Detection device and glue supplementing device

By designing a detection device including a compression assembly, a load seat and a sealing assembly, the problem of the inability to detect the airtightness of components inside electronic devices in the prior art is solved, and a rapid evaluation of the waterproof performance of electronic devices is achieved.

CN119935441APending Publication Date: 2025-05-06SHENZHEN HONOR SMART MASCH CO LTD
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Patent Information

Application Number
CN202510424125.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

Existing detection equipment cannot detect the airtightness of components inside electronic equipment, resulting in the inability to effectively evaluate the waterproof performance of electronic equipment.

Method used

A detection device is provided, including a compression assembly, a carrier seat and a sealing assembly, by placing an electronic device in the sealing cavity, utilizing the combination of air pressure and fluoride liquid, to quickly identify the sealing properties of the device portion.

Benefits of technology

It realizes rapid detection of the airtightness of components inside electronic devices, improves the detection efficiency and accuracy, and facilitates the evaluation of the waterproof performance of electronic devices.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a detection device and a glue supplementing device.The detection device comprises a pressing assembly, a bearing seat and a sealing assembly, the bearing seat and the pressing assembly are connected to form a sealing cavity used for containing electronic equipment, the sealing assembly is arranged in the sealing cavity, and when the electronic equipment is located in the sealing cavity, the pressing assembly abuts against the electronic equipment. The devices on the first side communicate with the outside, and the sealing assembly seals the side surface of the electronic device around the circumferential direction. According to the scheme, the face, deviating from the first side, of the electronic equipment is located in the sealing cavity formed by the pressing assembly and the bearing base, devices on the first side of the electronic equipment are exposed outside, and meanwhile the sealing assembly blocks the side face of the electronic equipment. The sealing cavity is inflated, fluorinated liquid is poured into the device exposed outside on the first side, the sealing performance of the device part can be quickly identified through bubbles, and convenience is brought to detection.
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Description

Technical Field

[0001] The embodiments of the present application relate to the technical field of electronic equipment, and in particular to a detection device and a glue filling device. Background Art

[0002] With the rapid development of science and technology, electronic devices have become popular in people's lives, especially portable electronic devices, such as laptops, tablet computers, mobile phones, etc.

[0003] In order to ensure the waterproof performance of electronic equipment, its air tightness is generally tested by testing equipment.

[0004] During use, the detection equipment in the related art cannot detect the airtightness of the internal components of the electronic equipment. Summary of the invention

[0005] The embodiments of the present application provide a detection device and a glue filling device, which are convenient for detecting the airtightness of components inside electronic equipment.

[0006] In order to solve the above technical problems, the present application proposes a detection device, comprising: Clamping assembly; A bearing seat, the bearing seat is connected with the pressing assembly to form a sealed cavity for placing electronic equipment; A sealing component is arranged in the sealing cavity and is used to seal the side of the electronic device around the circumference; when the electronic device is located in the sealing cavity, the clamping component abuts against the electronic device and is used to seal the periphery of the first side of the electronic device, the device on the first side is connected to the outside, and the sealing component seals the side of the electronic device around the circumference.

[0007] The detection device provided in the embodiment of the present application is placed with the inner screen of the electronic device to be tested facing downward on the bearing seat, and then the clamping assembly is connected to the bearing seat. At this time, the side of the electronic device facing away from the first side is located in the sealed cavity formed by the clamping assembly and the bearing seat, and the device on the first side of the electronic device is exposed to the outside. At the same time, the sealing assembly blocks the side of the electronic device. Then, the sealed cavity is inflated, and fluorinated liquid is poured into the device exposed to the outside on the first side. The sealing of the device part can be quickly identified through the bubbles, which brings convenience to the detection.

[0008] In one embodiment, the clamping assembly includes a pressing plate and a sealing plate, wherein the sealing plate is arranged on a side of the pressing plate facing the bearing seat, and the pressing plate and the bearing seat are connected to form the sealing cavity; At least one through groove is provided on the pressing plate and the sealing plate along the first direction. When the electronic device is located in the sealed cavity, the sealing plate abuts against the electronic device to seal the periphery of the first side of the electronic device. The devices on the first side are connected to the outside through the through groove, wherein the first direction is the thickness direction of the pressing plate. In this way, a sealed cavity can be formed by connecting the pressing plate and the bearing seat together. At this time, the sealing plate just seals the periphery of the first side of the electronic device, and at the same time, the internal devices on the electronic device are exposed to the outside under the action of the through groove.

[0009] In one embodiment, the pressure plate is provided with a first through slot and a second through slot at intervals, and a first pressure rod is provided between the first through slot and the second through slot; The sealing plate is provided with a third through groove and a fourth through groove at intervals, and a second pressure rod is provided between the third through groove and the fourth through groove; The first through slot is connected to the third through slot, the second through slot is connected to the fourth through slot, and the projections of the second pressure rod and the first pressure rod in the first direction overlap; When the electronic device is located in the sealed cavity, the second pressing rod abuts against the electronic device.

[0010] In one embodiment, the detection device further includes a fastener, the bearing seat includes a base and a carrier body, the pressure plate is connected to the base to form the sealed cavity, and the carrier body is arranged in the sealed cavity for placing the electronic device; The fastener is arranged outside the base, and the fastener can rotate relative to the base around a first direction, and when the pressure plate is arranged on the base, the fastener presses the side of the pressure plate away from the base. In this way, the pressure plate and the base can be fixed together by the fastener, thereby improving the sealing between the pressure plate and the base.

[0011] In one of the embodiments, the fastener includes a fixing seat, a first connecting rod, a threaded section and a first rotating member; The fixing seat is arranged outside the base, one end of the first connecting rod is connected to the fixing seat, and the other end is connected to the threaded section, and the first rotating member is rotatably connected to the threaded section; When the first rotating member rotates relative to the threaded section, one end of the first rotating member facing the threaded section can be pressed against the pressing plate.

[0012] In this way, when the pressure plate is connected to the base, the first rotating member is rotated and moves toward the pressure plate until the first rotating member abuts against the pressure plate. At this time, under the pressure of the first rotating member, the pressure plate and the base can be fastened together, thereby improving the sealing between the pressure plate and the base.

[0013] In one embodiment, the first connecting rod can rotate relative to the fixing seat about a third direction, wherein the third direction is perpendicular to a plane formed by the first direction and the second direction. In this way, the first connecting rod is driven to rotate about the third direction by the first rotating member and the threaded section, so that the first rotating member and the pressure plate are in a parallel state, and at this time, it is convenient to place the pressure plate on the base, or to transfer the pressure plate from the base.

[0014] In one embodiment, the base is provided with an inner cavity, the sealing assembly is slidably provided in the inner cavity, and the sealing assembly can be moved closer to or farther from the carrier body. By driving the sealing assembly closer to the carrier body, the side surface of the electronic device around the circumference can be sealed, and by driving the sealing assembly away from the carrier body, the sealing assembly is separated from the electronic device on the carrier body, and the electronic device can be taken out from the carrier body.

[0015] In one embodiment, the sealing assembly includes a sealing block, a second rotating member, a second connecting rod and a connecting plate; The connecting plate is fixed to the outer side of the base along the second direction, the sealing block is located in the inner cavity, and the second rotating member is located on the outer side of the base; one end of the second connecting rod is connected to the second rotating member, and the other end passes through the connecting plate, the base and is connected to the sealing block; The second rotating member can rotate relative to the second connecting rod around a third direction to drive the sealing block to approach or move away from the carrier body. In this way, the sealing block can be easily driven to approach or move away from the carrier body by rotating the second rotating member around the third direction.

[0016] In one embodiment, the second rotating member is provided with an arc portion, and the arc portion is located at the intersection of the side of the second rotating member facing the connecting plate and the side of the second rotating member facing the base, so as to avoid the second rotating member and the connecting plate from getting stuck when they abut against each other.

[0017] In one embodiment, the sealing assembly further comprises a guide block, which is arranged between the sealing block and the base and is used to limit the sealing block to move along the second direction. In this way, the sealing block can be limited to always move along the second direction to prevent the sealing block from shaking.

[0018] In one embodiment, a third protrusion is provided on a side of the sealing block facing the carrier body, so that the hole on the side of the electronic device can be easily sealed by the third protrusion.

[0019] In one of the embodiments, the detection device further includes an elastic member, and the elastic member is disposed between a side of the sealing block facing the inner wall of the base and the inner wall of the base.

[0020] In this way, when the second rotating member drives the second connecting rod to extend outward, the sealing block will compress the elastic member and move away from the carrier body; when the second rotating member drives the second connecting rod to move in the opposite direction, the elastic member rebounds and is blocked between the sealing block and the inner wall of the base. At this time, under the action of the elastic force of the elastic member, the sealing block can be in close contact with the circumferential side of the electronic equipment on the carrier body, thereby improving the sealing effect of the sealing block.

[0021] In one embodiment, the detection device further comprises a positioning pin, and the positioning pin is arranged between the base and the pressing plate, so that the pressing plate and the base can be accurately aligned.

[0022] In one embodiment, the carrier seat further includes a positioning block, which is disposed in the inner cavity of the base and is located around the carrier body for positioning the electronic device. In this way, when the electronic device is placed in the carrier body, the positioning block can be used to fix the electronic device in the carrier body according to a preset position.

[0023] In one embodiment, the bearing seat further comprises a limit block, which is arranged on the outer side of the base and is used to limit the pressing plate, so that the pressing plate can be quickly connected to a preset position on the base.

[0024] In one embodiment, a support block is provided on one side of the carrier body facing the pressure plate, so that the electronic device is supported by the support block to avoid a hollow state between the electronic device and the carrier body.

[0025] In one embodiment, a second protrusion is disposed on the periphery of the carrier body, and a side wall on the second protrusion and a side of the carrier body facing the pressure plate are arranged to form a concave structure; The side wall is inclined outwardly relative to the side of the carrier body toward the pressure plate. Since the side wall is inclined outwardly relative to the side of the carrier body toward the pressure plate, it is convenient to put the electronic device into the concave structure from top to bottom to avoid collision between the side of the electronic device and the side wall.

[0026] In one embodiment, the detection device further comprises an air pipe joint, which is arranged on the outside of the base and is configured to connect the outside with the sealed cavity, so as to facilitate the introduction of gas into the sealed cavity.

[0027] The present application also provides a glue filling device, comprising a detection device as described in any one of the embodiments of the present application.

[0028] In one of the embodiments, the glue filling device further includes a visual detection module and a robotic arm, and the visual detection module is disposed on the robotic arm.

[0029] The above description is only an overview of the technical solution of the present application. In order to more clearly understand the technical means of the present application, it can be implemented in accordance with the contents of the specification. In order to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are listed below. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] In order to more clearly illustrate the technical solutions in the present application or the prior art, a brief introduction will be given below to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative labor.

[0031] Figure 1 A schematic diagram of the structure of an electronic device provided in one embodiment of the present application; Figure 2 A schematic diagram of an electronic device provided by an embodiment of the present application at another viewing angle; Figure 3 A schematic diagram of the structure of a detection device provided in one embodiment of the present application; Figure 4 for Figure 3 Exploded diagram of Figure 5 A schematic diagram of the structure of a clamping assembly provided in one embodiment of the present application; Figure 6 A schematic diagram of a pressure plate provided in an embodiment of the present application; Figure 7 A schematic diagram of a sealing plate provided in one embodiment of the present application; Figure 8 for Figure 7 A is an enlarged schematic diagram; Fig. 9 A schematic diagram of a support base provided in an embodiment of the present application; Fig.10 for Fig. 9 Schematic diagram after assembly; Fig.11 A schematic diagram of a base provided in an embodiment of the present application; Fig.12 for Fig.10 Schematic diagram from another perspective; Fig.13 for Fig.12 The enlarged schematic diagram of point B in FIG. Fig.14 A schematic diagram of the rotation states of a first rotating member and a second rotating member provided in an embodiment of the present application; Fig.15 A schematic diagram of a sealing assembly provided in one embodiment of the present application; Fig.16 for Fig.15 Schematic diagram from another perspective; Fig.17 for Fig.15 Exploded diagram of Fig.18 A schematic diagram of a sealing block provided in an embodiment of the present application; Fig.19 for Fig.18 Schematic diagram from another perspective; Fig. 20 A schematic diagram of the connection structure between the second rotating member and the connecting plate provided in one embodiment of the present application; Fig.21 A schematic diagram of the connection between the base and the sealing assembly provided in one embodiment of the present application; Fig. 22 A schematic diagram of a base provided in an embodiment of the present application at another viewing angle; Fig.23 for Fig.21 The enlarged schematic diagram of point C in FIG. Fig.24 A schematic diagram of a connection plate provided in an embodiment of the present application; Fig.25 for Fig.24 A cross-sectional view of Fig.26 A schematic diagram of an elastic member provided in an embodiment of the present application; Fig. 27 for Fig.26 The enlarged schematic diagram of D in FIG. Fig.28 A schematic diagram of a second sealing ring provided in an embodiment of the present application; Fig.29 A schematic diagram of a carrier body provided in an embodiment of the present application; Fig.30 for Fig.29 The enlarged schematic diagram of point E in FIG.

[0032] Description of reference numerals: 100, electronic device; 11, inner screen side; 12, battery cover side; 13, outer screen side; 14, first box hole; 15, balance valve side hole; 16, first Mic hole; 17, second box hole; 18, USB hole; 19, second Mic hole; 200. Detection device; 210, clamping assembly; 211, pressing plate; 2111, first through groove; 2112, second through groove; 2113, handle; 2114, first extension; 21141, notch; 2115, first positioning hole; 2116, first pressure rod; 2117, first groove; 2118, second groove; 212, first sealing ring; 213, sealing plate; 2131, third through groove; 2132, fourth through groove; 2133, second pressure rod; 2134, first protrusion; 220, bearing seat; 221, base; 2211, inner cavity; 2212, second extension; 22121, second positioning hole; 2213, third groove; 2214, first through hole; 2215, first limiting groove; 2216, placement groove; 222, second sealing ring; 223, carrier body; 2231, support block; 2232, second protrusion; 22321, side wall; 224, positioning block; 225, limiting block; 230, trachea connector; 240, fastener; 241, fixing seat; 242, first connecting rod; 243, threaded section; 244, first rotating member; 250, positioning pin; 260, fixing plate; 270, sealing assembly; 271, sealing block; 2711, third protrusion; 2712, blind hole; 2713, second limiting groove; 2714, mounting hole; 2715, clamping groove; 272, second rotating member; 2721, arc-shaped portion; 273, second connecting rod; 274, pin shaft; 275, connecting plate; 2751, second through hole; 2752, fourth protrusion; 276, connecting member; 277, guide block; 278, third sealing ring; 279, fourth sealing ring; 280. Elastic parts. DETAILED DESCRIPTION

[0033] The terms used in the implementation method part of this application are only used to explain the specific embodiments of this application, and are not intended to limit this application. The implementation method of the embodiments of this application will be described in detail below with reference to the accompanying drawings.

[0034] The electronic device provided in the present application may include but is not limited to a mobile or fixed terminal such as a mobile phone, a tablet computer, a laptop computer, an ultra-mobile personal computer (UMPC), a handheld computer, a netbook, a personal digital assistant (PDA), a wearable device, a television, etc. The present application embodiment is described by taking a mobile phone as an example.

[0035] Figure 1This is a schematic diagram of the structure of an electronic device 100 provided in an embodiment of the present application. Figure 2 This is a schematic diagram of an electronic device 100 provided in an embodiment of the present application from another perspective. In this embodiment, the electronic device 100 is a folding screen mobile phone. The electronic device 100 includes an inner screen side 11 and a supporting device. It can be understood that, Figure 1 Only some components of the electronic device 100 are schematically shown, and the actual shapes, sizes, positions and structures of these components are not subject to the present invention. Figure 1 restrictions.

[0036] refer to Figure 2 As shown, the battery cover side 12 and the outer screen side 13 of the electronic device 100 are exposed, and the corresponding battery area and the corresponding device area can be seen. The side frame of the electronic device 100 around the circumference is provided with a first box hole 14, a balance valve side hole 15, a first Mic hole 16, a second box hole 17, a USB hole 18, a second Mic hole 19, etc. When the electronic device 100 is a device of some other form, the electronic device 100 may also not include at least one of the first box hole 14, the balance valve side hole 15, the first Mic hole 16, the second box hole 17, the USB hole 18, and the second Mic hole 19.

[0037] In order to ensure the waterproof performance of the electronic device 100, the air tightness of the electronic device 100 is generally tested by a testing device. The testing device in the related art can only test straight-type mobile phones. The poor air tightness of straight-type mobile phones is mainly in the outer periphery of the product. The inner area of ​​the product forms a sealed cavity. When the product is inflated, the outer periphery leakage point can be determined by brushing bubbles or immersing in water, because the internal components are in the internal sealed cavity and are not affected by brushing bubbles and immersing in water.

[0038] The main points of poor airtightness of foldable screen mobile phones are inside the product. Since there are electronic components inside the product, and leakage analysis requires exposing the internal device area of ​​the product, the straight-screen mobile phone testing equipment cannot be used.

[0039] To solve the above problems, refer to Figure 3 Combined with Figure 4 As shown, an embodiment of the present application provides a detection device 200, which includes a clamping assembly 210, a supporting seat 220 and a sealing assembly 270, wherein the supporting seat 220 is connected to the clamping assembly 210 to form a sealed cavity for placing the electronic device, and the sealing assembly 270 is arranged in the sealed cavity to seal the side of the electronic device 100 around the circumferential direction; when the electronic device 100 is located in the sealed cavity, the clamping assembly 210 abuts against the electronic device 100 to seal the periphery of the first side of the electronic device, the device on the first side is connected to the outside, and the sealing assembly 270 seals the side of the electronic device 100 around the circumferential direction.

[0040] refer to Figure 4 As shown, the clamping assembly 210 in this embodiment can be connected to the bearing seat 220 through structures such as bolts, cylinders, and electric telescopic rods. The specific structure can be determined based on actual conditions, and this specification embodiment does not limit this.

[0041] The first side in this embodiment is Figure 2 The battery cover side 12 and the outer screen side 13 of the electronic device 100 are shown.

[0042] In this embodiment, when the electronic device 100 is placed on the supporting seat 220, the inner screen side 11 of the electronic device 100 faces the supporting seat 220, and the battery cover side 12 and the outer screen side 13 of the electronic device 100 are away from the supporting seat 220. At the same time, the sealing component 270 seals the holes around the circumference of the electronic device 100, for example: the sealing component 270 seals the first box hole 14, the balance valve side hole 15, the first Mic hole 16, the second box hole 17, the USB hole 18, the second Mic hole 19, etc. on the side of the electronic device 100. It should be noted that when other holes are provided around the circumference of the electronic device 100, after the electronic device 100 is placed on the supporting seat 220 and the inner screen side 11 of the electronic device 100 faces the supporting seat 220, the sealing component 270 can still seal the other holes around the circumference of the electronic device 100.

[0043] The clamping assembly 210 is then connected to the supporting seat 220. At this time, the clamping assembly 210 is in close contact with the battery cover side 12 and the outer screen side 13 of the electronic device 100. The inner screen side 11 of the electronic device 100 is located in the sealed cavity formed by the clamping assembly 210 and the supporting seat 220, and the devices on the battery cover side 12 and the outer screen side 13 of the electronic device 100 are exposed to the outside.

[0044] At this time, air is inflated into the sealed cavity. The air pressure in the sealed cavity is greater than the external atmospheric pressure. Fluorinated liquid is poured into the components on the battery cover side 12 and the outer screen side 13. When there is a leak in the component, bubbles will be generated, so that it can be quickly identified whether the airtightness of the component is good, which brings convenience to the detection.

[0045] In some embodiments, Figure 4 Combined with Figure 5As shown, the clamping assembly 210 includes a pressing plate 211 and a sealing plate 213, wherein the sealing plate 213 is arranged on the side of the pressing plate 211 facing the supporting seat 220, and the pressing plate 211 and the supporting seat 220 are connected to form a sealed cavity; at least one through groove is arranged on the pressing plate 211 and the sealing plate 213 along the first direction, and when the electronic device is located in the sealed cavity, the sealing plate 213 abuts against the electronic device to seal the periphery of the first side of the electronic device, and the device on the first side is connected to the outside through the through groove, wherein the first direction is the thickness direction of the pressing plate 211.

[0046] The first direction in this embodiment is as follows Figure 4 The X-axis direction.

[0047] The sealing plate 213 in this embodiment can be connected to the side of the pressure plate 211 facing the bearing seat 220 by means of bolts, pins and other structures. The specific connection can be determined according to actual conditions and is not limited in this embodiment of the present specification.

[0048] The pressing plate 211 in this embodiment can be fixed to the bearing seat 220 by bolts, buckles, etc. The specific method can be determined according to actual conditions, and this embodiment of the specification does not limit this.

[0049] refer to Figure 5 As shown, the pressing plate 211 is provided with a first through slot 2111 and a second through slot 2112 at intervals, and the first through slot 2111 and the second through slot 2112 are both connected along the X-axis direction; the sealing plate 213 is provided with a third through slot 2131 and a fourth through slot 2132 at intervals, and the third through slot 2131 and the fourth through slot 2132 are both connected along the X-axis direction. When the sealing plate 213 is connected to the pressing plate 211, the first through slot 2111 is connected to the third through slot 2131, and the second through slot 2112 is connected to the fourth through slot 2132. Of course, it can be understood that one, three, etc. through slots are provided on the pressing plate 211 and the sealing plate 213, which is not limited here.

[0050] During testing, when the inner screen side 11 on the electronic device 100 faces the supporting seat 220, the sealing assembly 270 seals the holes around the electronic device 100, and then connects the pressure plate 211 to the supporting seat 220. At this time, the sealing plate 213 is in close contact with the battery cover side 12 and the outer screen side 13 of the electronic device 100, and the devices on the battery cover side 12 and the outer screen side 13 are exposed to the outside through the through grooves.

[0051] Since the sealing plate 213 is in close contact with the battery cover side 12 and the outer screen side 13 of the electronic device 100, the inner screen side 11 of the electronic device 100 can be in a sealed environment as a whole with the cooperation of the pressing plate 211, the bearing seat 220 and the sealing plate 213. At this time, the sealed cavity is inflated, and the air pressure in the sealed cavity is greater than the external atmospheric pressure. Fluoride liquid is poured into the through groove. When there is a leak at the device, bubbles will be generated, so that it can be quickly identified whether the airtightness at the device is good, which brings convenience to the detection.

[0052] In this embodiment, through grooves are provided on the pressure plate 211 and the sealing plate 213. When the electronic device 100 is fixed, the components on the battery cover side 12 and the outer screen side 13 can be exposed to the outside through the through grooves, so that during the detection process, it is convenient to check whether there is leakage at the through-components.

[0053] like Figure 5 As shown, the pressing assembly 210 further includes a first sealing ring 212 , which is disposed between the pressing plate 211 and the sealing plate 213 .

[0054] In this embodiment, when the sealing plate 213 is connected to the pressure plate 211, the first sealing ring 212 is fixed between the sealing plate 213 and the pressure plate 211. After the first sealing ring 212 is deformed by pressure, it abuts against the pressure plate 211 and the sealing plate 213 respectively. In this way, the sealing between the pressure plate 211 and the sealing plate 213 is improved.

[0055] like Figure 6 Combined with Figure 5 As shown, a first groove 2117 is provided on one side of the pressing plate 211 facing the bearing seat 220 , and the sealing plate 213 is at least partially located in the first groove 2117 .

[0056] The sealing plate 213 in this embodiment is an annular structure as a whole, and the first groove 2117 is also an annular structure as a whole. When the sealing plate 213 needs to be fixed to the pressure plate 211, the sealing plate 213 can be first inserted into the corresponding first groove 2117, and then the sealing plate 213 and the pressure plate 211 are fastened with bolts. In this way, it is easy to fix the sealing plate 213 to the pressure plate. At the same time, under the limitation of the first groove 2117, the sealing plate 213 can be prevented from moving relative to the pressure plate 211.

[0057] like Figure 6 Combined with Figure 5 As shown, the bottom wall of the first groove 2117 is provided with a second groove 2118 , and the first sealing ring 212 is at least partially located in the second groove 2118 ; when the sealing plate 213 is located in the first groove 2117 , the side of the sealing plate 213 facing away from the bearing seat 220 abuts against the first sealing ring 212 .

[0058] In this embodiment, a second groove 2118 is opened on the bottom wall of the first groove 2117. When the first sealing ring 212 is placed in the second groove 2118 and the sealing plate 213 is located in the first groove 2117, the sealing plate 213 abuts against the first sealing ring 212. In this way, it is not only convenient to fix the first sealing ring 212 on the pressure plate 211, but also the sealing between the sealing plate 213 and the pressure plate 211 can be improved.

[0059] In some embodiments, Figure 5 Combined with Figure 6 As shown, the pressure plate 211 is provided with a first through slot 2111 and a second through slot 2112 at intervals, and a first pressure rod 2116 is provided between the first through slot 2111 and the second through slot 2112; at the same time, the sealing plate 213 is provided with a third through slot 2131 and a fourth through slot 2132 at intervals, and a second pressure rod 2133 is provided between the third through slot 2131 and the fourth through slot 2132; the first through slot 2111 is connected to the third through slot 2131, the second through slot 2112 is connected to the fourth through slot 2132, and the projection of the second pressure rod 2133 and the first pressure rod 2116 in the first direction coincide; when the electronic device is located in the sealed cavity, the second pressure rod 2133 abuts against the electronic device. Of course, it can be understood that in this embodiment, three or four through slots can be provided on the pressure plate 211, and three or four through slots can be provided on the sealing plate 213 accordingly, which is not limited here.

[0060] The first direction in this embodiment can refer to the above description and will not be repeated here.

[0061] In this embodiment, when the pressure plate 211 and the sealing plate 213 are connected together, the first through groove 2111 and the third through groove 2131 are connected, the second through groove 2112 and the fourth through groove 2132 are connected, and the projections of the second pressure rod 2133 and the first pressure rod 2116 in the X-axis direction coincide.

[0062] After the pressure plate 211 is connected to the supporting seat 220, the electronic device 100 is located in the corresponding sealed cavity. At this time, the sealing assembly 270 seals the circumferential holes of the electronic device 100, and the sealing plate 213 faces one side of the electronic device 100. The portion located around the first through groove 2111 abuts against the periphery of the battery cover side 12. At the same time, the portion located around the second through groove 2112 abuts against the periphery of the outer screen side 13. Moreover, the second pressure rod 2133 abuts against the pivot area between the battery cover side 12 and the outer screen side 13.

[0063] At this time, the components on the battery cover side 12 are exposed to the outside through the first through slot 2111 and the third through slot 2131, and the components on the outer screen side 13 are exposed to the outside through the second through slot 2112 and the fourth through slot 2132. The inner screen side 11 is in a sealed cavity formed by the pressing plate 211 and the bearing seat 220.

[0064] When testing is needed, air is inflated into the sealed cavity. The air pressure in the sealed cavity is greater than the external atmospheric pressure. Fluorinated liquid is poured into the components on the battery cover side 12 and the outer screen side 13. When there is a leak in the component, bubbles will be generated, so that it can be quickly identified whether the airtightness of the component is good, which brings convenience to the detection.

[0065] In this embodiment, reference Figure 5 As shown, the thickness of the first through groove 2111, the second through groove 2112, the third through groove 2131 and the fourth through groove 2132 in the X-axis direction can be 3mm-8mm, which can be determined according to actual conditions, and the embodiments of this specification do not limit this. In this way, when the fluorine liquid is poured into the components on the battery cover side 12 and the outer screen side 13, the fluorine liquid can be prevented from flowing everywhere under the limitation of the corresponding through groove side walls.

[0066] like Figure 7 Combined with Figure 8 As shown, a first protrusion 2134 is provided on one side of the sealing plate 213 facing the bearing seat 220 . The first protrusion 2134 is located around the third through groove 2131 and the fourth through groove 2132 .

[0067] In this embodiment, the first protrusion 2134 surrounds the periphery of the third through groove 2131, and at the same time, the first protrusion 2134 also surrounds the periphery of the fourth through groove 2132. When the pressing plate 211 is connected to the bearing seat 220, the first protrusion 2134 abuts against the periphery of the battery cover side 12 and the periphery of the outer screen side 13 to ensure the sealing between the sealing plate 213 and the battery cover side 12 and the outer screen side 13.

[0068] like Figure 6 As shown, a handle 2113 is provided on the side of the pressing plate 211 .

[0069] In this embodiment, two, three or more handles 2113 may be connected to the pressure plate 211 by bolts. The specific number may be determined based on actual conditions and is not limited in this embodiment of the specification.

[0070] In this embodiment, a handle 2113 is provided on the pressing plate 211 to facilitate the transfer of the entire pressing plate 211 .

[0071] In some embodiments, Fig. 9 Combined with Fig.10As shown, the detection device also includes a fastener 240, the supporting seat 220 includes a base 221 and a carrier body 223, the pressure plate 211 is connected to the base 221 to form a sealed cavity, and the carrier body 223 is arranged in the sealed cavity for placing electronic equipment; the fastener 240 is arranged on the outside of the base 221, and the fastener 240 can rotate around a first direction relative to the base 221, and the pressure plate 211 is arranged on the base 221, and the fastener 240 is crimped to the side of the pressure plate 211 away from the base 221.

[0072] The first direction in this embodiment can refer to the above description and will not be repeated here.

[0073] The base 221 in this embodiment is formed with an inner cavity, and the carrier body 223 can be fixed in the inner cavity by bolts, pins, etc. At the same time, the sealing assembly 270 is also located in the corresponding inner cavity. When the inner screen side 11 on the electronic device 100 is placed on the carrier body 223 facing the carrier body 223, the sealing assembly 270 seals the circumferential side of the electronic device 100. After the pressure plate 211 is connected to the base 221, the sealing plate 213 seals the circumferential side of the battery cover side 12 and the outer screen side 13. At this time, the inner screen side 11 is in a sealed environment as a whole.

[0074] The fastener 240 in this embodiment can be fixed to the outside of the base 221 by means of bolts, buckles and other structures.

[0075] The pressing plate 211 in this embodiment can be clamped on the base 221. When the pressing plate 211 is installed on the base 221, it drives the fastener 240 to rotate around the X-axis direction. At this time, the fastener 240 is crimped on the side of the pressing plate 211 away from the base 221, so that the pressing plate 211 and the base 221 fit tightly together, thereby improving the sealing between the pressing plate 211 and the base 221.

[0076] like Fig. 9 Combined with Fig.10 As shown, fasteners 240 are provided on both sides of the base 221 along the second direction, wherein the second direction intersects with the first direction.

[0077] The second direction in this embodiment is as follows Fig.10 In the Y-axis direction, the included angle between the Y-axis and the X-axis can be 85°, 90°, etc. This embodiment is described by taking the Y-axis and the X-axis as being perpendicular to each other.

[0078] In this embodiment, two or three fasteners 240 can be provided on both sides of the base 221 along the Y-axis direction. In this way, when the pressure plate 211 is installed on the base 221, each fastener 240 is driven to rotate around the X-axis direction, so that each fastener 240 is crimped on the side of the pressure plate 211 away from the base 221, so that the pressure plate 211 and the base 221 can be tightly fitted together, thereby improving the sealing between the pressure plate 211 and the base 221.

[0079] In some embodiments, Fig.10 As shown, the fastener 240 includes a fixed seat 241, a first connecting rod 242, a threaded section 243 and a first rotating member 244; wherein the fixed seat 241 is arranged on the outside of the base 221, one end of the first connecting rod 242 is connected to the fixed seat 241, and the other end is connected to the threaded section 243, and the first rotating member 244 is rotatably connected to the threaded section 243; when the first rotating member 244 rotates relative to the threaded section 243, the end of the first rotating member 244 facing the threaded section 243 can be crimped to the pressure plate 211.

[0080] refer to Fig.11 Combined with Fig.10 As shown, in this embodiment, second extension portions 2212 are provided on both sides of the base 221 along the Y-axis direction, each fixing seat 241 is connected to the upper surface of the second extension portion 2212 by bolts, one end of the first connecting rod 242 can be connected to the fixing seat 241 by a pin shaft and bolts, the other end of the first connecting rod 242 is integrally formed with the threaded section 243, and the first rotating member 244 and the threaded section 243 are rotated by threaded cooperation.

[0081] When the first rotating member 244 rotates around the X-axis direction, the first rotating member 244 can extend into or out of the threaded section 243. In this way, when the pressure plate 211 is connected to the base 221, the first rotating member 244 is rotated and the first rotating member 244 moves toward the pressure plate 211 until the first rotating member 244 abuts against the pressure plate 211. At this time, under the pressure of the first rotating member 244, the pressure plate 211 and the base 221 can be fastened together, thereby improving the sealing between the pressure plate 211 and the base 221.

[0082] It should be noted that the structure of the above fastener is only an example. In other alternative solutions, other structures can also be used. For example, the fastener is a structure such as a cylinder, and the cylinder drives the pressure plate to move toward the base. This application does not impose any special restrictions on the specific structure of the fastener, as long as the above structure can achieve the purpose of this application.

[0083] like Figure 5 Combined with Figure 6As shown, the pressure plate 211 is provided with a first extension portion 2114 on both sides along the second direction, and a notch 21141 is provided on the first extension portion 2114. The end of the threaded segment 243 away from the first connecting rod 242 passes through the notch 21141 and is connected to the first rotating member 244; at the same time, the end of the first rotating member 244 facing the threaded segment 243 abuts against the periphery of the notch 21141.

[0084] The second direction in this embodiment can refer to the above description and will not be repeated here.

[0085] In this embodiment, the first extension portion 2114 is integrally formed with the pressing plate 211. Fig.12 , Fig.13 As shown, in this embodiment, a fixing plate 260 is connected to the first extension portion 2114 by bolts, and a notch is correspondingly provided on the fixing plate 260. The end of the threaded section 243 away from the first connecting rod 242 passes through the notch 21141 on the first extension portion 2114 and the notch on the fixing plate 260 and is connected to the first rotating member 244.

[0086] When the pressing plate 211 and the base 221 need to be fastened, the first rotating member 244 is rotated, such as Fig.13 As shown, one end of the first rotating member 244 facing the fixing plate 260 abuts against the fixing plate 260. At this time, the first rotating member 244 applies downward pressure to the fixing plate 260, so that the pressing plate 211 and the base 221 can be closely fitted together.

[0087] In some embodiments, Fig.14 As shown, the first connecting rod 242 can rotate relative to the fixing seat 241 around a third direction, wherein the third direction is perpendicular to a plane formed by the first direction and the second direction.

[0088] The third direction in this embodiment is as follows Fig.14 The Z-axis direction is perpendicular to the plane formed by the X-axis and the Y-axis.

[0089] In this embodiment, the first connecting rod 242 can be connected to the fixing seat 241 through a pin shaft, a bearing seat and other structures. The specific structure can be determined according to actual conditions, and this embodiment of the specification does not limit this.

[0090] refer to Fig.14As shown, when the first connecting rod 242 is connected to the fixing seat 241, the first connecting rod 242 can rotate around the Z axis relative to the fixing seat 241. In this way, the first rotating member 244 and the threaded section 243 drive the first connecting rod 242 to rotate around the Z axis, so that the first rotating member 244 and the pressing plate 211 are in a parallel state. At this time, the fastener 240 is in a parallel state with the base 221 as a whole, and there is no shielding component above the base 221, so that it is convenient to place the pressing plate 211 on the base 221, or to transfer the pressing plate 211 from the base 221.

[0091] In some embodiments, Fig.11 As shown, an inner cavity 2211 is disposed on the base 221 , and a sealing assembly 270 is slidably disposed in the inner cavity 2211 . The sealing assembly 270 can be moved closer to or farther from the carrier body 223 .

[0092] The sealing component 270 in this embodiment is slidably connected in the inner cavity 2211 along the Y-axis direction. By driving the sealing component 270 close to the carrier body 223, the circumferential side of the electronic device 100 can be sealed. By driving the sealing component 270 away from the carrier body 223, the sealing component 270 is separated from the electronic device 100 on the carrier body 223. At this time, the electronic device 100 can be removed from the carrier body 223.

[0093] In some embodiments, Fig.15 Combined with Fig.16 , Fig.17 , Fig.18 , Fig.19 The sealing assembly 270 includes a sealing block 271, a second rotating member 272, a second connecting rod 273 and a connecting plate 275, wherein the connecting plate 275 is fixed to the outer side of the base 221 along the second direction, the sealing block 271 is located in the inner cavity 2211, and the second rotating member 272 is located on the outer side of the base 221; one end of the second connecting rod 273 is connected to the second rotating member 272, and the other end passes through the connecting plate 275 and the base 221 to be connected to the sealing block 271; the second rotating member 272 can rotate around the third direction relative to the second connecting rod 273 to drive the sealing block 271 to approach or move away from the carrier body 223.

[0094] The third direction in this embodiment can refer to the above description and will not be repeated here.

[0095] In this embodiment, the second rotating member 272 and the second connecting rod 273 are connected by a pin shaft 274, and the second rotating member 272 can rotate around the axial direction of the pin shaft 274. The connecting plate 275 is fixed to the outer side of the base 221 along the Y-axis direction by bolts. The sealing block 271 is located in the inner cavity 2211, and the second rotating member 272 is located on the outer side of the base 221. The second connecting rod 273 passes through the connecting plate 275 and the base 221 to be connected with the sealing block 271.

[0096] refer to Fig.18 As shown, in this embodiment, a mounting hole 2714 is provided on the sealing block 271 along the vertical direction, referring to Fig.17 Combined with Fig.18 , Fig.19 As shown, a clamping groove 2715 is provided on the bottom surface of the sealing block 271 on the side facing the connecting plate 275 , wherein the mounting hole 2714 is communicated with the clamping groove 2715 .

[0097] When the second connecting rod 273 passes through the connecting plate 275 and the base 221 and extends into the corresponding slot 2715, at this time, the second connecting rod 273 is connected to the second connecting rod 273 located in the slot 2715 through the connecting piece 276, that is, the bolt passes through the corresponding mounting hole 2714, so that the second connecting rod 273 can be connected to the sealing block 271 together.

[0098] It should be noted that the structure of the above sealing assembly is only an example. In other alternative solutions, other structures may also be adopted. For example, the sealing assembly further includes an elastic sealing pad, which is arranged on the sealing block. The present application does not impose any special restrictions on the specific structure of the sealing assembly, as long as the above structure can achieve the purpose of the present application.

[0099] refer to Fig.14 and Fig.15 As shown, in this embodiment, by driving the second rotating member 272 to rotate around the Z-axis direction, the sealing block 271 can be easily driven to move closer to or away from the carrier body 223 , so that the sealing block 271 can seal the electronic equipment on the carrier body 223 .

[0100] like Fig. 20 As shown, the distance between the second rotating member 272 and the connecting plate 275 along the second direction is H, and the rotation radius of the second rotating member 272 relative to the second connecting rod 273 is R, wherein R>H.

[0101] The second direction in this embodiment can refer to the above description and will not be repeated here.

[0102] refer to Fig. 20As shown, when the second rotating member 272 rotates counterclockwise around the pin shaft 274, since R>H, at this time, the second rotating member 272 will abut against the connecting plate 275 toward the side of the second rotating member 272. When the second rotating member 272 continues to rotate, the second rotating member 272 will drive the second connecting rod 273 to extend outward. At this time, the second connecting rod 273 will drive the sealing block 271 to move away from the carrier body 223, and vice versa.

[0103] In some embodiments, reference Fig. 20 As shown, an arc portion 2721 is provided on the second rotating member 272 , and the arc portion 2721 is located at the intersection of a side of the second rotating member 272 facing the connecting plate 275 and a side of the second rotating member 272 facing the base 221 .

[0104] Since R>H, when the second rotating member 272 rotates counterclockwise around the pin shaft 274 and abuts against the connecting plate 275 facing the second rotating member 272, the arc portion 2721 can prevent the second rotating member 272 and the connecting plate 275 from getting stuck when abutting against each other.

[0105] In some embodiments, Fig.21 As shown, the sealing assembly 270 further includes a guide block 277 , which is disposed between the sealing block 271 and the base 221 and is used to limit the movement of the sealing block 271 along the second direction.

[0106] The second direction in this embodiment can refer to the above description and will not be repeated here.

[0107] The guide block 277 in this embodiment extends along the Y-axis direction.

[0108] like Fig.21 Combined with Fig. 22 As shown, in this embodiment, a first limiting groove 2215 is provided on the inner bottom surface of the base 221, and a second limiting groove 2713 is provided on the side of the sealing block 271 facing the inner bottom surface of the base 221. The guide block 277 can be fixed in the first limiting groove 2215 by bolts. When the sealing block 271 is located on the inner bottom surface of the base 221, the second limiting groove 2713 on the sealing block 271 cooperates with the guide block 277.

[0109] In this way, when the second rotating member 272 drives the sealing block 271 to move through the second connecting rod 273, the sealing block 271 can only move along the Y-axis direction under the limitation of the guide block 277, thereby preventing the sealing block 271 from shaking during movement.

[0110] like Fig.23 Combined with Fig.24As shown, the sealing assembly 270 also includes a third sealing ring 278, a first through hole 2214 is provided on the side of the base 221 along the second direction, a placement groove 2216 is provided inside the first through hole 2214, and the third sealing ring 278 is arranged in the placement groove 2216; at the same time, a fourth protrusion 2752 is provided on the side of the connecting plate 275 facing the base 221, the fourth protrusion 2752 abuts against the third sealing ring 278, and the second connecting rod 273 passes through the connecting plate 275, the fourth protrusion 2752, and the first through hole 2214 to be connected to the sealing block 271.

[0111] The second direction in this embodiment can refer to the above description and will not be repeated here.

[0112] In this embodiment, when the fourth protrusion 2752 extends into the first through hole 2214, the fourth protrusion 2752 abuts against the corresponding third sealing ring 278, so that after the connecting plate 275 is connected to the base 221, the sealing between the connecting plate 275 and the base 221 can be improved.

[0113] like Fig.25 Combined with Fig.24 As shown, the sealing assembly 270 also includes at least one fourth sealing ring 279, a second through hole 2751 is provided on the connecting plate 275 along the second direction, and the fourth sealing ring 279 is provided in the second through hole 2751; the second connecting rod 273 passes through the second through hole 2751, and the fourth sealing ring 279 is sleeved on the second connecting rod 273.

[0114] In this embodiment, one, two, or more fourth sealing rings 279 may be provided in the second through hole 2751 , and the specific number may be determined based on actual conditions, and this specification does not limit this.

[0115] When in use, after the second connecting rod 273 passes through the second through hole 2751 , the fourth sealing ring 279 is sleeved on the second connecting rod 273 , so that the sealing between the connecting plate 275 and the second connecting rod 273 can be improved.

[0116] In some embodiments, Fig.21 As shown, a third protrusion 2711 is disposed on one side of the sealing block 271 facing the carrier body 223 .

[0117] In this embodiment, one, two, three or more third protrusions 2711 may be provided on the side of the sealing block 271 facing the carrier body 223 . The specific number may be determined based on actual conditions and is not limited in this embodiment of the specification.

[0118] The third protrusion 2711 in this embodiment is integrally formed with the sealing block 271 , and the position of the third protrusion 2711 corresponds to the position of the hole on the circumferential side of the electronic device.

[0119] The third protrusion 2711 in this embodiment can be made of rubber, elastic fiber, etc., so that when the third protrusion 2711 seals the corresponding hole, the third protrusion 2711 is in flexible contact with the circumferential side of the electronic device to avoid squeezing damage to the circumferential side of the electronic device.

[0120] In this embodiment, the third protrusion 2711 is provided to facilitate sealing of the hole on the side of the electronic device.

[0121] In some embodiments, Fig.26 Combined with Fig. 27 As shown, the detection device further includes an elastic member 280 , which is disposed between a side of the sealing block 271 facing the inner wall of the base 221 and the inner wall of the base 221 .

[0122] The present embodiment may include one, two, or the like elastic members 280 , which may be determined based on actual conditions, and the present specification does not limit this.

[0123] The elastic member 280 in this embodiment may refer to a member that may be deformed under the action of an external force and return to its original shape after the external force is removed. The elastic member 280 may be elastically compressed in the Y direction. The elastic member 280 may be made of metal or non-metallic material, such as a leaf spring, a coil spring, a gas spring, a rubber spring, etc. The specific material may be determined based on actual conditions, and this specification does not limit this.

[0124] During use, when the second rotating member 272 drives the second connecting rod 273 to extend outward, the sealing block 271 will compress the elastic member 280 and move away from the carrier body 223; when the second rotating member 272 drives the second connecting rod 273 to move in the opposite direction, the elastic member 280 rebounds and blocks between the sealing block 271 and the inner wall of the base 221. At this time, under the action of the elastic force of the elastic member 280, the sealing block 271 can be in close contact with the circumferential side of the electronic equipment on the carrier body 223, thereby improving the sealing effect of the sealing block 271.

[0125] like Fig.21 As shown, a blind hole 2712 is provided on one side of the sealing block 271 facing the inner wall of the base 221, and one end of the elastic member 280 facing the sealing block 271 is located in the blind hole 2712. In this way, it is convenient to fix one end of the elastic member 280 in the sealing block 271. Of course, it is understandable that the end of the elastic member 280 facing the sealing block 271 can also be clamped on the sealing block 271, which is not limited here.

[0126] The detection device further includes a first driving member (not shown in the figure), which is disposed on the base 221 and connected to the sealing assembly 270 to drive the sealing assembly 270 to move closer to or away from the carrier body 223 .

[0127] The specific structure of the sealing assembly 270 in this embodiment can be referred to the above description and will not be repeated here.

[0128] The first driving member in this embodiment can be a cylinder, an electric telescopic rod, etc., which can be specifically determined according to actual conditions, and the embodiments of this specification do not limit this.

[0129] In this embodiment, a first driving member is disposed on the base 221 , thereby facilitating driving the sealing assembly 270 to move closer to or away from the carrier body 223 .

[0130] like Fig.28 As shown, the bearing seat 220 further includes a second sealing ring 222, and the second sealing ring 222 is arranged between the base 221 and the pressing plate 211. In this way, the sealing between the base 221 and the pressing plate 211 can be improved.

[0131] like Fig. 22 As shown, a third groove 2213 is provided on one side of the base 221 facing the pressing plate 211 , and the second sealing ring 222 is at least partially located in the third groove 2213 .

[0132] In this embodiment, when the second sealing ring 222 is located in the third groove 2213 and the pressing plate 211 is connected to the base 221 , the side of the pressing plate 211 facing the base 221 abuts against the second sealing ring 222 , thereby improving the sealing between the base 221 and the pressing plate 211 .

[0133] In some embodiments, Figure 4 As shown, the detection device further includes a positioning pin 250 , which is disposed between the base 221 and the pressing plate 211 .

[0134] The present embodiment may include one, two, or the like positioning pins 250 , which may be determined based on actual conditions, and the present specification does not limit this.

[0135] The positioning pin 250 in this embodiment can be clamped between the base 221 and the pressure plate 211. When the pressure plate 211 needs to be connected to the base 221, the positioning pin 250 is fixed to the base 221, and then the pressure plate 211 is clamped into the corresponding positioning pin 250. In this way, it can ensure that the pressure plate 211 and the base 221 are accurately aligned.

[0136] like Figure 5 Combined with Fig. 22 As shown, a first positioning hole 2115 is provided on the pressing plate 211 , a second positioning hole 22121 is provided on the base 221 , and one end of the positioning pin 250 is located in the first positioning hole 2115 , and the other end is located in the second positioning hole 22121 .

[0137] In this embodiment, second extension portions 2212 are provided on both sides of the base 221 along the Y-axis direction, second positioning holes 22121 are provided on the second extension portions 2212 , and the positioning pins 250 are fixed on the second extension portions 2212 through the second positioning holes 22121 .

[0138] When the pressure plate 211 needs to be connected to the base 221, first fix the positioning pin 250 into the second positioning hole 22121, and then align the first positioning hole 2115 on the pressure plate 211 with the positioning pin 250 and insert it into the positioning pin 250. In this way, the pressure plate 211 and the base 221 can be accurately aligned.

[0139] In some embodiments, Fig.26 The supporting seat 220 further includes a positioning block 224 . The positioning block 224 is disposed in the inner cavity 2211 on the base 221 , and the positioning block 224 is located around the carrier body 223 for positioning the electronic device.

[0140] In this embodiment, one, two, or other positioning blocks 224 may be included, which may be determined based on actual conditions, and this specification does not limit this.

[0141] The positioning block 224 in this embodiment can be fixed to the bottom wall of the inner cavity 2211 on the base 221 by bolts, and multiple positioning blocks 224 are distributed correspondingly around the carrier body 223. In this way, when the electronic device 100 is placed in the carrier body 223, the positioning of the positioning block 224 can fix the electronic device 100 in the carrier body 223 according to a preset position, thereby preventing the electronic device 100 from shaking in the carrier body 223.

[0142] In some embodiments, Fig.26 As shown, the bearing seat 220 further includes a limiting block 225 , which is disposed on the outer side of the base 221 and is used to limit the pressing plate 211 .

[0143] This embodiment may include one or two limit blocks 225 , which may be specifically determined based on actual conditions, and the embodiments of this specification do not limit this.

[0144] The limit block 225 in this embodiment is connected to the outer side of the base 221 by bolts. When the pressure plate 211 is connected to the base 221, the side of the pressure plate 211 contacts the limit block 225. Under the limitation of the limit block 225, the pressure plate 211 is prevented from shaking relative to the base 221.

[0145] In some embodiments, Fig.29 As shown, a support block 2231 is disposed on one side of the carrier body 223 facing the pressing plate 211 .

[0146] The support block 2231 in this embodiment can be integrally formed with the carrier body 223, or the support block 2231 is connected to the side of the carrier body 223 facing the pressure plate 211 by bolts. The specific method can be determined according to actual conditions and is not limited in this embodiment of the present specification.

[0147] When the electronic device 100 is placed into the carrier body 223 , the side of the electronic device 100 facing the carrier body 223 contacts the support block 2231 , so that a hollow state between the electronic device 100 and the carrier body 223 can be avoided.

[0148] In some embodiments, Fig.29 Combined with Fig.30 As shown, a second protrusion 2232 is disposed around the carrier body 223, and a side wall 22321 on the second protrusion 2232 and a side of the carrier body 223 facing the pressure plate 211 are formed into a concave structure; at the same time, the side wall 22321 is inclined outward relative to the side of the carrier body 223 facing the pressure plate 211.

[0149] In this embodiment, the side wall 22321 on the second protruding portion 2232 and the side of the carrier body 223 facing the pressure plate 211 are arranged to form a concave structure, and the side wall 22321 is inclined outwardly relative to the side of the carrier body 223 facing the pressure plate 211. Fig.30 As shown, the opening size of the concave structure gradually decreases from top to bottom. In this way, it is convenient to put the electronic device 100 into the concave structure from top to bottom, and avoid the side of the electronic device 100 from colliding with the side wall 22321.

[0150] In some embodiments, Fig. 22 As shown, the detection device further includes an air pipe connector 230 , which is disposed on the outside of the base 221 , and the air pipe connector 230 is configured to connect the outside with the sealed cavity.

[0151] The air pipe connector 230 in this embodiment is connected to the base 221 by threaded fitting. When it is necessary to inject gas into the sealed cavity, it is only necessary to connect the corresponding air pipe to the air pipe connector 230 .

[0152] The detection device further includes a second driving member (not shown in the figure), which is connected to the pressing plate 211 and is used to drive the pressing plate 211 to move closer to or farther from the base 221 .

[0153] The second driving member in this embodiment can be a cylinder, an electric telescopic rod, etc., which can be determined according to actual conditions, and the embodiments of this specification do not limit this.

[0154] In this embodiment, the second driving member is connected to the pressing plate 211 , thereby conveniently driving the pressing plate 211 to move toward the base 221 .

[0155] The present application also provides a glue filling device, including a detection device as described in any one of the embodiments of the present application.

[0156] The glue filling device in this embodiment can be a potting glue injector, an automatic glue filling device, etc., which can be specifically determined according to actual conditions, and the embodiments of this specification do not limit this.

[0157] The specific structure of the detection device in this embodiment refers to the above embodiment. Since all the technical solutions of all the above embodiments are adopted in the glue repair device, it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be described one by one here.

[0158] In this embodiment, when the inner screen side 11 on the electronic device 100 faces the supporting seat 220, the pressure plate 211 is connected to the base 221. At the same time, the first rotating member 244 rotates relative to the threaded section 243 so that the first rotating member 244 is pressed low on the side of the pressure plate 211 away from the base 221. At this time, the pressure plate 211 and the base 221 are in a sealed state.

[0159] Then the second rotating member 272 is driven to rotate around the Z-axis direction. The second rotating member 272 drives the sealing block 271 to approach the carrier body 223 through the second connecting rod 273 so that the sealing block 271 seals the holes of the electronic device on the carrier body 223 around the circumference.

[0160] With the cooperation of the pressing plate 211, the base 221 and the sealing plate 213, the inner screen side 11 of the electronic device 100 can be placed in a sealed environment as a whole. At the same time, the devices on the battery cover side 12 of the electronic device 100 are exposed to the outside through the first through groove 2111 and the third through groove 2131, and the devices on the outer screen side 13 are exposed to the outside through the second through groove 2112 and the fourth through groove 2132. At this time, air is inflated into the sealed cavity, and the air pressure in the sealed cavity is greater than the external atmospheric pressure. Fluorinated liquid is poured into the corresponding through groove. When there is a leak at the device, bubbles will be generated, so that it can be quickly identified whether the airtightness at the device is good, which brings convenience to the detection.

[0161] After the leakage point at the device is identified, the gas in the sealed cavity is extracted. The air pressure in the sealed cavity is lower than the external atmospheric pressure. Then, the glue filling device is used to fill the leakage point. The glue filling glue is sucked into the negative pressure to achieve the filling.

[0162] In some embodiments, the glue filling device also includes a visual inspection module and a robotic arm, and the visual inspection module is disposed on the robotic arm.

[0163] The visual detection module in this embodiment can be a camera, a CCD camera, etc., which can be determined according to actual conditions, and the embodiments of this specification do not limit this.

[0164] In this embodiment, a visual detection module is arranged on the mechanical arm, and the mechanical arm is used to drive the visual detection module to move, so as to facilitate the discovery of leakage points.

[0165] In the description of the embodiments of the present application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, or it can be an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in the embodiments of the present application can be understood according to specific circumstances.

[0166] The terms "first", "second", "third", "fourth", etc. (if any) in the description and claims of the embodiments of the present application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.

[0167] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of the present application, rather than to limit them. Although the embodiments of the present application have been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein by equivalents. These modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A detection device, characterized in that: include: Clamping assembly; A bearing seat, the bearing seat is connected with the pressing assembly to form a sealed cavity for placing electronic equipment; A sealing component is arranged in the sealing cavity and is used to seal the side of the electronic device around the circumference; when the electronic device is located in the sealing cavity, the clamping component abuts against the electronic device and is used to seal the periphery of the first side of the electronic device, the device on the first side is connected to the outside, and the sealing component seals the side of the electronic device around the circumference.

2. The detection device according to claim 1, characterized in that: The clamping assembly comprises a pressing plate and a sealing plate, wherein the sealing plate is arranged on a side of the pressing plate facing the bearing seat, and the pressing plate and the bearing seat are connected to form the sealing cavity; At least one through groove is provided on the pressure plate and the sealing plate along the first direction. When the electronic device is located in the sealing cavity, the sealing plate abuts against the electronic device to seal the periphery of the first side of the electronic device. The device on the first side is connected to the outside through the through groove, wherein the first direction is the thickness direction of the pressure plate.

3. The detection device according to claim 2, characterized in that: The pressing plate is provided with a first through slot and a second through slot at intervals, and a first pressing rod is provided between the first through slot and the second through slot; The sealing plate is provided with a third through groove and a fourth through groove at intervals, and a second pressure rod is provided between the third through groove and the fourth through groove; The first through slot is connected to the third through slot, the second through slot is connected to the fourth through slot, and the projections of the second pressure rod and the first pressure rod in the first direction overlap; When the electronic device is located in the sealed cavity, the second pressing rod abuts against the electronic device.

4. The detection device according to claim 3, characterized in that: The detection device further includes a fastener, the bearing seat includes a base and a carrier body, the pressing plate is connected to the base to form the sealed cavity, and the carrier body is arranged in the sealed cavity for placing the electronic device; The fastener is arranged outside the base, and the fastener can rotate relative to the base around a first direction. The pressing plate is arranged on the base, and the fastener presses a side of the pressing plate away from the base.

5. The detection device according to claim 4, characterized in that: The fastener comprises a fixing seat, a first connecting rod, a threaded section and a first rotating member; The fixing seat is arranged outside the base, one end of the first connecting rod is connected to the fixing seat, and the other end is connected to the threaded section, and the first rotating member is rotatably connected to the threaded section; When the first rotating member rotates relative to the threaded section, one end of the first rotating member facing the threaded section can be pressed against the pressing plate.

6. The detection device according to claim 5, characterized in that: The first connecting rod can rotate relative to the fixing seat around a third direction, wherein the third direction is perpendicular to a plane formed by the first direction and the second direction.

7. The detection device according to claim 4, characterized in that: The base is provided with an inner cavity, the sealing component is slidably disposed in the inner cavity, and the sealing component can be close to or away from the carrier body.

8. The detection device according to claim 7, characterized in that: The sealing assembly includes a sealing block, a second rotating member, a second connecting rod and a connecting plate; The connecting plate is fixed to the outer side of the base along the second direction, the sealing block is located in the inner cavity, and the second rotating member is located on the outer side of the base; one end of the second connecting rod is connected to the second rotating member, and the other end passes through the connecting plate, the base and is connected to the sealing block; The second rotating member can rotate relative to the second connecting rod around a third direction to drive the sealing block to approach or move away from the carrier body.

9. The detection device according to claim 8, characterized in that: The second rotating member is provided with an arc portion, and the arc portion is located at the intersection of a side of the second rotating member facing the connecting plate and a side of the second rotating member facing the base.

10. The detection device according to claim 8, characterized in that: The sealing assembly further includes a guide block, which is disposed between the sealing block and the base and is used to limit the sealing block to move along a second direction.

11. The detection device according to claim 8, characterized in that: A third protrusion is disposed on one side of the sealing block facing the carrier body.

12. The detection device according to claim 8, characterized in that: The detection device further comprises an elastic member, and the elastic member is arranged between a side of the sealing block facing the inner wall of the base and the inner wall of the base.

13. The detection device according to claim 4, characterized in that: The detection device also includes a positioning pin, and the positioning pin is arranged between the base and the pressure plate.

14. The detection device according to claim 4, characterized in that: The supporting seat further comprises a positioning block, which is arranged in the inner cavity of the base and is located at the periphery of the carrier body for positioning the electronic device.

15. The detection device according to claim 4, characterized in that: The bearing seat further comprises a limit block, which is arranged on the outer side of the base and is used to limit the pressure plate.

16. The detection device according to claim 4, characterized in that: A support block is arranged on one side of the carrier body facing the pressing plate.

17. The detection device according to claim 15, characterized in that: A second protrusion is disposed around the periphery of the carrier body, and a side wall on the second protrusion and a side of the carrier body facing the pressure plate are arranged to form a concave structure; The side wall is inclined outwardly relative to a side of the carrier body toward the pressing plate.

18. The detection device according to claim 4, characterized in that: The detection device further comprises an air pipe joint, which is arranged on the outside of the base and is configured to connect the outside with the sealed cavity.

19. A glue filling device, characterized in that: Comprising a detection device as described in any one of claims 1 to 18.

20. The glue filling device according to claim 19, characterized in that: The glue filling device also includes a visual detection module and a mechanical arm, and the visual detection module is arranged on the mechanical arm.

Citation Information

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