Inclined wall body structure
By using inclined blocks A, inclined blocks B, and edge blocks C in the inclined masonry wall, and by creating grooves on its horizontal surface to inlay brick strips and fixing them with mortar, the problems of poor compressive strength and insufficient tightness of the inclined masonry wall are solved, thus improving the stability and density of the wall.
Patent Information
- Application Number
- CN202423179953.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-23
AI Technical Summary
The existing inclined masonry walls have poor compressive strength, and the top of the inclined masonry wall is not tightly attached to the bottom of the beam or slab, resulting in insufficient stability and density of the wall.
The inclined brickwork A, inclined brickwork B, and edge brickwork C are constructed using right-angled triangular inclined bricks. Grooves are made on the horizontal surfaces of inclined brickwork A, inclined brickwork B, and edge brickwork C, and brick strips are inlaid. Mortar is used to fill and fix the grooves, thus achieving a firm connection between the inclined brickwork wall and the top beam.
It improves the load-bearing capacity of the inclined masonry wall and its tightness with the top beam, enhances the stability and density of the wall, and reduces the risk of plaster layer cracking.
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Figure CN223577379U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wall structure technical field, concretely is a kind of batter wall structure. BACKGROUND
[0002] The wall of secondary construction is stacked from bottom, and the technology of batter wall is mostly used between the top of wall and roof beam, batter can make brick better tightly roof beam or board bottom, so as to effectively compact the gap between wall and beam board, improve the density of the top of wall and the stability of whole wall, batter helps to reduce the crack caused by shrinkage or settlement of wall. After wall construction is completed, it will experience a certain degree of natural shrinkage, and batter brick can adjust with this change, reduce the risk of plastering layer cracking. In addition, batter can better extrude the gap with beam or board bottom, avoid the crack caused by too large gap. The current batter wall mainly uses multiple small bricks to be placed obliquely, the compression point of such batter wall is all borne by the outermost stepped brick structure, and the compression performance is poor, but such technology can ensure that the top of batter wall is tightly attached to the beam or board bottom, so it can be improved to meet the strong bearing performance and ensure that the top of batter wall is tightly attached to the beam or board bottom, therefore, we propose a batter wall structure. SUMMARY
[0003] The utility model is to provide a kind of batter wall structure, solve the problem proposed in background art.
[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of batter wall structure, including horizontal stacked wall, batter wall being arranged at the top of horizontal stacked wall, batter wall includes horizontally staggered splicing batter block A, batter block B and the edge block C at both ends, the vertical section of batter block A, batter block B and edge block C is all right triangle, the right angle end of batter block A is vertically upwards, and the right angle end of batter block B is vertically downwards.
[0005] Further, the horizontal plane of batter block A, batter block B and edge block C is all provided with a plurality of grooves, and the grooves are inlaid with brick strips.
[0006] Further, the number of grooves 301 of batter block A, batter block B is 3-4, and the number of grooves of edge block C is two.
[0007] Further, the outer dimensions of brick strip 3 are consistent with the inner cavity size of groove.
[0008] Further, the inclined surface of the right angle end of batter block A and batter block B is equally provided with a plurality of groove strips.
[0009] Further, the narrow width of groove strip is set to 10mm, and the depth of groove strip is set to 6mm.
[0010] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0011] The technical solution of this application uses a staggered stacking method of right-angled diagonal blocks. Compared with the traditional brick diagonal stacking process, the staggered stacking of right-angled diagonal blocks has a stronger load-bearing capacity. By filling the groove with mortar, the brick strips extend to the corresponding length. The diagonal wall can be raised according to the distance from the horizontally stacked wall to the top beam, thereby improving the stability of the diagonal wall and the top beam. Attached Figure Description
[0012] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0013] Figure 1 A three-dimensional diagram of the inclined masonry wall structure;
[0014] Figure 2 This is a schematic diagram of the inclined block structure;
[0015] Figure 3 This is a sectional view of the inclined block;
[0016] Figure 4 This is a structural schematic diagram of a slanted masonry wall structure according to the present invention.
[0017] In the diagram: 1. Horizontal brick wall; 2. Sloping brick wall; 201. Edge block C; 202. Sloping block A; 203. Sloping block B; 3. Brick strip; 301. Groove; 4. Groove strip. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0019] Example 1, as Figures 1-4 As shown, this utility model provides a technical solution: a sloping masonry wall structure, including a horizontally stacked wall 1 and a sloping masonry wall 2 set at the top of the horizontally stacked wall 1. The sloping masonry wall 2 includes horizontally staggered sloping blocks A202 and B203, and edge blocks C201 at both ends. The vertical cross-sections of sloping blocks A202, B203, and C201 are all right-angled triangles. The right-angled end of sloping block A202 points vertically upward, and the right-angled end of sloping block B203 points vertically downward. Several grooves 301 are opened on the horizontal surfaces of sloping blocks A202, B203, and C201, and brick strips 3 are inlaid inside the grooves 301.
[0020] In one specific embodiment of the utility model, the inclined block A202 and the inclined block B203 are brick bodies of the same specification, when the vertical height of the inclined block A202 and the inclined block B203 can just be attached to the top beam of the wall, the brick 3 is not needed, when there is a gap between the top end of the inclined wall 2 and the top beam of the wall, the height difference of the gap is measured, the mortar of the corresponding height is filled into the groove 301, after the mortar is solidified, the brick 3 is reinserted into the groove 301, at this time, the bottom of the inclined block A202 is raised, so that the whole inclined wall 2 can be attached to the top beam of the wall, then during construction, the mortar is needed to be evenly distributed between the inclined block A202, the inclined block B203 and the edge block C201, the top end and the bottom end of the inclined wall 2 are also evenly filled with the mortar, the contact surface between the brick 3 and the top end of the horizontal wall 1 is filled with the mortar for fixation, the groove 4 provided on the two right-angle edges of the inclined block A202 and the inclined block B203 facilitates the mortar adhesion, and the stability of the stacked inclined block A202 and inclined block B203 is improved.
[0021] In the preferred technical scheme, the number of the groove 301 of the inclined block A202 and the inclined block B203 is three, the number of the groove 301 of the edge block C201 is two, the width of the narrow side of the inclined block A202 and the inclined block B203 needs to be provided with multiple grooves 301 to cooperate with the brick 3 for support, the number should not be too much to avoid affecting the strength of the whole inclined block.
[0022] In the preferred technical scheme, the outer dimension of the brick 3 is consistent with the inner cavity dimension of the groove 301, when the brick 3 is not used, it can perfectly fit with the inner cavity of the groove 301, and the integrity of the inclined block is ensured.
[0023] In the preferred technical scheme, the inclined surface of the right-angle end of the inclined block A202 and the inclined block B203 is equally provided with a plurality of groove 4, the width of the narrow side of the groove 4 is 10mm, the depth of the groove 4 is 6mm, the groove 4 facilitates the mortar adhesion, and the stability of the stacked inclined block A202 and inclined block B203 is improved.
[0024] The construction steps are as follows: first, the horizontal stacking wall body 1 is vertically stacked, according to the interval of the horizontal stacking wall body 1 to the top beam, minus the vertical height size of the inclined block A202, fill the corresponding height of mortar into the groove 301, after the mortar solidifies, the brick strip 3 is reinserted into the groove 301, so that the vertical height of the inclined block A202 plus the length of the brick strip 3 protruding from the groove 301 is equal to the interval of the horizontal stacking wall body 1 to the top beam, the right angle end of the inclined block A202 faces upward, the right angle end of the inclined block B203 faces downward, the right angle edges of the inclined block A202 and the inclined block B203 are mutually attached, the attachment is arranged with concrete mortar, finally, the edge block C201 is assembled on the outer inclined surface of the two inclined blocks A202 on the outer side, so that the inclined stacking wall body 2 forms a complete rectangular surface, the top end and the bottom end of the inclined stacking wall body 2 are also covered with appropriate mortar, and the contact surface of the brick strip 3 and the top end of the horizontal stacking wall body 1 is filled with mortar for fixation.
Claims
1. A type of inclined masonry wall structure, comprising a horizontally stacked masonry wall (1) and an inclined masonry wall (2) disposed at the top of the horizontally stacked masonry wall (1), characterized in that: The inclined masonry wall (2) includes horizontally staggered inclined blocks A (202), inclined blocks B (203) and edge blocks C (201) at both ends. The vertical cross-sections of the inclined blocks A (202), B (203) and C (201) are all right triangles. The right-angled end of the inclined block A (202) is vertically upward, and the right-angled end of the inclined block B (203) is vertically downward.
2. The inclined masonry wall structure according to claim 1, characterized in that: The horizontal surfaces of the inclined block A (202), inclined block B (203) and edge block C (201) are provided with several grooves (301), and brick strips (3) are inlaid inside the grooves (301).
3. The inclined masonry wall structure according to claim 2, characterized in that: The inclined block A (202) and inclined block B (203) have 3 to 4 grooves (301), and the edge block C (201) has two grooves (301).
4. The inclined masonry wall structure according to claim 3, characterized in that: The outer dimensions of the brick strip (3) are consistent with the inner dimensions of the groove (301).
5. A sloping masonry wall structure according to claim 1, characterized in that: The inclined surfaces of the right-angle ends of the inclined blocks A (202) and B (203) are provided with several grooves (4) at equal intervals.
6. A sloping masonry wall structure according to claim 5, characterized in that: The narrow side width of the groove (4) is set to 10mm, and the depth of the groove (4) is set to 6mm.