Thickness detection device of temperature-control sleeping bag and detection method thereof
By designing the circulating feeding component and soft support component of the temperature-controlled sleeping bag thickness detection device, the problems of low detection accuracy and low efficiency were solved, enabling multi-point detection and continuous station conversion, thus improving detection accuracy and efficiency.
Patent Information
- Application Number
- CN202511723486.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-21
- Publication Date
- 2026-02-27
AI Technical Summary
Existing testing devices are prone to localized thickness misjudgments by smart sensors when detecting the thickness of sleeping bags due to wrinkles. Furthermore, they mostly perform fixed-point detection, which cannot cover different areas of the sleeping bag, resulting in low detection accuracy. During the detection process, the device must wait for the current sleeping bag to be detected before it can be picked up or put down, leading to long idle time and low detection efficiency.
A thickness detection device for temperature-controlled sleeping bags is adopted, including a detection mechanism and a conveying mechanism. The sleeping bag is transferred and rotated in the detection area through a circulating feeding component. Combined with a soft support component and a hydraulic support component, multi-point detection and continuous station conversion are realized, avoiding the influence of wrinkles and improving detection accuracy and efficiency.
It enables multi-point inspection of sleeping bags, improves inspection accuracy, avoids the influence of wrinkles, and improves inspection efficiency through continuous workstation switching, reducing equipment downtime.
Smart Images

Figure CN121576972A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the thickness detection technical field of sleeping bags, and particularly relates to a thickness detection device and method for temperature-controllable sleeping bags. BACKGROUND
[0002] The thickness of a temperature-controllable sleeping bag is a core index for determining the heat retention performance and temperature control stability of the sleeping bag. If the local thickness is too thin, a heat loss channel is easily formed, resulting in ineffective temperature control. If the thickness is too thick, the weight and volume of the sleeping bag are increased, affecting the use comfort. Therefore, the thickness of the sleeping bag needs to be detected to ensure that the thickness meets the design standard. However, the existing detection device has some problems when detecting the thickness of the sleeping bag. First, the sleeping bag is prone to wrinkles, which may cause local thickness misjudgment when the intelligent sensor detects. Moreover, the detection is usually performed at fixed points, and different areas of the sleeping bag cannot be covered, resulting in low detection accuracy. Second, the detection device is usually designed as a single work station, and the current sleeping bag needs to be taken out and placed after the detection is completed, resulting in long idle time of the device and low detection efficiency.
[0003] To solve the above problems, the present application provides a thickness detection device and method for temperature-controllable sleeping bags. SUMMARY
[0004] The present application aims to solve the problems of the existing detection device, such as local thickness misjudgment when the intelligent sensor detects due to wrinkles, detection at fixed points, inability to cover different areas of the sleeping bag, low detection accuracy, and long idle time of the device and low detection efficiency during the detection process. A thickness detection device and method for temperature-controllable sleeping bags are provided.
[0005] To achieve the above-mentioned purpose, the present application adopts the following technical solutions:
[0006] A thickness detection device for temperature-controllable sleeping bags comprises a detection mechanism, and a conveying mechanism is arranged on the detection mechanism.
[0007] The detection mechanism comprises a base, a detection assembly and a push-up assembly are arranged on the base, a support is fixedly connected to the base, and a rack is fixedly connected to the upper portion of the support.
[0008] The conveying mechanism comprises a circulating feeding assembly, a driving assembly is arranged in the circulating feeding assembly, a plurality of soft support assemblies are arranged on the circulating feeding assembly, a hydraulic support assembly is arranged on the soft support assembly, the hydraulic support assembly and the soft support assembly are rotated by rotating the circulating feeding assembly, the third gear of the soft support assembly and the valve gear are sequentially driven by the second gear of the driving assembly and the rack, the hydraulic support assembly corresponds to the push-up assembly, and the hydraulic support assembly is pushed up by the push-up assembly, so that the adhesive sheet of the hydraulic support assembly is attached to the air bag side wall of the soft support assembly.
[0009] Preferably, the detection assembly comprises a guide rod fixedly connected to the base, a sliding seat slidably connected to the guide rod, the lower portion of the sliding seat is fixedly connected to the first electric cylinder, the first electric cylinder is installed on the base, one side of the sliding seat is fixedly installed with the second electric cylinder, and one end of the second electric cylinder is installed with the intelligent sensor detection head.
[0010] Preferably, a fan is installed on the base, and a pipe joint is arranged at the air outlet of the fan.
[0011] Preferably, the circulating feeding assembly comprises a first motor, the first motor is installed on the base, the output shaft of the first motor is fixedly connected with a first gear, the first gear is meshed with a gear ring, the gear ring is fixedly connected below the rotating table, the rotating table is rotatably installed on the fixed ring through a bearing, and the fixed ring is fixedly connected to the base.
[0012] Preferably, the driving assembly comprises a second motor, the second motor is installed in the interior of the fixed ring, and the output shaft of the second motor is fixedly connected with a second gear.
[0013] Preferably, the soft support assembly comprises a meshing cylinder, the meshing cylinder is installed on the rotating table, a bearing seat is installed on the meshing cylinder, a third gear and an air bag are installed on the outer ring of the bearing seat.
[0014] Preferably, a pipeline is communicated with the bottom of the meshing cylinder, the pipeline is arranged through the rotating table, and a tooth valve is arranged on the pipeline.
[0015] Preferably, the hydraulic support assembly comprises an outer cylinder, the outer cylinder is installed in the meshing cylinder, a first piston rod and a second piston rod are arranged in the outer cylinder, the first piston rod penetrates downward out of the outer cylinder, the second piston rod penetrates out of the outer cylinder and is fixed to a sticking sheet, and a spring is fixedly connected between the second piston rod and the inner wall of the outer cylinder.
[0016] Preferably, the pushing and lifting assembly comprises an electric push rod, the electric push rod is installed on the base, and one end of the electric push rod is fixedly connected with a pushing seat.
[0017] A detection method of a thickness detection device of a temperature-controlled sleeping bag, comprising the following steps:
[0018] S1, when detecting the thickness of the sleeping bag, the sleeping bag is sleeved on the air bag on the meshing cylinder, then the first motor drives the first gear to drive the gear ring, the gear ring drives the rotating table to rotate, the soft support assembly rotates, when the pipeline corresponds to the fan, the pipe joint is connected with the pipeline, the fan is inflated, the meshing cylinder exhausts into the air bag, the air bag expands to support the sleeping bag, then the pipeline is closed through the tooth valve, and the pipe joint is removed.
[0019] S2. The sleeping bag, after being stretched out, is transferred to the testing area, and the third gear meshes with the second gear. At the same time, the first piston rod corresponds to the push seat. At this time, the electric push rod pushes the push seat to rise, and the push seat drives the first piston rod to move, so that the hydraulic system drives the second piston rod to move, so that the fitting piece fits against the inner wall of the airbag to achieve rigid support for the sleeping bag.
[0020] S3. After the sleeping bag is supported, the second electric cylinder is controlled to drive the intelligent sensor detection head to contact the sleeping bag for thickness detection. The first electric cylinder adjusts the up and down position of the intelligent sensor detection head for detection. Then, the second motor drives the second gear and the third gear to drive the airbag to rotate the sleeping bag, thereby performing different surface detection operations.
[0021] S4. After the test, the lifting and testing components are reset, allowing the turntable to continue transferring the sleeping bag. When the toothed valve and rack engage, the pipes are opened to release air, thus removing the tested sleeping bag.
[0022] Compared with the prior art, the present invention provides a thickness detection device and method for temperature-controlled sleeping bags, which has the following beneficial effects:
[0023] 1. The thickness detection device and method of the temperature-controlled sleeping bag: the sleeping bag is transferred to the detection area by the circulating feeding component. At this time, the third gear of the soft support component meshes with the second gear, so that the drive component can drive the soft support component to rotate, so that the sleeping bag can be steered and adjusted. The intelligent sensor detection head can perform multi-point detection on the sleeping bag, improving the detection accuracy. After detection, the sleeping bag continues to be transferred. When the toothed valve and the rack and pinion drive, the pipe opens to automatically discharge the gas inside the air bag, which facilitates the material handling of the sleeping bag.
[0024] 2. The thickness detection device and method of the temperature-controlled sleeping bag, by rotating the circulating feeding component, aligns the pipe of the soft support component with the pipe joint. At this time, the pipe joint is connected to the pipe, so that the fan can inflate the air bladder. The inflated air bladder can smoothly expand the sleeping bag, ensuring the flatness of the sleeping bag and avoiding wrinkles that affect the accuracy of subsequent detection. In addition, the air bladder is not deflated before inflation, so it is convenient to quickly put the sleeping bag on and reduce the difficulty of operation.
[0025] 3、The thickness detection device of the temperature control sleeping bag and the detection method thereof, through the circulating feeding assembly driving the soft support assembly corresponding to the fan, the fan can inflate through the pipe joint, and then the sleeping bag can be opened, during the opening process, the sleeping bag is reloaded in the initial station, then the sleeping bag is transferred to the detection area and cooperates with the detection assembly for detection, and the driving assembly and the soft support assembly transmission can make the sleeping bag rotate for detection, after detection, the sleeping bag continues to transfer, until the soft support assembly and the rack transmission can take down the detected sleeping bag, this way adopts the continuous conversion of the station, when the thickness of the sleeping bag is detected, another station can complete the placement of the sleeping bag to be detected and the taking out of the detected sleeping bag at the same time, without waiting for the detection to be completed before taking and placing operation, improving the whole operation efficiency, and the whole structure is simple, convenient to operate, and suitable for the application of small and medium-sized enterprises. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 A perspective view of a thickness detection device of a temperature control sleeping bag is provided for the present application;
[0027] Figure 2 A cross-sectional perspective view of a thickness detection device of a temperature control sleeping bag is provided for the present application;
[0028] Figure 3 A perspective view of a base of a thickness detection device of a temperature control sleeping bag is provided for the present application;
[0029] Figure 4 A perspective view of a turntable of a thickness detection device of a temperature control sleeping bag is provided for the present application;
[0030] Figure 5 An enlarged view of A in the present application Figure 1 ;
[0031] Figure 6 A cross-sectional perspective view of a soft support assembly of a thickness detection device of a temperature control sleeping bag is provided for the present application;
[0032] Figure 7 An enlarged view of B in the present application Figure 6 ;
[0033] Figure 8 A cross-sectional perspective view of a hydraulic support assembly of a thickness detection device of a temperature control sleeping bag is provided for the present application;
[0034] Figure 9 An enlarged view of C in the present application Figure 8 .
[0035] In the figure: 100, detection mechanism; 101, base; 102, detection assembly; 1021, guide rod; 1022, first electric cylinder; 1023, sliding seat; 1024, second electric cylinder; 1025, intelligent sensor detection head; 103, push-up assembly; 1031, electric push rod; 1032, push seat; 104, support; 105, rack; 106, fan; 107, pipe joint; 200, conveying mechanism; 201, circulating feeding assembly; 2011, first motor; 2012, first gear; 2013, gear ring; 2014, rotary table; 2015, fixed ring; 202, soft support assembly; 2021, net cylinder; 2022, pipeline; 2023, tooth valve; 2024, air bag; 2025, third gear; 2026, bearing seat; 203, hydraulic support assembly; 2031, outer cylinder; 2032, first piston rod; 2033, fit piece; 2034, second piston rod; 2035, spring; 204, driving assembly; 2041, second motor; 2042, second gear. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all.
[0037] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0038] Embodiment 1: Reference Figures 1-9 A temperature control sleeping bag thickness detection device, comprising a detection mechanism 100, a conveying mechanism 200 is arranged on the detection mechanism 100;
[0039] The detection mechanism 100 comprises a base 101, a detection assembly 102 and a push-lifting assembly 103 are arranged on the base 101, the push-lifting assembly 103 comprises an electric push rod 1031, the electric push rod 1031 is installed on the base 101, one end of the electric push rod 1031 is fixedly connected with a push seat 1032, the detection assembly 102 comprises a guide rod 1021, the guide rod 1021 is fixedly connected on the base 101, a sliding seat 1023 is slidably connected on the guide rod 1021, the guide rod 1021 can guide the sliding seat 1023, so that the sliding seat 1023 can slide stably on the guide rod 1021, so that the second electric cylinder 1024 can slide stably, the lower side of the sliding seat 1023 is fixedly connected with the first electric cylinder 1022, the first electric cylinder 1022 can adjust the up-down position of the sliding seat 1023, so that the height of the intelligent sensor detection head 1025 can be adjusted, so that the intelligent sensor detection head 1025 can detect different positions of the sleeping bag, the first electric cylinder 1022 is installed on the base 101, the second electric cylinder 1024 is fixedly installed on one side of the sliding seat 1023, the second electric cylinder 1024 can adjust the position of the intelligent sensor detection head 1025, so that the intelligent sensor detection head 1025 can smoothly perform detection work, and the adjustability of the intelligent sensor detection head 1025 is adjusted, so that the steering adjustment of the air bag 2024 is facilitated, one end of the second electric cylinder 1024 is provided with the intelligent sensor detection head 1025, a support 104 is fixedly connected on the base 101, a rack 105 is fixedly connected above the support 104;
[0040] The conveying mechanism 200 comprises a circulating feeding assembly 201, the circulating feeding assembly 201 comprises a first motor 2011, the first motor 2011 is installed on the base 101, the output shaft of the first motor 2011 is fixedly connected with a first gear 2012, the first gear 2012 is engaged with a gear ring 2013, the first motor 2011 drives the first gear 2012 and the first gear ring 2013 to drive, so that power transmission can be realized, so that the turntable 2014 can drive the soft supporting assembly 202 to replace different stations, so that alternating work can be performed, and continuous detection of the sleeping bag can be realized, the gear ring 2013 is fixedly connected below the turntable 2014, the turntable 2014 is rotatably installed on a fixed ring 2015 through a bearing, the turntable 2014 can stably rotate through the bearing, so that the sleeping bag can be stably conveyed for detection work, the fixed ring 2015 is fixedly connected on the base 101, a driving assembly 204 is arranged in the circulating feeding assembly 201, the driving assembly 204 comprises a second motor 2041, the second motor 2041 is installed inside the fixed ring 2015, the output shaft of the second motor 2041 is fixedly connected with a second gear 2042, and a plurality of soft supporting assemblies 202 are arranged on the circulating feeding assembly 201;
[0041] The hydraulic support assembly 203 is arranged on the soft support assembly 202, the hydraulic support assembly 203 comprises an outer cylinder 2031, the outer cylinder 2031 is installed in the mesh cylinder 2021, the first piston rod 2032 and the second piston rod 2034 are arranged in the outer cylinder 2031, the push rod 1032 is pushed upward by the electric push rod 1031, the first piston rod 2032 is pushed upward by the push rod 1032, then the second piston rod 2034 is driven to move by the hydraulic pressure, the second piston rod 2034 drives the contact sheet 2033 to contact the side wall of the air bag 2024, so that the sleeping bag can be hard supported, the operation of the intelligent sensor detection head 1025 for thickness detection of the sleeping bag is facilitated, the first piston rod 2032 penetrates downward out of the outer cylinder 2031, the second piston rod 2034 penetrates out of the outer cylinder 2031 and is fixed with the contact sheet 2033, and the spring 2035 is fixedly connected between the second piston rod 2034 and the inner wall of the outer cylinder 2031, the second piston rod 2034 is assisted to reset smoothly by the second spring 2035, the hydraulic support assembly 203 and the soft support assembly 202 are rotated by rotating the circulating feeding assembly 201, the third gear 2025 of the soft support assembly 202 and the valve gear 2023 are sequentially driven by the second gear 2042 of the driving assembly 204 and the rack 105, the pipeline 2022 is opened for exhaust by the transmission of the valve gear 2023 and the rack 105, so that the sleeping bag after detection can be taken out conveniently, and the hydraulic support assembly 203 corresponds to the push-up assembly 103 and is pushed up by the push-up assembly 103, so that the contact sheet 2033 of the hydraulic support assembly 203 is attached to the side wall of the air bag 2024 of the soft support assembly 202.
[0042] In the embodiment, the first gear 2012 and the gear ring 2013 are driven by the first motor 2011 to drive the rotating table 2014 to transfer the sleeping bag to the detection area, at this time, the thickness of the sleeping bag is detected by the detection assembly 102, and the second gear 2042 and the third gear 2025 are driven by the second motor 2041 to drive the air bag 2024 of the soft support assembly 202 to rotate the sleeping bag, so that the sleeping bag can be turned to adjust the direction, the intelligent sensor detection head 1025 can detect the sleeping bag at multiple points to improve the detection accuracy, and after detection, the sleeping bag is continuously transferred, when the valve gear 2023 and the rack 105 are driven, the pipeline 2022 is opened to automatically exhaust the gas in the air bag 2024, so that the sleeping bag can be taken out conveniently.
[0043] Embodiment 2: refer to Figure 3 and Figures 6-7 A thickness detection device for a temperature-controlled sleeping bag, comprising a base 101, a fan 106 is installed on the base 101, a pipe joint 107 is arranged at the air outlet of the fan 106, the pipeline 2022 and the fan 106 can be quickly assembled and connected through the pipe joint 107, so that the fan 106 can smoothly inflate the air bag 2024;
[0044] The soft supporting assembly 202 comprises a mesh cylinder 2021 installed on the rotary table 2014, a bearing seat 2026 is installed on the mesh cylinder 2021, an outer ring of the bearing seat 2026 is provided with a third gear 2025 and an air bag 2024, the third gear 2025 is in transmission with the second gear 2042, so that the bearing seat 2026 can be driven to rotate stably, the bearing seat 2024 can drive the sleeping bag to rotate through the air bag 2024, the operation of multi-point detection of the sleeping bag is facilitated, the bottom of the mesh cylinder 2021 is communicated with a pipeline 2022, the pipeline 2022 is arranged through the rotary table 2014, and the pipeline 2022 is provided with a tooth valve 2023, the pipeline 2022 can be closed through the tooth valve 2023, so that air leakage is avoided, and the air bag 2024 can be smoothly opened to support the sleeping bag.
[0045] In the embodiment, the pipeline 2022 of the soft supporting assembly 202 corresponds to the pipe joint 107 through rotation of the circulating feeding assembly 201, at the moment, the pipe joint 107 is connected with the pipeline 2022, the fan 106 is used for air conveying into the mesh cylinder 2021, and then the air bag 2024 can be inflated, the air bag 2024 can be inflated and expanded to smoothly open the sleeping bag, the flatness of the sleeping bag is ensured, the detection accuracy of the subsequent detection is avoided to be affected by wrinkles, and the sleeping bag can be conveniently and quickly sleeved when the air bag 2024 is not inflated, so that the operation difficulty is reduced.
[0046] Embodiment 3: refer to Figures 1-3 A thickness detection device of a temperature control sleeping bag, comprising a detection mechanism 100, the detection mechanism 100 comprises a base 101, the base 101 is provided with a fan 106, the outlet of the fan 106 is provided with a pipe joint 107, the base 101 is provided with a detection assembly 102 and a push-up assembly 103, the base 101 is fixedly connected with a support 104, the upper portion of the support 104 is fixedly connected with a rack 105;
[0047] The conveying mechanism 200 comprises a circulating feeding assembly 201, the circulating feeding assembly 201 is provided with a driving assembly 204, and a plurality of soft supporting assemblies 202 are arranged on the circulating feeding assembly 201, a hydraulic supporting assembly 203 is arranged through the soft supporting assembly 202, the hydraulic supporting assembly 203 and the soft supporting assembly 202 are rotated through rotation of the circulating feeding assembly 201, the third gear 2025 of the soft supporting assembly 202 and the valve tooth are in sequence respectively in transmission with the second gear 2042 of the driving assembly 204 and the rack 105, the hydraulic supporting assembly 203 corresponds to the push-up assembly 103, and the hydraulic supporting assembly 203 is pushed up through the push-up assembly 103, so that the adhering sheet 2033 of the hydraulic supporting assembly 203 is attached to the sidewall of the air bag 2024 of the soft supporting assembly 202.
[0048] In the embodiment: through the circulation feeding assembly 201 drives the soft support assembly 202 to correspond to the fan 106, the fan 106 can be inflated through the pipe joint 107, and then the sleeping bag can be opened, the opening process, the initial position is reloaded in the sleeping bag, then the sleeping bag is transferred to the detection area, and cooperates with the detection assembly 102 to detect, and the driving assembly 204 and the soft support assembly 202 are driven, so that the sleeping bag can be rotated and detected, after detection, the sleeping bag continues to transfer, until the soft support assembly 202 and the rack 105 are driven to remove the detected sleeping bag, the continuous conversion of the working position is used, when the thickness of the sleeping bag is detected, another working position can complete the placement of the sleeping bag to be detected and the removal of the detected sleeping bag at the same time, without waiting for the detection to be completed before taking and placing operation, improving the whole operation efficiency, and the whole structure is simple, convenient to operate, and suitable for small and medium-sized enterprises.
[0049] A kind of temperature control sleeping bag thickness detection device detection method, comprising the following steps:
[0050] S1, when the thickness of the sleeping bag is detected, the sleeping bag is sleeved on the air bag 2024 on the net cylinder 2021, then the first motor 2011 drives the first gear 2012 and the gear 2013 transmission, the gear 2013 drives the rotary table 2014 to rotate, the soft support assembly 202 is rotated, when the pipeline 2022 corresponds to the fan 106, the pipe joint 107 is connected with the pipeline 2022 at this time, the fan 106 is inflated, the net cylinder 2021 exhausts into the air bag 2024, the air bag 2024 is inflated to support the sleeping bag, then the pipeline 2022 is closed through the valve 2023, and the pipe joint 107 is removed;
[0051] S2, the sleeping bag after being supported is transferred to the detection area, and the third gear 2025 and the second gear 2042 are engaged, and the first piston rod 2032 corresponds to the push seat 1032 at this time, the electric push rod 1031 drives the push seat 1032 to rise, the push seat 1032 drives the first piston rod 2032 to move, the hydraulic drive second piston rod 2034 moves, and the adhesive sheet 2033 is attached to the inner wall of the air bag 2024 to realize the hard support of the sleeping bag;
[0052] S3, after the sleeping bag is supported, the second electric cylinder 1024 drives the intelligent sensor detection head 1025 to contact the sleeping bag to detect the thickness, and the first electric cylinder 1022 adjusts the up and down position of the intelligent sensor detection head 1025 to detect, and then the second motor 2041 drives the second gear 2042 and the third gear 2025 to drive the air bag 2024 to rotate, so as to carry out different face detection operation;
[0053] S4, after detection, the push assembly 103 and detection assembly 102 complete reset, so that the turntable 2014 continues to transfer the sleeping bag, when the gear valve 2023 and rack 105 achieve mesh transmission, so that the pipeline 2022 open to exhaust, so as to take off the detected sleeping bag.
[0054] The above merely illustrates the preferred embodiments of the present application, but the protection scope of the present application is not limited thereto, any skilled person in the art, according to the technical solution and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, should be covered within the protection scope of the present application.
Claims
1. A thickness detection device for a temperature-controlled sleeping bag, comprising a detection mechanism (100), characterized in that, The testing mechanism (100) is equipped with a conveying mechanism (200); The detection mechanism (100) includes a base (101), on which a detection component (102) and a lifting component (103) are provided. A bracket (104) is fixedly connected to the base (101), and a rack (105) is fixedly connected above the bracket (104). The conveying mechanism (200) includes a circulating feed assembly (201), in which a drive assembly (204) is provided, and multiple soft support assemblies (202) are provided on the circulating feed assembly (201). A hydraulic support assembly (203) is provided on the soft support assembly (202). By rotating the circulating feed assembly (201), the hydraulic support assembly (203) and the soft support assembly (202) rotate. The third gear (2025) and the valve tooth of the soft support assembly (202) are sequentially driven by the second gear (2042) and the rack (105) of the drive assembly (204). The hydraulic support assembly (203) corresponds to the lifting assembly (103) and is lifted by the lifting assembly (103) so that the bonding piece (2033) of the hydraulic support assembly (203) is bonded to the side wall of the air bladder (2024) of the soft support assembly (202).
2. The thickness detection device for a temperature-controlled sleeping bag according to claim 1, characterized in that, The detection component (102) includes a guide rod (1021) which is fixedly connected to the base (101). A slide block (1023) is slidably connected to the guide rod (1021). The lower part of the slide block (1023) is fixedly connected to a first electric cylinder (1022). The first electric cylinder (1022) is mounted on the base (101). A second electric cylinder (1024) is fixedly mounted on one side of the slide block (1023). A smart sensor detection head (1025) is mounted on one end of the second electric cylinder (1024).
3. The thickness detection device for a temperature-controlled sleeping bag according to claim 2, characterized in that, A fan (106) is installed on the base (101), and a pipe connector (107) is provided at the air outlet of the fan (106).
4. The thickness detection device for a temperature-controlled sleeping bag according to claim 3, characterized in that, The circulating feed assembly (201) includes a first motor (2011), which is mounted on a base (101). The output shaft of the first motor (2011) is fixedly connected to a first gear (2012), which meshes with a gear ring (2013). The gear ring (2013) is fixedly connected below a turntable (2014), which is rotatably mounted on a fixed ring (2015) via bearings. The fixed ring (2015) is fixedly connected to the base (101).
5. The thickness detection device for a temperature-controlled sleeping bag according to claim 4, characterized in that, The drive assembly (204) includes a second motor (2041), which is installed inside the fixing ring (2015), and the output shaft of the second motor (2041) is fixedly connected to a second gear (2042).
6. The thickness detection device for a temperature-controlled sleeping bag according to claim 5, characterized in that, The soft support assembly (202) includes a mesh cylinder (2021) mounted on a turntable (2014). A bearing seat (2026) is mounted on the mesh cylinder (2021), and a third gear (2025) and an airbag (2024) are mounted on the outer ring of the bearing seat (2026).
7. The thickness detection device for a temperature-controlled sleeping bag according to claim 6, characterized in that, The bottom of the mesh cylinder (2021) is connected to a pipe (2022), the pipe (2022) passes through the turntable (2014), and a toothed valve (2023) is installed on the pipe (2022).
8. The thickness detection device for a temperature-controlled sleeping bag according to claim 7, characterized in that, The hydraulic support assembly (203) includes an outer cylinder (2031) which is installed in a mesh cylinder (2021). A first piston rod (2032) and a second piston rod (2034) are provided in the outer cylinder (2031). The first piston rod (2032) extends downward through the outer cylinder (2031), and the second piston rod (2034) extends through the outer cylinder (2031) and is fixed to the bonding piece (2033). A spring (2035) is fixedly connected between the second piston rod (2034) and the inner wall of the outer cylinder (2031).
9. The thickness detection device for a temperature-controlled sleeping bag according to claim 8, characterized in that, The lifting assembly (103) includes an electric push rod (1031), which is mounted on a base (101), and one end of the electric push rod (1031) is fixedly connected to a push seat (1032).
10. The detection method of the thickness detection device for a temperature-controlled sleeping bag according to claim 9, characterized in that, Includes the following steps: S1. When testing the thickness of the sleeping bag, the sleeping bag is placed on the air bladder (2024) on the net cylinder (2021). Then, the first motor (2011) drives the first gear (2012) and the gear ring (2013) to drive the turntable (2014) to rotate, causing the soft support component (202) to rotate. When the pipe (2022) corresponds to the fan (106), the pipe joint (107) is connected to the pipe (2022) to inflate the fan (106) and allow the net cylinder (2021) to exhaust into the air bladder (2024). The air bladder (2024) expands to support the sleeping bag. Then, the pipe (2022) is closed through the gear valve (2023), and the pipe joint (107) is removed. S2. The sleeping bag, after being stretched out, is transferred to the testing area, and the third gear (2025) meshes with the second gear (2042). At the same time, the first piston rod (2032) corresponds to the push seat (1032). At this time, the electric push rod (1031) pushes the push seat (1032) to rise, and the push seat (1032) drives the first piston rod (2032) to move, so that the hydraulic drive of the second piston rod (2034) moves, so that the bonding piece (2033) is bonded to the inner wall of the airbag (2024) to achieve rigid support for the sleeping bag. S3. After the sleeping bag is supported, the second electric cylinder (1024) is controlled to drive the intelligent sensor detection head (1025) to contact the sleeping bag for thickness detection. The first electric cylinder (1022) adjusts the up and down position of the intelligent sensor detection head (1025) for detection. Then, the second motor (2041) drives the second gear (2042) and the third gear (2025) to drive the airbag (2024) to rotate the sleeping bag, thereby performing different surface detection operations. S4. After the test, the lifting assembly (103) and the testing assembly (102) are reset, and the turntable (2014) continues to transfer the sleeping bag. When the toothed valve (2023) and the rack (105) mesh and drive, the pipe (2022) is opened to vent air, thereby removing the tested sleeping bag.