Sharp-arch-shaped travel house frame
The design of the inverted "V" shaped top block and snap-fit structure solves the water seepage problem caused by the gaps at the top of the hotel frame, achieving a seamless connection and good leak-proof effect, and enhancing structural stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-03-27
AI Technical Summary
The existing guesthouse frame has a gap between the two top blocks, causing rainwater to seep in and resulting in poor leak prevention.
The main body is supported by a pointed arch, and the top is made of an inverted "V" shaped block. The connection is made by the interlocking of the snap-fit block and the snap-fit groove to ensure a seamless connection. Combined with glue bonding, the connection stability is enhanced.
It achieves a leak-proof effect on the top of the supporting structure, preventing rainwater from entering, and has a good water drainage effect, thus enhancing the overall structural stability and waterproof performance.
Smart Images

Figure CN224048377U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a travel house frame technical field, concretely relates to a pointed arch travel house frame. BACKGROUND
[0002] More and more people will choose travel to enjoy life, so as to make the body get good relaxation. The travel house corresponding to travel refers to those houses specially for satisfying people's living demand during tourism, leisure, vacation. In order to meet the needs of customers, such houses are usually located in tourist attractions or climate pleasant areas, aiming at providing a temporary living place for tourists.
[0003] For the frame used in the travel house, the application number 202520446401.3 discloses a travel house frame convenient to connect, which specifically discloses a support main body in the shape of an arch; the support main body includes a plurality of blocks of building blocks that can be connected to each other correspondingly; each block of building blocks is in the shape of an arc and is made of EPS; each block of building blocks has a first connecting structure and a second connecting structure at both ends respectively; the first connecting structure is a connecting block that protrudes outward and is in the shape of a sharp angle, and the cross section of the connecting block is in the shape of a triangle; the width of the inner end of the connecting block is smaller than the width of the end face of the corresponding block of building blocks, so as to form a first connecting plane on both sides of the connecting block respectively; the second connecting structure is a connecting groove in the shape of a V that cooperates with the connecting block, and the width of the groove of the connecting groove is smaller than the width of the end face of the corresponding block of building blocks, so as to form a second connecting plane corresponding to the first connecting plane on both sides of the groove of the connecting groove respectively; in the process of connecting the plurality of blocks of building blocks to each other in the shape of an arc, two adjacent blocks of building blocks can be inserted into the connecting groove after applying glue on the connecting block and the first connecting plane, until the connecting block and the connecting groove and the first connecting plane and the second connecting plane are matched and abutted respectively.
[0004] However, for the above-mentioned travel house frame convenient to connect, in the actual use process, although the two blocks of building blocks at the top of the support main body are connected. However, this connecting structure will cause a gap between the two blocks of building blocks at the top of the support main body, and if the roof of the travel house leaks after long-term use in rainy days, the top position of the support main body will have poor water guiding effect due to the gap, which will easily cause water seepage, that is, rainwater will easily enter the support main body through the gap, which is not conducive to the use of the travel house. Therefore, the prior art needs to be improved. UTILITY MODEL CONTENTS
[0005] The pointed arch-shaped travel house frame has the advantages that the top of the support main body is not easy to be filled with water, the leakage prevention effect of the top of the support main body is improved, the pointed arch-shaped travel house frame is convenient to use, and the pointed arch-shaped travel house frame is easy to popularize.
[0006] In order to achieve the above-mentioned purpose, the technical scheme of the utility model is:
[0007] The pointed arch-shaped travel house frame has the advantages that the top of the support main body is not easy to be filled with water, the leakage prevention effect of the top of the support main body is improved, the pointed arch-shaped travel house frame is convenient to use, and the pointed arch-shaped travel house frame is easy to popularize.
[0008] Further, each side of the support main body has a plurality of horizontally distributed block assemblies; the horizontally adjacent blocks are connected to each other by glue; the top block is also provided with a plurality of horizontally distributed blocks; the horizontally adjacent top blocks are also connected to each other by glue. Through the above arrangement, the length of the support main body can be extended or shortened according to the needs of people.
[0009] Further, the side surface of the block and the side surface of the top block are both in a planar shape; the block located above is arranged opposite to the block located below it, so that the side surfaces of the two blocks distributed above and below are aligned with each other; the top block is arranged opposite to the block located below it, so that the side surface of the top block and the side surface of the block are aligned with each other.
[0010] Further, the upper block is misaligned with the block correspondingly located below, so that the side faces of the two blocks are misaligned with each other.
[0011] Further, the clamping block extends horizontally, and the clamping block comprises a first clamping part connected with the block at a first end and a second clamping part connected with the first clamping part at a second end; the maximum width of the second clamping part is greater than that of the first clamping part; the first clamping groove horizontally penetrates the two side faces of the block; the shape of the first clamping groove corresponds to that of the clamping block; the second clamping groove horizontally penetrates the two side faces of the top block; the shape of the second clamping groove corresponds to that of the clamping block. The above arrangement can ensure the stability between the clamping block and the corresponding clamping groove.
[0012] Further, the cross section of the second clamping part is narrow at the outer end and wide at the inner end, and the cross section of the first clamping part is in the shape of a horseshoe, so that the clamping block and the first clamping groove or the second clamping groove can be very stable when connected.
[0013] Further, the materials of the block and the top block are replaced by bricks instead of EPS.
[0014] Further, the materials of the block and the top block are sintered bricks or non-fired bricks.
[0015] Further, when the materials of the block and the top block are non-fired bricks, the non-fired bricks are made of cement bricks, raw soil bricks or light grass clay bricks.
[0016] The beneficial effects of the present application are as follows:
[0017] (1) The present application has simple and reasonable overall structure, and the connection between the blocks can be realized by the cooperation of the clamping block and the first clamping groove to realize a stable connection structure, and the stability of the connection between the first lap plane and the second lap plane can be ensured; of course, the connection between the blocks and the top block can also be realized by the cooperation of the clamping block and the second clamping groove to realize a stable connection structure, and the stability of the connection between the first lap plane and the third lap plane can also be ensured.
[0018] (2)The utility model discloses a top block is adopted to the top of support main part, namely make the top of support main part not exist the gap, also make the roof of the house of the house even if long -time in rainy day use appears the leakage condition, and rainwater also can not from the top of support main part enter, and the effect of preventing leakage is good, simultaneously, the top of sharp corner shape of top block is also favorable to accelerate rainwater to the both sides of water diversion, and because the both sides of support main body are all inclined design, and the water guide effect is good, thereby can improve the effect of preventing leakage to a certain extent. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is the whole structure schematic of the utility model embodiment one Figure 1 ;
[0020] Figure 2 It is the whole structure schematic of the utility model embodiment one Figure 2 ;
[0021] Figure 3 It is the side view of the utility model embodiment one;
[0022] Figure 4 It is the partial explosion drawing of the utility model embodiment one;
[0023] Figure 5 It is the whole structure schematic of the utility model embodiment two Figure 1 ;
[0024] Figure 2 It is the whole structure schematic of the utility model embodiment two Figures 1-4 .
[0025] REFERENCE NUMERALS
[0026] 100, support main body, 1, top block, 11, second clamping groove, 12, third lap plane, 2, block, 21, clamping block, 211, first clamping part, 212, second clamping part, 22, first clamping groove, 23, first lap plane, 24, second lap plane. DETAILED DESCRIPTION
[0027] The utility model is further described below in conjunction with the drawings and specific embodiment, and the following description is only exemplary, and does not limit the protection scope of the utility model.
[0028] Embodiment one:
[0029] As Figures 1-4As shown, a pointed arch-shaped hotel frame includes a pointed arch-shaped support body 100; the support body 100 includes two block components located on both sides and a top block 1 located at the top; each block component includes multiple blocks 2 that can overlap each other; the blocks 2 and the top block 1 are made of EPS; each block 2 is generally arc-shaped; at one end of the block 2, an outwardly protruding snap-fit block 21 and two first overlapping planes 23 located on both sides of the snap-fit block 21 are formed; at the other end of the block 2, an inwardly recessed first snap-fit groove 22 and two second overlapping planes 24 located on both sides of the first snap-fit groove 22 are formed; the top block 1 is inverted "V" shaped so that its top is pointed; on each end face of the top block 1, a second snap-fit groove 11 that cooperates with the first snap-fit block 21 and two third overlapping planes 12 located on both sides of the second snap-fit groove 11 are respectively provided.
[0030] Therefore, during the overlapping process of multiple blocks 2 in each block assembly, two adjacent blocks 2 can be glued together by applying glue to the snap-fit block 21 and the first overlapping surface 23 before being inserted into the corresponding first snap-fit groove 22, and the first overlapping surface 23 matching and bonding with the second overlapping surface 24. Similarly, during the overlapping process of the top block 1 with the block 2, glue can be applied to the corresponding snap-fit block 21 and the first overlapping surface 23 before being inserted into the corresponding second snap-fit groove 11, and the first overlapping surface 23 matching and bonding with the third overlapping surface 12. This setup completes the overall installation of the support body 100. In practical use, simply apply a thin layer of cement or other protective material to the outer surface and edges of the support body 100; further details are omitted here.
[0031] like Figures 1-4 As shown, in this embodiment, each side of the support body 100 has multiple horizontally distributed block assemblies; adjacent horizontal blocks 2 are connected to each other with adhesive; similarly, the top block 1 also has multiple horizontally distributed components; adjacent horizontal top blocks 1 are also connected to each other with adhesive. Therefore, the support body 100 has many block assemblies and top blocks 1, allowing users to select different numbers of block assemblies and top blocks 1 according to the actual conditions of the installation location, in order to assemble a support body 100 of appropriate length. In this embodiment, each block assembly has four components; of course, the number of blocks 2 in each block assembly can also be selected according to the actual situation.
[0032] However, those skilled in the art should know that if each top block 1 and block 2 has sufficient width, a certain length of assembly can be completed by assembling an interconnected block assembly and a top block 1 on each side of the support body 100.
[0033] like Figures 1-4As shown, preferably, the side surface of the block 2 and the side surface of the top block 1 are flat, so that the adjacent blocks 2 in each block assembly can be stably connected, and the design can ensure the stability of the connection because of the face-to-face contact between the side surfaces of the two blocks 2.
[0034] As shown in the drawings, Figures 1-4 In the embodiment, the block 2 located above is arranged opposite to the block 2 located below, so that the side surfaces of the two blocks 2 distributed above and below are aligned with each other; the top block 1 is arranged opposite to the block 2 located directly below, so that the side surface of the top block 1 and the side surface of the block 2 are also aligned with each other.
[0035] As shown in the drawings, Figure 3 Preferably, the clamping block 21 extends horizontally; the clamping block 21 comprises a first clamping part 211 connected to the block 2 and a second clamping part 212 connected to the first clamping part 211; the maximum width of the second clamping part 212 is greater than that of the first clamping part 211; the first clamping groove 22 horizontally penetrates the two side surfaces of the block 2; the shape of the first clamping groove 22 corresponds to that of the clamping block 21; the second clamping groove 11 horizontally penetrates the two side surfaces of the top block 1; the shape of the second clamping groove 11 corresponds to that of the clamping block 21. Through the above arrangement, the clamping block 21 can be conveniently inserted into the first clamping groove 21 or the second clamping groove 11, and after the clamping is completed, the two are not easy to loosen.
[0036] As shown in the drawings, Figures 5-6 Specifically, the cross section of the second clamping part 212 is narrow at the outer end and wide at the inner end, and the cross section of the first clamping part 211 is "horseshoe-shaped"; of course, the specific shapes of the first clamping groove 22 and the second clamping groove 11 need to match the shapes of the first clamping part 211 and the second clamping part 212. Through the above arrangement, the stability of the clamping block 21 after being inserted into the first clamping groove 22 or the second clamping groove 11 can be improved, so that the clamping block 21 is not easy to loosen, that is, the connection stability between the block 2 and the block 2 and between the block 2 and the top block 1 is improved.
[0037] In addition, the materials of the block 2 and the top block 1 are replaced by bricks instead of EPS. Specifically, the materials of the block 2 and the top block 1 can be sintered bricks or non-fired bricks. More specifically, when the materials of the block 2 and the top block 1 are non-fired bricks, they are made of cement bricks, raw soil bricks or light grass clay bricks.
[0038] The specific use principle of the utility model will be introduced below, so as to understand the utility model:
[0039] First, the side of one of the blocks 2 in each block assembly is bonded to each other, then the clamping block 21 and the first lap plane 23 of each block 2 connected to each other are coated with glue, then the clamping block 21 and the first clamping groove 22 of the corresponding block 2 are clamped and bonded in sequence, at this time the first lap plane 23 and the second lap plane 24 are matched and bonded; then the side of each top block 1 is bonded to each other, then the unconnected end of the block 2 connected to each other is coated with glue (i.e. the clamping block 21 and the first lap plane 23 are coated with glue), then it is inserted into the second clamping groove 11 of the top block 1 and the first lap plane 23 and the third lap plane 12 are matched and bonded. Of course, people can connect different number of block assemblies according to the required length. In addition, the lower end position of the block 2 at the bottom of the two sides of the support body 100 does not need to be coated with glue.
[0040] In summary, the whole structure of the utility model is simple and reasonable, the connection between the blocks 2 and the blocks 2 can be realized by the cooperation of the clamping block 21 and the first clamping groove 22 to realize a stable connection structure, and the stability of the connection between the first lap plane 23 and the second lap plane 24 can be ensured. Of course, the connection between the block 2 and the top block 1 can also be realized by the clamping block 21 and the second clamping groove 11 to realize a stable connection structure, and the stability of the connection between the first lap plane 23 and the third lap plane 12 can also be ensured.
[0041] In addition, since the top of the support body 100 adopts the top block 1 in the shape of inverted "V", that is, the top of the support body 100 has no gap, so that even if the roof of the house is used for a long time in rainy days, rainwater cannot enter from the top of the support body 100, and the leakage effect is good. At the same time, the sharp top of the top block 1 is also conducive to accelerating the flow of rainwater to the two sides, and since the two sides of the support body 100 are inclined, the water guide effect is good, thereby also improving the leakage effect to a certain extent.
[0042] Example two:
[0043] As As shown, the difference between the embodiment and the embodiment one is that, in the embodiment, the upper block 2 and the block 2 correspondingly located below the upper block 2 are misaligned, so that the side faces of the two blocks 2 distributed above and below are misaligned; the top block 1 and the block 2 correspondingly located below the top block 1 are also misaligned, so that the side face of the top block 1 and the side face of the block 2 are misaligned. Therefore, the design in the embodiment can make each first clamping groove 22 or second clamping groove 11 correspondingly clamped with half of the two clamping blocks 21, that is, the two ends of the block 2 located in the middle are simultaneously connected with the other two blocks 2 and two top blocks 1, so that the stability of the support body 100 can be further ensured. For the above scheme, after the misaligned support body 100 of the block 2 and the block 2 and the block 2 and the top block 1 is assembled, a layer of thin cement or other protective objects can be applied to the corresponding positions of the outside and the edge of the support body 100. In summary, the misaligned design of the utility model can improve the stability of the support body 100 to a certain extent.
[0044] The utility model discloses not limited to the above-mentioned implementation, if the various changes or deformation of the utility model do not deviate from the spirit and scope of the utility model, if these changes and deformation belong to the claim and equivalent technical scope of the utility model, then the utility model also intends to include these changes and deformation.
Claims
1. A pointed-arch-shaped house frame, characterized in that: a pointed-arch-shaped support body is provided; the support body comprises two block assemblies respectively arranged on two sides and a top block arranged on a top; each block assembly comprises a plurality of blocks which can be correspondingly overlapped; the blocks and the top block are made of EPS; each block is arc-shaped as a whole; an outwardly protruding clamping block and two first overlapping planes located on both sides of the clamping block are formed at one end of the block; an inwardly recessed first clamping groove and two second overlapping planes located on both sides of the first clamping groove are formed at the other end of the block; the top block is inverted "V"-shaped so that the top of the top block is pointed; a second clamping groove matched with the clamping block and two third overlapping planes located on both sides of the second clamping groove are respectively arranged on each end surface of the top block; in the process of overlapping the blocks in each block assembly, two adjacent blocks can be inserted into the corresponding first clamping grooves after the clamping block and the first overlapping planes are coated with glue and then matched and bonded with the second overlapping planes; in the process of overlapping the top block with the blocks, the top block can be inserted into the corresponding second clamping grooves after the corresponding clamping block and the first overlapping planes are coated with glue and then matched and bonded with the third overlapping planes. 2.The pointed-arch-shaped house frame according to claim 1, characterized in that: each side of the support body is provided with a plurality of horizontally distributed block assemblies; the horizontally adjacent blocks are connected with each other by glue; the top block is also provided with a plurality of horizontally distributed top blocks; the horizontally adjacent top blocks are also connected with each other by glue. 3.The pointed-arch-shaped house frame according to claim 2, characterized in that: the side surfaces of the blocks and the side surfaces of the top block are planar; the upper block is arranged opposite to the corresponding lower block so that the side surfaces of the two blocks distributed above and below are aligned with each other; the top block is arranged opposite to the corresponding lower block so that the side surface of the top block is aligned with the side surface of the block. 4.The pointed-arch-shaped house frame according to claim 2, characterized in that: the upper block is arranged staggered with the corresponding lower block so that the side surfaces of the two blocks distributed above and below are staggered with each other; the top block is arranged staggered with the corresponding lower block so that the side surface of the top block is staggered with the side surface of the block. 5.The pointed-arch-shaped house frame according to claim 1, characterized in that: the clamping block extends horizontally; the clamping block comprises a first clamping portion connected with the block at a first end and a second clamping portion connected with the first clamping portion at a second end; the maximum width of the second clamping portion is greater than the maximum width of the first clamping portion; the first clamping groove horizontally penetrates through the two side surfaces of the block; the shape of the first clamping groove corresponds to the shape of the clamping block. The second clamping groove horizontally penetrates the two side faces of the top block; the shape of the second clamping groove corresponds to the shape of the clamping block.
6. The pointed arch-shaped trailer house frame according to claim 5, characterized in that: The cross section of the second clamping part is in the shape of narrow outer end and wide inner end, and the cross section of the first clamping part is in the shape of "horse's hoof".
7. The pointed arch-shaped trailer house frame according to claim 1, characterized in that: The material of the block and the top block is replaced by brick instead of EPS.
8. The pointed arch-shaped trailer house frame according to claim 7, characterized in that: The material of the block and the top block is sintered brick or non-burned brick.
9. The pointed arch-shaped trailer house frame according to claim 8, characterized in that: When the material of the block and the top block is non-burned brick, it is made of cement brick, raw soil brick or light grass clay brick.