Grid-shaped mortise and tenon joint

By using the complex connection of the grid-shaped mortise and tenon structure, the problem of unstable horizontal or vertical support in existing mortise and tenon structures is solved, achieving stable support for large-span loads and enhancing the rationality and stability of the structure.

CN223689070UActive Publication Date: 2025-12-19SHANGHAI CHUANGWU ARCHITECTURAL DESIGN CO LTD +1
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Patent Information

Application Number
CN202423057657.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-12-19
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

Existing mortise and tenon structures are unstable when subjected to long-span lateral or longitudinal loads, making them prone to overturning and unable to support large-span loads on their own.

Method used

The structure employs a grid-shaped mortise and tenon structure, forming a stable grid-like support structure through the complex connection of components such as the base, connecting columns, pad arch plates, seat brackets, bracket three-stage arches, and cross arches. The stability of the structure is enhanced by the continuous extension and connection of components such as cross arch two, phoenix head ridge one, and cross arch five.

Benefits of technology

It improves the stability of the structure under large-span loads in the lateral or longitudinal direction, making the overall structure more reasonable and able to stably support beams or long pipe loads, avoiding the phenomenon of suspension.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a grid-shaped mortise and tenon joint, and relates to the field of bearing structures, the grid-shaped mortise and tenon joint comprises a base, a connecting column is fixedly connected to the top of the base, a mortise and tenon joint supporting structure is arranged at the top of the base, and through the structural arrangement, the grid-shaped mortise and tenon joint can achieve continuous extension of a second cross arch, a first crested arch, a fifth cross arch and the like; according to the mortise and tenon joint structure, the first inclined arch and the second inclined arch of the bucket 3 are connected stably, so that the structure can bear large-span loads transversely or longitudinally, and compared with an existing mortise and tenon joint structure, the mortise and tenon joint structure can bear the loads more stably and is more reasonable in overall structure when used for bearing the long-span loads such as beams or long pipes.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of load-bearing structures, particularly to a grid-shaped mortise and tenon. BACKGROUND

[0002] The grid-shaped mortise and tenon is an ancient and precise woodworking technique, mainly used for making connecting pieces of wooden structures. It adopts the structure of tenon and mortise, through the precise cutting of tenon and the precise drilling of mortise, two pieces of wood can be firmly and accurately connected together without any glue or metal connecting pieces. This technique is not only widely used in wooden structure buildings, but also in furniture making and wood crafts, showing the superb skills of woodworkers and their precise understanding of wood.

[0003] The current mortise and tenon structure can only bear central spreading gravity loads such as circular or square when performing horizontal support. When bearing transverse or longitudinal strip loads, the existing mortise and tenon structure needs to be set up multiple times to support the load. If a single mortise and tenon structure is used to support, only a part of the load can be supported, and a part of the load will be suspended on both sides, causing unstable support and the risk of overturning. CONTENT OF THE INVENTION

[0004] In order to improve the problem of unstable structure support, the present application provides a grid-shaped mortise and tenon.

[0005] The grid-shaped mortise and tenon provided by the present application adopts the following technical solution:

[0006] A grid-shaped mortise and tenon, including the grid-shaped mortise and tenon provided by the present application adopts the following technical solution:

[0007] A grid-shaped mortise and tenon, including a base, a connecting column fixedly connected to the top of the base, and a mortise and tenon support structure provided on the top of the base;

[0008] The mortise and tenon support structure includes a pad arch plate inserted into the top of the base, a sitting bucket with a side wall and a pad arch plate connected to the top of the connecting column, a bucket three arch one with a side wall and a pad arch plate connected to the top of the sitting bucket, a first rise one with a side wall and a pad arch plate connected to both sides of the top of the bucket three arch one, a cross arch one with a bottom surface and the top of the sitting bucket connected to the top of the bucket three arch one, and a second rise two inserted into the top of the cross arch one.

[0009] By adopting the above technical solution, the cross arch one provides vertical support for the second rise two, making the structure more stable.

[0010] Preferably, the mortise and tenon support structure further includes a dou-san-sheng-gong-er, where the tops of the sheng-er at both ends of the top of the cross arch one are engaged with the dou-san-sheng-gong-er, and a sheng-san is inserted into the top of the dou-san-sheng-gong-er. A dou-liu-sheng-gong is engaged with the bottom of the sheng-er in the middle of the top of the cross arch one, and the top of the dou-liu-sheng-gong is inserted into the sheng-yi.

[0011] By adopting the above technical solution, the base provides basic support for the entire structure.

[0012] Preferably, the side wall of the six-tiered arch is engaged with the pad arch plate, the top of the six-tiered arch is engaged with the top of the three-tiered arch, the top of the two-tiered arch is inserted into the second tier, the top of the first tier of the six-tiered arch is engaged with the second tier, the bottom of the first tier is engaged with the second tier, the top of the third tier is engaged with the second tier, which is inserted into the top of the six-tiered arch, the bottom of the first tier is engaged with the pad arch plate, and the top of the third tier of the second tier is engaged with the second tier, which is inserted into the top of the six-tiered arch.

[0013] By adopting the above technical solution, the column capital is locked in place by using a pad arch plate.

[0014] Preferably, the top of the column head is engaged with a cross arch three that is engaged with the top of the connecting machine one, the top of the cross arch three is inserted into the second lift, the top of the cross arch three is inserted into the fourth lift, the top of the connecting machine one is engaged with a slanted arch one that is engaged with the top of the third lift, and the bottom of the slanted arch one near the column head is engaged with the second lift at the bottom of the column head.

[0015] By adopting the above technical solution, the column head supports the first inclined arch and disperses the downward pressure on the first inclined arch.

[0016] Preferably, the top of the column head is engaged with a phoenix head bracket that is engaged with the top of the connecting machine, the bottom of the phoenix head bracket is engaged with the second rising arch of the third dougong, the phoenix head bracket is engaged with the second rising arch at the bottom of the connecting machine, the phoenix head bracket is engaged with the second rising arch at the bottom of the column head, the phoenix head bracket is engaged with the second rising arch at the bottom of the third dougong, and the top of the phoenix head bracket is inserted into the second rising arch.

[0017] By adopting the above technical solution, the second lifting mechanism at the top of the third lifting arch supports the second connecting machine, thereby improving structural stability.

[0018] Preferably, the top of the first phoenix head ridge is inserted into the top of the second lift, which is engaged with the top of the fourth lift. The top of the second lift is engaged with the fourth cross arch, which is engaged with the top of the third cross arch. The top of the second lift, which is inserted into the top of the first phoenix head ridge, is engaged with the second lift of the third cross arch. The top of the fourth cross arch is engaged with the second oblique arch, which is engaged with the second lift. The top of the second oblique arch is engaged with the second lift. The top of the second lift is engaged with the second phoenix head ridge, which is engaged with the top of the first phoenix head ridge. The top of the second phoenix head ridge is engaged with the second lift. The top of the second phoenix head ridge is engaged with the top of the fourth cross arch.

[0019] By adopting the above technical solution, the bottom of the first card is limited by the phoenix head and the cross arch.

[0020] Preferably, the top of the connecting machine 1 is engaged with the lifting 2 which is inserted into the top of the inclined arch 2, the top of the cross arch 5 is inserted into the lifting 4, the top of the cross arch 5 is inserted into the lifting 2, the bottom of the cross arch 5 is attached to the top of the card strip 1, the top of the cross arch 5 is engaged with the card strip 1, the top of the connecting machine 1 is engaged with the phoenix head ridge 3 which is engaged with the bottom of the card strip 1, the top of the phoenix head ridge 3 is inserted into the lifting 2, the bottom of the phoenix head ridge 3 is engaged with the lifting 2 which is inserted into the top of the phoenix head ridge 2, the top of the connecting machine 2 is engaged with the lifting 2 which is inserted into the top of the cross arch 5, and the top of the cross arch 6 is engaged with the lifting 2.

[0021] By adopting the above technical solution, the connection between the second connecting machine and the sixth cross arch is facilitated by the second lifting mechanism, thereby improving the rationality of the structure.

[0022] Preferably, the top of the sixth cross arch is inserted into the second inclined arch, the top of the second connecting mechanism is engaged with a cloud head that is engaged with the top of the third rising arch, the bottom of the cloud head is engaged with the second rising arch that is inserted into the top of the third phoenix head, the bottom of the cloud head is attached to the top of the first plaque, the top of the cloud head is engaged with the second plaque that is engaged with the top of the sixth cross arch, the top of the second rising arch that is inserted into the cloud head is engaged with the third plaque that is engaged with the second rising arch that is inserted into the top of the second inclined arch, the top of the second rising arch that is inserted into the sixth cross arch is engaged with the second rising arch that is engaged with the top of the cloud head, and the bottom of the second rising arch that is inserted into the second rising arch is engaged with the second rising arch that is inserted into the top of the third rising arch.

[0023] By adopting the above technical solution, the gravity on both sides of the structure is kept consistent through the purlin, thereby improving the stability of the structure.

[0024] In summary, this application includes at least one of the following beneficial technical effects:

[0025] 1. By continuously extending the cross arch II, phoenix head arch I, cross arch V, etc., and by connecting and stabilizing the three-bracket-three-rising-arch II and the oblique arch I, the structure can withstand large-span loads in the lateral or longitudinal direction. For long-span loads such as beams or long pipes, this structure is more stable in bearing loads than the existing mortise and tenon structure, and the overall structure is more reasonable. Attached Figure Description

[0026] Figure 1 This is an overall view of the grid-shaped mortise and tenon joint in this application;

[0027] Figure 2 This is an exploded view of the structure of one section of the grid-shaped tenon-and-mortise bracket three-tiered arch in this application;

[0028] Figure 3 This is a partial view of one section of the grid-shaped mortise and tenon cross arch in this application;

[0029] Figure 4 This is a structural illustration of the six-tiered arch with a grid-shaped tenon and mortise joint in this application;

[0030] Figure 5 This is a partial view of two parts of the grid-shaped mortise and tenon cross arch in this application;

[0031] Figure 6 This is a structural illustration of three parts of the grid-shaped mortise and tenon cross arch in this application;

[0032] Figure 7 This is a connection diagram of one section of the grid-shaped tenon-and-mortise inclined arch in this application;

[0033] Figure 8 This is a connection diagram of one part of the grid-shaped mortise and tenon joint on the phoenix head of this application;

[0034] Figure 9 This is a partial view of the grid-shaped mortise and tenon column head in this application;

[0035] Figure 10 This is a structural illustration of the two mortise and tenon joints of the phoenix head in this application;

[0036] Figure 11 This is a partial view of one of the grid-shaped mortise and tenon joint strips in this application;

[0037] Figure 12 This is a partial view of two sections of the grid-shaped tenon-and-mortise inclined arch in this application;

[0038] Figure 13 This is a partial view of five locations of the grid-shaped mortise and tenon cross arch in this application;

[0039] Figure 14 This is a partial view of the three parts of the grid-shaped mortise and tenon joint in this application;

[0040] Figure 15This is a partial view of the mortise and tenon joint in this application;

[0041] Figure 16 This is a structural illustration of two mortise and tenon joints in the grid pattern of this application;

[0042] Figure 17 This is a diagram illustrating the connection of the mortise and tenon joint in this application.

[0043] Figure label:

[0044] 1. Base; 11. Connecting column;

[0045] 2. Mortise and tenon support structure; 21. Pad arch plate; 22. Seat bracket; 23. Bracket three rising arch one; 24. Rising one; 25. Cross arch one; 26. Rising two; 27. Bracket three rising arch two; 28. Rising three; 29. ​​Bracket six rising arch; 210. Cross arch two;

[0046] 211. Column Head Arch; 212. Connecting Mechanism 1; 213. Cross Arch 3; 214. Ascending Arch 4; 215. Diagonal Arch 1; 216. Phoenix Head 1; 217. Connecting Mechanism 2; 218. Cross Arch 4; 219. Diagonal Arch 2; 220. Phoenix Head 2; 221. Plaque 1;

[0047] 222. Cross-shaped arch five; 223. Phoenix head three; 224. Cross-shaped arch six; 225. Cloud head; 226. Plaque two; 227. Plaque three; 228. Zigan. Detailed Implementation

[0048] The following is in conjunction with the appendix Figures 1-16 This application will be described in further detail.

[0049] This application discloses a grid-shaped tenon joint.

[0050] Example 1

[0051] Reference Figure 1 A grid-shaped tenon joint includes a base 1, the top of which is fixedly connected to the bottom of a connecting column 11, and a tenon support structure 2 is provided on the top of the base 1.

[0052] The staff first placed the base 1 stably, and then connected the connecting column 11 to the base 1, thus preparing for the assembly of the structure.

[0053] Reference Figure 2,3, the mortise and tenon support structure 2 includes the pad arch plate 21 inserted on the top of the base 1, the round hole one is arranged on the bottom of the seat bucket 22, the top of the connecting column 11 is inserted with the round hole one, so that the seat bucket 22 is inserted with the connecting column 11, the vertical recess one is arranged on the side wall of the seat bucket 22, the pad arch plate 21 is clamped with the recess one, so that the seat bucket 22 is clamped with the pad arch plate 21, the side of the seat bucket 22 away from the connecting column 11 is clamped with the bottom of the bucket three arch one 23, so that the bucket three arch one 23 is limited by the seat bucket 22, the recess two is arranged on the side of the bucket three arch one 23 close to the pad arch plate 21, the pad arch plate 21 is clamped with the recess two, so that the pad arch plate 21 is clamped with the bucket three arch one 23, the round hole two is arranged on the side of the bucket three arch one 23 away from the seat bucket 22, the bottom of the rise one 24 is inserted with the round hole two, so that the bucket three arch one 23 is inserted with the rise one 24, the recess three is arranged on the side wall of the rise one 24, the pad arch plate 21 is clamped with the recess three, so that the rise one 24 is clamped with the pad arch plate 21, the clamping groove one is arranged on the top of the bucket three arch one 23, the bottom of the cross arch one 25 is clamped with the clamping groove one, so that the cross arch one 25 is clamped with the rise one 24, the round hole three is arranged on the top of the cross arch one 25, the bottom of the rise two 26 is inserted with the round hole three, so that the rise two 26 is inserted with the cross arch one 25, the top of the rise two 26 is kept horizontal with the top of the bucket three arch one 23, the height of the rise two 26 is kept consistent with the rise one 24, so that subsequent connection is facilitated.

[0054] The worker first inserts the seat bucket 22 with the connecting column 11, then clamps the bucket three arch one 23 horizontally downward with the top of the seat bucket 22, then clamps the cross arch one 25 with the bucket three arch one 23 in a horizontal and vertical state, so that the cross arch one 25 is clamped with the bucket three arch one 23, then clamps the rise one 24 with the bucket three arch one 23, so that the side wall recess direction of the seat bucket 22, the bucket three arch one 23 and the rise one 24 is consistent, then clamps the bottom of the pad arch plate 21 with the top of the base 1, then slides the two pad arch plates 21 horizontally relative to each other, so that the pad arch plate 21 is clamped with the rise one 24, the bucket three arch one 23 and the seat bucket 22, then inserts the rise two 26 with the top of the cross arch one 25, so that the first layer of splicing is completed. Figure 3

[0055] Referring to Figure 4 ​5. The mortise and tenon support structure 2 also includes a bracket set 27 with a third-tier supporting arch. The tops of the second-tier arches 26 at both ends of the top of the cross arch 1 25 are engaged with the bottoms of the bracket set 27. The top of the bracket set 27 has a round hole 4, and the bottom of the third-tier arch 28 is inserted into the round hole 4, thus allowing the third-tier arch 28 to be inserted into the bracket set 27. The top of the second-tier arch 26 in the middle of the top of the cross arch 1 25 is engaged with the bottom of the sixth-tier supporting arch 29. The top of the sixth-tier supporting arch 29 has a round hole 5, and the bottom of the first-tier arch 24 is inserted into the round hole 5, thus allowing the sixth-tier supporting arch 29 to be inserted into the first-tier arch 24. The side wall of the sixth-tier supporting arch 29 has a groove 4, and the arch pad 21 is engaged with the groove 4, thus allowing the side wall of the sixth-tier supporting arch 29 to be engaged with the arch pad 21. The top center of the six-tiered rising arch 29 has a second slot, and the bottom of the cross arch 210 has a third slot. The third slot engages with the second slot, thus engaging the bottom of the cross arch 210 with the top of the six-tiered rising arch 29. The top of the three-tiered rising arch 27 has a fourth slot, and the bottom of the cross arch 210 engages with the fourth slot, thus engaging the cross arch 210 with the three-tiered rising arch 27. The top of the cross arch 210 has a sixth circular hole, and the bottom of the second rising arch 26 is inserted into the sixth circular hole, thus engaging the second rising arch 26 with the cross arch 210. The second rising arch 26 at the top of the cross arch 210 and the first rising arch 24 at the top of the six-tiered rising arch 29 are at the same height, thus ensuring the horizontal stability of the structure.

[0056] Next, the workers will engage the six-tiered rising arch 29 with the rising arch 24 at the top of the three-tiered rising arch 23, ensuring that the groove on the side wall of the six-tiered rising arch 29 engages with the arch support plate 21. Then, the bottom of the three-tiered rising arch 27 will be engaged with the rising arch 26 on both sides of the top of the cross arch 25. Next, rising arch 28 will be symmetrically inserted into the top of the three-tiered rising arch 27. Then, rising arch 24 will be inserted into the top of the six-tiered rising arch 29, and the groove of rising arch 24 will be aligned and engaged with the arch support plate 21. Next, cross arch 210 and the six-tiered rising arch 29 will be placed horizontally and perpendicularly to each other, engaging cross arch 210 with the six-tiered rising arch 29 and cross arch 210 with the three-tiered rising arch 27. Finally, rising arch 26 will be inserted into the top of cross arch 210, ensuring that rising arch 26 at the top of cross arch 210 is at the same height as rising arch 28 at the top of the three-tiered rising arch 27 and rising arch 24 at the top of the six-tiered rising arch 29, thus completing the assembly reference for the second layer. Figure 5 As shown.

[0057] Reference Figures 6-9The top of the first-stage arch 24 on the side of the sixth-stage arch 29 away from the third-stage arch 23 is engaged with the bottom of the column head arch 211. The top of the second-stage arch 26, inserted at the center on the side of the second cross arch 210 away from the first cross arch 25, is engaged with the bottom of the column head arch 211, thus providing vertical support for the column head arch 211. The bottom of the column head arch 211 has a groove 5, and the top of the pad arch plate 21 is engaged with the groove 5, thus engaging the bottom of the column head arch 211 with the pad arch plate 21. The top of the third-stage arch 28, inserted on the side of the third-stage arch 27 away from the first cross arch 25, is engaged with the bottom of the connecting machine 212. The connecting machine 212 is engaged with the top of the second-stage arch 26 on the side of the second cross arch 210 away from the third-stage arch 23. The top of the column head 211 has a slot five, and the bottom of the cross arch 3 213 has a slot six. Slot six engages with slot five, thereby engaging the column head 211 with the cross arch 3 213. The top of the connecting machine 1 212 has a square slot one, and the bottom of the cross arch 3 213 has a square slot two. Slot one engages with square slot two, thereby engaging the bottom of the cross arch 3 213 with the top of the connecting machine 1 212. The top of the cross arch 3 213 has a round hole seven, and the bottom of the lifting 4 214 engages with the round hole seven, thereby engaging the lifting 4 214 with the cross arch 3 213. The bottom of the lifting 2 26 engages with the round hole six, thereby engaging the top of the cross arch 3 213 with the lifting 2 26.

[0058] Subsequently, workers attached the top of the second-level lifting arch 26 at both ends of the top of the second-level cross arch 210 to the top of the third-level lifting arch 27, and then inserted the second-level lifting arch 26 at the top of the third-level lifting arch 27. Next, the column head arch 211 was attached to the top of the sixth-level lifting arch 29 via the second-level lifting arch 26, and the groove at the bottom of the column head arch 211 was attached to the top of the pad arch plate 21. Then, the first connecting machine 212 was attached to the third-level lifting arch 27 at the top of the third-level lifting arch 28, and the second-level lifting arch 26 at the top of the connection point between the second-level cross arch 210 and the third-level lifting arch 27 was attached. Then, the second inclined groove at the bottom of the first inclined arch 215 was aligned with the first inclined groove at the top of the first connecting machine 212 and attached. The first inclined arch 215 was then attached to the first connecting machine 212, and the second-level lifting arch 26 attached to the bottom of the column head arch 211 was overlapped for reference. Figure 7 Then, make the phoenix head Ang 1 216 and the dou 3 Sheng Gong 2 27 horizontally and vertically to each other.

[0059] Reference Figures 6-9 The top of the connecting machine 212 has an inclined groove 1, the bottom of which engages with the lifting machine 28. The bottom of the inclined arch 215 has an inclined groove 2, which engages with the inclined groove 1. This allows the inclined arch 215 to engage with the connecting machine 212. The bottom of the engagement point between the inclined arch 215 and the connecting machine 212 is in contact with the top of the lifting machine 28, so that the top of the lifting machine 28 simultaneously engages the inclined arch 215 and the connecting machine 212. Figure 7As shown, the bottom of the inclined arch 215 near the column head 211 has a notch that engages with the edge of the second lift 26 at the bottom of the column head 211, allowing the second lift 26 to provide vertical support for both the column head 211 and the inclined arch 215. The bottom of the phoenix head 216 has a slot 7 that engages with the square slot 1 at the top of the connecting mechanism 212, allowing the bottom of the phoenix head 216 to engage with the connecting mechanism 212. The phoenix head 216 can simultaneously engage the square slot 1 with the second lift 26 at the bottom of the connecting mechanism 212. Figure 8 As shown, this makes the structure more stable. The slot seven also engages with the slot four, so that the bottom of the phoenix head 1 216 engages with the top of the bracket 3 rising arch 2 27, and can also engage with the rising arch 2 26 at the bottom of the bracket 3 rising arch 2 27. The top of the phoenix head 1 216 has a round hole 8, and the bottom of the rising arch 2 26 is inserted into the round hole 8, so that the top of the phoenix head 1 216 engages with the rising arch 2 26, thus facilitating subsequent structural assembly.

[0060] The workers then moved the Phoenix Head Angler 1 (216) downwards, engaging it with the Dou San Sheng Gong Er (27) and simultaneously engaging the tops of the Connecting Mechanism 1 (212) and the Column Head 211. Next, the Lifting Mechanism 2 (26) was inserted into the top of the Phoenix Head Angler 1 (216). Then, the Cross Arch 3 (213) was perpendicular to the Column Head 211. The Cross Arch 3 (213) was then moved vertically downwards, engaging its bottom with the Column Head 211 and the Connecting Mechanism 1 (212). Finally, the top ends of the Cross Arch 3 (213) were inserted into the Lifting Mechanism 4 (214), and the top of the Cross Arch 3 (213) was inserted into the Lifting Mechanism 2 (26), ensuring that the bottoms of both the Lifting Mechanism 2 (26) and the Lifting Mechanism 4 (214) were at the same height. This completed the assembly of the third layer. Figure 9 As shown.

[0061] Reference Figure 10 11, 12, the top of the second lifting mechanism 26, which is inserted on the side away from the second cross arch 210, is engaged with the bottom of the second connecting mechanism 217. The bottom of the second connecting mechanism 217 is fitted with the top of the fourth lifting mechanism 214. The top of the second connecting mechanism 217 has an irregular groove 1. The top of the fourth cross arch 218 has an irregular groove 2. The bottom of the fourth cross arch 218 has a square slot 1. The square slot 1 engages with the irregular groove 1, thereby engaging the fourth cross arch 218 with the second connecting mechanism 217. The bottom of the fourth cross arch 218 is engaged with the third cross arch 213 away from the column. The top of the second lifting bracket 26, which is inserted into one side of the head bracket 211, is engaged with the top of the second lifting bracket 26, which is inserted into the top of the first lifting bracket 216. This engages with the bottom of the third lifting bracket 27, thus providing vertical support for the third lifting bracket 27. The irregular grooves 1 and 2 at the top of the engagement point between the fourth cross arch 218 and the second connecting machine 217 will form an inclined engagement groove 1. The bottom of the second inclined arch 219 has an irregular groove 3, which engages with the engagement groove 1. This allows the second inclined arch 219 to engage with both the second connecting machine 217 and the fourth cross arch 218 simultaneously. Figure 12As shown, the top of the inclined arch 2 219 is provided with a round hole 9, and the bottom of the inclined arch 2 219 is inserted into the round hole 9, so that the inclined arch 2 219 is inserted into the inclined arch 2 219.

[0062] Then the staff member inserts the top of the inclined arch 2 219 into the round hole 9 of the inclined arch 2 219, and then places the inclined arch 2 219 horizontally and vertically with the inclined arch 2 219, and then moves the inclined arch 2 219 downward, so that the inclined arch 2 219 is inserted into the inclined arch 2 219 and the inclined arch 2 219 is inserted into the inclined arch 2 219.

[0063] Referring to Figure 10 , 11, 12, the top of the inclined arch 2 219 is provided with a round hole 9, and the bottom of the inclined arch 2 219 is inserted into the round hole 9, so that the inclined arch 2 219 is inserted into the inclined arch 2 219.

[0064] Then the staff member inserts the top of the inclined arch 2 219 into the round hole 9 of the inclined arch 2 219, and then places the inclined arch 2 219 horizontally and vertically with the inclined arch 2 219, and then moves the inclined arch 2 219 downward, so that the inclined arch 2 219 is inserted into the inclined arch 2 219 and the inclined arch 2 219 is inserted into the inclined arch 2 219. Figure 11 As shown.

[0065] Referring to Figure 1314. The bottom of the cross arch 5 222 has a slot 8, which engages with the square slot 1 on the top of the connecting machine 1 212, thus engaging the top of the connecting machine 1 212 with the bottom of the cross arch 5 222. The top of the cross arch 5 222 engages with the lifting 2 26 inserted into the top of the inclined arch 2 219. The top of the cross arch 5 222 has a round hole 11, and the bottom of the lifting 4 214 engages with the round hole 11, thus engaging the cross arch 5 222 with the lifting 4 214. The round hole 8 engages with the bottom of the lifting 2 26, thus engaging the lifting 2 26 with the cross arch 5 222. The bottom of the cross arch 5 222 is attached to the side of the tag 1 221 away from the connecting machine 1 212. The top of the cross arch 5 222 engages with the square slot 5, thus engaging the cross arch 5 222 with the square slot 212. The top of the fifth 222 is engaged with the first 221. The bottom of the third 223 has a slot nine. The square slot one on the top of the first 212 is engaged with the slot nine, so that the bottom of the third 223 is engaged with the first 212. The top of the third 223 has a square slot seven, which is engaged with the square slot five, so that the top of the third 223 is engaged with the bottom of the first 221. The top of the third 223 has a round hole twelve, which is inserted into the second 26, so that the third 223 is engaged with the second 26. The bottom of the third 223 is engaged with the second 26 inserted into the top of the second 220, so that the second 220 provides vertical support for the third 223.

[0066] Subsequently, the workers connected the top of the second-level 26 at both ends of the Fengtou Ang 220 with the bottom of the third-level 27. Then, they inserted the second-level 26 at the top of the third-level 27. Next, they connected the top of the second-level 26 inserted at both ends of the cross arch 4218 with the connecting machine 1212. Then, they placed the cross arch 522 perpendicular to the plane of the connecting machine 1212, and then moved the cross arch 522 vertically downwards, thus connecting the bottom of the cross arch 522 with the top of the connecting machine 1212. Next, they inserted the fourth-level 214 and the second-level 26 at the top of the cross arch 522, and finally connected the bottom of the cross arch 522 with the second-level 26 inserted at the top of the oblique arch 219. Then, the inclined arch 1 215 is moved vertically downwards, so that it engages with the connecting mechanism 1 212. Next, the phoenix head arch 3 223 is placed parallel to the cross arch 5 222. Then, the phoenix head arch 3 223 is moved downwards, so that its bottom engages with the top center of the connecting mechanism 1 212. The bottom of the phoenix head arch 3 223 also engages with the lifting mechanism 26 inserted at the top of the phoenix head arch 2 220. Then, the lifting mechanism 26 is inserted at the top of the phoenix head arch 3 223. Finally, the plaque 1 221 is engaged at the top of the phoenix head arch 3 223, and the bottom of plaque 1 221 engages with the top of the cross arch 5 222, thus completing the assembly of the fifth layer. Figure 14 As shown.

[0067] Reference Figure 15, 16, cross-arch six 224 bottom is equipped with square card slot two, the special-shaped slot one of the top of connecting machine two 217 and square card slot two are connected, cross-arch six 224 bottom and the top of cross-arch five 222 are inserted and connected with the second lifting 26, cross-arch six 224 top is equipped with round hole thirteen, round hole thirteen and the bottom of the second lifting 26 are inserted, so that the second lifting 26 and cross-arch six 224 are inserted, cross-arch six 224 top is equipped with special-shaped slot three, special-shaped slot three and special-shaped slot one will form an inclined card slot two, inclined arch two 219 and card slot two are connected, so that inclined arch two 219 simultaneously connects cross-arch six 224 and connecting machine two 217, cloud head 225 bottom is equipped with card slot ten, square slot three of the top of connecting machine two 217 and card slot ten are connected, so that the top of connecting machine two 217 and the bottom of cloud head 225 are connected, cloud head 225 and the card slot four of the top of the third bucket lifting arch two 27 are connected, so that the third bucket lifting arch two 27 and cloud head 225 are connected, cloud head 225 bottom is connected with the second lifting 26 inserted in the top of phoenix head high three 223 through card slot ten, cloud head 225 side close to card strip one 221 and card strip one 221 top are attached, so that cloud head 225 is supported by card strip one 221.

[0068] Then the staff connects the top of the second lifting 26 of the top of both ends of phoenix head high three 223 with the third bucket lifting arch two 27, then inserts the second lifting 26 in the top of the third bucket lifting arch two 27, then connects the second lifting 26 in the top of the connecting machine two 217 at the top of the connecting place of phoenix head high three 223 and the third bucket lifting arch two 27, and makes the bottom of connecting machine two 217 and the top of the fourth lifting 214 attached, then the staff places cross-arch six 224 and connecting machine two 217 vertically, then moves cross-arch six 224 vertically downward, so that cross-arch six 224 and connecting machine two 217 are connected, then moves inclined arch two 219 downward, so that inclined arch two 219 connects connecting machine two 217 and cross-arch six 224 simultaneously, refer to Figure 12 Then inserts the second lifting 26 in the top of inclined arch two 219, then places cloud head 225 parallel to cross-arch six 224, then moves cloud head 225 vertically downward, so that the bottom of cloud head 225 and the top of the third bucket lifting arch two 27 are connected, and the bottom of cloud head 225 and the top of connecting machine two 217 are also connected, cloud head 225 and the second lifting 26 of the top of phoenix head high three 223 are also connected, so that the assembly of the fifth layer is completed, refer to Figure 16 As shown.

[0069] Refer to Figure 1516. A square groove eight is opened at the top of the cloud head 225, and a square groove nine is opened at the bottom of the plaque 226. The square groove nine and the square groove eight are engaged, thereby engaging the plaque 226 with the cloud head 225. A square groove ten is opened at the top of the cross arch 224, and the square groove ten and the square groove nine are engaged, thereby engaging the top of the cross arch 224 with the bottom of the plaque 226. A round hole fourteen is opened at the top of the cloud head 225, and the round hole fourteen is inserted into the bottom of the rising 26, thereby engaging the rising 26 with ...6 with the rising 266 with the rising 266 with the rising 266 with the rising 266 with the rising 266 with the rising 266 with the rising 266 with the rising 266 with the 26 is inserted into the cloud head 225. The top of the second 26 inserted into the cloud head 225 is engaged with the bottom of the third 227. The bottom of the third 227 is engaged with the second 26 inserted into the top of the oblique arch 219. The top of the second 26 inserted into the top of the cross arch 624 is engaged with the bottom of the purlin 228. The purlin 228 is engaged with the second 26 inserted into the top of the cloud head 225. The side of the purlin 228 near the second 27 of the third dougong is engaged with the second 26 inserted into the top of the second 27 of the third dougong.

[0070] The workers then placed sign strip 226 perpendicular to the plane of cross arch 6 224, and then moved sign strip 226 vertically downwards, so that the bottom of sign strip 226 was not interlocked with the underfloor heating pipe of cross arch 6 224, and the bottom of sign strip 226 was also interlocked with the top of cloud head 225. Next, sign strip 3 227 was placed parallel to sign strip 226, and then interlocked with the lifting 26 inserted at the top of inclined arch 2 219. The bottom of sign strip 3 227 was also interlocked with the lifting 26 at the top of cloud head 225. Then, the bottom of purlin 228 was interlocked with the lifting 26 at the top of cross arch 6 224, and the bottom of purlin 228 was also interlocked with the lifting 26 at the top of purlin 3 lifting arch 2 27. The bottom of purlin 228 was also interlocked with the lifting 26 at the top of both ends of cloud head 225, thus completing the capping of the structure and the assembly of the entire structure.

[0071] The implementation principle of the grid-shaped mortise and tenon of the embodiment of the application is as follows: the base 1 top is inserted with the pad arch plate 21, then the seat 22 is inserted with the connecting column 11, then the third arch 23 is inserted with the seat 22, then the first arch 24 is inserted with the third arch 23, then the first cross arch 25 is inserted with the first arch 24, then the second arch 26 is inserted with the first cross arch 25, then the second cross arch 27 is inserted with the first cross arch 25, then the sixth arch 29 is clamped with the third arch 23, then the second cross arch 210 is clamped with the sixth arch 29, then the first arch 24 is inserted with the sixth arch 29, then the second arch 26 is inserted with the second cross arch 210, then the column head building 211 is clamped with the pad arch plate 21, then the connecting machine 212 is clamped with the third arch 28, then the third cross arch 213 is clamped with the column head building 211 and the connecting machine 212, then the first inclined arch 215 is clamped with the connecting machine 212, then the second cross arch 210 is clamped with the third arch 27, then the phoenix head 216 is clamped with the column head building 211, then the second connecting machine 217 is clamped with the phoenix head 216, then the fourth cross arch 218 is clamped with the second connecting machine 217, then the second inclined arch 219 is clamped with the fourth cross arch 218 and the second connecting machine 217, then the second phoenix head 220 is clamped with the second connecting machine 217, then the first card 221 is clamped with the second phoenix head 220, then the fifth cross arch 222 is clamped with the connecting machine 212, then the third phoenix head 223 is clamped with the connecting machine 212, then the first card 221 is clamped with the third phoenix head 223, then the sixth cross arch 224 is clamped with the second connecting machine 217, then the cloud head 225 is clamped with the second connecting machine 217, then the second card 226 is clamped with the sixth cross arch 224 and the cloud head 225, then the third card 227 is clamped with the second inclined arch 219, then the cypress beam 228 is clamped with the cloud head 225, so as to complete the overall splicing.

[0072] The above are the preferred embodiments of the application, which do not limit the protection scope of the application, therefore: any equivalent changes made on the structure, shape, principle of the application should be covered within the protection scope of the application.

Claims

1. A grid-shaped mortise and tenon joint comprising a base (1), the top of which is fixedly connected with a connecting column (11), characterized in that: The base (1) top is provided with a mortise and tenon support structure (2); The mortise and tenon support structure (2) comprises a cushion arch plate (21) inserted into the top of the base (1), the top of the connecting column (11) is inserted with a seat bucket (22) with a side wall clamped with the cushion arch plate (21), the top of the seat bucket (22) is clamped with a three-dog arch one (23) with a side wall clamped with the cushion arch plate (21), the top of the three-dog arch one (23) is inserted with a first rise (24) with a side wall clamped with the cushion arch plate (21), the top of the three-dog arch one (23) is clamped with a cross arch one (25) with a bottom adhered to the top of the seat bucket (22), and the top of the cross arch one (25) is inserted with a second rise (26).

2. A grid mortise and tenon according to claim 1 wherein: The mortise and tenon support structure (2) further comprises a three-dog arch two (27), the top of the second rise (26) at both ends of the top of the cross arch one (25) is clamped with the three-dog arch two (27), the top of the three-dog arch two (27) is inserted with a third rise (28), the second rise (26) in the middle of the top of the cross arch one (25) is clamped with a six-dog arch (29) with a bottom clamped with the first rise (24), and the top of the six-dog arch (29) is inserted with the first rise (24).

3. A grid mortise and tenon according to claim 2, wherein: The side wall of the six-dog arch (29) is clamped with the cushion arch plate (21), the top of the six-dog arch (29) is clamped with a cross arch two (210) clamped with the top of the three-dog arch two (27), the top of the cross arch two (210) is inserted with the second rise (26), the top of the first rise (24) of the six-dog arch (29) is clamped with a column head building (211) clamped with the second rise (26) at the center of the top of the cross arch two (210), the bottom of the column head building (211) is clamped with the cushion arch plate (21), the top of the third rise (28) of the three-dog arch two (27) is clamped with a connecting machine one (212) clamped with the second rise (26) inserted with the top of the six-dog arch (29).

4. A grid mortise and tenon according to claim 3 wherein: The top of the column head building (211) is clamped with a cross arch three (213) clamped with the top of the connecting machine one (212), the top of the cross arch three (213) is inserted with the second rise (26), the top of the cross arch three (213) is inserted with a fourth rise (214), the top of the connecting machine one (212) is clamped with an inclined arch one (215) clamped with the top of the third rise (28), and the inclined arch one (215) is clamped with the second rise (26) at the bottom of one side of the column head building (211) and the bottom of the column head building (211).

5. A grid mortise and tenon according to claim 4 wherein: The top of the column head building (211) is clamped with a phoenix head proud one (216) clamped with the top of the connecting machine one (212), the bottom of the phoenix head proud one (216) is clamped with the three-dog arch two (27), the phoenix head proud one (216) is clamped with the second rise (26) at the bottom of the connecting machine one (212), the phoenix head proud one (216) is clamped with the second rise (26) at the bottom of the column head building (211), the phoenix head proud one (216) is clamped with the second rise (26) at the bottom of the three-dog arch two (27), and the top of the phoenix head proud one (216) is inserted with the second rise (26).

6. A grid mortise and tenon according to claim 5 wherein: The top of the first phoenix head (216) is inserted into the second lift (26), which is then engaged with the top of the fourth lift (214). The top of the second lift (217) is engaged with the fourth cross arch (218) which is engaged with the second lift (26) inserted into the top of the third cross arch (213). The top of the second lift (26) inserted into the first phoenix head (216) is engaged with the second lift (27) of the third cross arch. The top of the fourth cross arch (218) is engaged with the connecting... The second inclined arch (219) is connected to the second machine (217). The top of the second inclined arch (219) is inserted into the second lifting machine (26). The top of the second machine (217) is connected to the second lifting machine (26), which is inserted into the top of the second lifting machine (216). The top of the second lifting machine (220) is inserted into the second lifting machine (26). The top of the second lifting machine (220) is connected to the second lifting machine (26). The top of the second lifting machine (220) is connected to the top of the first plaque (221), which is connected to the top of the fourth cross arch (218).

7. A grid mortise and tenon according to claim 6 wherein: The top of the connecting mechanism 1 (212) is engaged with the lifting mechanism 2 (26) which is inserted into the top of the inclined arch 2 (219), and the top of the cross arch 5 (222) is inserted into the lifting mechanism 4 (214). The top of the cross arch 5 (222) is inserted into the lifting mechanism 2 (26). The bottom of the cross arch 5 (222) is attached to the top of the card strip 1 (221). The top of the cross arch 5 (222) is engaged with the card strip 1 (221). The top of the connecting mechanism 1 (212) is... The top of the Phoenix Head Ang 3 (223) is engaged with the bottom of the card strip 1 (221). The top of the Phoenix Head Ang 3 (223) is inserted into the Lifting 2 (26). The bottom of the Phoenix Head Ang 3 (223) is engaged with the Lifting 2 (26) inserted into the top of the Phoenix Head Ang 2 (220). The top of the connecting machine 2 (217) is engaged with the Lifting 2 (26) inserted into the top of the Cross Arch 5 (222). The top of the Cross Arch 6 (224) is engaged with the Lifting 2 (26).

8. A grid mortise and tenon according to claim 7, wherein: The top of the sixth cross arch (224) is inserted into the second oblique arch (219). The top of the second connecting mechanism (217) is engaged with the cloud head (225) which is engaged with the top of the third rising arch (27). The bottom of the cloud head (225) is inserted into the second rising mechanism (26) which is engaged with the top of the third phoenix head (223). The bottom of the cloud head (225) is attached to the top of the first plaque (221). The top of the cloud head (225) is engaged with the second plaque which is engaged with the top of the sixth cross arch (224). (226), the top of the second riser (26) inserted into the top of the cloud head (225) is connected to the top of the second riser (26) inserted into the top of the oblique arch (219) and the top of the second riser (26) is connected to the top of the cross arch (224) and the top of the second riser (26) is connected to the top of the second riser (26) inserted into the top of the cloud head (225) and the bottom of the second riser (228) is connected to the second riser (26) inserted into the top of the third riser (27).