A plateau male reproductive system traditional Chinese medicine health care device
By designing an internal massage mechanism, a massage outward turning drive mechanism, a locking sealing mechanism, and a micro-heating mechanism, this male reproductive system TCM health care device solves the problems of easy device dislodgement and dirt accumulation, achieving convenient cleaning, sealing, and blood circulation effects, thus improving the user experience and lifespan.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CHENGDU MILITARY GENERAL HOSPITAL OF PLA
- Filing Date
- 2026-01-09
- Publication Date
- 2026-04-21
AI Technical Summary
Existing TCM health care devices for the male reproductive system are prone to accidental dislodgement or accumulation of waste during use, affecting hygiene and safety and shortening their service life.
A traditional Chinese medicine health care device for the male reproductive system was designed, comprising an inner lining massage mechanism, a massage outward turning drive mechanism, a locking edge sealing mechanism, and a micro-heating mechanism. The massage outward turning drive mechanism enables the silicone sleeve to turn outward and inward for easy cleaning, the locking edge sealing mechanism improves the sealing effect, and the micro-heating mechanism promotes blood circulation.
It achieves convenient cleaning and sealing of the silicone sleeve, adapts to different penile lengths, promotes blood circulation, and improves the lifespan of the device and the therapeutic effect.
Smart Images

Figure CN121465861B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of health care and exercise technology, specifically a traditional Chinese medicine health care device for the male reproductive system used in high-altitude areas. Background Technology
[0002] The low oxygen content in the air at high altitudes can lead to chronic hypoxia, causing the body to prioritize blood supply to vital organs such as the heart and brain. This can result in insufficient blood supply to the genitals, leading to erectile dysfunction and exacerbating premature ejaculation. Clinically, various treatment and rehabilitation strategies have been developed, primarily focusing on medication and physical therapy. In physical therapy, methods such as vacuum negative pressure devices and specific traditional Chinese massage techniques are commonly used to induce local penile hyperemia, thereby promoting blood circulation, improving erectile function, and aiding in rehabilitation.
[0003] Currently, most TCM health care devices on the market use a fixed semi-enclosed or movable structure for their inner lining. The movable structure is prone to accidental detachment during use, while the fixed semi-enclosed structure cannot be completely opened, causing residual dirt to accumulate in the gaps, making it difficult to clean thoroughly. This not only affects hygiene and safety but may also shorten the product's lifespan. Summary of the Invention
[0004] In view of the shortcomings of the prior art, the present invention provides a traditional Chinese medicine health care device for the male reproductive system in high-altitude areas, which solves the problems mentioned in the background above.
[0005] This invention provides the following technical solution: A traditional Chinese medicine health care device for the male reproductive system used in high-altitude areas, comprising: an inner lining massage mechanism, one end of which is provided with a massage outward turning drive mechanism; a locking edge sealing mechanism is provided on the surface of the inner lining massage mechanism; a micro-heating mechanism is provided between the locking edge sealing mechanism and the massage outward turning drive mechanism; the inner lining massage mechanism includes a silicone sleeve, anti-torsion ridges, and end connectors; one end of the silicone sleeve is open, and the other end of the silicone sleeve is closed; there are multiple anti-torsion ridges, all integrally formed on the surface of the silicone sleeve, and the multiple anti-torsion ridges are rotationally symmetrical about the center line of the silicone sleeve; the end connectors are fixedly connected to the closed end of the silicone sleeve. The massage outward turning drive mechanism includes a threaded outer cylinder, a threaded inner cylinder, a telescopic adjustment torsion cylinder, and a first closed cylinder. The threaded outer cylinder is fixedly connected to one end of the end connector, the threaded inner cylinder is threadedly connected inside the threaded outer cylinder, the telescopic adjustment torsion cylinder is fixedly sleeved on the end of the threaded inner cylinder away from the threaded outer cylinder, and the first closed cylinder is rotatably connected inside the telescopic adjustment torsion cylinder via a bearing. The locking sealing mechanism includes a mounting ring seat and a second closed cylinder. The mounting ring seat and the second closed cylinder are disposed at one end of a silicone sleeve, and the silicone sleeve is fixedly connected inside the second closed cylinder via the mounting ring seat. The micro-heating mechanism includes a heat-conducting cylinder, which is fixedly connected between the first closed cylinder and the second closed cylinder.
[0006] Preferably, the inner lining massage mechanism further includes massage bumps and a one-way sealing flap. The number of massage bumps is multiple, and all of the multiple massage bumps are integrally disposed inside the silicone sleeve. The one-way sealing flap is integrally disposed on the inner wall of one end of the silicone sleeve.
[0007] Preferably, the massage outward turning drive mechanism further includes a limiting collar and a compression spring. The limiting collar is fixedly sleeved on the surface of one end of the threaded outer cylinder, and the compression spring is movably installed between the threaded outer cylinder and the threaded inner cylinder.
[0008] Preferably, the massage outward turning drive mechanism further includes a suction piston, an armature ring, and a sliding seal ring. The suction piston is slidably connected between the first closed cylinder and the heat-conducting cylinder, and a first through hole is provided through the interior of the suction piston. The armature ring is fixedly connected inside the suction piston, and the sliding seal ring is fixedly connected inside the first through hole of the suction piston. The space between the suction piston and the silicone sleeve is filled with heat-conducting liquid, and the surface of the sliding seal ring is slidably connected to the surface of the threaded outer cylinder.
[0009] Preferably, the massage outward turning drive mechanism further includes a hydraulic spring, a magnet frame, and an electromagnet. The magnet frame is fixedly connected inside the first closed cylinder, the electromagnet is fixedly installed inside the magnet frame, and a second through hole is provided through the inside of the electromagnet. The inner wall of the second through hole is slidably connected to the outer wall of the threaded outer cylinder. The hydraulic spring is movably installed between the magnet frame and the armature ring, and the hydraulic spring is movably sleeved on the surface of the threaded outer cylinder.
[0010] Preferably, the locking sealing mechanism further includes an elastic compression fluid bladder, a fluid inlet tube, an elastic reservoir, gaskets, and an expansion spring. The elastic compression fluid bladder is fixedly connected inside the mounting ring seat. The elastic reservoir is movably mounted on the surface of the second closed cylinder. The fluid inlet tube is fixedly connected between the elastic compression fluid bladder and the elastic reservoir, and the space between the elastic reservoir and the elastic compression fluid bladder is filled with transmission fluid. There are two gaskets, and both gaskets are movably mounted inside the elastic reservoir. The expansion spring is fixedly connected between the two gaskets.
[0011] Preferably, the locking sealing mechanism further includes a sleeve and a guide strip. The sleeve is fixedly fitted onto the surface of the second closed cylinder, the elastic liquid reservoir is located inside the sleeve, and the guide strip is integrally disposed inside the sleeve.
[0012] Preferably, the locking sealing mechanism further includes a conversion cylinder, a conversion external thread, and a guide groove. The conversion cylinder is slidably connected inside the sleeve. The conversion external thread and the guide groove are both formed on the surface of the conversion cylinder, and the inner wall of the guide groove is slidably connected to the surface of the guide strip.
[0013] Preferably, the locking sealing mechanism further includes a pressure adjusting torque cylinder, a conversion internal thread, and a rubber damping ring. The pressure adjusting torque cylinder is rotatably connected to the surface of one end of the sleeve via a bearing. The conversion internal thread is integrally disposed inside the pressure adjusting torque cylinder, and the pressure adjusting torque cylinder is threadedly connected to the conversion cylinder via the conversion internal thread and the conversion external thread. The rubber damping ring is fixedly connected inside the pressure adjusting torque cylinder, and the surface of the rubber damping ring is slidably connected to the surface of the second sealing cylinder.
[0014] Preferably, the micro-heating mechanism further includes an insulating heat shield, an electric heating ring, and a temperature controller. The insulating heat shield is fixedly sleeved between the first closed cylinder and the second closed cylinder. The electric heating ring and the temperature controller are both fixedly installed inside the insulating heat shield, and the electric heating ring is fixedly sleeved on the surface of the heat-conducting cylinder.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] This plateau-use male reproductive system health care device, through its inner lining massage mechanism, massage outward turning drive mechanism, locking edge sealing mechanism, and micro-heating mechanism, allows for convenient control of the inner lining massage mechanism to perform outward and inward turning movements during use. This not only facilitates the outward turning and cleaning of the silicone sleeve, but also allows the massage outward turning adjustment mechanism to drive the silicone sleeve to extend or retract, thereby adjusting its length.
[0017] This plateau-use male reproductive system health care device, through its silicone sleeve, anti-torsion ridge, end pins, massage protrusions, and one-way sealing flaps, can use the silicone sleeve as an isolation and seal for the heat-conducting fluid. At the same time, the anti-torsion ridge can improve the torsional rigidity of the silicone sleeve, preventing easy synchronization between the threaded outer cylinder and the threaded inner cylinder when they twist relative to each other, thus ensuring the support effect.
[0018] This plateau-use male reproductive system health care device, through its threaded outer cylinder, threaded inner cylinder, telescopic adjustment torsion cylinder, first sealing cylinder, limiting collar, compression spring, suction piston, armature ring, sliding seal ring, pressure spring, magnet frame, and electromagnet, can adjust the length of the silicone sleeve and execute outward and inward movements by utilizing the telescopic movement between the threaded outer cylinder and the threaded inner cylinder. This ensures that the silicone sleeve can fit penises of different lengths. At the same time, the floating of the suction piston can drive the heat-conducting fluid, thereby achieving positive and negative pressure control on the surface of the silicone sleeve.
[0019] This plateau-use male reproductive system health care device, through its installation ring seat, second sealing cylinder, elastic compression fluid bladder, fluid inlet tube, elastic fluid reservoir, gasket ring, expansion spring, sleeve, guide strip, conversion cylinder, conversion external thread, guide slide groove, compression adjustment torque cylinder, conversion internal thread, and rubber damping ring, allows for the regulation of the expansion and contraction of the internal elastic compression fluid bladder by rotating the external compression adjustment torque cylinder during use, while simultaneously locking it in place, thereby improving the sealing effect between the silicone sleeve and the base of the penis.
[0020] This plateau-use male reproductive system TCM health care device, through its heat-conducting cylinder, heat-insulating shell, electric heating ring, and temperature controller, can generate heat using the electric heating ring during use. This heat is then transferred to the penis through the heat-conducting fluid and silicone sleeve, thereby promoting blood circulation inside the penis and improving the treatment effect. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of the present invention;
[0022] Figure 2 This is a schematic diagram of the structure of the silicone sleeve of the present invention when it is turned outward;
[0023] Figure 3 This is a cross-sectional view of the present invention;
[0024] Figure 4This is a side sectional view of the present invention;
[0025] Figure 5 This is a schematic diagram of the exploded structure of the present invention;
[0026] Figure 6 This is a schematic diagram of the connection structure between the inner lining massage mechanism and the massage outward turning drive mechanism of the present invention;
[0027] Figure 7 This is a schematic diagram of the exploded structure at the location of the conversion cylinder in this invention;
[0028] Figure 8 This is a schematic diagram of the structure at the location of the heating ring in this invention.
[0029] In the picture:
[0030] 101. Silicone sleeve; 102. Anti-torsion ridge; 103. End pin; 104. Massage bumps; 105. One-way sealing flap; 201. Threaded outer cylinder; 202. Threaded inner cylinder; 203. Telescopic adjustment torsion cylinder; 204. First sealing cylinder; 205. Limiting collar; 206. Compression spring; 207. Suction piston; 208. Armature ring; 209. Sliding seal ring; 210. Hydraulic spring; 211. Magnet holder; 212. Electromagnet; 301. Mounting ring seat; 30 2. Second closed cylinder; 303. Elastic compression liquid bladder; 304. Liquid inlet pipe; 305. Elastic liquid reservoir; 306. Washer ring; 307. Expansion spring; 308. Sleeve; 309. Guide strip; 310. Conversion cylinder; 311. Conversion external thread; 312. Guide slide groove; 313. Compression adjustment torque cylinder; 314. Conversion internal thread; 315. Rubber damping ring; 401. Heat-conducting cylinder; 402. Insulating heat shell; 403. Heating ring; 404. Temperature controller. Detailed Implementation
[0031] The technical solutions of 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.
[0032] Please see Figure 1-8A traditional Chinese medicine health care device for the male reproductive system used in high-altitude areas includes: an inner massage mechanism, a massage outward turning drive mechanism at one end of the inner massage mechanism, a locking edge sealing mechanism on the surface of the inner massage mechanism, and a micro-heating mechanism between the locking edge sealing mechanism and the massage outward turning drive mechanism. The inner massage mechanism includes a silicone sleeve 101, anti-torsion ridges 102, and end connectors 103. One end of the silicone sleeve 101 is open, and the other end of the silicone sleeve 101 is closed. Multiple anti-torsion ridges 102 are integrally formed on the surface of the silicone sleeve 101 and are rotationally symmetrical about the center line of the silicone sleeve 101. The end connectors 103 are fixedly connected to the closed end of the silicone sleeve 101. The massage outward turning drive mechanism includes a threaded outer cylinder 201, a threaded inner cylinder 202, a telescopic adjustment cylinder 203, and a first closed cylinder 204. The threaded outer cylinder 201 is fixedly connected to one end of the end connectors 103, and the threaded inner cylinder 202 is threadedly connected to the threaded outer cylinder 201. Inside the sleeve 1, the telescopic adjustment cylinder 203 is fixedly sleeved on the end of the threaded inner cylinder 202 away from the threaded outer cylinder 201. The first closed cylinder 204 is rotatably connected to the inside of the telescopic adjustment cylinder 203 through a bearing. The locking edge sealing mechanism includes a mounting ring seat 301 and a second closed cylinder 302. The mounting ring seat 301 and the second closed cylinder 302 are set at one end of the silicone sleeve 101, and the silicone sleeve 101 is fixedly connected to the inside of the second closed cylinder 302 through the mounting ring seat 301. The micro-heating mechanism includes a heat-conducting cylinder 401, which is fixedly connected between the first closed cylinder 204 and the second closed cylinder 302. Through the inner lining massage mechanism, the massage outward turning drive mechanism, the locking edge sealing mechanism, and the micro-heating mechanism, the inner lining massage mechanism can be conveniently controlled to perform outward and inward turning actions through the massage outward turning drive mechanism during use. This not only facilitates the outward turning cleaning of the silicone sleeve 101, but also allows the silicone sleeve 101 to be extended or retracted by the massage outward turning adjustment mechanism, thereby completing the length adjustment.
[0033] The inner massage mechanism includes massage bumps 104 and one-way sealing flaps 105. There are multiple massage bumps 104, and all of them are integrally set inside the silicone sleeve 101. The one-way sealing flaps 105 are integrally set on the inner wall of one end of the silicone sleeve 101. Through the silicone sleeve 101, anti-torsion ridge 102, end pin 103, massage bumps 104, and one-way sealing flaps 105, the silicone sleeve 101 can be used as an isolation and seal for the heat-conducting fluid. At the same time, the anti-torsion ridge 102 can improve the torsional rigidity of the silicone sleeve 101, preventing the threaded outer cylinder 201 and the threaded inner cylinder 202 from easily synchronizing when they twist relative to each other, thereby ensuring the support effect.
[0034] The massage outward turning drive mechanism also includes a limiting collar 205 and a compression spring 206. The limiting collar 205 is fixedly sleeved on the surface of one end of the threaded outer cylinder 201, and the compression spring 206 is movably installed between the threaded outer cylinder 201 and the threaded inner cylinder 202.
[0035] The massage outward turning drive mechanism also includes a suction piston 207, an armature ring 208, and a sliding seal ring 209. The suction piston 207 is slidably connected between the first closed cylinder 204 and the heat-conducting cylinder 401, and a first through hole is provided through the interior of the suction piston 207. The armature ring 208 is fixedly connected to the interior of the suction piston 207, and the sliding seal ring 209 is fixedly connected to the interior of the first through hole of the suction piston 207. The space between the suction piston 207 and the silicone sleeve 101 is filled with heat-conducting liquid, and the surface of the sliding seal ring 209 is slidably connected to the surface of the threaded outer cylinder 201.
[0036] The massage outward turning drive mechanism includes a hydraulic spring 210, a magnet frame 211, and an electromagnet 212. The magnet frame 211 is fixedly connected inside the first closed cylinder 204, and the electromagnet 212 is fixedly installed inside the magnet frame 211. A second through hole is provided inside the electromagnet 212, and the inner wall of the second through hole is slidably connected to the outer wall of the threaded outer cylinder 201. The hydraulic spring 210 is movably installed between the magnet frame 211 and the armature ring 208, and the hydraulic spring 210 is movably sleeved on the surface of the threaded outer cylinder 201. The mechanism utilizes the threaded outer cylinder 201 and the threaded inner cylinder... 202, 203, 204, 205, 206, 207, 208, 209, 210, 211, 212, and the telescopic adjustment cylinder 201 and the threaded inner cylinder 202 together enable the length adjustment of the silicone sleeve 101 and the execution of outward and inward turning actions, ensuring that the silicone sleeve 101 can adapt to penises of different lengths. At the same time, the floating of the suction piston 207 can drive the heat transfer fluid, thereby realizing the positive and negative pressure control of the surface of the silicone sleeve 101.
[0037] The locking sealing mechanism also includes an elastic compression fluid bladder 303, a fluid inlet pipe 304, an elastic reservoir bladder 305, a gasket 306, and an expansion spring 307. The elastic compression fluid bladder 303 is fixedly connected inside the mounting ring seat 301. The elastic reservoir bladder 305 is movably installed on the surface of the second closed cylinder 302. The fluid inlet pipe 304 is fixedly connected between the elastic compression fluid bladder 303 and the elastic reservoir bladder 305, and the space between the elastic reservoir bladder 305 and the elastic compression fluid bladder 303 is filled with transmission fluid. There are two gaskets 306, and both gaskets 306 are movably installed inside the elastic reservoir bladder 305. The expansion spring 307 is fixedly connected between the two gaskets 306.
[0038] The locking sealing mechanism also includes a sleeve 308 and a guide strip 309. The sleeve 308 is fixedly sleeved on the surface of the second closed cylinder 302, the elastic liquid storage bladder 305 is located inside the sleeve 308, and the guide strip 309 is integrally set inside the sleeve 308.
[0039] The locking sealing mechanism also includes a conversion cylinder 310, a conversion external thread 311, and a guide groove 312. The conversion cylinder 310 is slidably connected inside the sleeve 308. The conversion external thread 311 and the guide groove 312 are both formed on the surface of the conversion cylinder 310, and the inner wall of the guide groove 312 is slidably connected to the surface of the guide strip 309.
[0040] The locking sealing mechanism further includes a pressure adjusting torque cylinder 313, a conversion internal thread 314, and a rubber damping ring 315. The pressure adjusting torque cylinder 313 is rotatably connected to the surface of one end of the sleeve 308 via a bearing. The conversion internal thread 314 is integrally disposed inside the pressure adjusting torque cylinder 313, and the pressure adjusting torque cylinder 313 is threadedly connected to the conversion cylinder 310 via the conversion internal thread 314 and the conversion external thread 311. The rubber damping ring 315 is fixedly connected inside the pressure adjusting torque cylinder 313, and the surface of the rubber damping ring 315 is slidably connected to the surface of the second sealing cylinder 302. The ring seat 301, the second sealing cylinder 302, the elastic compression liquid bladder 303, the liquid passage tube 304, the elastic liquid reservoir 305, the gasket ring 306, the expansion spring 307, the sleeve 308, the guide strip 309, the conversion cylinder 310, the conversion external thread 311, the guide slide groove 312, the compression adjustment torque cylinder 313, the conversion internal thread 314, and the rubber damping ring 315, can control the expansion and contraction of the internal elastic compression liquid bladder 303 by rotating the external compression adjustment torque cylinder 313 during use, and at the same time achieve locking, thereby improving the sealing effect between the silicone sleeve 101 and the base of the penis.
[0041] The micro-heating mechanism also includes a heat-insulating shell 402, an electric heating ring 403, and a temperature controller 404. The heat-insulating shell 402 is fixedly sleeved between the first closed cylinder 204 and the second closed cylinder 302. The electric heating ring 403 and the temperature controller 404 are both fixedly installed inside the heat-insulating shell 402, and the electric heating ring 403 is fixedly sleeved on the surface of the heat-conducting cylinder 401. Through the heat-conducting cylinder 401, the heat-insulating shell 402, the electric heating ring 403, and the temperature controller 404, heat can be generated by the electric heating ring 403 during use and transferred to the penis through the heat-conducting fluid and the silicone sleeve 101, thereby promoting blood circulation inside the penis and improving the treatment effect.
[0042] Working principle:
[0043] When in use, put the silicone sleeve 101 on the surface of the penis, and then twist the telescopic adjustment cylinder 203. The telescopic adjustment cylinder 203 drives the threaded inner cylinder 202 to rotate. When the threaded inner cylinder 202 rotates, it pushes the threaded outer cylinder 201, thereby adjusting the extension length of the threaded outer cylinder 201, and thus adjusting the length of the silicone sleeve 101 so that the length of the silicone sleeve 101 matches the length of the penis.
[0044] Then, the tightening adjustment cylinder 313 is twisted. When the tightening adjustment cylinder 313 is twisted, it pushes the conversion external thread 311 through the conversion internal thread 314, so that the conversion cylinder 310 slides along the guide bar 309 toward the one-way sealing flap 105. When the conversion cylinder 310 slides, it squeezes the elastic reservoir 305, so that the transmission fluid inside the elastic reservoir 305 is squeezed into the elastic tightening fluid bladder 303 through the fluid passage 304, thereby causing the elastic tightening fluid bladder 303 to expand inward, thereby achieving the compression of the silicone sleeve 101 and the one-way sealing flap 105, thereby achieving the fixation of the penis root.
[0045] Then, the electromagnet 212 is periodically switched on and off. When the electromagnet 212 is energized, the armature ring 208 is attracted and the suction piston 207 slides toward the electromagnet 212, causing the suction piston 207 to form a negative pressure around the silicone sleeve 101 through the heat-conducting fluid. The silicone sleeve 101 expands, and at the moment of expansion, a negative pressure is formed between its interior and the penis, causing the penis to become congested with blood to promote blood circulation. When the electromagnet 212 is de-energized, the pressure spring 210 rebounds and resets, thereby squeezing the armature ring 208 away from the electromagnet 212 and causing the suction piston 207 to form a positive pressure around the silicone sleeve 101 through the heat-conducting fluid. The silicone sleeve 101 contracts, and at the moment of contraction, a positive pressure is formed between its interior and the penis, expelling residual air along the one-way sealing flap 105. At the same time, the massage protrusions 104 inside the silicone sleeve 101 provide a squeezing massage stimulation to the surface of the penis. Through the periodic contraction and expansion of the silicone sleeve 101, the penis can be periodically compressed, congested with blood, and massaged to achieve blood circulation.
[0046] Meanwhile, during use, the heat-conducting fluid can be heated by the heating ring 403, thereby heating the silicone sleeve 101 and further promoting blood circulation;
[0047] During cleaning, twisting the telescopic adjustment cylinder 203 causes the threaded inner cylinder 202 to rotate. When the threaded inner cylinder 202 rotates, it pushes the threaded outer cylinder 201, causing the threaded outer cylinder 201 to extend to its end position. This pushes the silicone sleeve 101 outward, causing the inside of the silicone sleeve 101 to flip to the outside, exposing the massage protrusions 104, thus facilitating the cleaning of the inside of the silicone sleeve 101. After cleaning, twisting the telescopic adjustment cylinder 203 in the opposite direction causes the threaded inner cylinder 202 to reverse. When the threaded inner cylinder 202 rotates, it pulls the threaded outer cylinder 201, causing the threaded outer cylinder 201 to retract and reset, thereby pulling the silicone sleeve 101 inward and resetting.
[0048] 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. A traditional Chinese medicine health care device for the male reproductive system used in high-altitude areas, characterized in that, include: The inner lining massage mechanism is provided with a massage outward turning drive mechanism at one end, a locking edge sealing mechanism is provided on the surface of the inner lining massage mechanism, and a micro-heating mechanism is provided between the locking edge sealing mechanism and the massage outward turning drive mechanism. The inner massage mechanism includes a silicone sleeve (101), anti-torsion ridges (102), and end pins (103). One end of the silicone sleeve (101) is open, and the other end of the silicone sleeve (101) is closed. There are multiple anti-torsion ridges (102), and all of the multiple anti-torsion ridges (102) are integrally set on the surface of the silicone sleeve (101). The multiple anti-torsion ridges (102) are rotationally symmetrical about the center line of the silicone sleeve (101). The end pins (103) are fixedly connected to the closed end of the silicone sleeve (101). The massage outward turning drive mechanism includes a threaded outer cylinder (201), a threaded inner cylinder (202), a telescopic adjustment torsion cylinder (203), and a first closed cylinder (204). The threaded outer cylinder (201) is fixedly connected to one end of the end pins (103). The cylinder (202) is threadedly connected to the inside of the threaded outer cylinder (201). The telescopic adjustment torsion cylinder (203) is fixedly sleeved on the end of the threaded inner cylinder (202) away from the threaded outer cylinder (201). The first closed cylinder (204) is rotatably connected to the inside of the telescopic adjustment torsion cylinder (203) through a bearing. The locking sealing mechanism includes a mounting ring seat (301) and a second closed cylinder (302). The mounting ring seat (301) and the second closed cylinder (302) are both set at the open end of the silicone sleeve (101), and the silicone sleeve (101) is fixedly connected to the inside of the second closed cylinder (302) through the mounting ring seat (301). The micro-heating mechanism includes a heat-conducting cylinder (401), which is fixedly connected between the first closed cylinder (204) and the second closed cylinder (302). The massage outward turning drive mechanism also includes a limiting collar (205) and a compression spring (206). The limiting collar (205) is fixedly sleeved on the surface of the threaded outer cylinder (201) near the silicone sleeve (101). The compression spring (206) is movably installed between the threaded outer cylinder (201) and the threaded inner cylinder (202). The massage outward turning drive mechanism also includes a suction piston (207), an armature ring (208), and a sliding seal ring (209). The suction piston (207) is slidably connected between the first closed cylinder (204) and the heat-conducting cylinder (401), and a first through hole is provided through the inside of the suction piston (207). The armature ring (208) is fixedly connected inside the suction piston (207), and the sliding seal ring (209) is fixedly connected inside the first through hole of the suction piston (207). The suction piston (207) and the silicone sleeve (101) are filled with heat-conducting liquid, and the surface of the sliding seal ring (209) is slidably connected to the surface of the threaded outer cylinder (201). The massage outward turning drive mechanism also includes a hydraulic spring (210), a magnet frame (211), and an electromagnet (212). The magnet frame (211) is fixedly connected inside the first closed cylinder (204). The electromagnet (212) is fixedly installed inside the magnet frame (211). A second through hole is provided through the inside of the electromagnet (212). The inner wall of the second through hole is slidably connected to the outer wall of the threaded outer cylinder (201). The hydraulic spring (210) is movably installed between the magnet frame (211) and the armature ring (208). The hydraulic spring (210) is movably sleeved on the surface of the threaded outer cylinder (201).
2. The traditional Chinese medicine health care device for the male reproductive system in high-altitude areas according to claim 1, characterized in that, The inner lining massage mechanism also includes massage bumps (104) and one-way sealing flaps (105). There are multiple massage bumps (104), and all of the multiple massage bumps (104) are integrally arranged inside the silicone sleeve (101). The one-way sealing flaps (105) are integrally arranged on the inner wall of the opening end of the silicone sleeve (101).
3. The traditional Chinese medicine health care device for the male reproductive system in high-altitude areas according to claim 1, characterized in that, The locking sealing mechanism further includes an elastic compression fluid bladder (303), a fluid inlet pipe (304), an elastic reservoir bladder (305), a gasket (306), and an expansion spring (307). The elastic compression fluid bladder (303) is fixedly connected inside the mounting ring seat (301). The elastic reservoir bladder (305) is movably installed on the surface of the second closed cylinder (302). The fluid inlet pipe (304) is fixedly connected between the elastic compression fluid bladder (303) and the elastic reservoir bladder (305). The space between the elastic reservoir bladder (305) and the elastic compression fluid bladder (303) is filled with transmission fluid. There are two gaskets (306), and both gaskets (306) are movably installed inside the elastic reservoir bladder (305). The expansion spring (307) is fixedly connected between the two gaskets (306).
4. A traditional Chinese medicine health care device for the male reproductive system in high-altitude areas according to claim 3, characterized in that, The locking sealing mechanism also includes a sleeve (308) and a guide strip (309). The sleeve (308) is fixedly sleeved on the surface of the second closed cylinder (302). The elastic liquid reservoir (305) is located inside the sleeve (308). The guide strip (309) is integrally set inside the sleeve (308).
5. A traditional Chinese medicine health care device for the male reproductive system in high-altitude areas according to claim 4, characterized in that, The locking sealing mechanism also includes a conversion cylinder (310), a conversion external thread (311), and a guide groove (312). The conversion cylinder (310) is slidably connected inside the sleeve (308). The conversion external thread (311) and the guide groove (312) are both opened on the surface of the conversion cylinder (310), and the inner wall of the guide groove (312) is slidably connected to the surface of the guide strip (309).
6. A traditional Chinese medicine health care device for the male reproductive system in high-altitude areas according to claim 5, characterized in that, The locking sealing mechanism further includes a pressure adjusting torque cylinder (313), a conversion internal thread (314), and a rubber damping ring (315). The pressure adjusting torque cylinder (313) is rotatably connected to the surface of one end of the sleeve (308) via a bearing. The conversion internal thread (314) is integrally disposed inside the pressure adjusting torque cylinder (313), and the pressure adjusting torque cylinder (313) is threadedly connected to the conversion cylinder (310) via the conversion internal thread (314) and the conversion external thread (311). The rubber damping ring (315) is fixedly connected inside the pressure adjusting torque cylinder (313), and the surface of the rubber damping ring (315) is slidably connected to the surface of the second sealing cylinder (302).
7. A traditional Chinese medicine health care device for the male reproductive system used in high-altitude areas according to claim 1, characterized in that, The micro-heating mechanism also includes a heat-insulating shell (402), an electric heating ring (403), and a temperature controller (404). The heat-insulating shell (402) is fixedly sleeved between the first closed cylinder (204) and the second closed cylinder (302). The electric heating ring (403) and the temperature controller (404) are both fixedly installed inside the heat-insulating shell (402), and the electric heating ring (403) is fixedly sleeved on the surface of the heat-conducting cylinder (401).
Citation Information
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