Architectural design verification tool

By providing a protective cover and a damping card connection structure on the control panel of the pressure calibration test device for architectural design, the problem of incorrect input of preset pressure values ​​due to accidental button touch in the prior art is solved, thereby achieving higher protection against incorrect input and accuracy of the calibration results.

CN120668475AInactive Publication Date: 2025-09-19SIQUAN SCIENCE & TECHNOLOGY SERVICES (NANTONG) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202410308306.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-03-18
Publication Date
2025-09-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When inputting a preset pressure value for verification, the existing pressure calibration test device for building design is prone to incorrect input of the preset pressure value due to accidental button touch, which reduces the protection against incorrect input.

Method used

An architectural design verification tool is designed. A protective cover is set on the control panel, and a transparent plate and a damping card connection structure are set on the protective cover. The protective cover can cover the control panel and be positioned by the damping card connection to avoid accidental button touching.

Benefits of technology

It effectively prevents the mis-input of the preset pressure value for calibration, improves the mis-input protection of the pressure calibration test device for building design, and ensures the accuracy of the calibration results.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120668475A_ABST
    Figure CN120668475A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of building design verification, in particular to a building design verification tool which comprises a base box, a verification table and a control box are arranged on the base box, a pressure air cylinder is arranged above the verification table, a pressing plate is arranged on the pressure air cylinder, and a control panel and an auxiliary hanging column are arranged on the control box. The control panel is covered with a protective cover, the control box is provided with a fixed seat, the fixed seat is rotationally provided with an adjusting stud, the adjusting stud is provided with a moving piece, the moving piece is provided with a clamping block column and a rotating handle, the protective cover is provided with an open groove and a fixed block, the fixed block is provided with a damping through hole, and the damping through hole is communicated with the open groove. And a transparent plate is arranged in the open slot. According to the pressure verification testing device for the building design, the situation that a plate obtained through later verification can bear a wrong pressure value is avoided, the wrong input protection performance of a control panel on the pressure verification testing device for the building design is improved, the protective cover can be conveniently and directly hung on the auxiliary hanging column in a damping mode, and the use convenience of the protective cover is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of architectural design verification, and in particular to an architectural design verification tool. Background Art

[0002] Building design verification tool is a tool used to check and evaluate whether building design complies with relevant specifications and standards.

[0003] Building design verification tools are mainly used in various stages of construction projects, including building design, construction, operation and maintenance.

[0004] Among them, the commonly used ones are pressure calibration test devices. In the early stage of building design, the panels used need to be tested for their compressive performance through pressure calibration test devices to ensure that the compressive resistance of the panels used meets the specifications and standards of building design.

[0005] The pressure calibration test device used in building design generally consists of a base box, a control box, a calibration table, a control panel, a pressure plate, a pressure cylinder, and an alarm. A pressure sensor is preset in the calibration table.

[0006] When in use, enter the preset pressure value for calibration on the control panel, then place the test plate to be calibrated on the calibration table, start the pressure cylinder, drive the pressure plate to move downward and press the plate, the plate is pressurized and transmits the pressure to the pressure sensor, and the pressure sensor then transmits the pressure value signal to the preset PLC in the control panel. When the pressure value exceeds the preset pressure value on the control panel, the alarm will sound and stop the pressure cylinder. This pressure value is the pressure value that the plate can withstand.

[0007] At present, the existing pressure calibration test device used for architectural design has preset buttons on its control panel, through which the preset calibration pressure value can be input. However, during the calibration operation, the buttons may be hit if one is not careful, which may cause the incorrect input of the preset calibration pressure value, thereby causing the incorrect pressure value that the plate can withstand obtained by the subsequent calibration, which greatly reduces the protection against incorrect input of the control panel on the pressure calibration test device used for architectural design.

[0008] The above problems are widespread and in urgent need of improvement. Summary of the Invention

[0009] The purpose of the present invention is to solve the above-mentioned shortcomings in the prior art and to propose a building design verification tool.

[0010] In order to achieve the above object, the present invention adopts the following technical solutions:

[0011] A building design verification tool is designed, including a base box, a verification platform and a control box are provided on the base box, a pressure cylinder is provided above the verification platform, a pressure plate is provided on the pressure cylinder, a control panel and a secondary hanging column are provided on the control box, a protective cover is provided on the control panel, a fixed seat is provided on the control box, an adjusting stud is rotatably provided on the fixed seat, a moving piece is provided on the adjusting stud, a blocking column and a turning handle are provided on the moving piece, an opening slot and a fixed block are provided on the protective cover, a damping through-hole is provided on the fixed block, and a transparent plate is provided in the opening slot.

[0012] Furthermore, a bearing is installed in the inner cavity of the fixed seat, and the mounting hole of the bearing is fixedly sleeved with the adjusting stud.

[0013] Furthermore, the movable piece is threadedly connected to the adjusting stud, and the rotating handle is a diamond-shaped structure as a whole.

[0014] Furthermore, the fixed block, the movable piece, and the adjusting stud are a group, which are two symmetrically arranged groups in total.

[0015] Furthermore, the protective cover is a rectangular structure as a whole, the protective cover is made of hard acrylic material, the opening groove passes through the protective cover, and the inner groove size of the opening groove is not less than the overall size of the control panel.

[0016] Furthermore, the transparent plate is embedded in the open groove, the transparent plate is made entirely of polymethacrylate, and the thickness of the transparent plate is eight to ten millimeters.

[0017] Furthermore, the auxiliary hanging columns are symmetrically arranged in two and are arranged on the right end surface of the control box. The outer diameters of the auxiliary hanging columns and the block column are not greater than the inner diameter of the damping through hole.

[0018] The architectural design verification tool proposed by the present invention has the following beneficial effects:

[0019] 1. The present invention provides a protective cover with a transparent plate and a damping snap-fit ​​structure. After the corresponding preset pressure value for verification is input through the preset button on the control panel, the protective cover can be held to stably and fully cover the control panel and position it with the damping snap-fit ​​structure, thereby avoiding the possibility of direct collision with the buttons on the control panel due to carelessness, thereby avoiding the situation where the preset pressure value for verification is incorrectly input, thereby avoiding the situation where the plate can withstand the incorrect pressure value obtained in the later verification, and greatly improving the protection against incorrect input of the control panel on the pressure verification test device for architectural design.

[0020] 2. The present invention provides auxiliary hanging columns on the side walls of the control box. When the protective cover is not in use, the protective cover can be conveniently and directly damped and hung on the auxiliary hanging columns, thereby improving the convenience of using the protective cover. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is an exploded view of the protective cover of the present invention when it is not positioned to cover the control panel;

[0022] Figure 2 This is a three-dimensional schematic diagram of the protective cover of the present invention in a state where the protective cover is positioned to cover the control panel;

[0023] Figure 3 For the present invention Figure 2 A partial enlarged view of the Y position in the middle;

[0024] Figure 4 For the present invention Figure 2 A side view of the overall structure;

[0025] Figure 5 For the present invention Figure 1 A three-dimensional schematic diagram of the middle protective cover;

[0026] Figure 6 It is a three-dimensional schematic diagram of the protective cover of the present invention hung on the auxiliary hanging column.

[0027] In the figure: 1 base box; 11 calibration table; 12 pressure plate; 13 pressure cylinder; 2 control box; 21 control panel; 22 auxiliary hanging column; 3 fixed seat; 31 bearing; 4 adjustment stud; 41 moving piece; 411 block column; 42 turning handle; 5 protective cover; 51 opening slot; 6 transparent plate; 7 fixed block; 71 damping through hole. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0029] Reference Figure 1-6, a building design verification tool includes a base box 1, the base box 1 is provided with a verification table 11 and a control box 2, a pressure cylinder 13 is provided above the verification table 11, the pressure cylinder 13 is provided with a pressure plate 12, the control box 2 is provided with a control panel 21 and a sub-hanging column 22, and a protective cover 5 is provided on the control panel 21, the control box 2 is provided with a fixed seat 3, the fixed seat 3 is rotatably provided with an adjusting stud 4, the adjusting stud 4 is provided with a moving piece 41, the moving piece 41 is provided with a block column 411 and a turning handle 42, the protective cover 5 is provided with an opening slot 51 and a fixing block 7, the fixing block 7 is provided with a damping through-hole 71, and a transparent plate 6 is provided in the opening slot 51. The base box 1, the verification table 11, the pressure cylinder 13 of the control box 2, the pressure plate 12, and the control panel 21 are all related structures of the pressure verification test device for building design, which are existing technologies, and their related operations and uses have been recorded in the background technology and will not be repeated here.

[0030] In detail, a bearing 31 is installed in the inner cavity of the fixing base 3 , and the mounting hole of the bearing 31 is fixedly sleeved with the adjusting stud 4 . The bearing 31 can prevent the adjusting stud 4 from slipping out of the fixing base 3 .

[0031] Furthermore, the movable piece 41 is threadedly connected to the adjusting stud 4, and the rotating handle 42 is a diamond-shaped structure as a whole. The diamond-shaped structure can be directly rotated by hand, which is convenient and durable.

[0032] Furthermore, the fixed block 7, the movable plate 41, and the adjusting stud 4 form a group, which are two symmetrically arranged groups. The two groups of damping card connection structures improve the positioning damping hanging stability of the protective cover 5 and avoid falling off.

[0033] In more detail, the protective cover 5 is a rectangular structure as a whole, and the protective cover 5 is made of hard acrylic material. The opening groove 51 passes through the protective cover 5, and the inner groove size of the opening groove 51 is not less than the overall size of the control panel 21, ensuring that the protective cover 5 fully covers the control panel 21.

[0034] In general, the transparent plate 6 is embedded in the opening groove 51. The transparent plate 6 is made of polymethacrylate plate material. The thickness of the transparent plate 6 is eight to ten millimeters. The polymethacrylate plate material has excellent anti-collision properties and is highly transparent, so the control panel 21 can be directly observed.

[0035] Finally, the auxiliary hanging columns 22 are symmetrically arranged in two and are arranged on the right end face of the control box 2. The outer diameter of the auxiliary hanging column 22 and the block column 411 is not greater than the inner diameter of the damping through hole 71. A damping sleeve is preset in the inner hole of the damping through hole 71, and the damping extrusion sleeve can be respectively connected to the auxiliary hanging column 22 and the block column 411 for damping extrusion sleeve connection.

[0036] Working method: After the corresponding calibration preset pressure value is input through the preset button on the control panel 21, take the protective cover 5 and cover the control panel 21, then rotate the handle 42 clockwise to drive the adjusting stud 4 to rotate clockwise, and drive the movable piece 41 toward the front end surface of the control box 2 through the threaded transmission. When the block column 411 on the movable piece 41 is squeezed and stuck into the damping perforation 71, stop rotating the handle 42 to achieve full coverage of the control panel 21, avoiding the possibility of direct collision with the button on the control panel 21 due to carelessness, avoiding the situation of incorrect input of the calibration preset pressure value, thereby avoiding the error of the pressure value that the plate can withstand obtained by the later verification, greatly improving the protection of the control panel on the pressure verification test device for architectural design.

[0037] In addition, when the protective cover 5 is not in use, the handle 42 is rotated counterclockwise until the block column 411 exits the damping through-hole 71, and the protective cover 5 can be removed to expose the control panel 21 for use. Then, the damping through-hole 71 on the protective cover 5 and the auxiliary hanging column 22 are squeezed and connected, thereby improving the convenience of using the protective cover 5.

[0038] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A building design verification tool, comprising a base box (1), characterized in that: The base box (1) is provided with a calibration table (11) and a control box (2); a pressure cylinder (13) is provided above the calibration table (11); a pressure plate (12) is provided on the pressure cylinder (13); a control panel (21) and a secondary hanging column (22) are provided on the control box (2); a protective cover (5) is provided on the control panel (21); a fixed seat (3) is provided on the fixed seat (3); an adjusting screw (4) is rotatably provided on the adjusting screw (4); a moving piece (41) is provided on the adjusting screw (4); a block column (411) and a rotating handle (42) are provided on the moving piece (41); an opening slot (51) and a fixed block (7) are provided on the fixed block (7); a damping through hole (71) is provided on the fixed block (7); a transparent plate (6) is provided in the opening slot (51).

2. The architectural design verification tool according to claim 1, characterized in that: A bearing (31) is installed in the inner cavity of the fixing seat (3), and the mounting hole of the bearing (31) is fixedly sleeved with the adjusting stud (4).

3. The architectural design verification tool according to claim 1, characterized in that: The movable piece (41) is threadedly connected to the adjusting stud (4), and the rotating handle (42) is a diamond-shaped structure as a whole.

4. The architectural design verification tool according to claim 1, characterized in that: The fixed block (7), the movable piece (41) and the adjusting stud (4) form a group, which are two symmetrically arranged groups in total.

5. The architectural design verification tool according to claim 1, characterized in that: The protective cover (5) is a rectangular structure as a whole. The protective cover (5) is made of hard acrylic material. The opening groove (51) passes through the protective cover (5). The inner groove size of the opening groove (51) is not less than the overall size of the control panel (21).

6. The architectural design verification tool according to claim 1, characterized in that: The transparent plate (6) is embedded in the opening groove (51). The transparent plate (6) is made entirely of polymethacrylate. The thickness of the transparent plate (6) is eight to ten millimeters.

7. The architectural design verification tool according to claim 1, characterized in that: The auxiliary hanging columns (22) are two symmetrically arranged and are arranged on the right end surface of the control box (2). The outer diameters of the auxiliary hanging columns (22) and the block column (411) are not greater than the inner diameter of the damping through hole (71).