summary of the Invention
[0004] (I) Technical Problems to be Solved
[0005] In view of the deficiencies of the prior art, the present invention provides a tent that is easy to store based on four-way and three-way connectors, which has the advantages of high safety and solves the problems of insufficient structural strength and low safety in poor weather.
[0006] (II) Technical Solutions
[0007] To solve the above technical problems of insufficient structural strength and low safety in poor weather, the present invention provides the following technical solutions: A tent that is easy to store based on four-way and three-way connectors, including a mounting member, a driving mechanism is provided on the mounting member, and four sets of supporting mechanisms are provided below the mounting member. The supporting mechanism includes a turbine, a driving rod, a slider, a supporting diagonal rod, a driving component and a mounting plate. The turbine is fixedly installed on the turbine, the slider is hinged at one end of the driving rod, the supporting diagonal rod is rotatably fitted on the mounting member, and the slider is slidably fitted with the supporting diagonal rod. A supporting mechanism is provided at the bottom end of the supporting diagonal rod, and a tent cloth is provided outside the supporting diagonal rod and the supporting mechanism.
[0008] The driving component is arranged on the supporting inclined rod, the mounting plate is used to carry a solar panel capable of providing electric energy, and when the slider slides, it can drive the driving component to drive the mounting plate to deflect;
[0009] During the process that the supporting inclined rod and the supporting mechanism expand to unfold the tarpaulin, the mounting plate deflects towards the outside of the tarpaulin so that the solar panel is exposed;
[0010] During the process that the supporting inclined rod and the supporting mechanism contract to fold up the tarpaulin, the mounting plate deflects towards the inside of the tarpaulin so that the solar panel is retracted, and the deflection force of the mounting plate can make the tarpaulin automatically fold neatly towards the inside.
[0011] Preferably, the driving component includes a toothed plate, a sleeve, a rotating shaft, a gear, a driving bevel gear, a deflecting rotating shaft and a driven bevel gear. The toothed plate is arranged on the slider. The sleeve is fixedly installed on one side of the supporting inclined rod, and an L-shaped connecting seat is fixedly connected to the sleeve. The rotating shaft is rotationally matched in the sleeve and the L-shaped connecting seat. The gear is fixedly sleeved at the bottom end of the rotating shaft, and the gear meshes with the toothed plate. The driving bevel gear is fixedly sleeved at the top end of the rotating shaft. The deflecting rotating shaft is rotationally matched on the L-shaped connecting seat. The driven bevel gear is fixedly sleeved at one end of the deflecting rotating shaft, and the driving bevel gear meshes with the driven bevel gear. The mounting plate is fixedly installed on the deflecting rotating shaft.
[0012] Preferably, the driving mechanism includes a worm, a driving motor and an outdoor power supply. The worm is rotationally matched on the mounting member, and a turbine meshes with the worm. The driving motor is fixedly installed below the mounting member through a motor bracket. The electric energy converted from the solar energy collected by the solar panel can be transmitted to the outdoor power supply.
[0013] Preferably, a manual control mechanism is arranged on the worm. A square through-hole is formed in the worm. The manual control mechanism includes a movable rod, an electric square block, a connecting rod, a manual square block and a handwheel. The inner top surface of the movable rod is connected to the output shaft of the driving motor through an elastic member. The electric square block is arranged at the top end of the movable rod. The connecting rod is arranged at the top of the electric square block. The manual square block is rotationally matched at the top end of the connecting rod. The handwheel is fixedly connected to the top end of the manual square block. Both the electric square block and the manual square block are adapted to the square through-hole. When the elastic member is in a natural stretched state, the electric square block is located inside the square through-hole and the manual square block is located outside the square through-hole.
[0014] Preferably, the supporting mechanism comprises a rotating member, a four-way connecting member, a supporting vertical rod, and a three-way connecting member, the rotating member is rotatably engaged with the bottom end of the supporting diagonal rod, the four-way connecting member is arranged below the rotating member, the supporting vertical rod is arranged below the four-way connecting member, and the three-way connecting member is arranged at the bottom end of the supporting vertical rod.
[0015] Preferably, two groups of cross components and two groups of arc components are respectively arranged between the two supporting vertical rods corresponding to the adjacent sides of the tarpaulin, the two groups of cross components are cross-distributed, and the two groups of arc components are distributed in parallel, and the entrance and exit of the tarpaulin are opened on the side where the arc components are provided.
[0016] Preferably, the two groups of cross components each include a sleeve and an inner rod, the two sleeves are respectively rotatably engaged on the corresponding two four-way connectors, the two inner rods are respectively rotatably engaged on the corresponding two three-way connectors, and the two sleeves are respectively slidably engaged with the corresponding two inner rods.
[0017] Preferably, the two groups of arc components respectively include an upper arc rod and a lower arc rod, the two ends of the upper arc rod are respectively rotatably matched with the corresponding two four-way connectors, and the middle part of the upper arc rod is in a hinged state, and the two ends of the lower arc rod are respectively rotatably matched with the corresponding two three-way connectors, and the middle part of the lower arc rod is in a hinged state.
[0018] (III) Beneficial effects
[0019] Compared with the prior art, the present invention provides a tent that is easy to store based on a four-way and three-way connector, which has the following beneficial effects:
[0020] 1. The tent, which is easy to store based on the four-way and three-way connector, can be driven by the driving mechanism to drive the supporting diagonal rod and the supporting vertical rod to expand synchronously to prop up and unfold the tarpaulin under the transmission cooperation of the turbine, the driving rod, the slider, the supporting diagonal rod and the supporting vertical rod. At the same time, the slider drives the driving assembly to drive the mounting plate to deflect to the outside of the tarpaulin, so that the solar panel is exposed to receive solar energy, realize the accumulation of electric energy of the outdoor power supply, supply power to the driving mechanism and meet other outdoor electricity needs of the tent user, and the reverse driving of the driving mechanism can drive the supporting diagonal rod and the supporting vertical rod to contract to drive The tarpaulin is stored and the mounting plate is deflected toward the inside of the tarpaulin at the same time, so that the solar panel is folded up, thereby realizing the storage and protection of the solar panel. As the supporting diagonal rod and the supporting mechanism shrink, the tarpaulin collapses accordingly. The deflection force of the mounting plate toward the inside of the tent can press and guide the collapsed tarpaulin, so that the tarpaulin is folded inwardly under the action of the mounting plate during the folding process, thereby improving the neatness of the entire tarpaulin surface when folded, reducing the storage space after the tent is stored, and ensuring a good storage effect of the tarpaulin without manual intervention, thereby improving the convenience of storing the tent.
[0021] 2. The tent based on the four-way and three-way connectors that is convenient for storage can drive the slider to drive the gear to rotate through the toothed plate while propping up the tarpaulin through the support diagonal rod. The gear drives the rotating shaft to drive the active bevel gear, and the active bevel gear drives the driven bevel gear to drive the offset rotating shaft to drive the mounting plate to move. This process is synchronized with the unfolding of the tent, realizing automatic unfolding and recycling, and then providing electricity for the people inside the tent, improving the comfort of outdoor living.
[0022] 3. When the tent based on the four-way and three-way connectors that is convenient for storage cannot be driven electrically during use, the unfolding and recycling operations can also be completed manually. The specific operation can be to manually press the handwheel, and rotate the handwheel to drive the manual square block to drive the turbine to rotate to complete the manual operation. This operation can effectively improve the applicability of the device, and can avoid the situation where the outdoor power supply fails to store electricity and cannot be stored, making it more practical.
[0023] 4. When the four support vertical rods of the tent based on the four-way and three-way connectors that is convenient for storage are unfolded, the four support vertical rods drive the four sleeves and the four inner rods to move away from each other. The four sleeves can cooperate with the four inner rods to limit the vertical state of the four support vertical rods. Through this structure, the structural strength of the device can be effectively increased, and the safety can be further improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is the overall three-dimensional structure diagram of the present invention;
[0025] Figure 2 is one of the partial three-dimensional structure diagrams of the present invention;
[0026] Figure 3 is the second of the partial three-dimensional structure diagrams of the present invention;
[0027] Figure 4 is of the present invention Figure 3 partial enlarged structure diagram at A;
[0028] Figure 5 is the third of the partial three-dimensional structure diagrams of the present invention;
[0029] Figure 6 is of the present invention Figure 5 partial enlarged structure diagram at B;
[0030] Figure 7 is the fourth of the partial three-dimensional structure diagrams of the present invention;
[0031] Figure 8 is the fifth of the partial three-dimensional structure diagrams of the present invention.
[0032] In the figure: 1. Mounting member; 2. Driving mechanism; 21. Worm; 22. Driving motor; 23. Outdoor power supply; 24. Manual control mechanism; 241. Movable rod; 242. Electric square block; 243. Connecting rod; 244. Manual square block; 245. Handwheel; 25. Square through-hole; 3. Lifting mechanism; 31. Turbine; 32. Driving rod; 33. Slide block; 34. Supporting inclined rod; 35. Driving assembly; 351. Tooth plate; 352. Sleeve; 353. Rotating shaft; 354. Gear; 355. Active bevel gear; 356. Deflecting shaft; 357. Driven bevel gear; 36. Mounting plate; 37. Tarpaulin; 4. Supporting mechanism; 41. Rotating member; 42. Four-way connecting piece; 43. Supporting vertical rod; 44. Three-way connecting piece; 45. Cross assembly; 451. Sleeve; 452. Inner rod; 46. Arc assembly; 461. Upper arc rod; 462. Lower arc rod. Detailed implementation manner
[0033] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0034] Please refer to Figures 1-8 , a tent that is easy to store based on four-way and three-way connecting pieces, including a mounting member 1, a driving mechanism 2 is arranged on the mounting member 1, and four groups of lifting mechanisms 3 are arranged below the mounting member 1. The lifting mechanism 3 includes a turbine 31, a driving rod 32, a slide block 33, a supporting inclined rod 34, a driving assembly 35 and a mounting plate 36. The turbine 31 is rotationally fitted on the mounting member 1 and is driven to rotate by the driving mechanism 2. The driving rod 32 is fixedly installed on the turbine 31. The slide block 33 is hinged to one end of the driving rod 32. The supporting inclined rod 34 is rotationally fitted on the mounting member 1, and the slide block 33 is slidably fitted with the supporting inclined rod 34. A supporting mechanism 4 is arranged at the bottom end of the supporting inclined rod 34. A tarpaulin 37 is arranged outside the supporting inclined rod 34 and the supporting mechanism 4. Thus, when the driving mechanism 2 drives the turbine 31 to rotate, the turbine 31 drives the driving rod 32 to deflect, so that the slide block 33 drives the supporting inclined rod 34 to deflect, and the supporting inclined rod 34 drives the supporting mechanism 4 to expand outward synchronously to support and unfold the tarpaulin 37 to complete the tent erection. When the tent needs to be stored, by driving the turbine 31 to rotate in the reverse direction through the driving mechanism 2, the supporting inclined rod 34 and the supporting mechanism 4 can be driven to contract to drive the tarpaulin 37 to be stored;
[0035] The driving component 35 is arranged on the supporting diagonal rod 34. The mounting plate 36 is used to carry a solar panel capable of providing electric energy. When the slider 33 drives the supporting diagonal rod 34 to deflect, the slider 33 slides along the supporting diagonal rod 34. When the slider 33 slides, it can drive the driving component 35 to drive the mounting plate 36 to deflect.
[0036] During the process that the supporting diagonal rod 34 and the supporting mechanism 4 expand outward to unfold the tarpaulin 37, the mounting plate 36 deflects outward from the tarpaulin 37 so that the solar panel is exposed. When the tarpaulin 37 is fully unfolded, the solar panel on the mounting plate 36 can be laid on the tarpaulin 37, and thus the solar energy can be received to the maximum extent to realize the accumulation of electric energy.
[0037] During the process that the supporting diagonal rod 34 and the supporting mechanism 4 contract to fold up the tarpaulin 37, the mounting plate 36 deflects inward from the tarpaulin 37 so that the solar panel is retracted. The mounting plate 36 and the solar panel thereon are synchronized with the folding of the tarpaulin 37, avoiding the situation that the solar panel is still exposed after the tarpaulin 37 is folded up, increasing the overall storage space of the tent. There is no need to manually retract the solar panel specially before folding up the tarpaulin 37, reducing the manual workload. Moreover, the deflecting force of the mounting plate 36 can make the tarpaulin 37 automatically fold inward neatly. Therefore, during the process that the mounting plate 36 deflects inward, in addition to realizing the synchronous retraction of the solar panel, as the supporting diagonal rod 34 and the supporting mechanism 4 contract, the tarpaulin 37 collapses accordingly. The deflecting force of the mounting plate 36 toward the inner side of the tent can press and guide the collapsed tarpaulin 37, so that the tarpaulin 37 is folded inward under the action of the mounting plate 36 during the folding process, thereby improving the neatness of the entire surface of the tarpaulin 37 during folding, reducing the storage space after the tent is folded, enabling the tarpaulin 37 to ensure a good folding effect without manual interference, and improving the folding convenience of the tent.
[0038] Further, the driving assembly 35 includes a toothed plate 351, a sleeve 352, a rotating shaft 353, a gear 354, a driving bevel gear 355, a deflecting shaft 356 and a driven bevel gear 357. The toothed plate 351 is arranged on the slider 33. The sleeve 352 is fixedly installed on one side of the supporting diagonal rod 34, and an L-shaped connecting seat is fixedly connected to the sleeve 352. The rotating shaft 353 is rotatably fitted in the sleeve 352 and the L-shaped connecting seat. The gear 354 is fixedly sleeved on the bottom end of the rotating shaft 353, and the gear 354 meshes with the toothed plate 351. The driving bevel gear 355 is fixedly sleeved on the top end of the rotating shaft 353. The deflecting shaft 356 is rotatably fitted on the L-shaped connecting seat. The driven bevel gear 357 is fixedly sleeved on one end of the deflecting shaft 356, and the driving bevel gear 355 meshes with the driven bevel gear 357. The mounting plate 36 is fixedly installed on the deflecting shaft 356. Thus, when the driving mechanism 2 drives the supporting diagonal rod 34 and the supporting mechanism 4 to expand outward synchronously to unfold the tent, during the process that the slider 33 slides along the supporting diagonal rod 34, the toothed plate 351 can drive the gear 354 to rotate, the gear 354 drives the rotating shaft 353 to drive the driving bevel gear 355 to rotate, the driving bevel gear 355 drives the engaged driven bevel gear 357 to rotate, and further drives the deflecting shaft 356 to drive the mounting plate 36 to deflect.
[0039] Further, the driving mechanism 2 includes a worm 21, a driving motor 22 and an outdoor power supply 23. The worm 21 is rotatably fitted on the mounting member 1, and the turbine 31 meshes with the worm 21. The driving motor 22 is fixedly installed below the mounting member 1 through a motor bracket. The electric energy converted from the solar energy collected by the solar panel can be transmitted to the outdoor power supply 23. Specifically, the electric energy stored in the outdoor power supply 23 can supply power to the driving motor 22 or meet other outdoor power consumption needs of the tent user.
[0040] Further, a manual control mechanism 24 is provided on the worm rod 21. A square through opening 25 is formed on the worm rod 21. The manual control mechanism 24 includes a movable rod 241, an electric square block 242, a connecting rod 243, a manual square block 244, and a handwheel 245. The inner top surface of the movable rod 241 is connected to the output shaft of the drive motor 22 through an elastic member. The electric square block 242 is arranged at the top end of the movable rod 241. The connecting rod 243 is arranged on the top of the electric square block 242. The manual square block 244 is rotatably fitted at the top end of the connecting rod 243. The handwheel 245 is fixedly connected to the top end of the manual square block 244. Both the electric square block 242 and the manual square block 244 are adapted to the square through opening 25. When the elastic member is in a natural stretched state, the electric square block 242 is located inside the square through opening 25, and the manual square block 244 is located outside the square through opening 25. Thus, the worm rod 21 can be driven electrically or manually. When the electric energy stored in the outdoor power supply 23 is sufficient, it can supply power to the drive motor 22. Through the drive motor 22, the movable rod 241 and the electric square block 242 can be directly driven to rotate. At this time, the electric square block 242 is located inside the square through opening 25. The rotation of the electric square block 242 can drive the worm rod 21 to rotate synchronously, so as to drive a plurality of turbines 31 engaged with the worm rod 21 to rotate synchronously, realizing the unfolding or retracting of the tarpaulin 37. When the electric energy stored in the outdoor power supply 23 is insufficient, the worm rod 21 is driven to rotate manually. Press down the handwheel 245 to drive the manual square block 244, the connecting rod 243, the electric square block 242, and the movable rod 241 to move downward simultaneously. When the movable rod 241 compresses the elastic member so that the manual square block 244 moves downward to completely enter the square through opening 25, the electric square block 242 exits from the lower side of the square through opening 25. Further, the worm rod 21 is disengaged from the electric square block 242, and the worm rod 21 is not limited by the output shaft of the drive motor 22. When the handwheel 245 is rotated manually, the manual square block 244 can be driven to rotate, and then the worm rod 21 is driven to drive the turbine 31 to rotate, realizing the unfolding or retracting of the tarpaulin 37 and completing the manual operation. After the manual operation is completed, when the handwheel 245 is released, the elastic member can automatically pop out and reset to the natural stretched state, making the electric square block 242 located inside the square through opening 25 and the manual square block 244 located outside the square through opening 25, restoring the electric drive mode of the worm rod 21. Specifically, the elastic member can be a spring in the prior art.
[0041] Further, the support mechanism 4 includes a rotating member 41, a four-way connecting member 42, a support vertical rod 43, and a three-way connecting member 44. The rotating member 41 is rotatably fitted at the bottom end of the support diagonal rod 34. The four-way connecting member 42 is arranged below the rotating member 41. The support vertical rod 43 is arranged below the four-way connecting member 42. The three-way connecting member 44 is arranged at the bottom end of the support vertical rod 43. The three-way connecting member 44 and the four-way connecting member 42 can be connected to parts by bolts, which can greatly improve the assembly efficiency, the assembly is simple, and it is easier to realize repeated disassembly and assembly. When the four support diagonal rods 34 support the tarpaulin 37, the four rotating members 41, the four four-way connecting members 42, the four support vertical rods 43, and the four three-way connecting members 44 can be driven to move simultaneously, so that the four support vertical rods 43 move away from each other to complete the unfolding.
[0042] Further, two sets of cross components 45 and two sets of arc components 46 are respectively arranged between the two support vertical rods 43 corresponding to the adjacent sides of the tarpaulin 37. The two sets of cross components 45 are cross-distributed, and the two sets of arc components 46 are parallelly distributed. The entrance and exit of the tarpaulin 37 are arranged on the side where the arc component 46 is provided. During use, with the mutual cooperation of the cross component 45, the arc component 46, the three-way connecting member 44, and the four-way connecting member 42, the overall structure of the device can be made more stable, and at the same time, it can ensure that the four support vertical rods 43 are always parallel.
[0043] Further, both sets of cross components 45 include a sleeve 451 and an inner rod 452. The two sleeves 451 are respectively rotatably fitted on the corresponding two four-way connecting members 42. The two inner rods 452 are respectively rotatably fitted on the corresponding two three-way connecting members 44, and the two sleeves 451 are respectively slidably fitted with the corresponding two inner rods 452. When the tent is unfolded, the four support vertical rods 43 drive the four sleeves 451 and the four inner rods 452 to move away from each other, and the four sleeves 451 and the four inner rods 452 can limit the vertical state of the four support vertical rods 43.
[0044] Further, both sets of arc components 46 respectively include an upper arc rod 461 and a lower arc rod 462. The two ends of the upper arc rod 461 are respectively rotatably fitted with the corresponding two four-way connecting members 42, and the middle part of the upper arc rod 461 is in an articulated state. The two lower arc rods 462 are respectively rotatably fitted with the corresponding two three-way connecting members 44, and the middle part of the lower arc rod 462 is in an articulated state. The upper arc rod 461 and the lower arc rod 462 with articulated middle parts play a role in strengthening the overall structure and are convenient for contraction. At the same time, the entrance and exit of the tarpaulin 37 are arranged on the side where the arc component 46 is provided, which is convenient for people to enter.
[0045] Working principle: When the outdoor power supply 23 stores sufficient electric energy, the driving motor 22 is started to drive the movable rod 241 and the electric square block 242 to rotate, so as to drive the worm 21 to rotate. When the electric energy stored in the outdoor power supply 23 is insufficient, press down the handwheel 245 to drive the movable rod 241 to compress the elastic member so that the manual square block 244 moves downward until it completely enters the square through-hole 25. At this time, the electric square block 242 exits from the lower side of the square through-hole 25, and then manually rotating the handwheel 245 can drive the manual square block 244 to rotate, thereby driving the worm 21 to rotate;
[0046] The worm 21 drives a plurality of meshed turbines 31 to rotate synchronously. The turbines 31 respectively drive the corresponding driving rods 32 to deflect, so that the slider 33 drives the supporting inclined rod 34 to deflect. The four supporting inclined rods 34 drive the four groups of rotating members 41, the four groups of four-way connecting members 42, the four groups of supporting vertical rods 43 and the four groups of three-way connecting members 44 to move simultaneously, so that the four groups of supporting vertical rods 43 move away from each other to complete the expansion of the tarpaulin 37 through the outward expansion of the supporting inclined rod 34 and the supporting vertical rod 43, and complete the erection of the tent. Among them, during the process of the slider 33 driving the supporting inclined rod 34 to deflect, the slider 33 slides along the supporting inclined rod 34. When the slider 33 slides, it can drive the driving assembly 35 to drive the mounting plate 36 to deflect outward from the tarpaulin 37. When the tarpaulin 37 is completely unfolded, the solar panel on the mounting plate 36 can be laid on the tarpaulin 37, which can receive solar energy to the maximum extent and realize the accumulation of electric energy. The electric energy converted from the solar energy collected by the solar panel can be transported to the outdoor power supply 23 for storage. The electric energy stored in the outdoor power supply 23 can supply power to the driving motor 22 or meet other outdoor power consumption needs of the tent users, improving the comfort of outdoor living;
[0047] When it is necessary to fold up the tarpaulin 37, driving the worm 21 to rotate reversely by electric or manual means can drive the supporting inclined rod 34 and the supporting vertical rod 43 to automatically contract to realize the folding of the tarpaulin 37. During this process, the mounting plate 36 deflects inward from the tarpaulin 37, so that the contraction of the mounting plate 36 and the solar panel thereon is synchronized with the folding of the tarpaulin 37. The inward deflection force of the mounting plate 36 can press and guide the collapsed tarpaulin 37, so that the tarpaulin 37 automatically folds inward during the folding process, improving the neatness of the entire cloth surface folding of the tarpaulin 37 and ensuring the storage effect of the tent.
[0048] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A tent that is easy to store based on four-way and three-way connectors, comprising a mounting member (1), characterized in that: A driving mechanism (2) is provided on the mounting member (1). Four sets of supporting mechanisms (3) are provided below the mounting member (1). The supporting mechanism (3) includes a turbine (31), a driving rod (32), a slider (33), a supporting diagonal rod (34), a driving component (35), and a mounting plate (36). The turbine (31) is rotatably fitted on the mounting member (1) and is driven to rotate by the driving mechanism (2). The driving rod (32) is fixedly installed on the turbine (31). The slider (33) is hingedly installed at one end of the driving rod (32). The supporting diagonal rod (34) is rotatably fitted on the mounting member (1), and the slider (33) is slidably fitted with the supporting diagonal rod (34). A supporting mechanism (4) is provided at the bottom end of the supporting diagonal rod (34). A tarpaulin (37) is provided outside the supporting diagonal rod (34) and the supporting mechanism (4). The driving component (35) is provided on the supporting diagonal rod (34). The mounting plate (36) is used to carry a solar panel capable of providing electric energy. When the slider (33) slides, it can drive the driving component (35) to drive the mounting plate (36) to deflect. When the supporting diagonal rod (34) and the supporting mechanism (4) expand to unfold the tarpaulin (37), the mounting plate (36) deflects towards the outside of the tarpaulin (37) so that the solar panel is exposed. When the supporting diagonal rod (34) and the supporting mechanism (4) contract to fold up the tarpaulin (37), the mounting plate (36) deflects towards the inside of the tarpaulin (37) so that the solar panel is retracted, and the deflecting force of the mounting plate (36) can make the tarpaulin (37) automatically fold neatly towards the inside. The driving component (35) includes a toothed plate (351), a sleeve (352), a rotating shaft (353), a gear (354), a driving bevel gear (355), a deflecting rotating shaft (356), and a driven bevel gear (357). The toothed plate (351) is provided on the slider (33). The sleeve (352) is fixedly installed on one side of the supporting diagonal rod (34), and an L-shaped connecting seat is fixedly connected to the sleeve (352). The rotating shaft (353) is rotatably fitted in the sleeve (352) and the L-shaped connecting seat. The gear (354) is fixedly sleeved at the bottom end of the rotating shaft (353), and the gear (354) meshes with the toothed plate (351). The driving bevel gear (355) is fixedly sleeved at the top end of the rotating shaft (353). The deflecting rotating shaft (356) is rotatably fitted on the L-shaped connecting seat. The driven bevel gear (357) is fixedly sleeved at one end of the deflecting rotating shaft (356), and the driving bevel gear (355) meshes with the driven bevel gear (357). The mounting plate (36) is fixedly installed on the deflecting rotating shaft (356). The driving mechanism (2) includes a worm (21), a driving motor (22) and an outdoor power supply (23). The worm (21) is rotatably fitted on the mounting member (1), and the turbine (31) meshes with the worm (21). The driving motor (22) is fixedly installed below the mounting member (1) through a motor bracket. The electric energy converted from the solar energy collected by the solar panel can be transmitted to the outdoor power supply (23). The supporting mechanism (4) includes a rotating member (41), a four-way connecting member (42), a supporting vertical rod (43), and a three-way connecting member (44). The rotating member (41) is rotatably fitted at the bottom end of the supporting inclined rod (34). The four-way connecting member (42) is arranged below the rotating member (41). The supporting vertical rod (43) is arranged below the four-way connecting member (42). The three-way connecting member (44) is arranged at the bottom end of the supporting vertical rod (43).
2. The tent that is easy to store based on four-way and three-way connectors according to claim 1, characterized in that: A manual control mechanism (24) is arranged on the worm (21). A square through-hole (25) is formed in the worm (21). The manual control mechanism (24) includes a movable rod (241), an electric square block (242), a connecting rod (243), a manual square block (244) and a handwheel (245). The inner top surface of the movable rod (241) is connected with the output shaft of the driving motor (22) through an elastic member. The electric square block (242) is arranged at the top end of the movable rod (241). The connecting rod (243) is arranged on the top of the electric square block (242). The manual square block (244) is rotatably fitted at the top end of the connecting rod (243). The handwheel (245) is fixedly connected to the top end of the manual square block (244). Both the electric square block (242) and the manual square block (244) are adapted to the square through-hole (25). When the elastic member is in a natural stretched state, the electric square block (242) is located inside the square through-hole (25), and the manual square block (244) is located outside the square through-hole (25).
3. The tent that is easy to store based on four-way and three-way connectors according to claim 2, characterized in that: Two groups of cross components (45) and two groups of arc components (46) are respectively arranged between two corresponding supporting vertical rods (43) on adjacent sides of the tarpaulin (37). The two groups of cross components (45) are cross-distributed, and the two groups of arc components (46) are parallel-distributed. The entrance and exit of the tarpaulin (37) are opened on the side provided with the arc component (46).
4. The tent that is easy to store based on four-way and three-way connectors according to claim 3, characterized in that: Both groups of the cross components (45) include a sleeve (451) and an inner rod (452). The two sleeves (451) are respectively rotatably fitted on the corresponding two four-way connecting members (42). The two inner rods (452) are respectively rotatably fitted on the corresponding two three-way connecting members (44). And the two sleeves (451) are respectively slidably fitted with the corresponding two inner rods (452).
5. The tent that is easy to store based on four-way and three-way connectors according to claim 4, characterized in that: The two sets of arc-shaped components (46) respectively include an upper arc rod (461) and a lower arc rod (462). Both ends of the upper arc rod (461) are respectively in rotational cooperation with two corresponding four-way connectors (42), and the middle part of the upper arc rod (461) is in a hinged state. Both ends of the lower arc rod (462) are respectively in rotational cooperation with two corresponding three-way connectors (44), and the middle part of the lower arc rod (462) is in a hinged state.
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