Gravity eyeshade
By using a split eyeball pack and eye socket pack structure and filling with granular medicinal materials, the problem of uneven pressure distribution in gravity eye masks is solved, achieving the effect of even pressure on the eyes and application of medicinal materials, promoting blood circulation and improving user comfort.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-28
- Publication Date
- 2026-03-13
AI Technical Summary
Existing gravity eye masks suffer from uneven particle distribution, leading to uneven pressure distribution and affecting the therapeutic effect.
The design incorporates a split structure of the eyeball pouch and the orbital pouch. The eyeball pouch is embedded in the groove of the orbital pouch and filled with granular medicinal materials. It utilizes the oculomotor reflex to generate a dual effect of gravity pressing and medicinal material application. Furthermore, it achieves uniform distribution of pressure and temperature through a partition sac and a heating medium.
It achieves a uniform distribution of gravity and the force of the medicinal materials, promotes blood circulation in the eyes, relieves fatigue, and improves user comfort and effectiveness through uniform heating by the heating medium.
Smart Images

Figure CN121647893A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of eye mask technology, specifically relating to a gravity eye mask. Background Technology
[0002] The oculocardiac reflex is a physiological reflex that slows the heart rate and lowers blood pressure by mechanically stimulating the eyeball or the tissues around the eye socket. The afferent nerve for this reflex is the trigeminal nerve, the central nervous system is located in the brainstem, and the efferent nerve is the vagus nerve. Its typical manifestation is a significant decrease in heart rate after pressing on the eyeball, thereby activating the body's parasympathetic nervous system and producing a calming and relaxing effect. In medicine, it has been used to terminate certain tachycardias. In daily life, it has been explored for relieving anxiety and promoting sleep. Therefore, gravity eye masks that apply gentle and continuous pressure to the eyes can be designed as a non-drug, non-invasive means of aiding sleep and relaxation. The most common eye masks are made of flexible fabric, and their core function is to block light and create a dark sleep environment.
[0003] Existing gravity eye masks utilize their own weight to provide gentle, whole-body or localized pressure coverage to alleviate anxiety. Traditional gravity eye masks filled with particles have particles that are in a free-flowing state inside. When worn, these particles tend to accumulate at the lowest point of the eye mask under the influence of gravity, resulting in uneven pressure distribution, excessive pressure in some areas, while other areas lose contact and pressure. At the same time, the distribution of the contents cannot remain stable, seriously affecting the uniformity of the physical therapy. Summary of the Invention
[0004] To address the aforementioned technical problems, this invention provides a gravity eye mask. By incorporating a fixing strap, the eye mask is worn on the head, with the strap away from the face, while the eyeball pack and eye socket pack are close to the face. The separate design of the eye socket pack and eyeball pack allows the eyeball pack to be embedded in the groove of the eye socket pack, achieving complete coverage of the eyes. This generates gravity acting on the eyeballs, utilizing the oculocardiac reflex to lower the heart rate, induce a parasympathetic response, and induce rapid sleep. It ensures that the combined force of gravity and the medicinal herbs acts concentrated around the eyes and the corresponding area of the eyeballs. The eyeball pack is filled with granular medicinal herbs, whose weight generates gentle and lasting physical pressure, achieving the dual effects of gravity massage and medicinal application, promoting blood circulation around the eyes and relieving fatigue.
[0005] The technical solution adopted in this invention is as follows:
[0006] A gravity-assisted eye mask includes a fixing strap, on which an eye socket pouch and an eyeball pouch are provided. The center of the eye socket pouch has a groove, and the shape of the eyeball pouch matches the groove. The interior of the eyeball pouch is filled with granular medicinal materials.
[0007] Using the above technical solution, the eye mask is worn on the head with a fixing strap on the side away from the face, while the eyeball pack and eye socket pack are close to the face. The separate design of the eye socket pack and the eyeball pack allows the eyeball pack to be embedded in the groove of the eye socket pack, achieving complete coverage of the eyes. This generates gravity acting on the eyeballs, utilizing the oculocardiac reflex to lower the heart rate, induce a parasympathetic response, and produce a rapid sleep-inducing effect. It ensures that the force of gravity and the medicinal material are concentrated around the eyes and the corresponding area of the eyeballs. The eyeball pack is filled with granular medicinal material, which uses its own weight to generate gentle and lasting physical pressure, achieving the dual effects of gravity pressing and medicinal application, which can promote blood circulation around the eyes and relieve fatigue.
[0008] Furthermore, the granular medicinal material is either cassia seed or tea stem.
[0009] Preferably, the eyeball bag is provided with several partition sacs at internal intervals, the bottom end of each partition sac is fixed to the inner bottom of the eyeball bag, and the top of each partition sac has a gap with the inner top of the eyeball bag.
[0010] By adopting the above technical solution, multiple septa are set to separate the granular medicinal materials into the interconnected chambers between the septa, which prevents them from accumulating on one side due to gravity or particle movement during use. This keeps the shape of the eyeball stable and the pressure distribution uniform. A gap is left between the top of the septa and the top of the eyeball, which allows the medicinal materials to flow slightly within a certain range to adapt to the curvature of the eye, thereby adjusting the distribution of the medicinal materials and preventing the granular medicinal materials from flowing arbitrarily during use and causing the bag to deform.
[0011] Furthermore, the septa are arranged in a matrix, with multiple septa in each column. The septa on both sides of the eyeball are arranged symmetrically, which enables uniform pressure.
[0012] Preferably, the partition bladder has a hollow chamber inside, and a heating medium is provided inside the hollow chamber of the partition bladder. Adjacent partition bladders are connected by a connecting pipe.
[0013] By adopting the above technical solution, a hollow chamber is set in the compartment and filled with a heating medium, so that heat can be directly transferred to the heating medium through each compartment, achieving uniform heating of the heating medium and avoiding local overheating or uneven heating of the heating medium. Furthermore, since the compartment increases the contact area with the heating medium, the heating medium can be heated more quickly. Adjacent compartments are connected by connecting pipes, allowing the heating medium to flow between the compartments, balancing the temperature distribution between each compartment, and improving the uniformity of medium heating and post-heating heat application.
[0014] Preferably, the orbital bag has a liquid storage compartment inside, and a heating medium is provided inside the liquid storage compartment. The orbital bag is provided with a circulation component, which connects the liquid storage compartment to the septum.
[0015] By adopting the above technical solution, an independent liquid reservoir is set up in the orbital capsule, which can adaptably accommodate the expansion of the medium during heating, avoid the septal sac from bursting due to increased pressure, and improve safety. The liquid reservoir and the septal sac are connected by a circulation component to form a closed-loop system, so that the heating medium can circulate between the liquid reservoir and the septal sac to achieve a stable and uniform temperature distribution.
[0016] Furthermore, the heating medium is either water or a phase change material.
[0017] Preferably, the circulation component includes a plug box, the plug box having an internal plug interface, the eyeball bag having a first plug tube connecting to the septum, the first plug tube being able to dock with the plug interface; the orbital bag having a second plug tube connecting to the fluid reservoir, the second plug tube passing through the plug box and communicating with the plug interface.
[0018] The above technical solution, with its design of plug-in boxes and interfaces, allows the eyeball bag and eye socket bag to be quickly connected via the first plug-in tube and the second plug-in tube, improving assembly efficiency.
[0019] Preferably, the insertion interface is connected to a circulation pump and a heating component, and the orbital bag is provided with a power interface, which is electrically connected to the circulation pump and the heating component respectively.
[0020] By adopting the above technical solution, a circulating pump and heating components are set up, thereby realizing active circulation of the heating medium and temperature controllable heating, improving thermal efficiency and temperature uniformity. The power interface facilitates electrical connection with an external power source, thereby providing electrical energy to the components of the entire heating cycle and realizing electric control.
[0021] Preferably, the upper part of the plug box is provided with a first opening, and a cover plate that mates with the opening is hinged to the upper outer edge of the plug box. The first plug tube includes a first tube body, and a first protrusion is provided on the first tube body. The first protrusion is provided on the upper wall of the first tube body away from the insertion end. The cover plate is provided with a second protrusion that mates with the first protrusion on the insertion side of the first plug tube. A second opening that mates with the second protrusion is opened at the upper edge of the side of the plug box near the plug interface.
[0022] The above technical solution features a hinged design between the cover plate and the insertion box, which facilitates opening and closing. Through the cooperation of the first and second protrusions, when the cover plate is closed, the second protrusion is located on the side closer to the eyeball bag, thereby locking the first insertion tube and preventing it from accidentally falling off. The second opening facilitates cooperation with the first and second protrusions, and will not block the first protrusion when inserting the first tube. At the same time, it further strengthens the relative fixation between the eyeball bag and the orbital bag, enhancing the overall structural stability.
[0023] Preferably, a fixing strip is provided along the lower edge of the cover plate to interfere with the first opening on the plug box.
[0024] Using the above technical solution, the fixing strip and the first opening are interference-fitted, which enables the cover plate to be tightly closed.
[0025] Preferably, the eyeball bag is provided with a sealing cap on the side near the bridge of the nose, and the eyeball bag is provided with a third opening corresponding to the sealing cap. The edge of the third opening is provided with a rigid fixing frame, and the sealing cap and the fixing frame are interference fit.
[0026] Using the above technical solution, the sealing cap and the rigid fixing frame are interference-fitted to close the third opening and prevent the medicine from leaking. By opening the sealing cap, granular medicine can be easily added or replaced, thereby extending the service life of the eye mask. Different types of medicine can also be added according to one's own needs.
[0027] Preferably, the fixing strap is provided with a first adhesive component that cooperates with each other at the position corresponding to the orbital bag and the side of the orbital bag that contacts the fixing strap, and the two ends of the fixing strap are also provided with a second adhesive component that cooperates with each other.
[0028] Using the above technical solution, the first adhesive component allows the eye socket bag to be fixed on the fixing strap, and the second adhesive component allows the length of both ends of the fixing strap to be adjusted and fixed to the head, improving the wearing comfort.
[0029] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0030] The eye mask is worn on the head with a fixing strap on the side furthest from the face, while the eyeball pack and eye socket pack are close to the face. The separate design of the eyeball pack and eye socket pack allows the eyeball pack to be embedded in the groove of the eye socket pack, achieving complete coverage of the eyes. This generates gravity acting on the eyeballs, utilizing the oculocardiac reflex to lower the heart rate, trigger a parasympathetic response, and produce a rapid sleep-inducing effect. It ensures that the force of gravity and the herbal medicine are concentrated around the eyes and the corresponding area of the eyeballs. The eyeball pack is filled with granular herbal medicine, which uses its own weight to generate gentle and lasting physical pressure, achieving the dual effects of gravity massage and herbal application, which can promote blood circulation around the eyes and relieve fatigue.
[0031] A hollow chamber is set inside the septum and filled with a heating medium, so that heat can be directly transferred to the heating medium through each septum, achieving uniform heating of the heating medium and avoiding local overheating or uneven heating of the heating medium. Furthermore, since the septum increases the contact area with the heating medium, the heating medium can be heated more quickly. Adjacent septums are connected by connecting pipes, allowing the heating medium to flow between the septums, balancing the temperature distribution between each septum, and improving the uniformity of medium heating and post-heating heat application. Attached Figure Description
[0032] The present invention will be described by way of example and with reference to the accompanying drawings, wherein:
[0033] Figure 1 This is a schematic diagram of the overall structure of a gravity eye mask according to the present invention;
[0034] Figure 2 This is a schematic diagram of the transparent connection structure of a gravity eye mask according to the present invention;
[0035] Figure 3 This is a schematic diagram of the distribution structure of the septal sacs of the ocular bag in this invention;
[0036] Figure 4 This is a schematic diagram of the plug-in box from one perspective in this invention;
[0037] Figure 5 This is a structural schematic diagram of the plug-in box from another perspective in this invention.
[0038] Figure Labels
[0039] 1-Fixing strap, 2-Eyeball bag, 3-Eye socket bag, 4-Fixing part, 5-Adhesive part, 6-Groove, 7-Separating sac, 9-First insertion tube, 901-First tube body, 902-First protrusion, 10-Liquid storage part, 11-Circulation assembly, 1101-Insertion box, 1102-Cover plate, 1103-Second protrusion, 1104-Fixing strip, 1105-Insertion interface, 12-Second insertion tube, 13-Connecting tube, 14-Sealing cap. Detailed Implementation
[0040] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions in the embodiments of this application will be clearly and completely described below. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0041] The following is combined Figures 1-5 The present invention will be described in detail below.
[0042] Example 1
[0043] A gravity eye mask, see attached. Figure 1 The device includes a fixing strap 1, on which an eye socket pack 3 and an eyeball pack 2 are mounted. The eye socket pack 3 has a groove 6 at its center, and the shape of the eyeball pack 2 matches the groove 6. The eyeball pack 2 is filled with granular medicinal materials. The eye mask is worn on the head with the fixing strap 1 away from the face, while the eyeball pack 2 and eye socket pack 3 are close to the face. The separate design of the eye socket pack 3 and eyeball pack 2 allows the eyeball pack 2 to be embedded in the groove 6 of the eye socket pack 3, achieving complete coverage of the eyes. This generates gravity acting on the eyeballs, utilizing the oculocardiac reflex to lower the heart rate, induce a parasympathetic response, and induce rapid sleep. It ensures that the force of gravity and the medicinal materials are concentrated around the eyes and the corresponding area of the eyeballs. The granular medicinal materials inside the eyeball pack 2 utilize their own weight to generate gentle and lasting physical pressure, achieving the dual effects of gravity pressure and medicinal application, promoting blood circulation around the eyes and relieving fatigue.
[0044] In this embodiment, the granular medicinal material is cassia seed.
[0045] Example 2
[0046] In this embodiment, refer to the appendix. Figures 2-3 The eyeball pack 2 has several partition sacs 7 arranged inside. The bottom end of each partition sac 7 is fixed to the inner bottom of the eyeball pack 2, and the top of each partition sac 7 has a gap with the inner top of the eyeball pack 2. By setting multiple partition sacs 7, the granular medicinal materials are separated into various connected chambers separated by the partition sacs 7, which prevents them from accumulating on one side due to gravity or particle movement during use, thereby maintaining the stability of the shape of the eyeball pack 2 and the uniform pressure distribution. The gap between the top of the partition sac 7 and the inner top of the eyeball pack 2 allows the medicinal materials to flow slightly within a certain range to adapt to the curvature of the eye, thereby adjusting the distribution of the medicinal materials and preventing the granular medicinal materials from flowing arbitrarily during use and causing the pack to deform.
[0047] In this embodiment, the septa 7 are arranged in a matrix, with multiple septa 7 in each column. The septa 7 on both sides of the eyeball 2 are arranged symmetrically, thereby enabling uniform pressure.
[0048] The number of segmented capsules is 8, with 3 on each side and 2 in the middle.
[0049] Example 3
[0050] In this embodiment, the partition 7 has a hollow chamber inside, and a heating medium is disposed inside the hollow chamber. Adjacent partition 7s are connected by a connecting pipe 13. The partition 7 has a hollow chamber filled with a heating medium, which allows heat to be directly transferred to the heating medium through each partition 7, achieving uniform heating of the heating medium and avoiding local overheating or uneven heating of the heating medium. Furthermore, since the partition 7 increases the contact area with the heating medium, the heating medium can be heated more quickly. The connecting pipe 13 connects adjacent partition 7s, allowing the heating medium to flow between the partition 7s, balancing the temperature distribution between each partition 7, and improving the uniformity of medium heating and the heat application after heating.
[0051] The heating medium is water.
[0052] Example 4
[0053] In this embodiment, the orbital pouch 3 is provided with a liquid storage section 10, which contains a heating medium. The orbital pouch is provided with a circulation component 11, which connects the liquid storage section 10 to the septum 7. The independent liquid storage section 10 inside the orbital pouch 3 can accommodate the expansion of the medium during heating, preventing the septum 7 from bursting due to increased pressure and improving safety. The circulation component 11 connects the liquid storage section 10 and the septum 7 to form a closed-loop system, allowing the heating medium to circulate between the liquid storage section 10 and the septum 7, achieving a stable and uniform temperature distribution.
[0054] In this embodiment, refer to the appendix. Figures 4-5 The circulation component 11 includes a connector box 1101, with a connector 1105 inside the connector box 1101. The eyeball bag 2 is provided with a first connector tube 9 that connects to the partition sac 7, and the first connector tube 9 can dock with the connector 1105. The orbital bag 3 is provided with a second connector tube 12 that connects to the liquid storage section 10. The second connector tube 12 passes through the connector box 1101 and connects to the connector 1105. The design of the connector box 1101 and the connector 1105 allows the eyeball bag 2 and the orbital bag 3 to be quickly docked through the first connector tube 9 and the second connector tube 12, improving assembly efficiency.
[0055] Among them, the insertion interface 1105 and the first insertion tube 9 are quick-connect structures with self-sealing valves.
[0056] The circulation component 11 is located at the end of the orbital pouch 3 corresponding to the end of the eyeball pouch 2. One circulation component 11 is provided.
[0057] Example 5
[0058] In this embodiment, a circulation pump and a heating component are connected to the plug interface 1105, and a power interface is provided on the eye socket bag 3. The power interface is electrically connected to the circulation pump and the heating component respectively. By setting up the circulation pump and the heating component, active circulation of the heating medium and temperature controllable heating are realized, improving thermal efficiency and temperature uniformity. The power interface facilitates electrical connection with an external power source, thereby providing power to the components of the entire heating cycle and realizing electric control.
[0059] The heating component is a chamber with a metal heating element installed. The eye socket bag is also equipped with a PLC control chip, which is electrically connected to the circulation pump and the heating component. The surface of the eye socket bag 3 is designed with control buttons, which are electrically connected to the control chip.
[0060] Example 6
[0061] In this embodiment, the upper part of the plug box 1101 is provided with a first opening, and a cover plate 1102 that mates with the opening is hinged to the upper outer edge of the plug box 1101. The first plug tube 9 includes a first tube body 901, and a first protrusion 902 is provided on the first tube body 901. The first protrusion 902 is provided on the upper wall of the first tube body 901 away from the insertion end. The cover plate 1102 is provided with a second protrusion 1103 that mates with the first protrusion 902 near the insertion side of the first plug tube 9. The upper edge of the plug box 1101 near the plug interface 1105 is provided with a... The second opening mates with the second protrusion 1103; the hinged design of the cover plate 1102 and the plug box 1101 facilitates opening and closing. Through the cooperation of the first protrusion 902 and the second protrusion 1103, when the cover plate 1102 is closed, the second protrusion 1103 is located on the side closer to the eyeball bag 2, thereby locking the first plug tube 9 and preventing it from accidentally falling off. The second opening facilitates the cooperation with the first protrusion 902 and the second protrusion 1103. When the first tube body 901 is inserted, it will not block the first protrusion 902. At the same time, it further strengthens the relative fixation between the eyeball bag 2 and the orbital bag 3 and enhances the overall structural stability.
[0062] In this embodiment, a fixing strip 1104 is provided along the lower edge of the cover plate 1102, which is in interference fit with the first opening on the plug box 1101; the fixing strip 1104 is in interference fit with the first opening, which can make the cover plate 1102 tightly closed.
[0063] Example 7
[0064] In this embodiment, a sealing cap 14 is provided on the side of the eyeball pack 2 near the bridge of the nose. A third opening is provided on the eyeball pack 2 corresponding to the sealing cap 14. A rigid fixing frame is provided on the edge of the third opening. The sealing cap 14 and the fixing frame are press-fitted. The press-fitting of the sealing cap 14 and the rigid fixing frame can seal the third opening to prevent the leakage of medicinal materials. By opening the sealing cap 14, granular medicinal materials can be easily added or replaced, thereby extending the service life of the eye mask. Different types of medicinal materials can also be added according to one's own needs.
[0065] Example 8
[0066] In this embodiment, the fixing strap 1 is provided with a first adhesive component that cooperates with each other at the position corresponding to the eye socket bag 3 and the side of the eye socket bag 3 that contacts the fixing strap 1. The two ends of the fixing strap 1 are also provided with a second adhesive component that cooperates with each other. The first adhesive component allows the eye socket bag 3 to be fixed on the fixing strap 1, and the second adhesive component allows the length of both ends of the fixing strap 1 to be adjusted and fixed to the head, thereby improving the comfort of wearing.
[0067] Both the first and second adhesive components are made of soft hook and loop fastener material, which is skin-friendly and will not cause discomfort during use.
[0068] Example 9
[0069] Unlike embodiment 4, the circulation component 11, i.e. the plug box 1101, is provided in two parts, with the first plug tube 9 respectively disposed at both ends of the eyeball bag 2.
[0070] The steps for using a gravity eye mask are as follows:
[0071] Step 1: Locate the plug box 1101 on the side of the eye mask, open the cover 1102 of the plug box 1101, pinch the first plug tube 9 and insert it into the plug interface 1105, install the eyeball pack 2 in the groove 6 of the eye socket pack 3, close the cover 1102, so that the second protrusion 1103 on the cover 1102 engages with the first protrusion 902 on the first plug tube 9 to achieve locking;
[0072] Step 2: After the eyeball bag 2 and eye socket bag 3 are assembled, connect the external power adapter to the power interface on the eye socket bag 3, turn on the power, and the circulation pump drives the heating medium to circulate between the liquid storage section 10, the metal heating plate chamber of the heating component and each septum 7. The heating component starts to heat the medium. At this time, the heat is evenly transferred to the granular medicinal material through the wall of the septum 7.
[0073] Step 3: After heating is complete, remove the power supply, attach and fix the eye socket pack 3 and eyeball pack 2 to the fixing strap 1, then align the eyeball pack 2 and eye socket pack 3 of the eye mask with the eyes and cover the eyes;
[0074] Step 4: When it is necessary to change the medicine, locate the sealing cap 14 on the side of the eyeball bag 2 near the bridge of the nose. Pinch the edge of the sealing cap 14 and pull it out from the rigid fixing frame. Open the third opening and pour out the original granular medicine. Then add new medicine, such as cassia seeds, through the third opening. After adding, align the sealing cap 14 with the fixing frame of the third opening and press it firmly until it fits tightly to prevent the medicine from leaking.
[0075] It should be noted that:
[0076] The above description of the disclosed embodiments enables those skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention. Therefore, the invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A gravity-based eye mask, characterized in that, It includes a fixing strap (1), on which an eye socket bag (3) and an eyeball bag (2) are provided. A groove (6) is provided at the center of the eye socket bag (3), and the shape of the eyeball bag (2) matches the groove (6). The inside of the eyeball bag (2) is filled with granular medicinal materials.
2. The gravity eye mask according to claim 1, characterized in that, The eyeball bag (2) is provided with several partition sacs (7) at intervals inside. The bottom end of each partition sac (7) is fixed to the inner bottom of the eyeball bag (2), and the top of each partition sac (7) has a gap with the inner top of the eyeball bag (2).
3. The gravity eye mask according to claim 2, characterized in that, The partition sac (7) has a hollow chamber inside, and a heating medium is provided inside the hollow chamber of the partition sac (7). Two adjacent partition sacs (7) are connected by a connecting pipe (13).
4. A gravity-based eye mask according to claim 3, characterized in that, The orbital pouch (3) is provided with a liquid storage section (10) and a heating medium is provided inside the liquid storage section (10). The orbital pouch (3) is provided with a circulation component (11) that connects the liquid storage section (10) to the septum (7).
5. A gravity-based eye mask according to claim 4, characterized in that, The circulation component (11) includes a connector box (1101), the connector box (1101) is provided with a connector (1105) inside, the eyeball bag (2) is provided with a first connector (9) that connects to the septum (7), the first connector (9) can be connected to the connector (1105); the orbital bag (3) is provided with a second connector (12) that connects to the liquid storage part (10), the second connector (12) passes through the connector box (1101) and is connected to the connector (1105).
6. A gravity-based eye mask according to claim 5, characterized in that, The plug interface (1105) is connected to a circulation pump and a heating component, and the orbital bag (3) is provided with a power interface, which is electrically connected to the circulation pump and the heating component respectively.
7. A gravity-based eye mask according to claim 5, characterized in that, The upper part of the plug box (1101) is provided with a first opening, and a cover plate (1102) that cooperates with the opening is hinged to the upper outer edge of the plug box (1101). The first plug tube (9) includes a first tube body (901), and a first protrusion (902) is provided on the first tube body (901). The first protrusion (902) is provided on the upper wall of the first tube body (901) away from the insertion end. The cover plate (1102) is provided with a second protrusion (1103) that cooperates with the first protrusion (902) on the insertion side of the first plug tube (9). The upper edge of the plug box (1101) near the plug interface (1105) is provided with a second opening that cooperates with the second protrusion (1103).
8. A gravity-sensing eye mask according to claim 5, characterized in that, A fixing strip (1104) is provided along the lower edge of the cover plate (1102) to interfere with the first opening on the plug box (1101).
9. A gravity-sensing eye mask according to any one of claims 1 to 8, characterized in that, The eyeball bag (2) is provided with a sealing cover (14) on the side near the bridge of the nose. The eyeball bag (2) is provided with a third opening at the position corresponding to the sealing cover (14). The edge of the third opening is provided with a rigid fixing frame. The sealing cover (14) and the fixing frame are interference fit.
10. A gravity-based eye mask according to any one of claims 1 to 8, characterized in that, The fixing band (1) is provided with a first adhesive component that cooperates with each other at the position corresponding to the orbital bag (3) and the side of the orbital bag (3) that contacts the fixing band (1). The two ends of the fixing band (1) are also provided with a second adhesive component that cooperates with each other.