A hollow glass panel installation site detection device

By designing an on-site testing device for the installation of insulated glass panels, the problems of loose screws, low efficiency in dust cleaning, and insufficient sealing testing were solved, thus achieving efficient installation quality control.

CN120628475BActive Publication Date: 2025-12-09JINAN SIJIAN GRP CO LTD
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Patent Information

Application Number
CN202510853788.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-12-09
Estimated Expiration
2045-06-24

AI Technical Summary

Technical Problem

During the installation of insulated glass, problems such as loose screws, inefficient dust cleaning, and lack of specialized tools for sealing tests can lead to poor sealing or water leakage.

Method used

A field inspection device for the installation of insulating glass panels was designed, including an inspection base, an adjustment motor assembly, a laser inspection probe, a screw inspection module, a fan module, and a pressure sensor module. The device is moved along the inner edge of the window frame by a handheld device to detect loose screws, clean dust, and check the seal in real time.

Benefits of technology

It improves the installation quality of insulated glass and makes screw inspection, dust cleaning, and sealing inspection portable and efficient, making it suitable for large-scale promotion.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application belongs to the field of measuring equipment, and provides a hollow glass panel installation site detection device, which comprises a detection base, the front end surface of the detection base is provided with a walking plate passing port, the rear end of the detection base is provided with an adjusting motor assembly, the side surface of the adjusting motor assembly is provided with a handle assembly, the front end inner side of the detection base is provided with a panel seat which is nested with the detection base, a pair of rolling guide modules are arranged in the walking plate groove of the panel seat, the rolling guide modules are used for rolling cooperation with the frame edge of the window frame, a fan module and a pressure sensor module are arranged on the panel seat, the two sides of the detection base are provided with quick clamping strips, and screw detection modules are arranged on the quick clamping strips. The application has reasonable design, can realize screw detection, dust detection and sealing detection, has good portability and high utilization, and is suitable for large-scale promotion.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the field of measuring equipment, and particularly relates to a hollow glass panel installation site detection device. BACKGROUND

[0002] Hollow glass has good heat preservation and sound insulation performance, and is widely used in building doors and windows, curtain walls and the like. Before installation, the hollow glass needs to be operated, such as cleaning the sundries and dust in the door and window frame or curtain wall frame, ensuring the surface to be flat and dry, checking whether the frame size matches the glass, reserving the installation gap, and the like.

[0003] Since the window frame and the hollow glass are installed in sequence, the window frame is screwed from the inner side of the frame to the wall body, and many times the screw tightness cannot be found in time before the installation of the hollow glass, which will lead to the situation of poor sealing or water leakage in the later period. In addition, most construction sites use a brush to clean the dust and particles on the inner side of the window frame when installing the hollow glass, which is low in cleaning efficiency and not easy to reach the higher top edge of the window frame. In addition, the hollow glass needs to be glued and installed after installation, and there is a lack of special tools for on-site detection of the sealing performance after installation, which is not conducive to timely discovery of installation quality problems. SUMMARY

[0004] The present application is directed to the technical problems existing in the installation of hollow glass, and proposes a hollow glass panel installation site detection device which is reasonable in design, can realize screw detection, dust detection and sealing performance detection, is good in portability and high in utilization rate.

[0005] To achieve the above objectives, the technical solution adopted by the present invention is as follows: The present invention provides an on-site inspection device for the installation of insulating glass panels, comprising an inspection base, a plate passage on the front end face of the inspection base, an adjustment motor assembly for driving the inspection base to rotate at the rear end of the inspection base, a lever assembly rotatably connected to the side of the adjustment motor assembly, the lever assembly being a hollow structure with internal wiring and power supply installation, a control panel and multiple control keys on the lever assembly, and a laser inspection probe at the end of the inspection base offset from the lever assembly; a panel base nested and fitted with the inspection base is provided on the inner front end of the inspection base. The middle of the device has a slide groove that corresponds to the detection port. A pair of rolling guide modules are installed in the slide groove. The rolling surface of the rolling guide module is biased towards the inside of the detection base. The rolling guide module is used to roll and cooperate with the edge of the window frame. The panel base has two pairs of fan modules on both sides of the slide groove for blowing air towards the opposite side of the panel base. A pressure sensor module is installed between the fan modules. The probe of the pressure sensor module faces the opposite side of the panel base. The pressure sensor module and the fan module are electrically connected to the control board through wires. Quick-connect strips are provided on both sides of the detection base. Screw detection modules are installed on the quick-connect strips.

[0006] Preferably, the end face of the testing base away from the adjusting motor assembly is square, and both sides of the testing base are provided with U-shaped limiting ports that communicate with the through port of the walkway. The cross-section of the testing base gradually decreases from its front end to its rear end.

[0007] Preferably, the screw detection module includes a pair of detection plates spaced apart front to back. One detection plate is a fixed detection plate that is stationary relative to the quick-connect strip, and the other detection plate is a sliding detection plate that slides relative to the quick-connect strip. The side of each detection plate that is off-center from the detection base is used to slide and engage with the inner structural groove of the window frame. A guide rod is provided between the two detection plates. One end of the guide rod is fixedly connected to the fixed detection plate, and the other end of the guide rod slides and engages with the sliding detection plate. A dynamic balance spring is provided on the guide rod, and both ends of the dynamic balance spring are in contact with the two detection plates respectively.

[0008] Preferably, the detection board includes a main board segment, one side of which is provided with a snap-fit ​​segment, and the other side of which is provided with a plurality of sliding detection blocks for engaging with the inner structural groove of the window frame.

[0009] As preferred, two pairs of sliding sockets penetrating the plate surface of the panel base are arranged in the walking plate slot, the sliding sockets are provided with counterbores, the counterbores and the sliding sockets are used for quickly installing rolling guide modules, the rolling guide modules comprise rolling shafts, the rolling shafts are provided with pulleys, the rolling shafts are provided with blind holes at both ends, the blind holes are provided with half shafts, one end of the half shafts is rotatably connected with the counterbores, the half shafts are provided with shaft shoulders at the parts outside the blind holes, one end of the shaft shoulders is connected with the end surface of the sliding sockets, the other end of the shaft shoulders is provided with elastic springs in the blind holes.

[0010] As preferred, four fan installation holes for installing fan modules and two sensor installation holes for installing pressure sensor modules are arranged on the panel base, a wiring slot is arranged on the side of the panel base facing the rear end of the detection base, the wiring slot is in the shape of a Chinese character'mi' and is in communication with the fan installation holes and the sensor installation holes, and a wiring hole for wiring is arranged on the rear end surface of the detection base.

[0011] As preferred, the adjusting motor assembly comprises a motor cover, the inner side of the motor cover is provided with a motor, the power output end of the motor is drivingly connected with the detection base, and the side surface of the motor cover is provided with a connecting support.

[0012] As preferred, the handle assembly comprises a handle section foldably connected with the connecting support, the end of the handle section is provided with a handle section, the handle section and the handle section are respectively used for installing control buttons and control boards, the inside of the handle section is provided with a power supply slot, and the end of the power supply slot is provided with a charging end cover.

[0013] As preferred, the length trajectory of the handle section is in the shape of a Z.

[0014] Compared with the prior art, the application has the advantages and positive effects that:

[0015] The hollow glass panel installation site detection device provided by the application, the screw detection module is detachably installed on the detection machine base, the detection machine base is moved along the inner edge of the window frame by the manual hand-held handle bar assembly, and the steering is completed by the foldability of the handle bar assembly and the adjustability of the adjusting motor assembly at the corner position of the window frame. During the movement, whether the screw is loose is detected by the screw detection module, and the dust and particles in the groove in the window frame are blown away by the fan module; the fan module can move along the press line and the gap of the hollow glass after the hollow glass is installed, the pressure is detected by the pressure sensor module, and the pressure value is significantly smaller, which indicates that a leakage node appears, so as to achieve the purpose of detecting the sealing performance, which is beneficial to improve the installation quality of the hollow glass; the distance between the detection machine base and the window frame can be measured in real time by using the laser detection probe, which is beneficial to quickly determine the node range of the installation problem. The device is reasonable in design, can realize screw detection, dust detection and sealing performance detection, is good in portability and high in utilization, and is suitable for large-scale promotion. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical solutions of the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are some embodiments of the application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0017] Figure 1 It is a perspective view of a hollow glass panel installation site detection device (without screw detection module);

[0018] Figure 2 It is a front view of a hollow glass panel installation site detection device (without screw detection module);

[0019] Figure 3 It is a side view of a hollow glass panel installation site detection device (without screw detection module);

[0020] Figure 4 It is a working diagram of a hollow glass panel installation site detection device for detecting sealing performance;

[0021] Figure 5 It is a perspective view of a hollow glass panel installation site detection device for detecting screws and cleaning dust;

[0022] Figure 6 It is a top view of a hollow glass panel installation site detection device for detecting screws;

[0023] Figure 7 It is Figure 6 It is a sectional view of a hollow glass panel installation site detection device in G-G direction;

[0024] Figure 8 A perspective view of the fan module, pressure sensor module and panel base provided for an embodiment;

[0025] Figure 9 A top view of the fan module, pressure sensor module and panel base provided for an embodiment;

[0026] Figure 10 A side view of the screw detection module provided for an embodiment;

[0027] Figure 11 A perspective view of the screw detection module provided for an embodiment;

[0028] Figure 12 An exploded view of the rolling guide module provided for an embodiment;

[0029] In the above figures:

[0030] 1. hollow glass;

[0031] 2. detection machine base; 21. walkboard passing port; 22. quick clamping strip; 23. limiting passing port;

[0032] 3. adjusting motor assembly; 31. motor cover; 32. motor; 33. connecting support;

[0033] 4. handlebar assembly; 41. control board; 42. control key; 43. handlebar section; 44. handle section; 45. charging end cover;

[0034] 5. panel base; 51. walkboard groove; 52. sliding insertion port; 53. fan mounting hole; 54. sensor mounting hole; 55. wiring groove;

[0035] 6. rolling guide module; 61. rolling shaft; 62. pulley; 63. half shaft; 64. shaft shoulder; 65. extension spring;

[0036] 7. fan module;

[0037] 8. pressure sensor module;

[0038] 9. screw detection module; 91. fixed detection plate; 92. sliding detection plate; 93. guide rod; 94. dynamic balance spring; 95. detection plate; 951. main plate section; 952. clamping section; 953. sliding contact detection block;

[0039] 10. window frame;

[0040] 11. wire pressing;

[0041] 12. laser measurement probe. DETAILED DESCRIPTION

[0042] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described below in conjunction with the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other. For ease of description, the terms "upper," "lower," "left," and "right" appearing below only indicate that they correspond to the upper, lower, left, and right directions in the accompanying drawings and do not limit the structure.

[0043] Numerous specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways than those described herein, and therefore the invention is not limited to the specific embodiments disclosed in the following specification.

[0044] Examples, such as Figures 1-12 As shown, the present invention provides an on-site inspection device for insulating glass panel installation, including an inspection base 2. The front end of the inspection base 2 is provided with a plate guide passage 21. The rear end of the inspection base 2 is provided with an adjustment motor assembly 3 for driving the inspection base 2 to rotate. A lever assembly 4, rotatably connected to the adjustment motor assembly 3, is provided on its side. The lever assembly 4 is a hollow structure, and its interior is used for wiring and power supply installation. A control board 41 and multiple control keys 42 are provided on the lever assembly 4. A laser inspection probe is provided at one end of the inspection base that is offset from the lever assembly. A panel base 5, nested and fitted with the inspection base 2, is provided on the inner side of the front end of the inspection base 2. A plate guide groove 51, corresponding to and matching the inspection passage, is provided in the middle of the panel base 5. A pair of rolling guides are provided in the plate guide groove 51. The rolling surface of the rolling guide module 6 is biased towards the inner side of the detection base 2. The rolling guide module 6 is used to roll and cooperate with the frame edge of the window frame 10. The panel base 5 is provided with two pairs of fan modules 7 on both sides of the slide groove 51 for blowing air towards the opposite side of the panel base 5. The detection base is provided with air inlets around its perimeter so that the air outlet direction of the fan modules can obtain positive air pressure. A pressure sensor module 8 is provided between the fan modules 7. The probe of the pressure sensor module 8 faces the opposite side of the panel base 5. The pressure sensor module 8 and the fan modules 7 are electrically connected to the control board 41 through wires. Quick-connect strips 22 are provided on both sides of the detection base 2. A screw detection module 9 is provided on the quick-connect strip 22. The screw detection module 9 can be detachably installed on the detection base 2.

[0045] Specifically, the adjusting motor assembly 3 can control the relative angle of the rolling guide module 6 and the handle assembly 4, and the handle assembly 4 and the adjusting motor assembly 3 can constitute a folding mechanism, which has folding property and is convenient for the device to smoothly transition at the corner position of the window frame 10, and also avoids the handle assembly 4 from colliding with the building wall to affect the detection progress. In the device, the walk plate passing through the port 21 and the walk plate groove 51 can be used for detecting the movement of the detection base 2 along the inner edge of the window frame 10, and the rolling guide module 6 provides guidance for the movement of the detection base 2 and the panel seat 5, especially makes the detection surface of the screw detection module 9 always contact with the inner structure groove of the window frame 10. In this way, the detection base 2 is moved along the inner edge of the window frame 10 by manually holding the handle assembly 4, and the folding property of the handle assembly 4 and the adjustability of the adjusting motor assembly 3 are used to complete the steering at the corner position of the window frame 10. During the movement, the screw detection module 9 detects whether the screw is loose, and the loose screw is tightened in time, and the fan module 7 blows away the dust and particles in the groove of the window frame 10; the fan module 7 can move along the gap of the hollow glass 1 and the sealing edge after the hollow glass 1 is installed, and the worker's arm applies a certain pressing force to make the panel seat 5 as close to the plane where the hollow glass is located as possible. The real-time pressure is detected by the pressure sensor module 8, and the real-time pressure within a certain range indicates that the detection content meets the installation requirements, so as to achieve the purpose of detecting the sealing property, which is beneficial to improve the installation quality of the hollow glass 1. The laser detection probe 12 is installed in the limiting passing port 23 of the detection base, which is electrically connected with the control board through the transmission line. During the movement of the detection base, the laser detection probe 12 can measure the distance between the detection base and the window frame in real time, and feed back the measurement data to the control board of the handle assembly. The worker can quickly determine the node range where the installation problem occurs according to the real-time data, especially at the node where the sealing property appears problem. The device can realize screw detection, dust detection and sealing property detection, has good portability and high utilization rate.

[0046] In order to improve the detection efficiency, considering that the cross-sectional width of the side bar, top bar and bottom edge of most window frames 10 is consistent, the end surface of the detection machine base 2 away from the adjusting motor assembly 3 is provided with a square structure, and the square area of the detection machine base 2 can at least completely cover the main cross section of the window frame 10 and the hollow glass 1 installation cooperation, and also provide sufficient installation surface and support surface for the screw detection module 9, which is beneficial to improve the stability and bending resistance of the screw detection module 9 during the movement of the detection machine base 2; on the other hand, it is also convenient for the fan module 7 to form an effective air flow gap between the panel seat 5 and the inner groove of the window frame 10 during the process of blowing forward, which is convenient for dust and particles to accelerate to leave the inner structure groove of the window frame 10. Further, the two sides of the detection machine base 2 are provided with U-shaped limiting through ports 23 which are in communication with the walk-through port 21, and the cross section of the detection machine base 2 gradually decreases from the front end to the rear end. Through such design, the detection machine base 2 can be inserted in the corner position in a similar plug-in manner when it approaches the corner of the window frame 10 without causing the rear end structure of the detection machine base 2 such as the adjusting motor assembly 3 to hit the window frame 10, and most importantly, the detection end of the screw detection module 9 can maximize the detection path to the end of the detection path in this direction, thereby ensuring the sufficiency of the detection and improving the detection efficiency of the device.

[0047] In order to improve the detection performance of the screw detection module 9, the screw detection module 9 provided by the application comprises a pair of front and rear spaced detection plates 95, one of which is a fixed detection plate 91 opposite to the quick clamping strip 22, and the other is a sliding detection plate 92 opposite to the quick clamping strip 22, and the detection plate 95 deviates from one side of the detection base 2 and is used for sliding contact with the inner structure groove of the window frame 10, a guide rod 93 is arranged between the two detection plates 95, one end of the guide rod 93 is fixedly connected with the fixed detection plate 91, the other end of the guide rod 93 is slidingly connected with the sliding detection plate 92, a dynamic balance spring 94 is arranged on the guide rod 93, and the two ends of the dynamic balance spring 94 are in contact with the two detection plates respectively. Specifically, the inner edge of the quick clamping strip 22 is a hook-shaped structure, and the end of the detection plate matched with it is also a hook-shaped structure, the fixed detection plate 91 can be clamped with the quick clamping strip 22 through tight fitting, and the sliding detection plate 92 adopts loose fitting to establish a sliding fitting relationship with the quick clamping strip 22. In this way, the screw detection module 9 directly contacts the screw that is punched into the inner structure groove of the window frame 10, that is, the problem screw, on the path of moving with the detection base 2, and obvious movement resistance is generated, and the direct influence on mechanical action is that the dynamic balance spring 94 is compressed along the direction of the guide rod 93, so that the screw node in the loosening state is obtained; if the inner side of the window frame 10 appears obvious bulging, the dynamic balance spring 94 will also appear reciprocating balance action, so as to judge the construction quality before the installation of the hollow glass 1, and avoid the influence of construction work on the previous work. It should be noted that the screw is punched into the inner structure groove of the window frame 10 in a spaced manner and connected to the wall body, and since the screw will not be punched into the wall body near the root position of the corner of the window frame 10 in general, the installation node of the fixed detection plate 91 and the sliding detection plate 92 on the quick clamping strip 22 can be slightly close to the middle direction of the detection base 2, so as to ensure that the sliding detection plate 92 has a certain elastic movement allowance, and then the corresponding detection content is completed.

[0048] In order to improve the cooperation performance of the detection plate 95 and the window frame 10, the detection plate provided by the application comprises a main plate segment 951, one side of the main plate segment 951 is provided with a clamping segment 952, and the other side of the main plate segment 951 is provided with a plurality of sliding contact detection blocks 953 used for cooperating with the inner structure groove of the window frame 10. The actual size specification, quantity and installation interval of the sliding contact detection block 953 are selected and installed according to the design of the inner groove of the different window frames 10, and the sliding contact detection block 953 can be connected on the main plate segment 951 through a countersunk screw. Further, the sliding contact detection block 953 generates a quadrangular prism structure, and the end of the sliding contact detection block 953 towards the advancing direction is used as a detection end for contacting the problem screw and is used as a sliding shovel structure for dust in the inner structure groove of the window frame 10, so that the detection performance of the screw detection block in the application can be ensured, and the dust cleaning work of the fan module 7 can be assisted.

[0049] In order to improve the effect of discharging dust from the advancing direction of the detection seat 2, the main plate segment 951 of the sliding detection plate 92 is provided with a strip-shaped discharge port, and the dust is discharged from the advancing direction of the detection seat 2 and the air flow slit formed by the face plate seat 5 and the window frame 10 under the action of wind force.

[0050] In order to facilitate the dismounting and replacing of the rolling guide module 6, the walking plate groove 51 is provided with two pairs of sliding insertion openings 52 penetrating the plate surface of the face plate seat 5, the sliding insertion opening 52 is provided with a countersunk hole, the countersunk hole and the sliding insertion opening 52 are used for quickly installing the rolling guide module 6, the rolling guide module 6 comprises a rolling shaft 61, the rolling shaft 61 is provided with a belt wheel 62, the wheel surface of the belt wheel 62 is provided with a V-shaped groove or a U-shaped groove used for cooperating with the frame edge of the window frame 10, both ends of the rolling shaft 61 are provided with blind holes, the blind holes are provided with half shafts 63, one end of the half shaft 63 is rotationally matched with the countersunk hole, the half shaft 63 is provided with a shaft shoulder 64 at the part outside the blind hole, one end of the shaft shoulder 64 is matched with the end surface of the sliding insertion opening 52, and the other end of the shaft shoulder 64 is provided with an expansion spring 65 located in the blind hole. The sliding insertion opening 52 is the assembly path of the rolling guide module 6, and the two ends of the rolling guide module 6 form an expansion structure by the half shaft 63 and the expansion spring 65, so that the rolling guide module 6 can be moved along the sliding insertion opening 52 until being clamped in the countersunk hole, the rolling shaft 61 can guarantee reliable and stable rolling function under the support of the half shaft 63, thereby meeting the requirement that the detection seat 2 continuously moves along the inner edge of the window frame 10 under the support of the rolling guide module 6. As for dismounting, a spanner wrench with a U-shaped end is used, the spanner wrench is clamped at the position of the shaft shoulder 64, the shaft shoulder 64 is pushed to the middle position of the rolling shaft 61 by using the lever far away until the two half shafts 63 are away from the countersunk hole, and then the dismounting is completed. The rolling guide module 6 has reasonable design, simple structure and strong practicability, and can meet the reasonable detection requirement of the device.

[0051] In order to improve the detection effect of the sealing performance of the hollow glass 1, the panel seat 5 is provided with a smooth surface, which can reduce the friction when the panel seat 5 moves along the pressure line 11 and the surface of the hollow glass 1, avoid scratching the hollow glass 1, ensure that the panel seat 5 has a small contact gap with the pressure line 11 and the hollow glass 1, improve the detection accuracy of the pressure sensor module 8, ensure the reliability of the pressure information obtained by the staff from the control panel 41, and further ensure the effective detection efficiency.

[0052] In order to coordinate the installation of the fan module 7 and the pressure sensor module 8, the panel seat 5 is provided with four fan installation holes 53 for installing the fan module 7 and two sensor installation holes 54 for installing the pressure sensor module 8. The panel seat 5 is provided with a wiring groove 55 on the side facing the rear end of the detection seat, and the wiring groove 55 has a top view projection in the shape of a Chinese character'mi' and is in communication with the fan installation hole 53 and the sensor installation hole 54. The rear end of the detection seat 2 is provided with a wiring hole for wiring, and the adjusting motor assembly 3 can guide the wires from the wiring groove 55 and the wiring hole to the handle assembly 4, and then connect to the control panel 41 and the power supply. The slot cross section of the wiring groove 55 is in the shape of a dovetail structure, which can be used to quickly connect the wires of the fan module 7 and the pressure sensor module 8, improve the overall and stability of the wire layout, and by designing the wiring groove in the shape of a Chinese character'mi', the wire harness can be conveniently concentrated and restrained in the direction of the wiring hole, which is beneficial to improve the connection reliability of the wire harness.

[0053] In order to improve the coordination of the adjusting motor assembly 3 and other structures in the device, the adjusting motor assembly 3 comprises a motor cover 31, the inner side of the motor cover 31 is provided with a motor 32, the power output end of the motor 32 is in transmission connection with the detection seat 2, and the side surface of the motor cover 31 is provided with a connecting support 33. In this way, the connecting support 33 can establish a folding relationship with the handle assembly 4, which is convenient for corresponding angle adjustment according to the specific position of the detection seat 2 in the window frame 10; for the detection seat 2 moving along the top bar and the bottom edge of the window frame 10, the motor 32 can be driven to rotate the detection seat 2 by 90 degrees by operating the control button, which is convenient for manual holding of the handle and effectively avoids the building wall, so as to complete the corresponding detection content.

[0054] In order to improve the utilization of the handle assembly 4, the handle assembly 4 provided by the present application comprises a handle section 44 arranged at the end of a handle section 43 which is foldably connected with the connecting support, the handle section 43 and the handle section 44 are respectively used for mounting the control button and the control panel 41, the inside of the handle section 44 is provided with a power supply slot which is used for mounting the battery, the end of the power supply slot is provided with a charging end cover 45 which is provided with a charging socket for facilitating the charging of the battery. Wherein, the length trajectory of the handle section 43 is in a Z shape, on the one hand, it is convenient for the user to hold with both hands, on the other hand, it is convenient to reduce the off-plate height / gap when detecting the sealing performance of the rubber and the line 11 of the insulating glass 1, which is beneficial to improve the close effect of the panel seat 5 to the surface to be detected under the artificial braking condition, thereby it is beneficial to reduce the detection error of the pressure sensor module 8, and further improve the detection efficiency of the sealing performance of the insulating glass 1.

[0055] The above is only the preferred embodiment of the present application, and does not limit other forms of the present application. Any skilled person in the art can use the disclosed technical content to make changes or modifications to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification made to the above embodiments without departing from the technical solution content of the present application, according to the technical essence of the present application, still belongs to the protection scope of the technical solution of the present application.

Claims

1. A field testing device for the installation of insulating glass panels, comprising a testing base, characterized in that, The front end of the testing base is provided with a plate passage, and the rear end of the testing base is provided with an adjustment motor assembly for driving the testing base to rotate. The side of the adjustment motor assembly is provided with a lever assembly that is rotatably connected to it. The lever assembly is a hollow structure and its interior is used for wiring and power supply installation. The lever assembly is provided with a control board and multiple control keys. The testing base is provided with a laser detection probe at one end that is offset from the lever assembly. The front inner side of the detection base is provided with a panel base that nests and cooperates with the detection base. The middle of the panel base is provided with a slide groove that corresponds to the detection passage. A pair of rolling guide modules are provided in the slide groove. The rolling surface of the rolling guide module is biased towards the inner side of the detection base. The rolling guide module is used to roll and cooperate with the frame edge of the window frame. The panel base is provided with two pairs of fan modules on both sides of the slide groove for blowing air towards the opposite side of the panel base. A pressure sensor module is provided between the fan modules. The probe of the pressure sensor module faces the opposite side of the panel base. The pressure sensor module and the fan module are electrically connected to the control board through wires. Quick-connect strips are provided on both sides of the detection base. Screw detection modules are provided on the quick-connect strips.

2. The insulated glass panel installation site testing device according to claim 1, characterized in that, The end face of the testing base away from the adjusting motor assembly is square. Both sides of the testing base are provided with U-shaped limiting ports that communicate with the through port of the walkway. The cross-section of the testing base gradually decreases from its front end to its rear end.

3. The insulated glass panel installation site testing device according to claim 2, characterized in that, The screw detection module includes a pair of detection plates spaced apart front to back. One detection plate is a fixed detection plate that is stationary relative to the quick-connect strip, and the other detection plate is a sliding detection plate that slides relative to the quick-connect strip. The side of each detection plate that is off-center from the detection base is used to slide and engage with the inner structural groove of the window frame. A guide rod is provided between the two detection plates. One end of the guide rod is fixedly connected to the fixed detection plate, and the other end of the guide rod slides and engages with the sliding detection plate. A dynamic balance spring is provided on the guide rod, and both ends of the dynamic balance spring are in contact with the two detection plates respectively.

4. The insulated glass panel installation site testing device according to claim 3, characterized in that, The detection board includes a main board segment, one side of which is provided with a snap-fit ​​segment, and the other side of which is provided with a plurality of sliding detection blocks for engaging with the inner structural groove of the window frame.

5. The on-site testing device for insulating glass panel installation according to claim 1, characterized in that, The slide groove is provided with two pairs of sliding slots that communicate with the surface of the panel base. Each sliding slot has a countersunk hole. The countersunk hole and the sliding slot are used for quick installation of the rolling guide module. The rolling guide module includes a roller with a pulley. Both ends of the roller have blind holes. A half-shaft is provided in each blind hole. One end of the half-shaft is rotatably engaged with the countersunk hole. The half-shaft has a shoulder on the part located outside the blind hole. One end of the shoulder is engaged with the end face of the sliding slot. The other end of the shoulder is provided with a telescopic spring located in the blind hole.

6. The insulated glass panel installation site testing device according to claim 1, characterized in that, The panel base is provided with four fan mounting holes for installing fan modules and two sensor mounting holes for installing pressure sensor modules. The panel base is provided with a wiring groove on its side facing the rear end of the detection base. The wiring groove is in the shape of a star and is interconnected with the fan mounting holes and sensor mounting holes. The rear end face of the detection base is provided with wiring holes for wiring.

7. The insulated glass panel installation site testing device according to claim 1, characterized in that, The adjusting motor assembly includes a motor cover, a motor is disposed inside the motor cover, the power output end of the motor is connected to the detection base, and a connecting support is disposed on the side of the motor cover.

8. The on-site testing device for insulating glass panel installation according to claim 7, characterized in that, The handlebar assembly includes a handlebar segment that is folded and connected to a connecting support. A handle segment is provided at the end of the handlebar segment. The handlebar segment and the handle segment are used to install control buttons and control panels, respectively. A power slot is provided inside the handle segment, and a charging end cap is provided at the end of the power slot.

9. The insulated glass panel installation site testing device according to claim 8, characterized in that, The length trajectory of the handlebar segment is Z-shaped.

Citation Information

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