Intestinal infrared thermal therapy physiotherapy instrument

By designing adaptive height, length, and angle adjustment components, the problem of the intestinal infrared thermotherapy probe not fitting the abdomen of different users has been solved, achieving precise infrared radiation and stable fixation, thus improving the therapeutic effect and ease of use.

CN121513367APending Publication Date: 2026-02-13许超
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Patent Information

Application Number
CN202511756225.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-27
Publication Date
2026-02-13

AI Technical Summary

Technical Problem

The probes of existing intestinal infrared thermotherapy devices cannot adapt to the different abdominal physiological characteristics of different users, resulting in misalignment between infrared radiation and the target area, which affects the efficiency of heat transfer and the therapeutic effect.

Method used

An intestinal infrared thermotherapy device was designed, which uses height adjustment components, length adjustment components and angle adjustment components, combined with damping shaft, rotating shaft and rotating ring to achieve adaptive fitting of the probe; through the cooperation of electric push rod and restraint strap, the device is ensured to be stably fixed in different users and scenarios.

Benefits of technology

It improves the accuracy and stability of infrared radiation, enhances the therapeutic effect, and improves the safety and convenience of use, adapting to the different body shapes and abdominal curves of different users.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of medical equipment, and discloses an intestinal tract infrared thermal therapy physiotherapy instrument, which comprises a base, the top of the base is fixedly connected with a box body, the top of the box body is fixedly connected with a radiation source cabinet, the top of the radiation source cabinet is fixedly connected with a fixed column, the fixed column is internally provided with a height adjusting assembly, and the height adjusting assembly is fixedly connected with the box body. A fixing block is installed on the side wall of the fixing column, a sliding block is slidably connected to the end, away from the fixing column, of the fixing block, a length adjusting assembly is arranged between the fixing block and the sliding block, a connecting block is fixedly connected to the bottom of the sliding block, and a damping shaft is rotatably connected to the interior of the connecting block. Through cooperation of the rotating shell, the damping shaft, the rotating ring, the first rotating shaft, the second rotating shaft and other structures, the fitting degree of the probe and different parts of the abdomen of a patient is achieved, the probe can act on the corresponding area of the intestinal tract accurately all the time, and then the physiotherapy effect is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of medical equipment, in particular to an intestinal infrared thermotherapy physiotherapy instrument. BACKGROUND

[0002] The intestinal infrared thermotherapy physiotherapy instrument is a physiotherapy instrument that uses the heat energy generated by infrared radiation to act on the intestinal region of the human body, and is commonly used to assist in regulating chronic enteritis, irritable bowel syndrome and other intestinal function disorder problems, so as to achieve the physiotherapy purpose of relaxing the intestine and promoting intestinal health.

[0003] The basic structure of the intestinal infrared thermotherapy physiotherapy instrument usually includes an infrared radiation source, a physiotherapy probe, power supply and an operation panel; the intestinal infrared thermotherapy physiotherapy instrument emits infrared rays of a specific wavelength from the infrared radiation source after power supply, and guides the physiotherapy probe to the corresponding abdominal region of the intestine, so that the infrared rays penetrate the tissue to increase the temperature around the intestine, thereby achieving the physiotherapy effects of promoting intestinal blood circulation and enhancing peristalsis.

[0004] The probe of the intestinal infrared thermotherapy physiotherapy instrument in the prior art usually adopts a rigid connection mode with a fixed angle in the structural design, which makes the fitting angle of the probe and the abdominal region of the human body relatively fixed, and cannot be adaptively adjusted according to the physiological characteristics of the abdominal region of different users (such as the natural curvature of the abdominal region, the inclination angle of the abdominal wall caused by the difference in body shape, etc.); when the position of the abdominal wall region corresponding to the intestine of the user deviates due to the difference in body shape, the probe with a fixed angle is difficult to form a close fit with the abdominal wall, and local gaps are likely to occur, thereby causing the misalignment of the infrared radiation range and the target region, which not only affects the effective transmission efficiency of the heat energy, but also causes insufficient local physiotherapy intensity due to insufficient fitting, and it is difficult to achieve the ideal intestinal regulation effect. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides an intestinal infrared thermotherapy physiotherapy instrument, which solves the problem that the probe of the infrared thermotherapy physiotherapy instrument cannot be self-adaptively fitted to the physiological characteristics of the abdominal region of different users, resulting in misalignment of the infrared radiation and the target region and limited physiotherapy effect.

[0006] To achieve the above objectives, the present invention provides the following technical solution: an intestinal infrared thermotherapy device, comprising a base, a housing fixedly connected to the top of the base, a radiation source cabinet fixedly connected to the top of the housing, a fixed column fixedly connected to the top of the radiation source cabinet, a height adjustment component disposed inside the fixed column, a fixing block mounted on the side wall of the fixed column, a slider slidably connected to the end of the fixing block away from the fixed column, a length adjustment component disposed between the fixing block and the slider, a connecting block fixedly connected to the bottom of the slider, and a damping shaft rotatably connected inside the connecting block. Both ends of the block are fitted with outer shells. A connecting post one is uniformly fixedly connected to the end of the outer shell away from the connecting block. Probes are uniformly installed on the side of the outer shell away from the connecting block. A connecting post two is fixedly connected to the other end of the outer shell. A rotating shaft one and a rotating shaft two are rotatably connected inside the connecting post one and the connecting post two, respectively. A restraining strap is fixedly connected to the bottom of the outer shell. A rotating ring is fitted on the outer wall of both the rotating shaft one and the rotating shaft two. A snap-fit ​​assembly is provided on the end of the restraining strap away from the outer shell. A conveyor line is installed between the radiation source cabinet and the connecting block. A control panel is installed on the outer wall of the radiation source cabinet.

[0007] Preferably, the snap-fit ​​assembly includes a socket, which is fixedly connected to the end of the restraint strap away from the outer shell. A mounting base is fixedly connected to the end of the restraint strap near the socket. A protrusion is slidably connected inside the socket. A sliding plate is fixedly connected to the end of the protrusion near the socket. A pressing plate is fixedly connected to the bottom of the sliding plate. A groove is formed inside the mounting base. A spring including a bolt is fixedly connected between the socket and the sliding plate. The bolt is installed between the fixing block and the slider. A bolt hole two and a bolt hole one are respectively formed inside the fixing block and the slider.

[0008] Preferably, the height adjustment assembly includes a fixing frame, which is fixedly connected to the outer wall of the fixing column. An electric actuator is installed between the fixing frame and the fixing column. The output end of the electric actuator is fixedly connected to a connecting block. A limit groove is formed on the side of the fixing column near the connecting block.

[0009] Preferably, one end of the housing near the connecting block is fixedly connected to the outer wall of the damping shaft, and the housing is rotatably connected inside the connecting block.

[0010] Preferably, the swivel ring is rotatably connected inside both the first connecting post and the second connecting post.

[0011] Preferably, wheels are fixedly connected to the bottom of the base on all four sides, and a push handle is fixedly connected to the outer wall of the radiation source cabinet.

[0012] Preferably, the pressing plate is slidably connected to the inner wall of the socket, and the protrusion is slidably connected to the inside of the groove.

[0013] Preferably, the bolt is threaded into the interior of bolt hole one and bolt hole two, and a knob is fixedly connected to the end of the bolt away from the fixing block.

[0014] Preferably, the connecting block is slidably connected inside the limiting groove.

[0015] This invention provides an intestinal infrared thermotherapy device. It has the following beneficial effects:

[0016] 1. This invention achieves initial adjustment of the probe angle by rotating the outer shell, which drives the damping shaft to rotate within the connecting block. Simultaneously, when the outer shell contacts the human abdomen, the curve of the human body generates a thrust on the rotating ring. The rotating ring drives the rotating shaft one to rotate within the connecting post one and the rotating shaft two to rotate within the connecting post two. The multi-directional rotating shafts, in conjunction with the angle changes of the rotating ring, cause the outer shell to adaptively conform to the curvature of different parts of the abdomen. This helps the infrared thermal therapy probe to always act more accurately on the corresponding area of ​​the intestine, effectively improving the therapeutic effect.

[0017] 2. This invention uses a pressing plate to move a sliding plate within the socket. The movement of the sliding plate causes the protrusion to disengage from the groove, simultaneously compressing the spring. After the socket is connected to the mounting base, the pressing plate is released, and the spring returns to its original position, pushing the sliding plate in the opposite direction. This causes the protrusion to re-engage into the groove, thus achieving a secure fixation of the device by the restraint strap. This prevents the infrared thermal therapy probe from shifting due to body movement during physiotherapy, thereby improving safety.

[0018] 3. By rotating the knob, the bolt can be screwed in or out of the bolt hole one and bolt hole two. When the bolt is loose, the slider can slide back and forth relative to the fixed block to adjust the distance between them. The movement of the slider causes the connecting block and the outer shell to move synchronously to adapt to the abdominal position of different users, which helps to enhance the adjustment flexibility of the infrared heat therapy device during use.

[0019] 4. This invention activates an electric actuator, whose output end drives a connecting block to slide up and down within a limiting groove. The sliding of the connecting block causes the fixed column to move up and down synchronously. The movement of the fixed column causes the fixed block to move accordingly, thereby driving the slider, connecting block, and outer shell to rise and fall as a whole. This allows for flexible adjustment of the device height, helping to adapt to the different body shapes of various users and thus improving the convenience of using the infrared thermal therapy device in different scenarios such as home and clinic. Attached Figure Description

[0020] Figure 1 This is a perspective view of the present invention;

[0021] Figure 2This is a schematic diagram of the fixing column of the present invention;

[0022] Figure 3 This is a schematic diagram of the length adjustment component of the present invention;

[0023] Figure 4 This is a schematic diagram of the probe of the present invention;

[0024] Figure 5 This is a schematic diagram of the rotating ring of the present invention;

[0025] Figure 6 This is a schematic diagram of the height adjustment component of the present invention;

[0026] Figure 7 This is a schematic diagram of the snap-fit ​​assembly of the present invention;

[0027] Figure 8 This is a schematic diagram of the spring of the present invention.

[0028] The components are as follows: 1. Base; 2. Housing; 3. Radiation source cabinet; 4. Fixing column; 5. Fixing block; 6. Slider; 7. Snap-fit ​​assembly; 71. Socket; 72. Mounting base; 73. Protrusion; 74. Slide plate; 75. Pressing plate; 76. Spring; 77. Groove; 8. Length adjustment assembly; 81. Bolt; 82. Knob; 83. Bolt hole one; 84. Bolt hole two; 9. Height adjustment assembly; 91. Fixing frame; 92. Electric push rod; 93. Connecting block; 94. Limiting groove; 10. Connecting block; 11. Housing; 12. Probe; 13. Restraint strap; 14. Damping shaft; 15. Control panel; 16. Conveyor line; 17. Wheel; 18. Push handle; 19. Connecting column one; 20. Connecting column two; 21. Rotating shaft one; 22. Rotating shaft two; 23. Rotating ring. Detailed Implementation

[0029] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0030] Please see the appendix Figure 1 -Appendix Figure 5This invention provides an intestinal infrared thermotherapy device, comprising a base 1, a housing 2 fixedly connected to the top of the base 1, a radiation source cabinet 3 fixedly connected to the top of the housing 2, a fixing column 4 fixedly connected to the top of the radiation source cabinet 3, a height adjustment component 9 disposed inside the fixing column 4, a fixing block 5 mounted on the side wall of the fixing column 4, a slider 6 slidably connected to the end of the fixing block 5 away from the fixing column 4, a length adjustment component 8 disposed between the fixing block 5 and the slider 6, a connecting block 10 fixedly connected to the bottom of the slider 6, a damping shaft 14 rotatably connected inside the connecting block 10, a housing 11 mounted on both ends of the connecting block 10, a connecting column 19 uniformly fixedly connected to the end of the housing 11 away from the connecting block 10, and probes 12 uniformly mounted on the other side of the housing 11 away from the connecting block 10. The end is fixedly connected to the connecting post 20. The connecting post 19 and the connecting post 20 are respectively rotatably connected to the rotating shaft 11 and the rotating shaft 22. The bottom of the outer shell 11 is fixedly connected to the restraint strap 13. The outer walls of the rotating shaft 11 and the rotating shaft 22 are both fitted with rotating rings 23. The end of the restraint strap 13 away from the outer shell 11 is provided with a snap-fit ​​component 7. A conveyor line 16 is installed between the radiation source cabinet 3 and the connecting block 10. The outer wall of the radiation source cabinet 3 is installed with a control panel 15. The end of the outer shell 11 near the connecting block 10 is fixedly connected to the outer wall of the damping shaft 14. The outer shell 11 is rotatably connected to the inside of the connecting block 10. The rotating ring 23 is rotatably connected to the inside of the connecting post 19 and the connecting post 20. The bottom of the base 1 is fixedly connected to the wheels 17. The outer wall of the radiation source cabinet 3 is fixedly connected to the push handle 18.

[0031] Specifically, the operating parameters such as treatment temperature and duration can be preset via the control panel 15. After the parameter commands are transmitted to the radiation source cabinet 3 through the internal circuit, the internal infrared radiation device is activated and generates infrared rays of a specific wavelength. The infrared rays are directionally transmitted to the probe 12 at the outer shell 11 via the conveyor line 16, enabling the probe 12 to have stable infrared radiation capability. The outer shell 11 can rotate within a certain range within the connecting block 10 via the damping shaft 14. During the rotation, the probe 12 is driven to adjust its angle synchronously, which facilitates precise alignment according to the location of the abdominal wall region corresponding to the user's intestines. At the same time, the rotating shafts 21 and 22 within the connecting column 19 and connecting column 20 can rotate flexibly around their own axes at multiple angles, and the rotating ring 23 is fitted with... The rotating shaft abuts against the side of the outer shell 11. When the outer shell 11 contacts the human abdomen, the abdominal curve will exert slight pressure on the rotating ring 23, causing the rotating shaft 21 and the rotating shaft 22 to deflect in multiple directions along the pressure direction within the connecting column. The rotating ring 23 changes its tilt angle as the rotating shaft rotates, thereby causing the outer shell 11 to adaptively adjust to fit the curvature of the abdomen, so that the probe 12 maintains stable contact with the abdominal wall. In this method, the parameter settings of the control panel 15 help ensure that the physiotherapy intensity is within an appropriate range, the angle adjustment function of the damping shaft 14 can improve the convenience of probe 12 alignment, and the synergistic effect of the rotating shaft and the rotating ring 23 may enhance the fit between the device and the human body, thereby helping to improve the physiotherapy effect of the infrared thermal physiotherapy device to a certain extent.

[0032] Please see the appendix Figure 1 Appendix Figure 7 and attached Figure 8 The snap-fit ​​assembly 7 includes a socket 71, which is fixedly connected to the end of the restraint strap 13 away from the outer casing 11. A mounting base 72 is fixedly connected to the end of the restraint strap 13 near the socket 71. A protrusion 73 is slidably connected inside the socket 71. A slide plate 74 is fixedly connected to the end of the protrusion 73 near the socket 71. A pressing plate 75 is fixedly connected to the bottom of the slide plate 74. A groove 77 is provided inside the mounting base 72. A spring 76 is fixedly connected between the socket 71 and the slide plate 74. The pressing plate 75 is slidably connected to the inner wall of the socket 71. The protrusion 73 is slidably connected inside the groove 77.

[0033] Specifically, by pressing the pressing plate 75, the pressure plate 75 causes the two connected sliding plates 74 to slide towards each other on the inner wall of the socket 71. The movement of the sliding plates 74 simultaneously drives the protrusion 73. At this time, the spring 76 between the sliding plates 74 and the socket 71 is compressed and stores elastic potential energy. Then, the socket 71 is pushed into the interface of the mounting base 72. When the protrusion 73 slides with the sliding plates 74 to the groove 77 on the mounting base 72, the pressing plate 75 is released. The spring 76 releases its elastic potential energy and pushes the sliding plates 74 to return to their original position. The sliding plates 74 then drive the protrusion 73 to re-engage in the groove 77, thus mechanically locking the socket 71 and the mounting base 72. This method achieves rapid engagement and disengagement of the protrusion 73 and the groove 77 through the mechanical transmission of the pressing plate 75, and ensures the stability of the connection by utilizing the elastic potential energy of the spring 76. Furthermore, the close fit design of the protrusion 73 and the groove 77 reduces loosening after fixation, which can improve the reliability of the device's fit with the human body during infrared thermal therapy to a certain extent.

[0034] Please see the appendix Figure 3 and attached Figure 6 The length adjustment component 8 includes a bolt 81, which is installed between the fixed block 5 and the slider 6. The fixed block 5 and the slider 6 are respectively provided with bolt hole 2 84 and bolt hole 1 83. The bolt 81 is threaded into the bolt hole 1 83 and bolt hole 2 84. A knob 82 is fixedly connected to the end of the bolt 81 away from the fixed block 5.

[0035] Specifically, by rotating knob 82, the bolt 81 rotates along the axis, causing it to screw in or out of the threaded structure of bolt hole 83 and bolt hole 84. When bolt 81 is screwed out from the overlapping position of bolt hole 83 and bolt hole 84, slider 6 can slide horizontally relative to fixed block 5, thereby changing the relative distance between fixed block 5 and slider 6. This, in turn, causes components such as connecting block 10 and outer shell 11 to move synchronously to adjust the overall length. Once the position is determined, rotating knob 82 in the opposite direction causes bolt 81 to screw back into the corresponding bolt hole, thus fixing the current length. This method achieves graded length adjustment through threaded engagement, adapting to the positional differences in the abdominal area of ​​different users. It helps improve the ease of alignment between the probe 12 of the infrared thermal therapy device and the human body, bringing convenience to the physiotherapy operation.

[0036] Please see the appendix Figure 2 and attached Figure 6 The height adjustment component 9 includes a fixed frame 91, which is fixedly connected to the outer wall of the fixed column 4. An electric push rod 92 is installed between the fixed frame 91 and the fixed column 4. A connecting block 93 is fixedly connected to the output end of the electric push rod 92. A limit groove 94 is opened on the side of the fixed column 4 near the connecting block 93. The connecting block 93 is slidably connected inside the limit groove 94.

[0037] Specifically, by activating the electric actuator 92, its output end extends and retracts vertically, causing the connecting block 93 to slide directionally up and down within the limiting groove 94. The limiting groove 94 constrains the movement trajectory of the connecting block 93 to prevent deviation. Simultaneously, the sliding of the connecting block 93 causes the fixing column 4 to rise and fall. The fixing column 4 then adjusts the height of the radiation source cabinet 3 and its connected components, such as the fixing block 5 and slider 6. Once adjusted to a height suitable for the user's abdominal position, the electric actuator 92 stops operating and remains in its current state. This method flexibly adapts to differences in abdominal height among users of different heights or in different sitting postures, helping to improve the device's positional adaptability during use and reducing inconvenience caused by height discomfort when using the infrared thermal therapy device.

[0038] Working principle: After the infrared thermal therapy device is started, the operating parameters of the therapy device can be set and adjusted through the control panel 15. Then, the infrared radiation device in the radiation source cabinet 3 starts to work, generating infrared rays of a specific wavelength. Through the transmission line 16, the infrared rays can be transmitted to the probe 12 at the outer shell 11. Before use, the height of the fixing column 4 can be adjusted through the height adjustment component 9. The electric push rod 92 operates, driving the connecting block 93 to slide in the limiting groove 94, thereby realizing the height adjustment of the radiation source cabinet 3 and related components to meet the needs of different users.

[0039] The length adjustment component 8 can adjust the distance between the fixed block 5 and the slider 6. By rotating the knob 82, the bolt 81 can be moved in the bolt hole 1 83 and bolt hole 2 84, thereby changing the overall length and making it convenient to adjust the device to a suitable position to act on the human abdomen.

[0040] The outer shell 11 can rotate within the connecting block 10 via the damping shaft 14, which facilitates the adjustment of the angle of the probe 12 and ensures accurate alignment with the abdominal wall region corresponding to the intestine. At the same time, the rotating shafts 21 and 22 within the connecting column 19 and the connecting column 20 can rotate flexibly around their own axes. The rotating ring 23 is fitted on its outer wall and can change its angle with the rotation of the rotating shaft. When the outer shell 11 contacts the human abdomen, under the action of the human body curve, the rotating shafts 21 and 22 can rotate in multiple directions within the connecting column, and the rotating ring 23 adjusts its posture accordingly, causing the outer shell 11 to adaptively conform to the curvature of different parts of the abdomen, so that the probe 12 can better conform to the human body curve.

[0041] The restraint strap 13 is used to fix the outer shell 11 and the probe 12 to the abdomen of the human body. The snap-fit ​​component 7 provides a fixing effect. Pressing the pressing plate 75 causes the two sliding plates 74 to move towards each other, which in turn causes the protrusion 73 to slide in the groove 77. The spring 76 is compressed. Then, the protrusion 73 is inserted into the mounting base 72. When the protrusion 73 slides to the groove 77, the pressing plate 75 is released, the spring 76 returns to its original position, and the sliding plates 74 return to their original position. The sliding plates 74 drive the protrusion 73 to snap into the groove 77, achieving a stable connection.

[0042] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An intestinal infrared thermotherapy device, comprising a base (1), characterized in that, A housing (2) is fixedly connected to the top of the base (1), a radiation source cabinet (3) is fixedly connected to the top of the housing (2), a fixed column (4) is fixedly connected to the top of the radiation source cabinet (3), a height adjustment component (9) is provided inside the fixed column (4), a fixed block (5) is installed on the side wall of the fixed column (4), a slider (6) is slidably connected to the end of the fixed block (5) away from the fixed column (4), a length adjustment component (8) is provided between the fixed block (5) and the slider (6), a connecting block (10) is fixedly connected to the bottom of the slider (6), a damping shaft (14) is rotatably connected inside the connecting block (10), and a shell (11) is installed at both ends of the connecting block (10), with the shell (11) at the end away from the connecting block (10) A connecting post 1 (19) is uniformly fixedly connected to the outer shell (11). A probe (12) is uniformly installed on the side of the outer shell (11) away from the connecting block (10). A connecting post 2 (20) is fixedly connected to the other end of the outer shell (11). A rotating shaft 1 (21) and a rotating shaft 2 (22) are rotatably connected inside the connecting post 1 (19) and the connecting post 2 (20), respectively. A restraint strap (13) is fixedly connected to the bottom of the outer shell (11). A rotating ring (23) is fitted on the outer wall of the rotating shaft 1 (21) and the rotating shaft 2 (22). A snap-fit ​​assembly (7) is provided on the end of the restraint strap (13) away from the outer shell (11). A conveyor line (16) is installed between the radiation source cabinet (3) and the connecting block (10). A control panel (15) is installed on the outer wall of the radiation source cabinet (3).

2. The intestinal infrared thermotherapy device according to claim 1, characterized in that, The snap-fit ​​assembly (7) includes a socket (71), which is fixedly connected to the end of the restraint strap (13) away from the outer shell (11). The end of the restraint strap (13) near the socket (71) is fixedly connected to a mounting base (72). A protrusion (73) is slidably connected inside the socket (71). A slide plate (74) is fixedly connected to the end of the protrusion (73) near the socket (71). A pressing plate (75) is fixedly connected to the bottom of the slide plate (74). A groove (77) is provided inside the mounting base (72). A spring (76) is fixedly connected between the socket (71) and the slide plate (74).

3. The intestinal infrared thermotherapy device according to claim 1, characterized in that, The length adjustment assembly (8) includes a bolt (81) which is installed between the fixing block (5) and the slider (6). The fixing block (5) and the slider (6) are respectively provided with bolt hole 2 (84) and bolt hole 1 (83).

4. The intestinal infrared thermotherapy device according to claim 1, characterized in that, The height adjustment assembly (9) includes a fixing frame (91), which is fixedly connected to the outer wall of the fixing column (4). An electric actuator (92) is installed between the fixing frame (91) and the fixing column (4). A connecting block (93) is fixedly connected to the output end of the electric actuator (92). A limit groove (94) is opened on the side of the fixing column (4) near the connecting block (93).

5. The intestinal infrared thermotherapy device according to claim 1, characterized in that, The outer shell (11) is fixedly connected to the outer wall of the damping shaft (14) at one end near the connecting block (10), and the outer shell (11) is rotatably connected to the inside of the connecting block (10).

6. The intestinal infrared thermotherapy device according to claim 1, characterized in that, The rotating ring (23) is rotatably connected inside the first connecting post (19) and inside the second connecting post (20).

7. The intestinal infrared thermotherapy device according to claim 1, characterized in that, The base (1) is fixedly connected with wheels (17) around its bottom, and the outer wall of the radiation source cabinet (3) is fixedly connected with a push handle (18).

8. The intestinal infrared thermotherapy device according to claim 2, characterized in that, The pressing plate (75) is slidably connected to the inner wall of the socket (71), and the protrusion (73) is slidably connected to the inside of the groove (77).

9. The intestinal infrared thermotherapy device according to claim 3, characterized in that, The bolt (81) is threaded into the first bolt hole (83) and the second bolt hole (84), and a knob (82) is fixedly connected to the end of the bolt (81) away from the fixing block (5).

10. An intestinal infrared thermotherapy device according to claim 4, characterized in that, The connecting block (93) is slidably connected inside the limiting groove (94).