Measuring device for mounting external wall thermal insulation material
By designing a measuring device for the installation of external wall insulation materials, the device integrates thickness, density, and level measurement functions, solving the problem of inconvenient operation in existing technologies and realizing the simple integration of multiple measurement methods.
Patent Information
- Application Number
- CN202520233806.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-14
AI Technical Summary
The current method of measurement for installing external wall insulation materials is limited, inconvenient to operate, and requires carrying multiple measuring tools, which makes it difficult to use.
A measuring device for installing external wall insulation materials was designed, including components such as an outer frame, inner column, sliding groove, sliding strip, indicator rod, float and scale line. By combining these components, multiple measurement functions can be achieved, such as thickness, density and level measurement.
This device facilitates the integration of multiple measurement methods, is easy to operate, reduces the number of tools required, and improves measurement efficiency and accuracy.
Smart Images

Figure CN223856513U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of external wall thermal insulation material installation, in particular to a measuring device for external wall thermal insulation material installation. BACKGROUND
[0002] The external wall thermal insulation is composed of polymer mortar, glass fiber mesh cloth, external wall flame-retardant insulation board or fireproof insulation board and is bonded on site. The new type of thermal insulation and decoration integrated board is produced through a production line and integrates functions such as thermal insulation, waterproofing and finishing. It is an optimal material for meeting the current energy-saving needs of building construction and improving the external wall thermal insulation level of industrial and civil buildings and is also the first choice for energy-saving reconstruction of existing buildings. The external wall thermal insulation material refers to a type of thermal insulation material used for building walls. According to the use location, it can be divided into external wall thermal insulation material, internal wall thermal insulation material and roof thermal insulation material. According to the internal composition of the thermal insulation material, it can be divided into inorganic thermal insulation material and organic thermal insulation material.
[0003] During the installation of external wall thermal insulation material, the thermal insulation material itself needs to be measured, which generally includes thickness measurement, size measurement and density measurement, so as to facilitate subsequent installation work. However, the existing measurement method is to use a tape measure, which is relatively single and inconvenient to operate. Moreover, it cannot use three measurement methods and needs to carry more measuring tools, which causes many inconveniences. Therefore, a measuring device for external wall thermal insulation material installation is proposed. UTILITY MODEL CONTENTS
[0004] The utility model aims to provide a measuring device for external wall thermal insulation material installation to solve the problems raised in the background.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a measuring device for external wall thermal insulation material installation, comprising an outer frame, a sliding groove is formed in the bottom of the outer frame, an inner column is movably connected inside the outer frame, a sliding bar is fixedly installed at the bottom of the inner column, a communication groove is formed in the inner column and the sliding bar, a sliding groove is formed in the top of the inner column, a demonstration rod is slidably installed inside the sliding groove, a float is fixedly installed at the bottom of the demonstration rod, an installation ring is movably installed outside the end of the inner column away from the communication groove, a second installation bolt is movably inserted into the inner part of the installation ring, a second stop plate is rotatably connected to the bottom of the installation ring, a first stop plate is movably installed at the end of the outer frame away from the inner column, a first installation bolt is movably inserted into the inner part of the first stop plate, a plurality of levels are fixedly installed at the top of the outer frame, two top screws are threadedly connected to the inner part of the top of the outer frame, a first scale line is arranged on the front surface of the outer frame, a fourth scale line is arranged on the back surface of the outer frame, a second scale line is arranged on the front surface of the inner column, and a third scale line is arranged on the back surface of the inner column.
[0006] Preferably, the communication groove penetrates the inner column and the sliding bar and communicates to the outside of the inner column, the floating block is movably installed on the inside of the communication groove, and the sliding bar is slidably installed on the inside of the sliding groove.
[0007] Preferably, the second mounting bolt threadedly penetrates the mounting ring and extends to the inside of the inner column, and one side of the second resisting plate is in contact with the outside of the inner column.
[0008] Preferably, the first mounting bolt movably penetrates the first resisting plate and is threadedly connected to the inside of the outer frame, and the two top screws threadedly penetrate the outer frame and extend to the top of the inner column.
[0009] Preferably, the bubble level is linearly and uniformly distributed on the top of the outer frame, and the bottom surfaces of the outer frame and the sliding bar are on the same horizontal plane.
[0010] Preferably, the scale values of the first scale line and the second scale line are uniformly distributed from the outer frame to the inner column from small to large, and the scale values of the third scale line and the fourth scale line are uniformly distributed from the outer frame to the inner column from large to small.
[0011] Compared with the prior art, the device has the beneficial effects that: when in use, the user uses the device according to the project to be measured, if the thickness size is to be measured, the inner column can be pulled out, the second resisting plate and the first resisting plate are rotated, the second resisting plate and the first resisting plate are caused to protrude from the bottom of the outer frame, and the second resisting plate and the first resisting plate are caused to be clamped on the outside of the thermal insulation material plate by sliding the inner column, the reading of the second resisting plate and the first scale line on the side is observed, if the horizontal is to be measured, the first resisting plate and the second resisting plate are rotated, the second resisting plate is retracted, and the first resisting plate is caused to rotate to the top of the outer frame, so that the outer frame and the sliding bar are in contact with the plane to be measured, and the bubble scale reading of the bubble level is obtained, if the density of the thermal insulation plate is to be measured, the bucket is placed in water, the inner column is stretched and the top screw is rotated, the bottom end of the top screw is caused to abut against the outside of the inner column, the length of the inner column and the outer frame is fixed, the inner column is inserted into the water, the water is caused to lift the floating block in the communication groove, the indication scale of the indicator rod and the third scale line is observed, and then the thermal insulation material is immersed in the water, at this time, the scale change of the floating block and the indicator rod to the third scale line is observed, so that the volume difference before and after is measured, the drainage volume is roughly calculated, the whole device is convenient to use, and various measurements are facilitated.
[0012] The device is provided with the sleeving structure of the outer frame and the inner column, is convenient to use, is small in structure, hollow, light in weight, is convenient to carry, is convenient to keep the unified horizontal plane and keep the relative sliding position stable through the sliding and limiting of the sliding groove and the sliding bar, is convenient to observe and measure at multiple angles through the multiple scales of the first scale line, the second scale line, the third scale line and the fourth scale line, integrates multiple measurements, and is convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the front view three-dimensional appearance structure schematic view of the utility model.
[0014] Figure 2 It is the rear view three-dimensional appearance structure schematic view of the utility model.
[0015] Figure 3 It is the front view cross section internal structure schematic view of the utility model.
[0016] Figure 4 It is the utility model Figure 3 The enlarged structure schematic view of A place in the middle.
[0017] In the drawing: 1, outer frame; 2, inner column; 3, sliding groove; 4, communication groove; 5, demonstration rod; 6, level bubble; 7, top screw; 8, first scale line; 9, second scale line; 10, third scale line; 11, fourth scale line; 12, sliding groove; 13, sliding bar; 14, first stop plate; 15, first mounting bolt; 16, second stop plate; 17, float block; 18, second mounting bolt; 19, mounting ring. DETAILED DESCRIPTION
[0018] The technical scheme in the embodiments of the utility model will be apparently and completely described below with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the range of protection of the utility model.
[0019] Please refer to Figures 1-4 The utility model provides a kind of technical scheme: a kind of measuring device for the installation of external wall thermal insulation material, including outer frame 1, the bottom of outer frame 1 is equipped with sliding groove 12, the inside of outer frame 1 is movably sleeved with inner column 2, the bottom of inner column 2 is fixedly installed with sliding bar 13, the inside of inner column 2 and sliding bar 13 is equipped with communication groove 4, the top of inner column 2 is equipped with sliding groove 3, the inside of sliding groove 3 is slidably installed with demonstration rod 5, the bottom of demonstration rod 5 is fixedly installed with float block 17, the outside of one end of inner column 2 away from communication groove 4 is movably installed with mounting ring 19, the inside of mounting ring 19 is movably inserted with second mounting bolt 18, the bottom of mounting ring 19 is rotatably connected with second stop plate 16, one end of outer frame 1 away from inner column 2 is movably installed with first stop plate 14, the inside of first stop plate 14 is movably inserted with first mounting bolt 15, the top of outer frame 1 is fixedly installed with several level bubble 6, the inside of top end of outer frame 1 is threadedly connected with two top screw 7, the front of outer frame 1 is provided with first scale line 8, the back of outer frame 1 is provided with fourth scale line 11, the front of inner column 2 is provided with second scale line 9, the back of inner column 2 is provided with third scale line 10.
[0020] The working principle of the above technical solution is as follows: During use, the user selects the item to be measured. For example, to measure thickness, the inner column 2 can be pulled open, and the second abutment 16 and the first abutment 14 can be rotated, causing them to extend beyond the bottom of the outer frame 1. The inner column 2 is then slid to clamp the second abutment 16 and the first abutment 14 onto the outside of the insulation material board. The reading on the side of the second abutment 16 and the first scale line 8 is observed. If horizontal measurement is required, the first abutment 14 and the second abutment 16 are rotated, retracting the second abutment 16 and causing the first abutment 14 to rotate to the top of the outer frame 1, thus aligning the outer frame 1 with the sliding strip 13. When in contact with the surface to be measured, the reading can be obtained by using the bubble scale of the level 6 on the spirit level. If the density of the insulation board needs to be measured, put the bucket into water, stretch the inner column 2 and rotate the top screw 7 so that the bottom end of the top screw 7 is against the outside of the inner column 2. Fix the length of the inner column 2 and the outer frame 1, insert the inner column 2 into the water, and make the water push the float 17 up inside the connecting groove 4. Observe the scale of the indicator rod 5 and the third scale line 10. Then sink the insulation material into it. At this time, observe the change of the scale of the float 17 and the indicator rod 5 relative to the third scale line 10, so as to measure the volume difference before and after. It is used to roughly calculate the drainage volume. It is easy to use and convenient for various measurements.
[0021] In another implementation scheme, such as Figures 1-4 As shown, the connecting groove 4 passes through the inner column 2 and the sliding bar 13 and connects to the outside of the inner column 2. The float 17 is movably installed inside the connecting groove 4, and the sliding bar 13 is slidably installed inside the sliding groove 12.
[0022] The interlocking design of the outer frame 1 and inner column 2 facilitates structural expansion and contraction for easy portability. The structure is compact, hollow, and lightweight. The sliding limit of the sliding groove 12 and sliding bar 13 helps to maintain a uniform horizontal plane and keep the relative sliding position stable. Combined with the various scales of the first scale line 8, the second scale line 9, the third scale line 10, and the fourth scale line 11, it is convenient to observe and measure from multiple angles. It integrates multiple measurement methods and is easy to use.
[0023] In another implementation scheme, such as Figures 2-4 As shown, the second mounting bolt 18 is threaded through the mounting ring 19 and extends into the interior of the inner column 2, and one side of the second abutment 16 contacts the outer side of the inner column 2.
[0024] The second mounting bolt 18 installs the mounting ring 19 at one end of the inner column 2. The second mounting bolt 18 and the mounting ring 19 are threaded together to maintain a relatively stable position, prevent displacement, and facilitate fixing and disassembly. The second abutment 16 is rotatably connected to the mounting ring 19, which facilitates the second abutment 16 to be retracted into the interior of the outer frame 1 through the sliding groove 12. When the second abutment 16 is lowered, one side fits against the inner column 2 to stabilize the position, thereby facilitating measurement.
[0025] In another embodiment, as shown in Figures 1-3 The first mounting bolt 15 is movably penetrated through the first stop plate 14 and is screwed to the inside of the outer frame 1, and the two top screws 7 are screwed through the outer frame 1 and extend to the top of the inner column 2.
[0026] After the first mounting bolt 15 is screwed, the first stop plate 14 is fixed on the outside of the outer frame 1, and the bolt head of the first mounting bolt 15 extrudes the first stop plate 14 to make the first stop plate 14 keep relatively stable, and the first mounting bolt 15 is movably sleeved with the first stop plate 14, so that the first stop plate 14 can be rotated, which facilitates the cooperation operation.
[0027] In another embodiment, as shown in Figures 1-4 The level vial 6 is linearly and uniformly distributed on the top of the outer frame 1, and the bottom surfaces of the outer frame 1 and the sliding bar 13 are the same horizontal plane.
[0028] If it is needed to measure the level, the first stop plate 14 and the second stop plate 16 are rotated, the second stop plate 16 is retracted, and the first stop plate 14 is rotated to the top of the outer frame 1, so that the outer frame 1 and the sliding bar 13 are in contact with the plane to be measured, and the bubble scale reading of the level vial 6 can be read, which facilitates the leveling measurement.
[0029] In another embodiment, as shown in Figure 1 and Figure 2 The scale values of the first scale line 8 and the second scale line 9 are uniformly distributed from the outer frame 1 to the inner column 2 from small to large, and the scale values of the third scale line 10 and the fourth scale line 11 are uniformly distributed from the outer frame 1 to the inner column 2 from large to small.
[0030] The first scale line 8, the second scale line 9, the third scale line 10 and the fourth scale line 11 facilitate the visual angle observation, the first scale line 8 and the second scale line 9 form the maximum scale, which facilitates the use, and the arrangement combination of the scales includes but is not limited to the same direction and different directions, which facilitates the cooperation measurement operation and various measurements.
[0031] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A measuring device for mounting of external wall insulation, comprising an outer frame (1), characterized in that: The bottom of the outer frame (1) is provided with a sliding groove (12), the inside of the outer frame (1) movably sleeved with an inner column (2), the bottom of the inner column (2) is fixedly installed with a sliding bar (13), the inside of the inner column (2) and the sliding bar (13) is provided with a communication groove (4), the top of the inner column (2) is provided with a sliding groove (3), the inner side of the sliding groove (3) is movably installed with a demonstration rod (5), the bottom of the demonstration rod (5) is fixedly installed with a float (17), the outer side of the end of the inner column (2) away from the communication groove (4) is movably installed with a mounting ring (19), the inside of the mounting ring (19) movably inserted with a second mounting bolt (18), the bottom of the mounting ring (19) is rotatably connected with a second resisting plate (16), the end of the outer frame (1) away from the inner column (2) is movably installed with a first resisting plate (14), the inside of the first resisting plate (14) movably inserted with a first mounting bolt (15), the top of the outer frame (1) is fixedly installed with a plurality of level vials (6), the inside of the top of the outer frame (1) is threadedly connected with two top screws (7), the front of the outer frame (1) is provided with a first scale line (8), the back of the outer frame (1) is provided with a fourth scale line (11), the front of the inner column (2) is provided with a second scale line (9), the back of the inner column (2) is provided with a third scale line (10).
2. The measuring device for mounting an external wall thermal insulation material according to claim 1, wherein: The communication groove (4) penetrates the inner column (2) and the sliding bar (13) and communicates to the outside of the inner column (2), the float (17) is movably installed in the inside of the communication groove (4), the sliding bar (13) is slidably installed in the inside of the sliding groove (12).
3. The measuring device for mounting of external wall thermal insulation according to claim 1, characterized in that: The second mounting bolt (18) is threaded through the mounting ring (19) and extends to the inside of the inner column (2), one side of the second resisting plate (16) is in contact with the outside of the inner column (2).
4. The measuring device for mounting of external wall thermal insulation according to claim 1, characterized in that: The first mounting bolt (15) movably penetrates the first resisting plate (14) and is threadedly connected to the inside of the outer frame (1), the two top screws (7) are threaded through the outer frame (1) and extend to the top of the inner column (2).
5. The measuring device for mounting of external wall thermal insulation according to claim 1, characterized in that: The level vials (6) are linearly and uniformly distributed on the top of the outer frame (1), the bottom surfaces of the outer frame (1) and the sliding bar (13) are the same horizontal plane.
6. The measuring device for mounting of external wall thermal insulation according to claim 1, characterized in that: The scale values of the first scale line (8) and the second scale line (9) are uniformly distributed from the outer frame (1) to the inner column (2) from small to large, the scale values of the third scale line (10) and the fourth scale line (11) are uniformly distributed from the outer frame (1) to the inner column (2) from large to small.