Inflatable tent
Technical Field
The utility model relates to an outdoor equipment technical field, in particular to inflatable tent.
Background
Tents are a necessary piece of equipment for camping outdoors. The tent is erected to form an inner space isolated from the outside air. At present, various tents used in the field are mostly formed by combining a bracket and a piece of tent cloth; the tent lapping requires assembling the bracket first and then laying the tarpaulin on the outer side of the bracket, so the installation and the disassembly are troublesome. In addition, because the support performance of the support is poor, the weight of the tarpaulin cannot be too large for ensuring the safety of the tent in the using process, so that the thickness of the tarpaulin cannot be too high, and the heat preservation and insulation effect of the tent cannot be improved by increasing the thickness of the tarpaulin.
SUMMERY OF THE UTILITY MODEL
For solving the relatively poor problem of the thermal-insulated effect of current tent heat preservation, the utility model provides a novel inflatable tent.
The utility model provides an inflatable tent, which comprises a tent body and a tent top;
the tent body comprises a vertical inflatable column, a first lateral inflatable column and a first sealed inflatable unit; the edge of the first sealed inflating unit is hermetically connected with the vertical inflating column and the first lateral inflating column;
the tent roof comprises an inclined inflatable column, a second lateral inflatable column and a second sealed inflatable unit; the edge of the second sealed inflating unit is hermetically connected with the inclined inflating column and the second lateral inflating column; the oblique inflatable column and the second sealed inflatable unit are hermetically connected with the first lateral inflatable column at the top;
the vertical inflatable column, the first lateral inflatable column, the first sealed inflatable unit, the oblique inflatable column, the second lateral inflatable column and the second sealed inflatable unit are all provided with valves.
Optionally, the first lateral inflatable column and the second lateral inflatable column are both annular inflatable columns.
Optionally, each of the oblique inflatable columns is a linear inflatable column;
the first lateral inflatable column and the second lateral inflatable column are both annular lateral inflatable columns, and the second lateral inflatable column, the oblique inflatable column and the second sealed inflatable unit enable the tent roof to be conical or frustum-shaped; or,
the first lateral inflatable column and the second lateral inflatable column are both polygonal annular lateral inflatable columns, and the second lateral inflatable column, the oblique inflatable column and the second sealed inflatable unit enable the tent roof to be in a convex polyhedral shape.
Optionally, the first lateral inflatable column and the second lateral inflatable column are both linear inflatable columns; each of the first lateral inflatable pillars and each of the second lateral inflatable pillars are parallel;
the inflatable tent also comprises edge tarpaulins positioned at the end parts of the first lateral inflatable column and the second lateral inflatable column; the edge tarpaulin is connected with the vertical inflatable column and the oblique inflatable column.
Optionally, the edges of the tent body and the tent top are both provided with standard interfaces; the tent body, the tent roof, the adjacent tent body and the adjacent tent roof can be detachably connected through the standard interface.
Optionally, the first inflatable confinement unit and/or the second inflatable confinement unit has multiple independent inflatable layers from the outside of the inflatable tent to the inside of the inflatable tent; each inflatable layer is provided with a corresponding valve.
Optionally, a ground anchor interface is arranged at the bottom of the tent body; the inflatable tent also comprises a ground anchor; the ground anchor is connected with the ground anchor interface.
Optionally, a connecting point is arranged on the outer side of the tent body; the inflatable tent also comprises a pulling rope and ground nails; and two ends of the traction rope are respectively connected with the traction point and the ground nail.
Optionally, a tent door is arranged on the tent body; and a window is arranged on the tent body and/or the tent top.
The utility model provides a novel inflatable tent, which comprises a tent body and a tent top; the tent body comprises a vertical inflatable column, a first lateral inflatable column and a first sealed inflatable unit; the edge of the first sealing inflation unit is in sealing connection with the vertical inflation column or the first lateral inflation column; the tent roof comprises an inclined inflatable column, a second lateral inflatable column and a second sealed inflatable unit; the edge of the second sealed inflating unit is connected with the oblique inflating column or the second lateral inflating column in a sealing mode; the oblique inflatable column and the second sealed inflatable unit are hermetically connected with the first lateral inflatable column; the vertical inflatable column, the first lateral inflatable column, the first sealed inflatable unit, the oblique inflatable column, the second lateral inflatable column and the second sealed inflatable unit are all provided with valves. Because the inflatable tent is composed of a plurality of independent inflatable parts, even if some inflatable parts are deflated, other parts can still keep better sealing performance, and then the heat insulation effect of the tent is ensured.
Drawings
To more clearly illustrate the background art or the technical solution of the present invention, the drawings used in conjunction with the prior art or the detailed description are briefly described below; it should be apparent that the following drawings in conjunction with the detailed description are only for the convenience of understanding the embodiments of the present invention, and other drawings can be obtained by those skilled in the art without creative efforts;
fig. 1 is a schematic view showing the structure of an inflatable tent according to a first embodiment of the present invention;
FIG. 2 is a schematic structural view of a first inflatable sealing unit according to a first embodiment of the present invention;
fig. 3 is a schematic view showing the structure of an inflatable tent according to the first embodiment of the present invention;
wherein: 1-tent body, 11-vertical inflatable column, 12-first lateral inflatable column, 13-first sealed inflatable unit, 2-tent roof, 21-oblique inflatable column, 22-second lateral inflatable column, 23-second sealed inflatable unit, 3-valve, 4-edge tarpaulin, 5-ground nail, 6-pulling point, 7-pulling rope, 8-tent door and 9-window.
Detailed Description
In order to make the technical solutions in the present invention better understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, but not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts shall belong to the protection scope of the present invention.
First embodiment
Fig. 1 is a schematic view of an inflatable tent according to a first embodiment of the present invention. As shown in fig. 1, the inflatable tent in this embodiment includes a tent body 1 and a tent roof 2, and the tent body 1 and the tent roof 2 are connected to form an independent tent interior space with respect to the external environment.
The tent body 1 comprises a vertical inflatable column 11, a first lateral inflatable column 12 and a first sealed inflatable unit 13; the tent body 1 is divided into a plurality of subspaces by the vertical inflatable columns 11 and the first lateral inflatable columns 12, and each subspace is provided with a first sealed inflatable unit 13; the vertical inflatable column 11, the first lateral inflatable column 12 and the first sealed inflatable unit 13 are all arranged in a sealed mode and are independent of each other.
The tent roof 2 includes an oblique inflatable column 21, a second lateral inflatable column 22, and a second airtight inflatable unit 23. The inclined inflatable columns 21 and the second lateral inflatable columns 22 are staggered with each other to form a main body structure of the tent roof 2, the inclined inflatable columns 21 and the second lateral inflatable columns 22 divide the tent roof 2 into a plurality of subspaces, and each subspace is provided with a second sealed inflatable unit 23. The diagonal inflatable column 21, the second lateral inflatable column 22 and the second inflatable sealing unit 23 are all arranged in a sealing way and are independent from each other.
In this embodiment, the oblique inflatable column 21 and the second inflatable sealing unit 23 of the tent top 2 are both connected with the first lateral inflatable column 12 at the top of the tent body 1 in a sealing manner, so that the tent body 1 and the tent top 2 form an integrated structure.
In addition, the vertical inflatable column 11, the first lateral inflatable column 12, the first sealed inflatable unit 13, the oblique inflatable column 21, the second lateral inflatable column 22 and the second sealed inflatable unit 23 are all provided with valves 3, and air can be injected or released through the valves 3 to play a role in supporting or recovering the tent.
As shown in fig. 1, in the present embodiment, the first lateral inflatable column 12 and the second lateral inflatable column 22 are both circular lateral inflatable columns, each of the oblique inflatable columns 21 is a linear inflatable column, and the second lateral inflatable column 22, the oblique inflatable column 21 and the second airtight inflatable unit 23 make the tent roof 2 have a conical structure; in other embodiments, the second lateral inflatable column 22, the diagonal inflatable column 21 and the second inflatable confinement unit 23 can also make the tent roof 2 have a frustum structure. It is contemplated that the second lateral inflatable column 22, the diagonal inflatable column 21 and the second inflatable confinement unit 23 may also form the tent roof 2 into a convex polyhedral shape if the first lateral inflatable column 12, the diagonal inflatable column 21 and the second lateral inflatable column 22 are all polygonal annular lateral inflatable columns.
As shown in fig. 1, the tent body 1 of the present embodiment is provided with a pulling point 6 on the outer side; the inflatable tent can comprise a traction rope 7 and a ground nail 5, wherein the two ends of the traction rope 7 are respectively connected with a traction point 6 and the ground nail 5, so that the tent body 1 is further fixed. Furthermore, the tent body 1 in this embodiment is further provided with a tent door 8, and the tent body 1 and the tent roof 2 are further provided with windows 9.
Fig. 2 is a schematic structural view of a first sealed inflation unit according to a first embodiment of the present invention. As shown in fig. 2, the first airtight inflating unit 13 has three layers of tarpaulin, two independent inflating layers are formed from the outside of the inflatable tent to the inside of the inflatable tent, and each inflating layer has a corresponding valve 3. In practical application, if the tarpaulin on the surface of one inflatable layer is punctured, the other inflatable layer is still inflated and sealed, and a good heat preservation and sealing effect is kept. It is contemplated that in other embodiments, the first inflatable confinement unit 13 may be provided with more tarpaulins to form more inflatable layers. In addition, in the present embodiment, the structure of the second airtight inflating unit 23 is the same as that of the first airtight inflating unit 13, and may be a structure having a plurality of inflating layers formed of a plurality of layers of tarpaulin.
Second embodiment
Fig. 3 is a schematic view of an inflatable tent according to a second embodiment of the present invention. As shown in fig. 3, the inflatable tent in this embodiment also includes a tent body 1 and a tent roof 2. The tent body 1 also comprises, as in the first embodiment, a vertical inflatable column 11, a first lateral inflatable column 12 and a first inflatable confinement unit 13. The tent roof 2 also includes a diagonal inflatable column 21, a second lateral inflatable column 22 and a second inflatable confinement unit 23. Unlike the first embodiment, the first and second lateral inflatable pillars 12, 22 are both linear inflatable pillars, and each of the first and second lateral inflatable pillars 12, 22 are parallel. In addition, the inflatable tent in this embodiment further includes edge tarpaulins 4 at the ends of the first and second lateral inflatable pillars 12 and 22. The edge tarpaulin 4 is connected with the vertical and diagonal inflatable columns 21 at the ends of the first and second lateral inflatable columns 12 and 22.
In addition, in the embodiment, the end portions of the tent body 1 and the tent top 2 are both provided with standard interfaces, and the tent body 1 and the tent top 2, the tent body 1 and the tent body 1, and the tent top 2 can be detachably and hermetically connected through the standard interfaces. By adopting a plurality of tent bodies 1 and tent roofs 2, a larger tent meeting the required size can be formed in a combined manner.
In the embodiment, the tent body 1 and the tent roof 2 have larger volumes, so that the tent can be blown up by external strong wind; in order to avoid the problem, the bottom of the tent body 1 is also provided with an earth anchor interface; the inflatable tent also comprises a ground anchor which can be fixedly connected with the ground anchor interface.
In the above embodiments, in order to secure the sealing performance of the inflatable tent, the tarpaulin for manufacturing the inflatable tent is preferably PVC-coated tarpaulin, and the adjacent tarpaulins are preferably welded by using a high frequency welding process.
The inflatable tent in the embodiment of the present invention has been described in detail. This part adopts concrete embodiment to right the utility model discloses a principle and implementation mode have been elucidated, and the description of above embodiment is only used for helping understanding the utility model discloses a core thought, under the condition that does not deviate from the utility model discloses a, all other embodiments that the ordinary skilled person in the art obtained under the prerequisite of not making creative work all belong to the utility model discloses the scope of protection.