Caliper for building protruding part
By combining electronic calipers and induction lines, the problem of measuring protruding parts of buildings on paper drawings is solved, achieving simple and accurate measurement results, which is suitable for precise measurement of paper drawings in architectural design.
Patent Information
- Application Number
- CN202422823886.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-19
AI Technical Summary
Existing tools cannot quickly and accurately measure the size and proportion of protruding parts of a building on paper drawings. The operation steps are complicated, the scope of application is small, and the accuracy is low.
Using a combination of electronic calipers and sensor lines, including an electronic width ruler, a movable caliper, and a display and calculation screen, it is possible to directly measure the width of a building and the dimensions and proportions of protruding parts on paper drawings, achieving accurate measurement through the cooperation of sensor lines and calipers.
It enables simple and accurate measurement of the dimensions and proportions of protruding parts of buildings on paper drawings, has a wide range of applications, and improves the accuracy and convenience of measurement.
Smart Images

Figure CN223610734U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of architectural design, especially relates to building protruding part caliper. BACKGROUND
[0002] Generally in the process of architectural planning arrangement, because each local specification is different and the spacing requirement between buildings is also different, usually there will be adjustment to the spacing calculation reference surface after the protruding part is more than certain, and for the designer, it is needed to go to the machine again to carry out accurate measurement to the building face width and the size of protruding part in the process of grass arrangement, which cannot be realized on paper.
[0003] The existing tool also needs many operation steps, the actual calculation process is relatively complicated, the application range is small and the precision is low, and it is difficult to measure on paper drawings. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the above technical problems in the prior art, and provides a building protruding part caliper, which can measure the building protruding part on paper drawings, has simple steps, wide application range and high precision.
[0005] In order to solve the above technical problems, the utility model adopts the following technical scheme:
[0006] The building protruding part caliper is characterized by comprising an electronic caliper and a sensing line, one end of the sensing line is fixedly connected with the starting end of the electronic caliper, the electronic caliper comprises an electronic face width ruler, a movable caliper and a display calculation screen, the electronic caliper can sense the length of the sensing line adhered to the electronic face width ruler, the movable caliper is arranged on the electronic face width ruler and is slidably connected with the electronic face width ruler, and the display calculation screen is arranged on the movable caliper.
[0007] Further, the starting end of the electronic face width ruler is provided with a positioning ruler, and the positioning ruler and the electronic face width ruler are connected through a connecting piece.
[0008] Further, the positioning ruler and the electronic face width ruler are rotatably connected.
[0009] Further, the connecting piece comprises a positioning shaft and a positioning groove, the positioning shaft is arranged on the positioning ruler, the positioning groove is arranged on the electronic face width ruler, the positioning shaft is arranged in the positioning groove and is rotatably connected with the positioning groove.
[0010] Further, the connecting piece comprises a rotating shaft, the positioning ruler and the electronic face width ruler are both provided with fixing holes, and the rotating shaft is arranged in the fixing holes.
[0011] Further, the two ends of the rotating shaft are provided with limiting portions.
[0012] Further, the display calculation screen is used for displaying the face width, the length of the protruding part and the proportion of the protruding part.
[0013] The utility model discloses a building protruding part caliper, which comprises an electronic caliper and an induction line.
[0014] The electronic caliper and the induction line are arranged, so that the face width of the building on the paper drawing and the size of the protruding part of the building and the proportion of the protruding part of the building can be accurately measured. BRIEF DESCRIPTION OF DRAWINGS
[0015] The utility model will be further described in connection with the drawings:
[0016] Figure 1 It is the structural diagram of building protruding part caliper of the utility model;
[0017] Figure 2 It is the structural diagram when using in the drawing of the utility model;
[0018] Figure 3 It is the structural diagram of example one of the utility model;
[0019] Figure 4 It is the structural diagram of example two of the utility model.
[0020] In the figure, 1 is an induction line; 2 is an electronic face width gauge; 3 is a mobile caliper; 4 is a display and calculation screen; 5 is a positioning ruler; 6 is a positioning shaft; 7 is a positioning groove; 8 is a rotating shaft; and 9 is a limiting part. DETAILED DESCRIPTION
[0021] As shown in Figure 1 and Figure 2 It is the building protruding part caliper of the utility model, which comprises an electronic caliper and an induction line 1. One end of the induction line 1 is fixedly connected to the starting end of the electronic caliper. The electronic caliper comprises an electronic face width gauge 2, a mobile caliper 3 and a display and calculation screen 4. The electronic caliper can sense the length of the induction line 1 adhered to the electronic face width gauge. The mobile caliper 3 is arranged on the electronic face width gauge 2 and is in sliding connection with the electronic face width gauge 2. The display and calculation screen 4 is arranged on the mobile caliper 3. The electronic caliper determines the measuring length by sliding the mobile caliper 3 on the electronic face width gauge 2 to determine the distance between the mobile caliper 3 and the starting end of the electronic face width gauge 2. Through the above arrangement, the face width of the building on the paper drawing and the size of the protruding part of the building and the proportion of the protruding part of the building can be accurately measured. The steps are simple, the building protruding part size and the proportion are intuitively displayed, and the utility model has high precision and a wide measuring range.
[0022] As an implementation manner, the starting end of the electronic face width gauge 2 is provided with a positioning ruler 5, and the positioning ruler 5 is connected to the electronic face width gauge 2 through a connecting piece. Through the above arrangement, the electronic face width gauge 2 can be conveniently positioned, the building corner point can be conveniently aligned, and the face width of the building can be conveniently measured.
[0023] Specifically, the positioning ruler 5 is rotationally connected with the electronic face width ruler 2. Through the above arrangement, the electronic face width ruler and the positioning ruler 5 can be conveniently used, the positioning ruler 5 is turned out when it is needed to be used, and the positioning ruler 5 is turned back to be folded when it is not needed to be used, so that the positioning ruler 5 is conveniently stored and used.
[0024] As shown in Figure 3 As an implementation manner, the connecting piece includes a positioning shaft 6 and a positioning groove 7, the positioning shaft 6 is arranged on the positioning ruler 5, the positioning groove 7 is arranged on the electronic face width ruler 2, the positioning shaft 6 is arranged in the positioning groove 7 and rotationally connected with the positioning groove 7. Through the above arrangement, the connecting of the positioning shaft 6 and the positioning groove 7 is convenient, and the use is more convenient.
[0025] As shown in Figure 4 As another implementation manner, the connecting piece includes a rotating shaft 8, the positioning ruler 5 and the electronic face width ruler 2 are both provided with fixing holes, and the rotating shaft 8 is arranged in the fixing holes. The connecting piece adopts the arrangement of the rotating shaft 8, so that the connection between the positioning ruler 5 and the electronic face width ruler 2 is convenient. The rotating shaft 8 is generally made of metal, and the arrangement of the rotating shaft 8 also makes the rotation between the positioning ruler 5 and the electronic face width ruler 2 more smooth.
[0026] Specifically, the two ends of the rotating shaft 8 are provided with limiting parts 9. Through the above arrangement, the connecting effect of the rotating shaft 8 is improved, and the rotating shaft 8 is prevented from being separated from the electronic face width ruler 2 and the positioning ruler 5.
[0027] As an implementation manner, the display calculation screen 4 is used for displaying the face width, the length of the protruding part and the proportion of the protruding part. The display of the face width, the length of the protruding part and the proportion of the protruding part can facilitate the drawing on the paper drawing and convenient use.
[0028] When the electronic face width ruler 2 is aligned with the building corner point and then the sliding caliper 3 is slid to the maximum face width of the building, the display calculation screen 4 can display the face width data, and then the induction wire 1 is adjusted to the range of the protruding part of the building, the adjusted value is displayed, and finally the length of the protruding part and the proportion of the length of the protruding part corresponding to the face width are obtained, so that the designer can assist in judging the scale and the interval.
[0029] The electronic caliper and the induction wire 1 are arranged, so that the face width of the building on the paper drawing and the size and the proportion of the protruding part of the building can be accurately measured, the steps are simple, the application range is wide, and the precision is high.
[0030] The above is only a specific embodiment of the present application, but the technical features of the present application are not limited to this. Any simple change, equivalent replacement or modification made on the basis of the present application to solve basically the same technical problem and achieve basically the same technical effect is included in the protection scope of the present application.
Claims
1. A building projection site caliper characterized by: The utility model relates to a kind of electronic face width gauge, including electronic caliper and inductive line, one end of the inductive line is fixedly connected with the starting end of the electronic caliper, the electronic caliper includes electronic face width gauge, mobile caliper and display calculation screen, the electronic caliper can induct the length of the inductive line being attached at the electronic face width gauge, the mobile caliper is arranged on the electronic face width gauge and is slidably connected with the electronic face width gauge, and the display calculation screen is arranged on the mobile caliper.
2. The architectural projection site caliper of claim 1, wherein: The starting end of the electronic face width gauge is provided with a positioning ruler, and the positioning ruler is connected with the electronic face width gauge through a connecting piece.
3. The architectural projection site caliper of claim 2, wherein: The positioning ruler is rotatably connected with the electronic face width gauge.
4. The architectural projection site caliper of claim 3, wherein: The connecting piece includes a positioning shaft and a positioning groove, the positioning shaft is arranged on the positioning ruler, the positioning groove is arranged on the electronic face width gauge, and the positioning shaft is arranged in the positioning groove and rotatably connected with the positioning groove.
5. The architectural projection site caliper of claim 3, wherein: The connecting piece includes a rotating shaft, the positioning ruler and the electronic face width gauge are both provided with fixing holes, and the rotating shaft is arranged in the fixing holes.
6. The architectural projection site caliper of claim 5, wherein: The rotating shaft is provided with limiting portions at both ends.
7. The architectural projection site caliper of claim 1, wherein: The display calculation screen is used to display the face width, the length of the protruding part and the proportion of the protruding part.