Integrated detection device of portable hot melting welding machine

By designing a portable hot welder integrated detection device, the tool limit protection in the tool box is achieved by combining multiple components, solving the problem of manual handling of existing detectors and easy tool damage, and improving the safety and convenience of inspection.

CN120095770AInactive Publication Date: 2025-06-06SHANGHAI HAIJIAO MECHANICAL & ELECTRICAL ENG CO LTD
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Patent Information

Application Number
CN202510319881.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing hot welder detectors are usually bench-top equipment and require manual handling, which increases the labor intensity of workers and the risk of equipment damage. At the same time, auxiliary tools are easily lost or damaged during the handling process.

Method used

A portable hot welder integrated detection device is designed, including a box, a door panel, a detection device, a tool box, a rotating rod, an unwinding box, a strap and a binding assembly. Through the cooperation of screw rods, fixing frames, movable plates, plug buckles, fixing buckles and other components, the limit protection of the tool in the tool box is achieved by the strap to prevent the tool from shaking greatly during movement.

Benefits of technology

It realizes the protection of tools from damage during the movement process, simplifies the inspection process, reduces the labor intensity of operators, and improves the safety and convenience of inspection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of detectors, in particular to a portable hot melting welding machine integrated detection device which comprises a box body, and a space is formed in the box body and used for containing equipment. The plurality of detection devices are arranged in the box body; the tool box is arranged in the box body in a sliding manner and is positioned below the detection device; the rotating rod movably penetrates through one side of the tool box, is rotationally connected with the inner wall of the box body and is in threaded fit connection with the tool box; one end of the bandage is movably wound in the unwinding box, and the other end of the bandage is located on the outer side of the unwinding box; and the binding assembly is arranged in the tool box and used for driving the binding band located on the outer side of the unwinding box to move. According to the portable integrated detector of the hot melting welding machine, through cooperation of the lead screw, the fixed frame, the movable plate, the inserting buckle, the fixed buckle and other parts, limiting protection of the binding band on tools in the tool box is achieved, and the situation that the tools shake greatly in the moving process of the box body and are damaged is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of detectors, and in particular to an integrated detection device for a portable hot-melt welding machine. Background Art

[0002] The hot melt welding machine detector is a device used to detect the performance of the hot melt welding machine and the welding quality. The detection contents include: temperature detection, time detection, pressure detection, etc., and various sensors are used to sense the working status of the hot melt welding machine and the changes in physical quantities during the welding process. For example, the temperature sensor uses the principle of thermocouple or thermal resistor to convert the temperature signal into an electrical signal; the pressure sensor converts the pressure change into a measurable electrical signal through strain gauges or piezoelectric effect.

[0003] Normally, the detector is a desktop device. When the performance of the hot melt welder needs to be tested, the device will be transported to the side of the hot melt welder. If the device is small, it can be manually carried and placed on the side of the welder. After use, it will be carried back. The back and forth transportation increases the labor intensity of the workers. Secondly, the risk of damage to the equipment during transportation also increases. In addition, a variety of auxiliary tools are also used during the use of the equipment, such as connecting cables. There is also a risk of loss or collision damage of cables during manual transportation. Summary of the invention

[0004] Based on this, it is necessary to provide a portable integrated detection device for hot melt welding machines that can easily detect the welding machine and ensure that the auxiliary tools are not damaged in order to solve the above technical problems.

[0005] The present invention provides a portable integrated detection device for hot melt welding machines, comprising:

[0006] A box body, which has a space inside for placing equipment;

[0007] A door panel, movably mounted on one side of the box body;

[0008] A plurality of detection devices are provided and installed inside the box;

[0009] A tool box, slidably disposed in the box and located below the detection device;

[0010] A rotating rod, movably passing through one side of the tool box and being rotatably connected to the inner wall of the box body, and being threadably connected to the tool box;

[0011] An unwinding box is fixedly arranged on one side of the tool box, and a plurality of unwinding boxes are arranged;

[0012] A binding belt, one end of which is movably wound in the unwinding box and the other end of which is located outside the unwinding box;

[0013] The binding assembly is arranged in the tool box and is used to drive the binding belt located outside the unwinding box to move.

[0014] In one of the embodiments, the binding assembly includes a buckle, one end of the buckle is fixedly connected to the strap, a movable plate is fixedly provided on the top of the buckle, a fixing buckle is fixedly provided on one end of the tool box away from the unwinding box, the number of the fixing buckles is the same as the number of the buckles, and slots are axially symmetrically provided on both sides of the fixing buckle, and the buckle is movably connected to the fixing buckle and movably engaged with the slots.

[0015] In one embodiment, a fixed frame is provided on the outer side of the movable plate, a vertical slot is provided in the fixed frame, the movable plate is slidably connected to the vertical slot, and a plurality of positioning springs are fixedly provided between the top of the movable plate and the inner wall of the vertical slot.

[0016] In one embodiment, a limiting groove is provided on one side of the tool box, a limiting rod is fixedly provided on a side of the movable plate close to the limiting groove, and an end of the limiting rod away from the movable plate is slidably fitted in the limiting groove.

[0017] In one of the embodiments, the limiting groove is composed of straight groove sections at both ends and two inclined groove sections in the middle. When the limiting rod is located in the straight groove section, the height of the fixing buckle is the same as the height of the insertion buckle.

[0018] In one of the embodiments, a movable groove is provided on one side of the box body, a groove is provided on the tool box, a screw rod is movably provided on the fixed frame, one end of the screw rod rotates with the inner wall of the tool box, and the other end movably passes through the inner wall of the groove, a cross bar is rotatably provided in the groove, one end of the cross bar movably passes through the inner wall of the groove and a driving gear is fixedly provided at the end, the driving gear is slidably connected to the movable groove, a driving rack is fixedly provided in the movable groove, the driving gear is meshed with the driving rack for transmission, a bevel gear is fixedly provided at one end of the screw rod and the cross bar close to each other, and the two bevel gears are meshed with each other for transmission.

[0019] In one embodiment, the tool box is provided with a transverse groove at one end near the fixing buckle, and a plurality of extrusion frames are slidably arranged in the transverse groove, two of the extrusion frames form a group, the number of the extrusion frames is the same as the number of the fixing buckles, and the extrusion frames are movably connected to the card slot.

[0020] In one embodiment, the tool box is provided with a notch on one side of the transverse groove, the notch is communicated with the transverse groove, a round rod is rotatably arranged in the notch, and one end of a single group of extrusion frames away from the fixing buckle is threadedly adapted to be connected to the round rod, and the two threads have opposite rotation directions.

[0021] In one of the embodiments, one end of the round rod movably passes through the inner wall of the slot and a positioning gear is fixedly provided at the end. A sliding groove is provided at one end of the box body close to the positioning gear, a positioning rack is fixedly provided in the sliding groove, and the positioning gear meshes with the positioning rack for transmission.

[0022] In one of the embodiments, the box body is provided with a movable groove above the sliding groove, and a buckle is fixedly provided at one end of the tool box close to the movable groove. The buckle is slidably connected to the movable groove, and the buckle is movably engaged with one side of the door panel in the open state.

[0023] The above-mentioned portable integrated detection device for hot-melt welding machines realizes the limiting protection of tools in the tool box by the binding straps through the cooperation of multiple components such as the screw rod, the fixed frame, the movable plate, the plug buckle, the fixed buckle, etc., so as to prevent the tools from shaking drastically during the movement of the box and thus causing damage; through the cooperation of multiple components such as the limiting rod, the movable plate, the limiting groove, etc., the binding straps can perform limiting protection on tools of different sizes; through the cooperation of multiple components such as the round rod and the extrusion frame, the binding straps will not bind the tools after the tool box is moved to the outside of the box, so as to facilitate the removal of the tools, and the tools will be bound after the tool box is moved into the box, so as to prevent the tools from shaking drastically and causing damage. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the technical solutions in the present invention or the prior art, a brief introduction is 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 invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0025] Figure 1 It is a schematic diagram of the structure in which the tool box is moved to the outside of the box body in the present invention;

[0026] Figure 2 for Figure 1 The enlarged schematic diagram of part A in the middle;

[0027] Figure 3 It is a schematic diagram of the structure of the present invention from another perspective;

[0028] Figure 4 for Figure 3 The enlarged schematic diagram of part B in the middle;

[0029] Figure 5 It is a front view of the overall structure of the present invention;

[0030] Figure 6 It is a schematic diagram of the internal structure of the box body in the present invention;

[0031] Figure 7 It is a structural schematic diagram of the bundling component in the present invention;

[0032] Figure 8 It is a structural schematic diagram of the fixing frame in the present invention;

[0033] Fig. 9 It is a schematic structural diagram of the positioning spring in the present invention.

[0034] Reference numerals:

[0035] 1. Box body; 101. Moving slot; 102. Sliding slot; 103. Movable slot; 2. Door panel; 3. Detection device; 4. Tool box; 41. Limiting slot; 42. Groove; 43. Horizontal slot; 44. Notch; 5. Rotating rod; 6. Unwinding box; 7. Binding strap; 8. Binding assembly; 81. Buckle; 82. Movable plate; 83. Fixed buckle; 84. Slot; 9. Fixed frame; 91. Vertical slot; 10. Positioning spring; 11. Limiting rod; 12. Screw rod; 13. Horizontal rod; 14. Driving gear; 15. Driving rack; 16. Bevel gear; 17. Extrusion frame; 18. Round rod; 19. Positioning gear; 20. Positioning rack; 21. Buckle. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0037] It should be noted that when a component is referred to as being "fixed to" or "disposed on" another component, it may be directly on the other component or there may be a central component. When a component is considered to be "connected to" another component, it may be directly connected to the other component or there may be a central component at the same time. The terms "vertical", "horizontal", "upper", "lower", "left", "right" and similar expressions used in the specification of the present invention are for illustrative purposes only and do not represent the only implementation method.

[0038] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of the present invention, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.

[0039] In the present invention, unless otherwise clearly specified and limited, a first feature being “above” or “below” a second feature may mean that the first feature is directly in contact with the second feature, or the first feature and the second feature are indirectly in contact through an intermediate medium. Moreover, a first feature being “above”, “above” or “above” a second feature may mean that the first feature is directly above or obliquely above the second feature, or simply means that the first feature is higher in level than the second feature. A first feature being “below”, “below” or “below” a second feature may mean that the first feature is directly below or obliquely below the second feature, or simply means that the first feature is lower in level than the second feature.

[0040] Unless otherwise defined, all technical and scientific terms used in the specification of the present invention have the same meaning as those commonly understood by those skilled in the art of the present invention. The terms used in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used in the specification of the present invention includes any and all combinations of one or more related listed items.

[0041] Combine the following Figure 1-Figure 9 The invention describes a portable integrated detection device for hot melt welding machines.

[0042] like Figure 1-Figure 7 As shown, in one embodiment, it includes a box body 1, a door panel 2, a detection device 3, a tool box 4, a rotating rod 5, a reel box 6, a strap 7 and a binding assembly 8.

[0043] Among them, there are a box body 1, which is provided with a space for placing equipment; a door panel 2, which is movably installed on one side of the box body 1; a detection device 3, which is provided in multiple numbers and is installed inside the box body 1; a tool box 4, which is slidably set in the box body 1 and is located below the detection device 3; a rotating rod 5, which movably passes through one side of the tool box 4 and is rotatably connected to the inner wall of the box body 1, and is threadedly connected to the tool box 4; an unwinding box 6, which is fixedly set on one side of the tool box 4, and is provided in multiple numbers; a strap 7, one end of which is movably wound in the unwinding box 6, and the other end is located on the outside of the unwinding box 6; a binding component 8, which is set in the tool box 4, and is used to drive the strap 7 located on the outside of the unwinding box 6 to move.

[0044] Specifically, a plurality of universal wheels are installed at the bottom of the box body 1, and the universal wheels are used to conveniently push the box body 1 to the vicinity of the welding machine, open the door panel 2, and rotate the rotating rod 5. The rotation of the rotating rod 5 will drive the tool box 4 to move to the outside of the box body 1. The auxiliary tools placed in the tool box 4 are limited by the binding assembly 8 and the strap 7, and will not shake significantly during transportation to cause damage. A spring is provided in the unwinding box 6, which can control the strap 7 to be drawn out of the unwinding box 6 and the drawn strap 7 to re-enter the unwinding box 6, similar to a tape measure. When the tool box 4 moves to the outside of the box 1, the limitation of the auxiliary tools by the binding assembly 8 is released, and the tool box 4 is greatly After partially moving to the outside of the box body 1, the operator can take out the auxiliary tools in the tool box 4, such as connecting cables. The detection device 3 is provided with multiple temperature measuring devices, pressure measuring devices, displacement measuring devices, etc. Different measurement data of the hot melt welding machine can be detected by connecting cables. After the measurement data is measured, a chart can be generated, which is convenient for the operator to observe and count. By integrating the detection device 3 into the box body 1, the detection device 3 can be easily moved without the operator manually lifting the device to move it. It is convenient and fast while also improving safety. The bundling component 8 can also ensure that the tools in the tool box 4 are stable during the movement of the box body 1.

[0045] See also Figure 6-Figure 8 As shown, in this embodiment, the binding component 8 includes a buckle 81, one end of the buckle 81 is fixedly connected to the binding strap 7, a movable plate 82 is fixedly provided on the top of the buckle 81, and a fixing buckle 83 is fixedly provided at one end of the tool box 4 away from the unwinding box 6. The number of the fixing buckles 83 is the same as the number of the buckles 81, and slots 84 are axially symmetrically provided on both sides of the fixing buckles 83. The buckle 81 is movably connected to the fixing buckle 83 and movably engaged with the slots 84.

[0046] Specifically, after the tool box 4 is moved to the outside of the box body 1, the plug buckle 81 and the fixed buckle 83 are not in the plug-in state. At this time, the connecting cables and other tools in the tool box 4 can be taken out. After the inspection is completed, the cables are put back in the center of the tool box 4. The rotation of the rotating rod 5 will drive the tool box 4 to move toward the inside of the box body 1. During this process, the movable plate 82 is moved toward the direction close to the fixed buckle 83. The movement of the movable plate 82 will drive multiple plug buckles 81 to move toward the fixed buckle 83. The plug buckle 81 is made of elastic material. The movement of the plug buckle 81 will drive the strap 7 to move, and the other end of the strap 7 will be drawn out of the unwinding box 6. The strap 7 will move over the tool to limit the tool and ensure that the tool does not shake significantly. Then the buckle 81 will pass through the fixing buckle 83. During this process, both sides of the buckle 81 will be compressed and deformed due to the extrusion of the fixing buckle 83. When the deformed position of the buckle 81 reaches the position of the card slot 84, it will return to its original state and be engaged with the card slot 84. This ensures that the strap 7 can always stably limit the tool for protection. When it is necessary to release the engagement between the buckle 81 and the fixing buckle 83, press both sides of the buckle 81 so that the buckle 81 is no longer engaged with the card slot 84. At this time, the buckle 81 can be pulled out from the fixing buckle 83.

[0047] See also Figure 8 and Fig. 9 As shown, in this embodiment, a fixed frame 9 is movably sleeved on the outer side of the movable plate 82, a vertical slot 91 is opened in the fixed frame 9, the movable plate 82 is slidably connected to the vertical slot 91, and a plurality of positioning springs 10 are fixedly arranged between the top of the movable plate 82 and the inner wall of the vertical slot 91.

[0048] Specifically, the sizes of tools placed in the tool box 4 are large and small. Larger tools can be placed in the middle and smaller tools can be placed on both sides. The initial fixed frame 9, movable plate 82, buckle 81 and strap 7 move horizontally when moving toward the fixed buckle 83. When it is about to reach the middle of the tool box 4, the movable plate 82 is moved upward along the vertical groove 91. The upward movement of the movable plate 82 will drive the strap 7 to move upward, so that the strap 7 can bind higher tools. Then the movable plate 82 moves downward again, so that the strap 7 can bind tools of different sizes. The positioning spring 10 can ensure the stability of the movable plate 82 during the up and down movement.

[0049] See also Figure 6 and Figure 8 As shown, in this embodiment, a limiting groove 41 is provided on one side of the tool box 4, a limiting rod 11 is fixedly provided on the side of the movable plate 82 close to the limiting groove 41, and the limiting rod 11 is slidably fitted with the limiting groove 41 at one end away from the movable plate 82.

[0050] Specifically, when the fixing frame 9 moves toward the fixing buckle 83, the limiting rod 11 slides along the limiting groove 41. The shape design of the limiting groove 41 can limit the moving trajectory of the limiting rod 11, the movable plate 82 and the strap 7, so as to adapt to tools of different sizes.

[0051] See also Figure 6 As shown, in this embodiment, the limiting groove 41 is composed of straight groove sections at both ends and two oblique groove sections in the middle. When the limiting rod 11 is located in the straight groove section, the height of the fixing buckle 83 is the same as the height of the insertion buckle 81.

[0052] Specifically, the movement of the fixed frame 9 will drive the movable plate 82 and the limiting rod 11 to move. The limiting rod 11 will first move along the straight groove section on one side. During this process, the height of the strap 7 and the movable plate 82 remains unchanged. Then the limiting rod 11 moves upward along the inclined groove, and the height of the strap 7 also rises accordingly to adapt to higher-sized tools. Then the limiting rod 11 moves downward along the inclined groove on the other side and moves into the straight groove on the same side. During this process, the strap 7 also descends and maintains horizontal movement. This is to facilitate the alignment of the buckle 81 and the fixed buckle 83 to facilitate the connection between the two.

[0053] See also Figure 4-Figure 6 As shown, in the present embodiment, a movable groove 101 is provided on one side of the box body 1, a groove 42 is provided on the tool box 4, a screw rod 12 is movably provided on the fixed frame 9, one end of the screw rod 12 rotates with the inner wall of the tool box 4, and the other end movably penetrates the inner wall of the groove 42, a cross bar 13 is rotatably provided in the groove 42, one end of the cross bar 13 movably penetrates the inner wall of the groove 42 and a driving gear 14 is fixedly provided at the end, the driving gear 14 is slidably connected with the movable groove 101, a driving rack 15 is fixedly provided in the movable groove 101, the driving gear 14 is meshed with the driving rack 15 for transmission, a bevel gear 16 is fixedly provided at one end of the screw rod 12 and the cross bar 13 close to each other, and the two bevel gears 16 are meshed with each other for transmission.

[0054] Specifically, when the tool is placed in the tool box 4 after use, rotating the rotating rod 5 will drive the tool box 4 to move into the box body 1, and the screw rod 12, cross rod 13, and driving gear 14 will also move inward synchronously. During the movement of the driving gear 14, it will mesh with the driving rack 15 to cause the driving gear 14 and the cross rod 13 to rotate. The rotation of the cross rod 13 will drive the bevel gear 16 to rotate, thereby causing the other bevel gear 16 to rotate accordingly. The rotation of the other bevel gear 16 in the groove 42 will drive the screw rod 12 to rotate. The rotation of the screw rod 12 will drive the fixed frame 9 to move in the direction close to the fixed buckle 83. During the movement of the fixed frame 9, the height adjustment of the binding strap 7 is achieved through the cooperation of the limit rod 11 and the limit groove 41. When the driving gear 14 is no longer meshed with the driving rack 15, the tool box 4 continues to move a certain distance into the box body 1 and then stops moving. At this time, the buckle 81 is plugged into the fixing buckle 83, and the state of the binding strap 7 also remains stable.

[0055] See also Figure 6 and Figure 7 As shown, in this embodiment, a transverse groove 43 is opened at one end of the tool box 4 near the fixing buckle 83, and a plurality of extrusion frames 17 are slidably arranged in the transverse groove 43, two extrusion frames 17 form a group, and the number of groups of extrusion frames 17 is the same as the number of fixing buckles 83, and the extrusion frames 17 are movably connected to the card slot 84.

[0056] Specifically, when the locking connection between the insertion buckle 81 and the fixing buckle 83 needs to be released, the moving extrusion frames 17 are moved closer to each other along the transverse groove 43 . The two extrusion frames 17 move closer to each other and press the two ends of the insertion buckle 81 to deform the two ends and no longer lock with the locking groove 84 .

[0057] See also Figure 6 and Figure 7 As shown, in this embodiment, the tool box 4 is provided with a slot 44 on one side of the transverse slot 43, the slot 44 is connected to the transverse slot 43, a round rod 18 is rotatably arranged in the slot 44, and one end of the single-group extrusion frame 17 away from the fixing buckle 83 is threadedly adapted to the round rod 18, and the two threads have opposite rotation directions.

[0058] Specifically, when it is necessary to release the engagement between the plug buckle 81 and the fixing buckle 83, the round rod 18 is rotated. The rotation of the round rod 18 in the slot 44 will drive the two extrusion frames 17 to approach each other, thereby pressing the two sides of the plug buckle 81, so that the plug buckle 81 and the fixing buckle 83 are released from the engagement, and the plug buckle 81 can be pulled out from the fixing buckle 83.

[0059] See also Figure 5 and Figure 6As shown, in this embodiment, one end of the round rod 18 movably passes through the inner wall of the slot 44 and a positioning gear 19 is fixedly provided at the end. A sliding groove 102 is provided at one end of the box body 1 close to the positioning gear 19. A positioning rack 20 is fixedly provided in the sliding groove 102. The positioning gear 19 is meshed with the positioning rack 20 for transmission.

[0060] Specifically, when the tool is placed in the tool box 4 after use, rotating the rotating rod 5 will drive the tool box 4 to move into the box body 1. At this time, the two extrusion frames 17 are located in the card slots 84, and the driving gear 14 will first mesh with the driving rack 15 to achieve the card connection between the plug buckle 81 and the fixed buckle 83. However, since the extrusion frame 17 is also located in the card slot 84, even if the plug buckle 81 moves into the fixed buckle 83, the two sides of the plug buckle 81 are in a compressed state due to the extrusion effect of the extrusion frame 17. Subsequently, the driving gear 14 is no longer meshed with the driving rack 15, and the tool box 4 continues to move inward for a certain distance. Distance, during this process, the positioning gear 19 will engage with the positioning rack 20 to make the round rod 18 rotate, and the rotation of the round rod 18 will drive the same group of extrusion frames 17 to move away from each other. Due to the loss of the extrusion effect of the extrusion frame 17, the buckle 81 will be engaged with the card slot 84. Similarly, when the tool box 4 is moved from the box body 1 to the outside, the positioning gear 19 will first engage with the positioning rack 20 to make the round rod 18 rotate in the opposite direction so that the same group of extrusion frames 17 are close to each other, thereby releasing the buckle 81 from the card slot 84, and then the buckle 81 and the strap 7 will move in the direction away from the fixing buckle 83 to facilitate the removal of the tool.

[0061] See also Figure 3 and Figure 5-Figure 6 As shown, in this embodiment, a movable groove 103 is provided on the box body 1 above the sliding groove 102, and a buckle 21 is fixedly provided on one end of the tool box 4 near the movable groove 103. The buckle 21 is slidably connected to the movable groove 103, and the buckle 21 is movably engaged with one side of the door panel 2 in the open state.

[0062] Specifically, when the tool box 4 is moved from the box body 1 to the outside, the buckle 21 will be driven to move outward along the movable groove 103. When the tool box 4 stops moving, the buckle 21 just clamps one side of the door panel 2 in the middle, thereby ensuring that the door panel 2 will not shake during the detection process, thereby avoiding affecting the detection process.

[0063] The technical features of the above-described embodiments may be arbitrarily combined. To make the description concise, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0064] The above-described embodiments only express several implementation methods of the present invention, and the description thereof is relatively specific and detailed, but it cannot be understood as limiting the scope of the present invention. It should be pointed out that, for a person of ordinary skill in the art, several modifications and improvements can be made without departing from the concept of the present invention, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the attached claims.

Claims

1. A portable integrated detection device for hot melt welding machine, characterized in that: include: A box body, which has a space inside for placing equipment; A door panel, movably mounted on one side of the box body; A plurality of detection devices are provided and installed inside the box; A tool box, slidably disposed in the box and located below the detection device; A rotating rod, movably passing through one side of the tool box and being rotatably connected to the inner wall of the box body, and being threadably connected to the tool box; An unwinding box is fixedly arranged on one side of the tool box, and a plurality of unwinding boxes are arranged; A binding belt, one end of which is movably wound in the unwinding box and the other end of which is located outside the unwinding box; The binding assembly is arranged in the tool box and is used to drive the binding belt located outside the unwinding box to move.

2. A portable integrated detection device for hot melt welding machine according to claim 1, characterized in that: The binding assembly includes a buckle, one end of the buckle is fixedly connected to the binding strap, a movable plate is fixedly provided on the top of the buckle, a fixing buckle is fixedly provided on the end of the tool box away from the unwinding box, the number of the fixing buckles is the same as the number of the buckles, and slots are axially symmetrically provided on both sides of the fixing buckle, and the buckle is movably connected to the fixing buckle and movably engaged with the slots.

3. A portable integrated detection device for hot melt welding machine according to claim 2, characterized in that: A fixed frame is movably sleeved outside the movable plate, a vertical slot is provided in the fixed frame, the movable plate is slidably connected to the vertical slot, and a plurality of positioning springs are fixedly arranged between the top of the movable plate and the inner wall of the vertical slot.

4. A portable integrated detection device for hot melt welding machine according to claim 3, characterized in that: A limiting groove is provided on one side of the tool box, a limiting rod is fixedly provided on a side of the movable plate close to the limiting groove, and an end of the limiting rod away from the movable plate is slidably fitted in the limiting groove.

5. A portable integrated detection device for hot melt welding machine according to claim 4, characterized in that: The limiting groove is composed of straight groove sections at both ends and two oblique groove sections in the middle. When the limiting rod is located in the straight groove section, the height of the fixing buckle is the same as the height of the inserting buckle.

6. A portable integrated detection device for hot melt welding machine according to claim 3, characterized in that: A movable groove is provided on one side of the box body, a groove is provided on the tool box, a screw rod is movably provided on the fixed frame, one end of the screw rod rotates with the inner wall of the tool box, and the other end movably penetrates the inner wall of the groove, a cross bar is rotatably provided in the groove, one end of the cross bar movably penetrates the inner wall of the groove and a driving gear is fixedly provided at the end, the driving gear is slidably connected with the movable groove, a driving rack is fixedly provided in the movable groove, the driving gear is meshed with the driving rack for transmission, a bevel gear is fixedly provided at one end of the screw rod and the cross bar close to each other, and the two bevel gears are meshed with each other for transmission.

7. A portable integrated detection device for hot melt welding machine according to claim 2, characterized in that: The tool box is provided with a transverse groove at one end close to the fixing buckle, and a plurality of extrusion frames are slidably arranged in the transverse groove, two of the extrusion frames form a group, the number of the extrusion frames is the same as the number of the fixing buckles, and the extrusion frames are movably connected to the card slot.

8. A portable integrated detection device for hot melt welding machine according to claim 7, characterized in that: The tool box is provided with a notch on one side of the transverse groove, the notch is communicated with the transverse groove, a round rod is rotatably arranged in the notch, one end of a single group of the extrusion frame away from the fixing buckle is threadedly adapted and connected to the round rod, and the two threads have opposite rotation directions.

9. A portable integrated detection device for hot melt welding machine according to claim 8, characterized in that: One end of the round rod movably passes through the inner wall of the slot and a positioning gear is fixedly arranged at the end. A sliding groove is opened at one end of the box body close to the positioning gear. A positioning rack is fixedly arranged in the sliding groove. The positioning gear meshes with the positioning rack for transmission.

10. A portable integrated detection device for hot melt welding machine according to claim 9, characterized in that: The box body is provided with a movable groove above the sliding groove, and a buckle is fixedly provided at one end of the tool box close to the movable groove. The buckle is slidably connected to the movable groove, and the buckle is movably connected to one side of the door panel in the open state.