Non-invasive deep conduction device based on high-pressure pure oxygen
Through the combination of high-pressure pure oxygen and essence, it atomizes into micron-scale particles and directly delivers it to the base layer of the skin, solving the problem of skin damage by existing skin repair equipment and achieving painless beauty and skin self-repair effects.
Patent Information
- Application Number
- CN202310817967.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-05
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2043-07-05
AI Technical Summary
Existing skin repair equipment is prone to damage to the skin when used, and the skin is prone to allergies, which cannot effectively solve the problem of collagen loss.
Using a non-invasive deep-guided device based on high-pressure pure oxygen, the combination of high-pressure pure oxygen and essence is atomized into micron-scale particles and directly delivered to the base layer of the skin. The physical diffusion and bactericidal effect of pure oxygen are used to promote collagen synthesis and skin self-healing.
It has achieved painless beauty effects, improved skin cell metabolism function, enhanced skin self-repair ability, tightened skin whitening and wrinkle removal, relieved acne, and calmed scars, and other effects. The absorption rate of subcutaneous nutrients is higher than that of ordinary application, improving skin barrier function.
Smart Images

Figure CN117018416B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of skin repair equipment, and in particular to a non-invasive deep-drainage device based on high-pressure pure oxygen. Background Art
[0002] As we age, collagen will gradually be lost, which is a normal physiological phenomenon. Ultraviolet radiation can activate melanin, penetrate the cortex, destroy elastic fibers, and thus devour collagen. Environmental factors, such as electromagnetic radiation from computers and mobile phones, car exhaust, and air pollution, will increase free radicals in the body, thereby destroying collagen, causing dark yellow skin and early appearance of wrinkles. An irregular lifestyle will cause the body's detoxification and metabolism to stagnate, leading to endocrine disorders, accumulation of toxins, and destruction of collagen; the loss of collagen will cause the skin to lose moisture, become rough, dull, loose, sagging, and lose elasticity;
[0003] In the existing technology, in order to solve the problem of collagen loss, photoelectric equipment is mainly used to repair the skin, such as photon beauty, trauma 3D / 5D gold micro-sculpture, laser freckle removal and other equipment; however, the above-mentioned equipment is likely to cause damage to the skin during use. After repeated use, the damage cannot be repaired and the skin is prone to allergies.
[0004] In summary, there is a need for a non-invasive deep-induction device based on high-pressure pure oxygen that has minimal impact on the skin. Summary of the Invention
[0005] In view of the deficiencies of the prior art, the present invention provides a non-invasive deep-intubation device based on high-pressure pure oxygen, which solves the problems mentioned in the background technology.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions:
[0007] A non-invasive deep-introduction device based on high-pressure pure oxygen comprises a base plate, one side of which is provided with a non-invasive deep-introduction device, and the other side of which is provided with a base. A high-pressure pure oxygen bottle is installed inside the base, and the bottom surface of the base plate is provided with multiple sets of rollers. The non-invasive deep-introduction device comprises a lower base body and an upper cover body. The lower base body is provided with an essence storage assembly, the upper cover body is provided with an atomization confluence assembly, and the outer wall of the upper cover body is provided with a pressure gauge, an oxygen connector, a flow rate meter, a drainage connector, and a switch control assembly.
[0008] The output end of the high-pressure pure oxygen bottle is connected to one connector of the foot switch via a first oxygen supply tube, and the input end of the oxygen connector is connected to the other connector of the foot switch via a second oxygen supply tube; the output end of the oxygen connector is connected to the atomization confluence assembly, the liquid inlet of the atomization confluence assembly is connected to the essence liquid storage assembly via a liquid guide assembly; the outlet of the atomization confluence assembly is connected to the drainage connector, which is connected to the handheld gun head via a drainage tube; the oxygen connector inputs high-pressure pure oxygen into the atomization confluence assembly;
[0009] The essence in the essence storage component is transferred to the atomization confluence component through the liquid guide component. The essence is atomized into micron-sized essence particles under the action of high-pressure pure oxygen and the atomization structure inside the atomization confluence component. The micron-sized essence particles act on the human skin through the handheld gun head.
[0010] Furthermore, the cross-sections of the upper cover body and the lower base body are both equilateral hexagons, an inner fixing ring is vertically provided at the inner circle of the top surface of the lower cover body, the upper cover body is inserted into the outside of the inner fixing ring and the two are fixed by screws, the side cross-section of the inner fixing ring is 7-shaped, the top surface of the inner fixing ring is connected to a support plate by screws, and the surface of the support plate is installed with an atomization convergence assembly.
[0011] Furthermore, the essence storage assembly includes a storage box, a connecting block and an outer baffle. The interior of the lower seat body is symmetrically provided with guide strips, and a storage box is slidably inserted between the two guide strips. The outer end of the storage box is connected to the outer baffle through the connecting block. The back of the lower seat body is provided with a discharge trough for pulling out the storage box, and the outer baffle is installed on the back of the lower seat body by screws; the bottom of the storage box is funnel-shaped.
[0012] Furthermore, the liquid guide assembly includes an upper tube body, a rubber hose, a lower tube body, a support reset assembly and a fixing rod; the top end of the upper tube body passes through the support plate and the end is connected to the liquid inlet of the atomizing convergence assembly; the bottom end of the upper tube body is connected to the lower tube body through a rubber hose, and the lower tube body extends into the middle of the storage box; the upper tube body and the lower tube body are connected by a support reset assembly, and the upper tube body is fixed to the inner top of the lower seat body through a fixing rod; when the storage box is pulled out or inserted, the storage box pushes the lower tube body to swing and synchronously drives the support reset assembly to rotate; when the storage box does not conflict with the storage box, the support reset assembly drives the lower tube body to reset, so that the upper tube body and the lower tube body are located on the same center line.
[0013] Furthermore, the support reset assembly includes a transfer rod, a first positioning column is provided at the top of the spring, the first positioning column is rotatably arranged on the outer wall of the upper tube body and a torsion spring is installed at the rotating connection, and a second positioning column is provided at the bottom end of the spring, and the second positioning column is fixed to the top outer wall of the lower tube body.
[0014] Furthermore, the atomizing confluence assembly includes a main box body, a partition is provided on one side of the interior of the main box body, the partition divides the main box body into a first chamber and a second chamber, the first chamber is larger than the second chamber, an inner drainage box is fixedly provided in the middle of the partition, the inner drainage box includes an inner box body and an inner cohesive cover, a first opening is opened in the middle of the partition, the inner box body is provided on one side of the first opening, and the inner cohesive cover is provided on the other side; the inner box body is in the first chamber, and the inner and outer diameters of the inner cohesive cover are gradually reduced along the airflow direction; a second opening is provided in the middle of the outer side of the second chamber, and an outer cohesive cover is provided at the second opening, and the inner and outer diameters of the outer cohesive cover are gradually reduced along the airflow direction; the first air supply pipe and the second air supply pipe are both connected in parallel to the oxygen connector;
[0015] A set of first air supply pipes and multiple sets of second air supply pipes are provided in the first chamber. The first air supply pipes input high-pressure pure oxygen into the inner box body, forming a negative pressure at the liquid inlet of the inner box body to suck out the essence. The high-pressure pure oxygen and essence are pressurized by the inner cohesive cover and then atomized and sprayed into the outer cohesive cover. The second air supply pipes are used to input high-pressure pure oxygen into the outer cohesive cover to perform secondary atomization on the essence after the primary atomization.
[0016] Furthermore, the inner cohesive cover passes through the second chamber and its end extends into the outer cohesive cover. The part of the inner cohesive cover opposite to the outer cohesive cover is a pressurized channel, and the inner diameter of the pressurized channel gradually decreases along the airflow direction; the part of the inner cohesive cover not opposite to the outer cohesive cover is a secondary atomization channel.
[0017] Furthermore, the atomization confluence component also includes an atomization output pipe, which is divided into a first part, a second part, and a third part in sequence along the air flow conveying direction. The inner wall of the first part of the atomization output pipe is provided with multiple groups of scattering components distributed in a circular array, and a gap is left between any two groups of scattering components. The scattering components are used to improve the mixing degree of pure oxygen and essence liquid particles; each group of scattering components is composed of multiple scattering teeth distributed in a linear array, and the scattering teeth are V-shaped. The closed ends of the scattering teeth are fixedly connected to the atomization output pipe, and the open ends of the scattering teeth face inward; a valve body is installed at the second part of the atomization output pipe, and the switch control component is assembled and connected to the valve body; the third part of the atomization output pipe is connected to the drain joint.
[0018] Furthermore, the switch control assembly is arranged at an angle, and the switch control assembly includes a control knob, a rotating rod, and a sealing plate. The rotating rod rotates vertically and passes through the side wall of the upper cover body. The inner end of the rotating rod is provided with an inclined sealing plate, and the outer end of the rotating rod is provided with a control knob. The interior of the sealing plate is provided with through holes distributed in a circular array; the bottom plate of the sealing plate is embedded in the valve body.
[0019] Furthermore, the handheld gun head includes a handle, a liquid collecting head, a liquid outlet head and a trowel. The handle is curved, and the bottom end of the handle is provided with a liquid collecting head, the bottom end of the liquid collecting head is provided with a liquid outlet head, and the bottom end of the liquid outlet head is provided with a trowel. A liquid guide groove is provided inside the handle, a conical three-time atomization groove is provided at the top of the interior of the liquid collecting head, and a guide groove is provided at the bottom of the interior, and the guide groove is connected to the drainage pipe.
[0020] The present invention provides a non-invasive deep-drainage device based on high-pressure pure oxygen. Compared with the existing technology, it has the following advantages:
[0021] The oxygen confluence component can fully combine the essence with pure oxygen, thereby blasting the essence into micron-sized essence particles. The essence particles deliver small molecule nutrients directly to the basal layer of the skin through the skin's natural channels at an odor of 7 bar and an input speed of 220m / s. This is comfortable and painless, achieving timely and significant cosmetic effects, avoiding the pain and edema caused by injections. The absorption rate of nutrients under the skin is more than 10 times that of ordinary application, achieving the effects of skin firming, whitening, wrinkle removal, soothing acne, and scar smoothing.
[0022] In the entire injection process, using pure oxygen as the medium can achieve the following effects:
[0023] 1. Oxygen can enter the skin tissue through the process of physical diffusion, which can increase the aerobic metabolism of human cells, promote the synthesis of collagen, increase the elasticity of loose skin, and reduce wrinkles; the metabolic function of skin cells is enhanced, which can reduce melanin deposition, reduce eczema, and beautify the skin as an auxiliary treatment for problem skin;
[0024] 2. High-pressure pure oxygen can sterilize itself. Using high-pressure pure oxygen, it directly reaches the basal layer of the epidermis and the superficial layer of the dermis, promoting the skin's aerobic metabolism, enhancing the skin's self-repair ability, improving the skin's barrier function, and enhancing its self-resistance to infection, thus achieving significant improvements for problematic skin. High-pressure oxygen also helps improve hair follicle nutrition, promotes hair growth, and prevents hair loss.
[0025] The above essence includes a variety of herbal essences, active collagen, large and small molecular weight sodium hyaluronate, ceramide, and carbomer; it can deeply nourish the skin, refine pores, and fade fine lines. It can quickly replenish and lock in moisture to make the skin firm and elastic; it can protect the skin, reduce inflammation and kill bacteria, increase the skin's resistance, repair the skin's barrier function, and make the skin appear healthier. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0027] Figure 1 The figure shows a schematic diagram of the structure of the non-invasive deep-guidance device of the present invention;
[0028] Figure 2 It shows a schematic diagram of the installation structure of the non-invasive deep guidance device of the present invention;
[0029] Figure 3 A schematic diagram of the cross-sectional structure of the lower seat body of the present invention is shown;
[0030] Figure 4 It shows a schematic diagram of the vertical cross-section structure of the interior of the lower seat body of the present invention;
[0031] Figure 5 Shown Figure 4 A schematic diagram of the enlarged structure at point A;
[0032] Figure 6 It shows the internal structure diagram of the upper cover body and the lower seat body of the present invention;
[0033] Figure 7 Shown Figure 6 A schematic diagram of the enlarged structure at point B;
[0034] Figure 8 Shows a schematic structural diagram of the atomizing converging assembly of the present invention;
[0035] Figure 9 Shows a schematic structural diagram of the handheld gun head of the present invention;
[0036] As shown in the figure: 1. Bottom plate; 11. Constraint frame; 12. Base; 13. Roller; 2. High-pressure pure oxygen bottle; 21. Exhaust pipe; 3. First oxygen supply pipe; 4. Foot switch; 5. Non-invasive deep guide; 51. Lower seat; 511. Storage tube; 512. Guide bar; 513. Discharge chute; 514. Inner fixing ring; 515. Support plate; 52. Upper cover; 521. Pressure gauge; 522. Switch control assembly; 5221. Control knob; 5222. Turning rod; 5223. Sealing plate; 523. Oxygen connector; 524. Flow meter; 525. Drain connector; 53. Essence storage assembly; 531. Storage box; 532. Connecting block; 533. Outer baffle; 54. Liquid guide assembly; 541. Upper tube; 542. Rubber hose ;543, lower tube body; 544, adapter rod; 5441, first positioning column; 5442, second positioning column; 545, fixing rod; 6, second oxygen supply pipe; 7, drainage pipe; 8, hand-held gun head; 81, handle; 811, liquid guide groove; 82, liquid collecting head; 821, tertiary atomization groove; 822, guide groove; 83, liquid outlet head; 84, screed plate; 9, atomization convergence assembly; 91, main box body; 911, first chamber; 912, second chamber; 92, partition; 93, inner drainage box; 931, inner box body; 932, inner cohesive cover; 94, first air supply pipe; 95, second air supply pipe; 96, outer cohesive cover; 961, pressurization channel; 962, secondary atomization channel; 97, atomization output pipe; 971, breaking teeth; 972, valve body. DETAILED DESCRIPTION
[0037] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0038] Example 1
[0039] In order to solve the technical problems in the background technology, the following non-invasive deep-drainage device based on high-pressure pure oxygen is provided:
[0040] Combine Figure 1As shown, the non-invasive deep-introduction device based on high-pressure pure oxygen provided by the present invention includes a base plate 1, a non-invasive deep-introduction device 5 is provided on one side of the surface of the base plate 1, and a base 12 is provided on the other side of the surface. A high-pressure pure oxygen bottle 2 is installed inside the base 12, and a plurality of rollers 13 are provided on the bottom surface of the base plate 1; the non-invasive deep-introduction device 5 includes a lower base body 51 and an upper cover body 52; an essence storage assembly 53 is installed inside the lower base body 51, and an atomization confluence assembly 9 is installed inside the upper cover body 52. The outer wall of the upper cover body 52 is provided with a pressure gauge 521, an oxygen connector 523, a flow rate meter 524, a drainage connector 525, and a switch control assembly 522;
[0041] The output end of the high-pressure pure oxygen bottle 2 is connected to one connector of the foot switch 4 via the first oxygen supply tube 3. The input end of the oxygen connector 523 is connected to the other connector of the foot switch 4 via the second oxygen supply tube 6. The output end of the oxygen connector 523 is connected to the atomizing and converging assembly 9. The liquid inlet of the atomizing and converging assembly 9 is connected to the essence storage assembly 53 via the liquid guide assembly 54. The outlet of the atomizing and converging assembly 9 is connected to the drainage connector 525, which is connected to the handheld gun head 8 via the drainage tube 7. The oxygen connector 523 inputs high-pressure pure oxygen into the atomizing and converging assembly 9.
[0042] The essence in the essence storage component 53 is transmitted to the atomization and confluence component 9 through the liquid guide component 54. The essence is atomized into micron-sized essence particles under the action of high-pressure pure oxygen and the atomization structure inside the atomization and confluence component 9. The micron-sized essence particles act on the human skin through the handheld gun head 8.
[0043] In the above technical solution:
[0044] The oxygen confluence component can fully combine the essence with pure oxygen, thereby blasting the essence into micron-sized essence particles. The essence particles deliver small molecule nutrients directly to the basal layer of the skin through the skin's natural channels at an odor of 7 bar and an input speed of 220m / s. This is comfortable and painless, achieving timely and significant cosmetic effects, avoiding the pain and edema caused by injections. The absorption rate of nutrients under the skin is more than 10 times that of ordinary application, achieving the effects of skin firming, whitening, wrinkle removal, soothing acne, and scar smoothing.
[0045] In the entire injection process, using pure oxygen as the medium can achieve the following effects:
[0046] 1. Oxygen can enter the skin tissue through the process of physical diffusion, which can increase the aerobic metabolism of human cells, promote the synthesis of collagen, increase the elasticity of loose skin, and reduce wrinkles; the metabolic function of skin cells is enhanced, which can reduce melanin deposition, reduce eczema, and beautify the skin as an auxiliary treatment for problem skin;
[0047] 2. High-pressure pure oxygen can sterilize itself. Using high-pressure pure oxygen, it directly reaches the basal layer of the epidermis and the superficial layer of the dermis, promoting the skin's aerobic metabolism, enhancing the skin's self-repair ability, improving the skin's barrier function, and enhancing its self-resistance to infection, thus achieving significant improvements for problematic skin. High-pressure oxygen also helps improve hair follicle nutrition, promotes hair growth, and prevents hair loss.
[0048] The above essence includes a variety of herbal essences, active collagen, large and small molecular weight sodium hyaluronate, ceramide, and carbomer; it can deeply nourish the skin, refine pores, and fade fine lines. It can quickly replenish and lock in moisture to make the skin firm and elastic; it can protect the skin, reduce inflammation and kill bacteria, increase the skin's resistance, repair the skin's barrier function, and make the skin appear healthier.
[0049] The preparation process of high-pressure pure oxygen is as follows: the air compressor compresses the inhaled air - the compressed air is stored in the air storage tank - the compressed air is dried - the compressed air is separated and extracted to obtain high-pressure pure oxygen - the pure oxygen is stored in the oxygen tank - the pure oxygen is compressed and stored in the high-pressure pure oxygen bottle 2.
[0050] Example 2
[0051] like Figure 2-Figure 6 As shown, based on the above embodiment, this embodiment further provides the following content:
[0052] In this embodiment, the cross-sections of the upper cover body 52 and the lower base body 51 are both equilateral hexagons, and an inner fixing ring 514 is vertically provided at the inner circle of the top surface of the lower cover body. The upper cover body 52 is inserted into the outside of the inner fixing ring 514 and the two are fixed by screws. The side cross-section of the inner fixing ring 514 is 7-shaped, and the top surface of the inner fixing ring 514 is connected to the support plate 515 by screws, and the surface of the support plate 515 is installed with the atomization convergence component 9.
[0053] In the above technical solution, the outer shell of the non-invasive deep guide device 5 is designed to be divided into two parts, the upper cover body 52 can be disassembled and separated separately, so that maintenance personnel can check the atomization convergence component 9, the pressure gauge 521, the switch control component 522, the flow meter 524 and other components; by further disassembling the support plate 515, the top opening of the lower seat body 51 is opened, so that maintenance personnel can check the liquid guide component 54.
[0054] In this embodiment, the essence storage component 53 includes a storage box 531, a connecting block 532 and an outer baffle 533. The interior of the lower base body 51 is symmetrically provided with guide bars 512, and the storage box 531 is slidably inserted between the two guide bars 512. The outer end of the storage box 531 is connected to the outer baffle 533 through the connecting block 532. The back of the lower base body 51 is provided with a discharge trough 513 for pulling out the storage box 531, and the outer baffle 533 is installed on the back of the lower base body 51 by screws; the bottom of the storage box 531 is funnel-shaped.
[0055] In the above technical solution, the storage box 531 is funnel-shaped, which can achieve the collection of essence liquid for centralized extraction; when replacing, unscrew the screws of the outer baffle 533 and pull the storage box 531 outward.
[0056] When guiding liquid, the liquid guiding component 54 needs to extend into the inner bottom of the storage box 531, and the liquid guiding component 54 cannot interfere with the withdrawal and insertion of the storage box 531. Therefore, the liquid guiding component 54 needs to be designed as a bendable and repositionable structure. To this end, the following solution is provided:
[0057] In this embodiment, the liquid guide assembly 54 includes an upper tube body 541, a rubber hose 542, a lower tube body 543, a support and reset assembly and a fixing rod 545; the top of the upper tube body 541 passes through the support plate 515 and the end is connected to the liquid inlet of the atomization convergence assembly 9; the bottom end of the upper tube body 541 is connected to the lower tube body 543 through the rubber hose 542, and the lower tube body 543 extends into the middle of the storage box 531; the upper tube body 541 and the lower tube body 543 are connected by the support and reset assembly, and the upper tube body 541 is fixed to the inner top of the lower seat 51 through the fixing rod 545; when the storage box 531 is pulled out or inserted, the storage box 531 pushes the lower tube body 543 to swing and synchronously drives the support and reset assembly to rotate; when the storage box 531 does not conflict with the storage box 531, the support and reset assembly drives the lower tube body 543 to reset, so that the upper tube body 541 and the lower tube body 543 are located on the same center line.
[0058] In this embodiment, the support reset assembly includes a transfer rod 544, a first positioning column 5441 is provided at the top of the spring, the first positioning column 5441 is rotatably arranged on the outer wall of the upper tube body 541 and a torsion spring is installed at the rotating connection, and a second positioning column 5442 is provided at the bottom end of the spring, and the second positioning column 5442 is fixedly arranged on the top outer wall of the lower tube body 543.
[0059] In the above technical solution, the upper tube 541 and the lower tube 543 are rigid structures, and the rubber hose 542 serves as a flexible middle connector. The support and reset assembly can connect the upper tube 541 and the lower tube 543 into one. In normal operation, the upper tube 541 and the lower tube 543 are located on the same center line, and the support and reset assembly is in a supporting state. When the storage box 531 is pulled out, it can resist the lower tube 543 and swing, and at the same time drive the transfer rod 544 to swing with it. The rubber hose deforms to adapt, and the second positioning column 5442 rotates around the upper tube 541 and compresses the torsion spring.
[0060] When the storage box 531 no longer interferes with the lower tube 543 , the torsion spring drives the transfer rod 544 to rotate and reset, so that the lower tube 543 and the upper tube 541 return to the same center line.
[0061] Example 3
[0062] like Figure 7 and Figure 8 As shown, based on the above embodiment, this embodiment further provides the following content:
[0063] In this embodiment, the atomizing confluence assembly 9 includes a main box body 91, a partition 92 is provided on one side of the interior of the main box body 91, the partition 92 divides the main box body 91 into a first chamber 911 and a second chamber 912, the first chamber 911 is larger than the second chamber 912, an inner drainage box 93 is fixedly provided in the middle of the partition 92, the inner drainage box 93 includes an inner box body 931 and an inner cohesive cover 932, a first opening is opened in the middle of the partition 92, the inner box body 931 is provided on one side of the first opening, and the inner cohesive cover 932 is provided on the other side; the inner box body 931 is in the first chamber 911, and the inner and outer diameters of the inner cohesive cover 932 gradually decrease along the airflow direction; a second opening is provided in the middle of the outer side of the second chamber 912, and an outer cohesive cover 96 is provided at the second opening, and the inner and outer diameters of the outer cohesive cover 96 gradually decrease along the airflow direction; the first air supply pipe 94 and the second air supply pipe 95 are both connected in parallel to the oxygen connector 523;
[0064] A set of first air supply pipes 94 and multiple sets of second air supply pipes 95 are installed in the first chamber 911. The first air supply pipes 94 input high-pressure pure oxygen into the inner box body 931, forming a negative pressure at the liquid inlet of the inner box body 931 to suck out the essence. The high-pressure pure oxygen and essence are pressurized by the inner cohesive cover 932 and then atomized and sprayed into the outer cohesive cover 96.
[0065] The second air supply pipe 95 is used to input high-pressure pure oxygen into the outer condensing cover 96 to perform secondary atomization on the essence liquid after the primary atomization.
[0066] In this embodiment, the inner cohesive cover 932 passes through the second chamber 912 and its end extends into the outer cohesive cover 96. The portion of the inner cohesive cover 932 opposite to the outer cohesive cover 96 is a pressurized channel 961, and the inner diameter of the pressurized channel 961 gradually decreases along the airflow direction; the portion of the inner cohesive cover 932 not opposite to the outer cohesive cover 96 is a secondary atomization channel 962.
[0067] In the above technical solution:
[0068] A portion of the high-pressure pure oxygen is fed into the inner box 931. As the high-speed pure oxygen is discharged, it creates a negative pressure within the inner box 931, automatically aspirating the essence without requiring a separate extraction mechanism. As the essence and high-pressure pure oxygen pass through the cohesive cover 932, the inner diameter of the cohesive cover 932 gradually decreases, resulting in atomization due to the Bernoulli principle.
[0069] The other part is input into the second chamber 912 and then introduced into the outer focusing hood. The high-pressure pure oxygen input into the second chamber 912 impacts the essence particles after the first atomization again, thereby further dispersing the essence particles after the first atomization and reducing the particle size. Subsequently, as the inner diameter of the outer focusing hood 96 gradually decreases, secondary atomization is performed under the action of the Bernoulli principle.
[0070] In this embodiment, the atomizing confluence component 9 also includes an atomizing output pipe 97, which is divided into a first part, a second part, and a third part in sequence along the air flow conveying direction. The inner wall of the first part of the atomizing output pipe 97 is provided with a plurality of groups of scattering components distributed in a circular array, and a gap is left between any two groups of scattering components. The scattering components are used to improve the mixing degree of pure oxygen and essence liquid particles; each group of scattering components is composed of a plurality of scattering teeth 971 distributed in a linear array, and the scattering teeth 971 are V-shaped. The closed end of the scattering teeth 971 is fixedly connected to the atomizing output pipe 97, and the open end of the scattering teeth 971 faces inward; a valve body 972 is installed at the second part of the atomizing output pipe 97, and the switch control component 522 is assembled and connected to the valve body 972; the third part of the atomizing output pipe 97 is connected to the drain joint 525.
[0071] In the above technical solution, the first portion of the atomization output tube 97 is filled with V-shaped breaking teeth 971, which can fully stir and break up the atomized liquid, thereby further impacting and breaking the essence liquid particles; and fully mixing the pure oxygen and the essence particles.
[0072] In this embodiment, the switch control component 522 is arranged at an angle, and the switch control component 522 includes a control knob 5221, a rotating rod 5222, and a sealing plate 5223. The rotating rod 5222 rotates vertically to pass through the side wall of the upper cover body 52. The inner end of the rotating rod 5222 is provided with an inclined sealing plate 5223, and the outer end of the rotating rod 5222 is provided with a control knob 5221. The interior of the sealing plate 5223 is provided with through holes distributed in a ring array; the bottom plate 1 of the sealing plate 5223 is embedded in the valve body 972.
[0073] During control, the control knob 5221 can be rotated, and then the blocking plate 5223 can be driven to rotate through the rotating rod 5222. The blocking portion of the blocking plate 5223 blocks the valve body 972 or the through hole is placed in the valve body 972 to achieve switch switching.
[0074] Example 4
[0075] like Figure 9 As shown, based on the above embodiment, this embodiment further provides the following content:
[0076] In this embodiment, the handheld gun head 8 includes a handle 81, a liquid collecting head 82, a liquid outlet head 83 and a trowel plate 84. The handle 81 is curved, and the bottom end of the handle 81 is provided with a liquid collecting head 82, the bottom end of the liquid collecting head 82 is provided with a liquid outlet head 83, and the bottom end of the liquid outlet head 83 is provided with a trowel plate 84; a liquid guide groove 811 is provided inside the handle 81, a conical three-time atomization groove 821 is provided at the top of the interior of the liquid collecting head 82, and a guide groove 822 is provided at the bottom of the interior, and the guide groove 822 is connected to the drain pipe 7.
[0077] The handheld gun head 8 is the part held by the operator. The atomized particle liquid enters the tertiary atomization groove 821 through the liquid guide groove 811 to be pressurized and atomized. The atomized particles of the essence liquid are finally discharged through the guide groove 822 and the drain pipe 7.
[0078] The squeegee 84 can massage the skin on one hand and can spread the atomized particles of the essence on the skin on the other hand.
[0079] When the present invention is implemented:
[0080] A restraint frame 11 is provided on the surface of the base plate 1, and the foot switch 4 is placed in the restraint frame 11 when not in use;
[0081] When in use, move the base plate 1 to the side of the operating platform, then remove the foot switch 4 and place it on the ground. Turn the control knob 5221 to the on state. When the patient steps on it, the pure oxygen in the high-pressure pure oxygen cylinder 2 is transmitted to the oxygen connector 523 through the exhaust pipe 21, the first oxygen supply pipe 3, and the second oxygen supply pipe 6, and then is diverted to the first air supply pipe 94 and the second air supply pipe 95.
[0082] The first air supply pipe 94 delivers high-pressure pure oxygen into the inner box 931. The high-speed discharge of pure oxygen creates a negative pressure in the inner box 931, and the essence in the storage box 531 enters the inner box 931 through the lower tube 543, the rubber tube, and the upper tube 541. As the essence and high-pressure pure oxygen pass through the inner cohesive cover 932, the inner diameter of the cohesive cover 932 gradually decreases, and due to the action of the Bernoulli principle, atomization occurs once. The atomized essence particles enter the outer cohesive cover 96.
[0083] The second air supply pipe 95 is fed into the second chamber 912 and then into the outer focusing hood. The high-pressure pure oxygen fed into the second chamber 912 impacts the essence particles after the primary atomization, thereby further dispersing the essence particles and reducing the particle size. Subsequently, as the inner diameter of the outer focusing hood 96 gradually decreases, secondary atomization is performed under the action of Bernoulli's principle.
[0084] The secondary atomized essence particles enter the first part of the atomization output tube 97, and the scattering teeth 971 break up the secondary atomized essence particles again. The essence particles are finally output to the handheld gun head 8 through the discharge connector 525 and the discharge tube 7.
[0085] The atomized particle liquid enters the tertiary atomization groove 821 through the liquid guide groove 811 to be pressurized and atomized, and the essence atomized particles are finally discharged through the guide groove 822 and the drain pipe 7; the squeegee 84 can massage the skin on the one hand, and on the other hand, it can smooth the essence atomized particles on the skin.
[0086] A storage tube 511 is provided on the side wall of the lower base 51 , and the handheld gun head 8 is inserted into the storage tube 511 when not in use.
[0087] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.
[0088] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. Non-invasive deep-intubation device based on high-pressure pure oxygen, characterized by: The non-invasive deep guide device comprises a bottom plate, one side of which is provided with a non-invasive deep guide device, and the other side of which is provided with a base. A high-pressure pure oxygen bottle is installed inside the base, and a plurality of rollers are provided on the bottom surface of the bottom plate. The non-invasive deep guide device comprises a lower base body and an upper cover body. The lower base body is provided with an essence storage component, the upper cover body is provided with an atomization confluence component, and the outer wall of the upper cover body is provided with a pressure gauge, an oxygen connector, a flow meter, a drainage connector, and a switch control component. The output end of the high-pressure pure oxygen bottle is connected to one connector of the foot switch via a first oxygen supply tube, and the input end of the oxygen connector is connected to the other connector of the foot switch via a second oxygen supply tube; the output end of the oxygen connector is connected to the atomization confluence assembly, the liquid inlet of the atomization confluence assembly is connected to the essence liquid storage assembly via a liquid guide assembly; the outlet of the atomization confluence assembly is connected to the drainage connector, which is connected to the handheld gun head via a drainage tube; the oxygen connector inputs high-pressure pure oxygen into the atomization confluence assembly; The essence in the essence storage component is transferred to the atomization and confluence component through the liquid guide component. The essence is atomized into micron-sized essence particles under the action of high-pressure pure oxygen and the atomization structure inside the atomization and confluence component. The micron-sized essence particles act on the human skin through the handheld gun head; The atomizing converging assembly includes a main box body, a partition is provided on one side of the interior of the main box body, the partition divides the main box body into a first chamber and a second chamber, the first chamber is larger than the second chamber, an inner drainage box is fixed in the middle of the partition, the inner drainage box includes an inner box body and an inner cohesive cover, a first opening is opened in the middle of the partition, the inner box body is provided on one side of the first opening, and the inner cohesive cover is provided on the other side; The inner box body is located in the first chamber, and the inner and outer diameters of the inner cohesive cover gradually decrease along the airflow direction; a second opening is provided in the middle of the outer side of the second chamber, and an outer cohesive cover is provided at the second opening, and the inner and outer diameters of the outer cohesive cover gradually decrease along the airflow direction; the first air supply pipe and the second air supply pipe are both connected in parallel to the oxygen connector; The first chamber is provided with a set of first air supply pipes and multiple sets of second air supply pipes. The first air supply pipes input high-pressure pure oxygen into the inner box body, forming a negative pressure at the liquid inlet of the inner box body to suck out the essence. The high-pressure pure oxygen and essence are pressurized by the inner cohesive cover and then atomized and sprayed into the outer cohesive cover. The second air supply pipes are used to input high-pressure pure oxygen into the outer cohesive cover to perform a secondary atomization on the essence after the primary atomization. The handheld gun head includes a handle, a liquid collecting head, a liquid discharge head and a trowel. The handle is curved, and the bottom end of the handle is provided with a liquid collecting head, the bottom end of the liquid collecting head is provided with a liquid discharge head, and the bottom end of the liquid discharge head is provided with a trowel. A liquid guide groove is provided inside the handle, a conical three-time atomization groove is provided at the top of the liquid collecting head, and a guide groove is provided at the bottom of the head, and the guide groove is connected to the drainage pipe.
2. The non-invasive deep-drainage device based on high-pressure pure oxygen according to claim 1, characterized in that: The cross-sections of the upper cover body and the lower base body are both equilateral hexagons. An inner fixing ring is vertically provided at the inner circle of the top surface of the lower cover body. The upper cover body is inserted into the outside of the inner fixing ring and the two are fixed by screws. The side cross-section of the inner fixing ring is 7-shaped. The top surface of the inner fixing ring is connected to a support plate by screws, and an atomizing confluence component is installed on the surface of the support plate.
3. The non-invasive deep-drainage device based on high-pressure pure oxygen according to claim 1, characterized in that: The essence storage assembly includes a storage box, a connecting block and an outer baffle. Guide strips are symmetrically provided inside the lower base body, and a storage box is slidably inserted between the two guide strips. The outer end of the storage box is connected to the outer baffle via a connecting block. A discharge trough for pulling out the storage box is provided on the back of the lower base body, and the outer baffle is installed on the back of the lower base body by screws. The bottom of the storage box is funnel-shaped.
4. The non-invasive deep-drainage device based on high-pressure pure oxygen according to claim 3, characterized in that: The liquid guide assembly includes an upper tube body, a rubber hose, a lower tube body, a support reset assembly and a fixing rod; the top end of the upper tube body passes through the support plate and the end is connected to the liquid inlet of the atomizing confluence assembly; the bottom end of the upper tube body is connected to the lower tube body through a rubber hose, and the lower tube body extends into the middle of the storage box; the upper tube body and the lower tube body are connected by the support reset assembly, and the upper tube body is fixed to the inner top of the lower seat body through the fixing rod; when the storage box is pulled out or inserted, the storage box pushes the lower tube body to swing and synchronously drives the support reset assembly to rotate; when the storage box does not conflict with the storage box, the support reset assembly drives the lower tube body to reset, so that the upper tube body and the lower tube body are located on the same center line.
5. The non-invasive deep-drainage device based on high-pressure pure oxygen according to claim 4, characterized in that: The support reset assembly includes a connecting rod, a first positioning column is provided at the top of the spring, the first positioning column is rotatably arranged on the outer wall of the upper tube body and a torsion spring is installed at the rotating connection, and a second positioning column is provided at the bottom end of the spring, and the second positioning column is fixedly arranged on the top outer wall of the lower tube body.
6. The non-invasive deep-drainage device based on high-pressure pure oxygen according to claim 1, characterized in that: The inner cohesive cover passes through the second chamber and its end extends into the outer cohesive cover. The part of the inner cohesive cover opposite to the outer cohesive cover is a pressurized channel, and the inner diameter of the pressurized channel gradually decreases along the airflow direction; the part of the inner cohesive cover not opposite to the outer cohesive cover is a secondary atomization channel.
7. The non-invasive deep-drainage device based on high-pressure pure oxygen according to claim 1, characterized in that: The atomization confluence assembly also includes an atomization output pipe, which is divided into a first part, a second part, and a third part in sequence along the airflow conveying direction. The inner wall of the first part of the atomization output pipe is provided with multiple groups of scattering components distributed in a circular array, and a gap is left between any two groups of scattering components. The scattering components are used to improve the mixing degree of pure oxygen and essence liquid particles; each group of scattering components is composed of multiple scattering teeth distributed in a linear array, and the scattering teeth are V-shaped. The closed ends of the scattering teeth are fixedly connected to the atomization output pipe, and the open ends of the scattering teeth face inward; a valve body is installed at the second part of the atomization output pipe, and the switch control assembly is assembled and connected to the valve body; the third part of the atomization output pipe is connected to the drainage joint.
8. The non-invasive deep-drainage device based on high-pressure pure oxygen according to claim 7, characterized in that: The switch control assembly is arranged at an angle, and the switch control assembly includes a control knob, a rotating rod, and a sealing plate. The rotating rod rotates vertically and passes through the side wall of the upper cover body. The inner end of the rotating rod is provided with an inclined sealing plate, and the outer end of the rotating rod is provided with a control knob. The interior of the sealing plate is provided with through holes distributed in a circular array; the bottom plate of the sealing plate is embedded in the valve body.
Citation Information
Patent Citations
Non-invasive deep guide equipment based on high-pressure pure oxygen
CN220778835U