Seamless joint typesetting method and system for wall surface and ground material

By selecting the starting point in the decoration design to draw the wall projection line, accurately positioning the door and window openings and adjusting the wall projection line, the error problem in the docking and layout of the wall and floor materials is solved, and efficient and accurate seamless docking and design optimization are achieved.

CN120337374AActive Publication Date: 2025-07-18HUBEI CONSTR ENG TECH CO LTD +1
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Patent Information

Application Number
CN202510507024.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-18
Estimated Expiration
2045-04-22

AI Technical Summary

Technical Problem

In the prior art, the butt layout process of wall and floor materials is cumbersome and errors are prone to occur, especially in a space containing multiple door and window openings, making it difficult to achieve seamless butt and coordinated consistency.

Method used

By selecting the starting point in the space to be decorated, the initial wall projection line is drawn, the door and window opening position is accurately positioned, and the wall projection line is adjusted according to actual needs, the ground layout design is completed, the surface layout diagram is created and the consistency is checked, and the design process is optimized using digital means.

Benefits of technology

Improve design accuracy, reduce human errors, and can quickly respond to design changes, ensuring decoration quality and work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of decoration design, and particularly relates to a wall surface and ground material seamless joint typesetting method and system.The method comprises the steps that a starting point is selected in a space to be decorated through a digital means, an initial wall surface projection line is drawn, and the positions and sizes of door and window openings are accurately positioned according to the initial wall surface projection line; then wall projection lines are adjusted according to actual requirements, and ground layout design is completed; according to the method, the design precision is improved, the possibility of human errors is reduced, the design change can be quickly responded, and the typesetting plan is automatically updated to adapt to a new size requirement; and finally, through systematically checking the consistency of each element of the facade layout layout and storing a design file, the whole process optimization from preliminary design to final confirmation is realized. The working efficiency is improved, and meanwhile the decoration quality is guaranteed.
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Description

Technical Field

[0001] The present invention belongs to the technical field of decoration design, and particularly relates to a method and system for seamless docking and layout of wall and floor materials. Background Art

[0002] In current interior decoration design, the docking and layout of wall and floor materials usually rely on the experience of designers and manual measurement. Traditional methods often include first making a preliminary measurement of the space to determine the positions of fixed facilities such as doors and windows, then manually drawing a design diagram based on these data, and calculating the quantity of materials required according to the diagram. Although this method is feasible, its process is cumbersome and prone to errors, especially when dealing with complex layouts or when precise material matching is required. In addition, due to the lack of real-time adjustment function, once the dimensions in the design plan change, the entire layout plan may need to be re-planned.

[0003] A main technical problem is that in the existing technical solutions, how to efficiently and accurately achieve seamless docking and layout of wall and floor materials, especially in a space containing multiple door and window openings, to ensure the coordination of all elements while reducing human errors. Summary of the Invention

[0004] The purpose of the present invention is to provide a method and system for seamless docking and layout of wall and floor materials, which realizes the full-process optimization from preliminary design to final confirmation, improves work efficiency, and also ensures the decoration quality, so as to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention adopts the following technical solution: A method for seamless docking and layout of wall and floor materials, comprising the following steps:

[0006] Select a starting point in the space to be decorated, and draw an initial wall projection line of the space based on the starting point; determine the positions of door and window openings based on the initial wall projection line, set marking points around them, calculate the sizes of the door and window openings according to the marking points, and record the results; use the sizes of the door and window openings to adjust the initial wall projection line to meet the actual size requirements, and perform floor layout design according to the adjusted wall projection line to ensure that the boundaries coincide with the wall projection line; through the floor layout design, calculate the quantity of floor materials required and list them, and generate an elevation layout diagram including doors and windows based on the list and the positions of door and window openings; check whether the elements in the elevation layout diagram are coordinated, and save the design file after confirmation.

[0007] Preferably, the step of selecting a starting point in the space to be decorated and drawing an initial wall projection line of the space based on the starting point includes:

[0008] Measure and record the perpendicular distances from the starting point to the adjacent two walls, denoted as Lw1 and Lw2 respectively.

[0009] Use the formula (Lw1 + Lw2) / 2 to determine the position Pc of the center point of the space.

[0010] Starting from the starting point, mark multiple equally spaced points along the ground in the direction of position Pc, with each point spaced Dp apart, where Dp = Lw1 / 10, to form a series of reference points.

[0011] Connect the starting point and the last reference point with a straight line and extend the line until it touches the wall surface. Adjust the line according to the actual shape of the wall surface to make it fit the wall contour, thereby completing the drawing of the initial wall projection line.

[0012] Preferably, based on the initial wall projection line, determine the positions of the door and window openings and set marking points around them, including:

[0013] Measure and record the distance Ddo from the center point of each door and window opening along the initial wall projection line to the nearest reference point. Calculate the relative position Pmo of the center point of each door and window opening using the formula (Ddo1 + Ddo2) / 2 according to the Ddo value.

[0014] Around the relative position Pmo, measure at a predetermined spacing Sm, where Sm = Dp / 5, and mark four marking points around the Pmo point to form a square boundary.

[0015] Connect the two marking points on the diagonal and check whether the intersection point coincides with the Pmo point; if the intersection point does not exactly match the Pmo point, adjust the positions of the marking points until they match.

[0016] Preferably, calculate the dimensions of the door and window openings based on the marking points and record the results, including:

[0017] Measure and record the distances between the marking points around the perimeter of each door and window opening, including the width - direction distance Lwdo and the height - direction distance Lhdo.

[0018] Based on the square boundary formed by the marking points, calculate the width Wdo of the door and window opening using the formula (Lwdo1 + Lwdo2) / 2, and calculate the height Hdo of the door and window opening using the formula (Lhdo1 + Lhdo2) / 2.

[0019] Calculate the area Ado of the door and window opening based on the Wdo and Hdo values, where Ado = Wdo * Hdo, and record the Wdo, Hdo, and Ado values in the design document.

[0020] Check whether the recorded data matches the actual door and window openings. If there are differences, re-measure and update the values of Wdo, Hdo, and Ado until they are consistent with the actual situation.

[0021] Preferably, use the dimensions of the door and window openings to adjust the initial wall projection line to meet the actual size requirements, including:

[0022] Based on the width Wdo and height Hdo of the door and window openings, mark the actual contour boundary points of the door and window openings at the corresponding positions on the initial wall projection line;

[0023] Calculate the distance differences between each door and window opening contour boundary point and the nearest reference point, including the distance difference Dpw' in the width direction and the distance difference Dph' in the height direction, satisfying Dpw' = |Lwdo1 - Lwdo2| / 2 and Dph' = |Lhdo1 - Lhdo2| / 2;

[0024] Based on the values of Dpw' and Dph', adjust the initial wall projection line so that the wall projection line is adjusted at the door and window opening positions according to the formulas X = X original + Dpw' and Y = Y original + Dph';

[0025] Connect the adjusted points to form a new wall projection line, and at the same time check whether the newly generated wall projection line accurately reflects the actual size of the door and window openings.

[0026] Preferably, perform the floor layout design according to the adjusted wall projection line to ensure that the boundary coincides with the wall projection line, including:

[0027] Select a starting point on the floor as the reference point for the floor layout, and this reference point needs to be aligned with one end point of the adjusted wall projection line;

[0028] According to the shape and length of the wall projection line, use the formula Lg = ∑(Xn - Xn - 1)^2 + (Yn - Yn - 1)^2 to calculate the total length Lg of the floor layout line segments, where Xn, Yn are the coordinates of two consecutive points on the wall projection line;

[0029] Draw the floor layout line along the floor starting from the reference point according to the total length Lg, ensuring that each segment of the line is parallel to the corresponding part of the wall projection line and the distance remains consistent, satisfying Dg = |L wall - L floor| / N, where Dg is the maximum allowable deviation value, L wall is the length of the wall projection line, L floor is the length of the floor layout line, and N is the number of segments divided;

[0030] Check whether the floor layout line completely coincides with the boundary of the adjusted wall projection line; if a deviation is found between the floor layout line and the wall projection line, adjust the position or length of the floor layout line according to the deviation value until they match.

[0031] Preferably, through the above-mentioned floor layout design, calculate the quantity of floor materials required and list them, including:

[0032] Measure and record the length and width dimensions of each area in the floor layout design, denoted as the L area and the W area respectively;

[0033] According to the values of the L area and the W area, use the formula Area of A area = L area * W area to calculate the area of each area, denoted as A area, and sum up the areas of all areas to obtain the total area Atotal = ∑A area;

[0034] Based on the standard size of the selected floor material, set the single-piece area of the material as Am, and use the formula Number of materials N = Atotal / Am to calculate the total number of pieces of materials required, denoted as N materials;

[0035] Take N final as the final quantity of materials required, and list a detailed list including the material name, specification, and quantity.

[0036] Preferably, based on the list and the positions of door and window openings, generate an elevation layout plan including doors and windows, including:

[0037] According to the material specifications and quantities in the list, mark the application areas of each material on the wall in the design document;

[0038] Measure and record the distances from the edges of each door and window opening to the nearest material boundary points, denoted as Dlo, Dro, Duo, and Ddo respectively, and use the formula Pm = (Dlo + Dro) / 2, Pt = (Duo + Ddo) / 2 to calculate the horizontal center Pm and vertical center Pt of the door and window openings relative to the wall layout;

[0039] Based on Pm and Pt, accurately draw the outlines of the door and window openings on the elevation plan and mark their dimensions;

[0040] Integrate the material coverage areas and the positions of door and window openings to form a complete elevation layout plan.

[0041] Preferably, check whether the elements in the elevation layout plan are coordinated and consistent, and save the design document after confirmation, including:

[0042] Use the formula Sij = |Pi - Pj| - ((Wi + Wj) / 2) to calculate the spacing Sij between adjacent material areas in the elevation layout plan, where i and j represent the numbers of two adjacent areas;

[0043] According to Pm and Pt, verify the distance Dk between the edges of the door and window openings and the nearest material boundary to ensure that all Dk values meet the requirements of building codes;

[0044] Conduct an overall layout review of the elevation layout drawing, and verify the consistency of the door and window opening sizes by comparing the sizes of each door and window opening contour with the data recorded in the list.

[0045] Synchronously update all the verified data and adjustment results to the design file. After completing all the inspections and confirming that there are no errors, save the design file.

[0046] On the other hand, the present invention proposes a seamless butt joint layout system for wall and floor materials, including:

[0047] An initial wall projection line drawing module, which is used to select a starting point in the space to be decorated and draw the initial wall projection line of the space based on the starting point.

[0048] A door and window size calculation module, which is used to determine the positions of door and window openings based on the initial wall projection line, set marking points around them, calculate the sizes of door and window openings according to the marking points, and record the results.

[0049] A floor layout design module, which is used to utilize the door and window opening sizes to adjust the initial wall projection line to meet the actual size requirements, and perform floor layout design according to the adjusted wall projection line to ensure that the boundaries coincide with the wall projection line.

[0050] An elevation layout drawing generation module, which is used to calculate the quantity of floor materials required and list them through the floor layout design, and generate an elevation layout drawing including doors and windows based on the list and the positions of door and window openings.

[0051] A file saving module, which checks whether the elements in the elevation layout drawing are coordinated and consistent, and saves the design file after confirming that there are no errors.

[0052] The technical effects and advantages of the present invention: A seamless butt joint layout method and system for wall and floor materials proposed by the present invention have the following advantages compared with the prior art:

[0053] The present invention selects a starting point in the space to be decorated and draws the initial wall projection line by digital means, accurately locates the positions and sizes of door and window openings based on this line, and then adjusts the wall projection line according to actual needs and completes the floor layout design; this method not only improves the design accuracy, reduces the possibility of human errors, but also can quickly respond to design changes and automatically update the layout plan to adapt to new size requirements; finally, by systematically checking the consistency of the elements in the elevation layout drawing and saving the design file, the whole process optimization from preliminary design to final confirmation is realized; the work efficiency is improved, and at the same time, the decoration quality is ensured. Description of the Drawings

[0054] Figure 1 It is a flowchart of a seamless butt joint layout method for wall and floor materials of the present invention.

[0055] Figure 2 This is a block diagram of a seamless docking and layout system for wall and floor materials of the present invention. Detailed implementation manners

[0056] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. The specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts fall within the protection scope of the present invention.

[0057] The present invention provides a seamless docking and layout method for wall and floor materials as Figure 1 shown. This method not only improves the design accuracy, reduces the possibility of human errors, but also can quickly respond to design changes and automatically update the layout plan to adapt to new size requirements, as follows:

[0058] In this embodiment, the seamless docking and layout method for wall and floor materials includes the following steps:

[0059] Step 1: Select a starting point in the space to be decorated, and draw the initial wall projection line of the space with the starting point as the reference; specifically including:

[0060] Measure and record the perpendicular distances from the starting point to two adjacent walls (denoted as wall 1 and wall 2), denoted as Lw1 and Lw2 respectively, and use the formula (Lw1 + Lw2) / 2 to determine the position Pc of the center point of the space; (Lw1 + Lw2) / 2 here is actually to find an intermediate position equidistant between the starting point and the two walls, which helps the symmetric layout design in subsequent operations. This step ensures that a relatively central reference point can be found in a complex space, providing a basis for subsequent precise layout. In addition, the design scheme based on the center point is more conducive to achieving the balance of material distribution and improving the overall aesthetics.

[0061] Starting from the starting point along the ground towards the position Pc, mark a plurality of equally spaced points, with each point spaced Dp apart, satisfying Dp = Lw1 / 10, to form a series of reference points; Selecting Lw1 / 10 as the spacing is to ensure sufficient accuracy without excessive workload. This value can be adjusted according to actual needs, but Lw1 / 10 provides a balance point that ensures both accuracy and efficiency.

[0062] Connect the starting point and the last reference point with a straight line, and extend the straight line until it touches the wall surface. Adjust the straight line according to the actual shape of the wall surface to make it fit the wall contour, thereby completing the drawing of the initial wall projection line.

[0063] Embodiment 1

[0064] Suppose in a room to be decorated, the distances from the selected starting point to two adjacent walls are Lw1 = 3 meters and Lw2 = 4 meters respectively. First, calculate the position of the space center point Pc: Pc = (Lw1 + Lw2) / 2 = (3 + 4) / 2 = 3.5 meters.

[0065] Next, to draw the initial wall projection line, we need to mark multiple equally spaced points from the starting point along the ground towards the position Pc. The interval between each point is set as Dp: Dp = Lw1 / 10 = 3 / 10 = 0.3 meters.

[0066] If 10 such equally spaced points are marked in the direction from the starting point until approaching the position Pc, then the total distance between the last reference point and the starting point is approximately 3 meters (i.e., 10 * 0.3 meters). Then, use a straight line to connect the starting point and the last reference point, and extend this straight line until it touches the wall surface. Adjust this straight line according to the actual shape of the wall surface to make it fit the wall contour, thereby completing the drawing of the initial wall projection line.

[0067] Step 2: Determine the positions of the door and window openings based on the initial wall projection line, and set marking points around them; specifically including:

[0068] Measure and record the distance Ddo from the center point of each door and window opening along the initial wall projection line to the nearest reference point. Calculate the relative position Pmo of the center point of each door and window opening using the formula (Ddo1 + Ddo2) / 2; this is used to find the average value of the two distance values, so as to more accurately locate the position of the door and window openings on the wall projection line.

[0069] Around the relative position Pmo, measure at a predetermined interval Sm, where Sm = Dp / 5. Calibrate four marking points around the Pmo point to form a square boundary; this ratio is selected to ensure that the marking points can clearly mark the edges of the door and window openings without being too dense to affect actual operations.

[0070] Connect the two marking points on the diagonal and check whether the intersection point coincides with the Pmo point; if the intersection point does not completely coincide with the Pmo point, adjust the positions of the marking points until they match. By using this interval setting method, a clear boundary can be formed around the door and window openings, facilitating subsequent design adjustments and construction operations.

[0071] Embodiment 2

[0072] Assume that in a room, there is a door and window opening along the initial wall projection line, and the distances from the center point of the opening to the nearest reference points are Ddo1 = 1.2 meters and Ddo2 = 1.4 meters respectively. First, calculate the relative position Pmo of the center point of the door and window opening: Pmo = (Ddo1 + Ddo2) / 2 = (1.2 + 1.4) / 2 = 1.3 meters.

[0073] Next, measure at a predetermined spacing Sm around the point Pmo. If Dp (the interval between reference points) in the previous step is 0.3 meters, then: Sm = Dp / 5 = 0.3 / 5 = 0.06 meters.

[0074] Calibrate four marking points around the point Pmo to form a square boundary. These four points will be 0.06 meters above, below, to the left, and to the right of the point Pmo. For example, if the actual coordinates of the point Pmo are (X, Y), then the approximate coordinates of the four marking points are (X + 0.06, Y), (X - 0.06, Y), (X, Y + 0.06), and (X, Y - 0.06) respectively.

[0075] Then, connect the two marking points on the diagonal (i.e., (X + 0.06, Y) and (X, Y + 0.06), as well as (X - 0.06, Y) and (X, Y - 0.06)), and check whether the intersection point coincides with the point Pmo. If it is found that the intersection point does not exactly coincide with the point Pmo, then fine-tune the positions of the marking points until they match.

[0076] Step 3: Calculate the size of the door and window opening based on the said marking points and record the results; specifically including:

[0077] Measure and record the distances between the said marking points around each door and window opening, including the distance Lwdo in the width direction and the distance Lhdo in the height direction; based on the square boundary formed by the marking points, calculate the width Wdo of the door and window opening using the formula (Lwdo1 + Lwdo2) / 2, and calculate the height Hdo of the door and window opening using the formula (Lhdo1 + Lhdo2) / 2; ensuring the accurate quantification of the width of the door and window opening is crucial for subsequent material selection and layout design. Based on the accurate width information, the material use can be better planned, waste can be reduced, and efficiency can be improved.

[0078] Calculate the area Ado of the door and window opening based on the values of Wdo and Hdo, satisfying Ado = Wdo * Hdo, and record the values of Wdo, Hdo, and Ado in the design document; this step directly gives the space size occupied by the door and window opening, which is an important basis for subsequent material estimation and design optimization. By calculating the area of the door and window opening, accurate data support can be provided for designers.

[0079] Check whether the recorded data matches the actual door and window opening. If there are differences, re-measure and update the values of Wdo, Hdo, and Ado until they are consistent with the actual situation.

[0080] Embodiment III

[0081] Suppose there is a door and window opening along the initial wall projection line in a room, and the distances between the marked points around it are as follows:

[0082] The distance in the width direction Lwdo1 = 1.0 m, Lwdo2 = 1.05 m;

[0083] The distance in the height direction Lhdo1 = 2.0 m, Lhdo2 = 2.05 m.

[0084] First, calculate the width Wdo of the door and window opening:

[0085] Wdo = (Lwdo1 + Lwdo2) / 2 = (1.0 + 1.05) / 2 = 1.025 m;

[0086] Next, calculate the height Hdo of the door and window opening:

[0087] Hdo = (Lhdo1 + Lhdo2) / 2 = (2.0 + 2.05) / 2 = 2.025 m;

[0088] Then, calculate the area Ado of the door and window opening based on the values of Wdo and Hdo:

[0089] Ado = Wdo * Hdo = 1.025 * 2.025 = 2.075625 square meters;

[0090] Record the values of Wdo (1.025 m), Hdo (2.025 m), and Ado (2.075625 square meters) in the design document.

[0091] Finally, check whether the recorded data matches the actual door and window opening. If differences are found, re-measure and update the values of Wdo, Hdo, and Ado until they are consistent with the actual situation.

[0092] Step Four: Use the door and window opening dimensions to adjust the initial wall projection line to meet the actual dimension requirements; specifically including:

[0093] According to the width Wdo and height Hdo of the door and window opening, mark the actual contour boundary points of the door and window opening at the corresponding positions on the initial wall projection line; calculate the distance differences between each door and window opening contour boundary point and the nearest reference point, including the distance difference Dpw' in the width direction and the distance difference Dph' in the height direction, satisfying Dpw' = |Lwdo1 - Lwdo2| / 2 and Dph' = |Lhdo1 - Lhdo2| / 2; these two formulas are used to find the position deviation of the edge of the door and window opening relative to the original reference point. This step ensures that the position adjustment of the door and window opening on the wall projection line is more accurate and can effectively reflect the actual size requirements.

[0094] Based on the values of Dpw' and Dph', adjust the initial wall projection line so that the wall projection line is adjusted at the door and window opening position according to the formulas X = Xoriginal + Dpw' and Y = Yoriginal + Dph'; Xoriginal and Yoriginal represent the coordinate positions before adjustment, while Dpw' and Dph' represent the distance differences to be adjusted. In this way, the actual size of the door and window opening can be accurately incorporated into the wall projection line to ensure seamless docking between the wall and the door and window opening.

[0095] Connect the adjusted points to form a new wall projection line, and at the same time check whether the newly generated wall projection line accurately reflects the actual size of the door and window opening.

[0096] Embodiment 4

[0097] Suppose there is a door and window opening in a room, and the distances in the width direction are Lwdo1 = 1.0 m and Lwdo2 = 1.05 m; the distances in the height direction are Lhdo1 = 2.0 m and Lhdo2 = 2.05 m. First, according to the width Wdo and height Hdo of the door and window opening, mark the actual contour boundary points of the door and window opening on the initial wall projection line.

[0098] Next, calculate the distance difference Dpw' in the width direction and the distance difference Dph' in the height direction:

[0099] Dpw' = |Lwdo1 - Lwdo2| / 2 = |1.0 - 1.05| / 2 = 0.025 m;

[0100] Dph' = |Lhdo1 - Lhdo2| / 2 = |2.0 - 2.05| / 2 = 0.025 m;

[0101] Then, based on the values of Dpw' and Dph', adjust the initial wall projection line. For example, if the original coordinates of a reference point are (Xoriginal, Yoriginal) = (3.0, 4.0), the adjusted coordinates are:

[0102] X = X_original + Dpw' = 3.0 + 0.025 = 3.025 m;

[0103] Y = Y_original + Dph' = 4.0 + 0.025 = 4.025 m;

[0104] Connect the adjusted points to form a new wall projection line, and check whether the newly generated wall projection line accurately reflects the actual dimensions of the door and window openings. If any mismatch is found, further fine-tune until it is completely consistent.

[0105] Step Five: Perform floor layout design according to the adjusted wall projection line to ensure that the boundary coincides with the wall projection line; specifically including:

[0106] Select a starting point on the floor as the reference point for floor layout. This reference point needs to be aligned with one end point of the adjusted wall projection line; according to the shape and length of the wall projection line, use the formula Lg = ∑√((Xn - Xn-1)^2 + (Yn - Yn-1)^2) to calculate the total length Lg of the floor layout line segment, where Xn, Yn are the coordinates of two consecutive points on the wall projection line; this formula is actually used to calculate the distance between every two adjacent points (i.e., the straight-line distance between two points), and then add up all these distances to get the total length Lg. In this way, the total length required for floor layout can be accurately determined to ensure the consistency between the floor layout design and the wall projection line.

[0107] Draw the floor layout line along the floor starting from the reference point according to the total length Lg, ensuring that each section of the line is parallel to the corresponding part of the wall projection line and the distance remains consistent, satisfying Dg = |L_wall - L_floor| / N, where Dg is the maximum allowable deviation value, L_wall is the length of the wall projection line, L_floor is the length of the floor layout line, and N is the number of segments divided; this formula helps the designer understand and control the maximum allowable deviation between the floor layout line and the wall projection line. By setting the maximum allowable deviation value Dg, the error between the floor layout line and the wall projection line can be effectively controlled to ensure the accuracy and feasibility of the design scheme.

[0108] Check whether the floor layout line completely coincides with the boundary of the adjusted wall projection line; if a deviation is found between the floor layout line and the wall projection line, adjust the position or length of the floor layout line according to the deviation value until they match.

[0109] Example Five

[0110] Suppose in a room, the adjusted wall projection line consists of four points with coordinates A(0,0), B(3,4), C(6,0), and D(9,4). First, calculate the total length Lg of the floor layout line segment:

[0111] Lg = √((3 - 0)^2 + (4 - 0)^2) + √((6 - 3)^2 + (0 - 4)^2) + √((9 - 6)^2 + (4 - 0)^2)

[0112] = √(9 + 16) + √(9 + 16) + √(9 + 16) = 5 + 5 + 5 = 15 meters.

[0113] Next, select a starting point on the ground as the reference point for the ground layout, and ensure that this reference point aligns with one end of the wall projection line (for example, select the starting point on the ground corresponding to point A on the wall projection line). Then, draw the ground layout line along the ground starting from the reference point according to the total length Lg, ensuring that each section of the line is parallel to the corresponding part of the wall projection line and the distance remains consistent.

[0114] To control the deviation, assume we want the entire ground layout line to be divided into 10 segments, then:

[0115] N = 10;

[0116] L wall = 15 meters;

[0117] L ground = 15 meters (ideally);

[0118] Dg = |L wall - L ground| / N = |15 - 15| / 10 = 0 meters;

[0119] This means that in an ideal situation, there is no deviation between the ground layout line and the wall projection line. However, there may be minor differences in actual operation. At this time, it is necessary to adjust the position or length of the ground layout line according to the actual situation until it is completely matched.

[0120] Step Six: Calculate the quantity of required ground materials through the above ground layout design and list them; specifically including:

[0121] Measure and record the length and width dimensions of each area in the ground layout design, denoted as L area and W area respectively;

[0122] According to the values of L area and W area, use the formula A area = L area * W area to calculate the area A area of each area. This formula directly obtains the area of each area through multiplication operation and is the basis for subsequent material estimation. Then add up the areas of all areas to get the total area Atotal = ∑A area; by calculating the total area, the designer can comprehensively grasp the total amount of required materials and ensure the rationality of project budget and resource allocation.

[0123] Based on the standard size of the selected ground material, set the single-piece area of the material as Am, and use the formula N material = Atotal / Am to calculate the total number of required material pieces N material; by calculating the total number of required material pieces, the material procurement plan can be effectively carried out.

[0124] Take N as the final required quantity of materials and list a detailed list including the material name, specification, and quantity.

[0125] Example Six

[0126] Suppose in a room, the floor layout design is divided into three areas, and the length and width dimensions of each area are as follows:

[0127] Area 1: L_area1 = 5 m, W_area1 = 4 m;

[0128] Area 2: L_area2 = 6 m, W_area2 = 3 m;

[0129] Area 3: L_area3 = 7 m, W_area3 = 5 m.

[0130] First, calculate the area A_area of each area:

[0131] A_area1 = L_area1 * W_area1 = 5 * 4 = 20 square meters;

[0132] A_area2 = L_area2 * W_area2 = 6 * 3 = 18 square meters;

[0133] A_area3 = L_area3 * W_area3 = 7 * 5 = 35 square meters;

[0134] Next, calculate the total area Atotal of all areas:

[0135] Atotal = A_area1 + A_area2 + A_area3 = 20 + 18 + 35 = 73 square meters.

[0136] Suppose the standard size of the selected floor material is that each piece of material covers an area Am = 0.5 square meters, then calculate the total number of pieces N_materials of the required materials:

[0137] N_materials = Atotal / Am = 73 / 0.5 = 146 pieces;

[0138] Considering possible losses and cutting requirements, add an additional 10% safety margin:

[0139] N_final = N_materials * 1.1 = 146 * 1.1 ≈ 161 pieces (rounded up);

[0140] Finally, list a detailed list including the material name, specification, and quantity:

[0141] Material Name: Ceramic Tiles;

[0142] Specification: Each piece covers an area of 0.5 square meters;

[0143] Quantity: 161 pieces.

[0144] Through the above steps, using simple mathematical calculations and physical measurements, it is possible to effectively assist designers in calculating the quantity of floor materials required and listing a detailed material list.

[0145] Step 7: Generate an elevation layout plan including doors and windows based on the list and the positions of door and window openings; specifically including:

[0146] According to the material specifications and quantities in the list, mark the application areas of each material on the wall in the design document; measure and record the distances from the edges of each door and window opening to the nearest material boundary points, denoted as Dlo (left distance), Dro (right distance), Duo (upper distance), and Ddo (lower distance) respectively, and use the formulas Pm = (Dlo + Dro) / 2, Pt = (Duo + Ddo) / 2 to calculate the horizontal center Pm and vertical center Pt of the door and window opening relative to the wall layout; these two formulas are used to find the exact center positions of the door and window openings in the wall layout.

[0147] Based on Pm and Pt, accurately draw the outlines of the door and window openings on the elevation drawing and mark their dimensions; integrate the material coverage areas and the positions of the door and window openings to form a complete elevation layout plan. By this method, designers can efficiently generate high-quality elevation layout plans, ensuring the coordination and aesthetics of the design scheme. At the same time, this also provides accurate guidance for actual construction, reducing possible errors and rework.

[0148] Example 7

[0149] Suppose in a room, there is a door and window opening, and the distances from its edge to the nearest material boundary points are: Dlo = 0.5 meters (left distance), Dro = 0.7 meters (right distance), Duo = 1.0 meters (upper distance), Ddo = 1.2 meters (lower distance).

[0150] First, according to the material specifications and quantities in the list, mark the application areas of each material on the wall in the design document.

[0151] Next, calculate the horizontal center Pm and vertical center Pt of the door and window opening relative to the wall layout:

[0152] Pm = (Dlo + Dro) / 2 = (0.5 + 0.7) / 2 = 0.6 meters;

[0153] Pt = (Duo + Ddo) / 2 = (1.0 + 1.2) / 2 = 1.1 meters;

[0154] Then, based on Pm and Pt, accurately draw the outlines of the door and window openings on the elevation view and mark their dimensions. For example, if the actual width of the door and window opening is Wdo = 1.2 meters and the height is Hdo = 2.2 meters, mark these dimensions on the elevation view. Finally, integrate the material coverage area and the positions of the door and window openings to form a complete elevation layout drawing.

[0155] Step Eight: Check whether the elements in the elevation layout drawing are coordinated and consistent, and save the design document after confirmation; specifically including:

[0156] Use the formula Sij = |Pi - Pj| - ((Wi + Wj) / 2) to calculate the spacing Sij between adjacent material areas in the elevation layout drawing, where i and j represent the numbers of two adjacent areas, and Pi and Pj represent the position coordinates of the center points of the two adjacent areas respectively; this formula is used to calculate the distance between the center points of the two areas minus the sum of half of their widths to obtain the actual spacing.

[0157] Check the distance Dk between the edge of the door and window opening and the nearest material boundary according to Pm and Pt to ensure that all Dk values meet the requirements of the building code; by accurately checking the edge of the door and window opening and the material boundary, the accuracy of the door and window positions can be ensured, while meeting the requirements of the building code, improving the safety and compliance of the design scheme.

[0158] Conduct an overall layout review of the elevation layout drawing, and verify the consistency of the dimensions of the door and window openings by comparing the dimensions of each door and window opening outline with the data recorded in the list; this step ensures that the data in the design document is consistent with the actual situation, avoiding possible dimension mismatch problems in the subsequent construction process.

[0159] Synchronously update all the verified data and adjustment results to the design document. After completing all the checks and confirming that there are no errors, save the design document.

[0160] Embodiment Eight

[0161] Suppose in a room, the elevation layout drawing contains two adjacent material areas, with the center point positions being Pi = 3.5 meters and Pj = 7.0 meters respectively, and the widths being Wi = 1.0 meter and Wj = 1.2 meters respectively. First, calculate the spacing Sij between the adjacent material areas:

[0162] Sij = |Pi - Pj| - ((Wi + Wj) / 2) = |3.5 - 7.0| - ((1.0 + 1.2) / 2) = 3.5 - 1.1 = 2.4 meters.

[0163] Next, according to Pm (horizontal center) and Pt (vertical center), verify the distance Dk between the edge of the door and window opening and the nearest material boundary. Assume that the actual width of the door and window opening is Wdo = 1.2 meters, the height is Hdo = 2.2 meters, and Pm = 0.6 meters, Pt = 1.1 meters. Then:

[0164] Dk (left side) = Pm - (Wdo / 2) = 0.6 - (1.2 / 2) = 0 meters;

[0165] Dk (right side) = (Pm + (Wdo / 2)) - Wi = (0.6 + 0.6) - 1.0 = 0.2 meters;

[0166] Dk (above) = Pt - (Hdo / 2) = 1.1 - (2.2 / 2) = 0 meters;

[0167] Dk (below) = (Pt + (Hdo / 2)) - Hj = (1.1 + 1.1) - 2.0 = 0.2 meters;

[0168] Then, conduct an overall layout review of the elevation layout drawing. By comparing the dimensions of each door and window opening contour with the data recorded in the list, verify the consistency of the door and window opening dimensions. Assume that the door and window opening dimensions recorded in the list are Wdo = 1.2 meters and Hdo = 2.2 meters, which are consistent with the actual measurement results.

[0169] Finally, synchronously update all the verified data and adjustment results to the design file. After completing all inspections and confirming that there are no errors, save the design file.

[0170] Through the above steps, using simple mathematical calculations and physical measurements, it is possible to effectively assist the designer in checking whether the elements in the elevation layout drawing are coordinated and consistent, and finally save the design file after confirmation. This method not only improves the accuracy of the design scheme but also provides a solid foundation for subsequent design adjustments. Especially for spaces with multiple door and window openings, it provides a systematic method to reduce errors and optimize the final design result. In addition, through repeated verification and adjustment, ensure the coordination and consistency between all elements, further enhancing the overall quality and aesthetics of the design scheme.

[0171] In addition, in this embodiment, a seamless butt joint layout system for wall and floor materials is proposed, as Figure 2 shown, including:

[0172] Initial wall projection line drawing module, used to select a starting point in the space to be decorated and draw the initial wall projection line of the space based on the starting point;

[0173] A door and window size calculation module, which is used to determine the positions of door and window openings based on the initial wall projection line, set marking points around them, calculate the sizes of the door and window openings according to the marking points, and record the results;

[0174] A floor layout design module, which is used to utilize the sizes of the door and window openings to adjust the initial wall projection line to meet the actual size requirements, and perform floor layout design according to the adjusted wall projection line to ensure that the boundaries coincide with the wall projection line;

[0175] An elevation layout drawing generation module, which is used to calculate the quantity of required floor materials and list them through the floor layout design, and generate an elevation layout drawing including doors and windows based on the list and the positions of the door and window openings;

[0176] A file saving module, which checks whether the elements in the elevation layout drawing are coordinated and consistent, and saves the design file after confirmation.

[0177] In addition, when the above modules are executed, they also need to implement other steps of the above seamless docking layout method for wall and floor materials, which will not be elaborated here one by one.

[0178] In summary, the present invention selects a starting point in the space to be decorated by digital means and draws an initial wall projection line, accurately locates the positions and sizes of door and window openings based on this line, then adjusts the wall projection line according to actual needs and completes the floor layout design; this method not only improves the design accuracy, reduces the possibility of human errors, but also can quickly respond to design changes and automatically update the layout plan to adapt to new size requirements; finally, through systematic inspection of the consistency of the elements in the elevation layout drawing and saving the design file, the full-process optimization from preliminary design to final confirmation is realized; the work efficiency is improved, and at the same time, the decoration quality is guaranteed.

[0179] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A seamless docking layout method for wall and floor materials, characterized in that, It includes the following steps: Select a starting point in the space to be decorated, and draw the initial wall projection lines of the space based on the starting point; Determine the positions of door and window openings based on the initial wall projection lines, set marking points around them, calculate the sizes of the door and window openings according to the marking points, and record the results; Use the sizes of the door and window openings to adjust the initial wall projection lines to meet the actual size requirements, and perform floor layout design according to the adjusted wall projection lines to ensure that the boundaries coincide with the wall projection lines; Through the floor layout design, calculate the quantity of floor materials required and list them, and generate an elevation layout plan including doors and windows based on the list and the positions of the door and window openings; Check whether the elements in the elevation layout plan are coordinated and consistent, and save the design file after confirmation; 2. A seamless butt joint layout method for wall and floor materials according to claim 1, characterized in that The step of selecting a starting point in the space to be decorated and drawing the initial wall projection lines of the space based on the starting point includes: Measure and record the perpendicular distances from the starting point to two adjacent walls, denoted as Lw1 and Lw2 respectively, and use the formula (Lw1 + Lw2) / 2 to determine the position Pc of the center point of the space; Starting from the starting point, mark multiple equally spaced points along the ground towards the position Pc, with each point spaced Dp apart, where Dp = Lw1 / 10, to form a series of reference points; Connect the starting point and the last reference point with a straight line, and extend the straight line until it touches the wall. Adjust the straight line according to the actual shape of the wall to make it fit the wall contour, thus completing the drawing of the initial wall projection lines; 3. A method for seamless butt joint layout of wall and floor materials according to claim 2, characterized in that, Determine the positions of door and window openings based on the initial wall projection lines and set marking points around them, including: Measure and record the distances Ddo from the center points of each door and window opening along the initial wall projection line to the nearest reference point, and use the formula (Ddo1 + Ddo2) / 2 to calculate the relative position Pmo of the center point of each door and window opening according to the Ddo value; Measure around the relative position Pmo at a predetermined spacing Sm, where Sm = Dp / 5, and mark four marking points around the Pmo point to form a square boundary; Connect the two marking points on the diagonal and check whether the intersection point coincides with the Pmo point; if the intersection point does not completely coincide with the Pmo point, adjust the positions of the marking points until they match; 4. A seamless butt joint layout method for wall and floor materials according to claim 3, characterized in that Calculate the sizes of the door and window openings according to the marking points and record the results, including: Measure and record the distances between the marking points around each door and window opening, including the distance Lwdo in the width direction and the distance Lhdo in the height direction; According to the square boundary formed by the marking points, use the formula (Lwdo1 + Lwdo2) / 2 to calculate the width Wdo of the door and window opening, and use the formula (Lhdo1 + Lhdo2) / 2 to calculate the height Hdo of the door and window opening; Calculate the area Ado of the door and window opening based on the Wdo and Hdo values, where Ado = Wdo * Hdo, and record the Wdo, Hdo, and Ado values in the design document; Check whether the recorded data matches the actual door and window openings. If there are differences, re-measure and update the values of Wdo, Hdo, and Ado until they are consistent with the actual situation.

5. A method for seamless docking and typesetting of wall and floor materials according to claim 4, characterized in that, Adjust the initial wall projection line according to the dimensions of the door and window openings to meet the actual dimension requirements, including: Mark the actual contour boundary points of the door and window openings at corresponding positions on the initial wall projection line according to the width Wdo and height Hdo of the door and window openings; Calculate the distance differences between each contour boundary point of the door and window opening and the nearest reference point, including the distance difference Dpw' in the width direction and the distance difference Dph' in the height direction, satisfying Dpw' = |Lwdo1 - Lwdo2| / 2 and Dph' = |Lhdo1 - Lhdo2| / 2; Based on the values of Dpw' and Dph', adjust the initial wall projection line so that the wall projection line is adjusted at the door and window opening positions according to the formulas X = Xoriginal + Dpw' and Y = Yoriginal + Dph'; Connect the adjusted points to form a new wall projection line, and at the same time check whether the newly generated wall projection line accurately reflects the actual dimensions of the door and window openings.

6. A method for seamless butt joint layout of wall and floor materials according to claim 5, characterized in that, Perform floor layout design according to the adjusted wall projection line to ensure that the boundary coincides with the wall projection line, including: Select a starting point on the floor as the reference point for floor layout, and this reference point needs to be aligned with one end of the adjusted wall projection line; According to the shape and length of the wall projection line, calculate the total length Lg of the floor layout line segments using the formula Lg = ∑(Xn - Xn-1)^2 + (Yn - Yn-1)^2, where Xn and Yn are the coordinates of two consecutive points on the wall projection line; Draw the floor layout line along the floor starting from the reference point according to the total length Lg, ensuring that each segment of the line is parallel to the corresponding part of the wall projection line and the distance remains consistent, satisfying Dg = |Lwall - Lfloor| / N, where Dg is the maximum allowable deviation value, Lwall is the length of the wall projection line, Lfloor is the length of the floor layout line, and N is the number of segments divided; Check whether the floor layout line completely coincides with the boundary of the adjusted wall projection line; if a deviation is found between the floor layout line and the wall projection line, adjust the position or length of the floor layout line according to the deviation value until they match.

7. A seamless butt joint layout method for wall and floor materials according to claim 6, characterized in that Through the above floor layout design, calculate the quantity of floor materials required and list the details, including: Measure and record the length and width dimensions of each area in the floor layout design, denoted as Larea and Warea respectively; According to the values of Larea and Warea, calculate the area Aarea of each area using the formula Aarea = Larea * Warea, and add up the areas of all areas to obtain the total area Atotal = ∑Aarea; Based on the standard size of the selected floor material, assuming the single-piece area of the material is Am, calculate the total number of pieces of materials required using the formula Nmaterial = Atotal / Am; Take Nfinal as the final quantity of materials required, and list a detailed list including the material name, specification, and quantity.

8. A method for seamless butt joint layout of wall and floor materials according to claim 7, characterized in that, Generate an elevation layout plan including doors and windows based on the list and the positions of the door and window openings, including: Mark the application areas of each material on the wall in the design document according to the material specifications and quantities in the list; Measure and record the distances from the edges of each door and window opening to the nearest material boundary points, denoted as Dlo, Dro, Duo, and Ddo respectively, and use the formulas Pm = (Dlo + Dro) / 2 and Pt = (Duo + Ddo) / 2 to calculate the horizontal center Pm and vertical center Pt of the door and window opening relative to the wall layout; Based on Pm and Pt, accurately draw the outline of the door and window opening on the elevation view and mark its dimensions; Integrate the material coverage area and the positions of the door and window openings to form a complete elevation layout drawing.

9. A seamless butt joint layout method for wall and floor materials according to claim 8, characterized in that, Check whether the elements in the elevation layout drawing are coordinated and consistent. After confirmation, save the design file, including: Use the formula Sij = |Pi - Pj| - ((Wi + Wj) / 2) to calculate the spacing Sij between adjacent material areas in the elevation layout drawing, where i and j represent the numbers of two adjacent areas; Verify the distance Dk between the edge of the door and window opening and the nearest material boundary according to Pm and Pt to ensure that all Dk values meet the requirements of the building code; Conduct an overall layout review of the elevation layout drawing. By comparing the dimensions of each door and window opening outline with the data recorded in the list, verify the consistency of the door and window opening dimensions; Synchronously update all the verified data and adjustment results to the design file. After completing all the checks and confirming that there are no errors, save the design file.

10. A seamless docking and typesetting system for wall and floor materials for implementing the method according to any one of claims 1-9, characterized in that, Including: An initial wall projection line drawing module for selecting a starting point in the space to be decorated and drawing the initial wall projection line of the space based on the starting point; A door and window size calculation module for determining the positions of the door and window openings based on the initial wall projection line, setting marking points around them, calculating the sizes of the door and window openings according to the marking points, and recording the results; A floor layout design module for using the sizes of the door and window openings to adjust the initial wall projection line to meet the actual size requirements, and conducting floor layout design according to the adjusted wall projection line to ensure that the boundaries match the wall projection line; An elevation layout drawing generation module for calculating the quantity of the required floor materials and listing them in a list through the floor layout design, and generating an elevation layout drawing including the doors and windows based on the list and the positions of the door and window openings; A file saving module for checking whether the elements in the elevation layout drawing are coordinated and consistent, and saving the design file after confirmation.

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