CN210447349U - Mixed magnesium sulfate wet and hot compress patch - Google Patents
Mixed magnesium sulfate wet and hot compress patch Download PDFInfo
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- CN210447349U CN210447349U CN201920629983.3U CN201920629983U CN210447349U CN 210447349 U CN210447349 U CN 210447349U CN 201920629983 U CN201920629983 U CN 201920629983U CN 210447349 U CN210447349 U CN 210447349U
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Abstract
The utility model provides a hybrid magnesium sulfate hot compress paster that wets, include: the mixing bag is sequentially divided into a liquid cavity, a solid cavity and an adsorption cavity from right to left through a thermoplastic seal, a destructible first interval thermal fuse wire is arranged between the liquid cavity and the solid cavity, and a destructible second interval thermal fuse wire is arranged between the solid cavity and the adsorption cavity; sterilizing water arranged in the liquid cavity; magnesium sulfate powder arranged in the solid cavity; the self-adhesion paster sets up adsorb the intracavity, the self-adhesion paster includes polyurethane foam pad, first overburden, second overburden, annular pressure sensitive adhesive card, aseptic cotton wool and thin slice formula spontaneous heating card. The utility model provides a hybrid magnesium sulfate wet heat application piece has solved current application piece and can not self-heating, drops easily, the problem that wastes time and energy.
Description
Technical Field
The utility model relates to the field of medical supplies, particularly, relate to a hybrid magnesium sulfate wet and hot compress paster.
Background
The magnesium sulfate solution is commonly used and used for the auxiliary treatment of exudation and exosmosis caused by non-corrosive medicines or solutions entering peripheral tissues due to negligence of management in intravenous infusion and swelling and pain of local subcutaneous tissues caused by erysipelas, phlebitis and hydrofluoric acid burn, wherein fifty percent of the magnesium sulfate solution is high-osmotic solution correspondingly to tissue fluid, and high osmotic pressure can be generated by local wet compress and hot compress at the swelling part of a patient, so that the swelling can be reduced in a short time, thereby reducing the damage of edema to the local tissues and playing a role in local treatment, and no side effect or adverse reaction is caused by clinical observation, and the method is simple and easy to implement, so the method is always adopted by vast doctors, but the current common method needs the guidance of medical care personnel or direct participation, hot water is taken on site by magnesium sulfate powder to be mixed to prepare fifty percent of the magnesium sulfate solution, then take out the gauze and soak the back and apply the lid in patient's affected part, it is fixed at the cover one deck film, can not self-heating, drop easily, and under this kind of condition, can not guarantee the cleanness of mixing apparatus, make the patient affected part receive the infection easily, influence treatment, also comparatively waste time and energy, and current magnesium sulfate powder is mostly the big bag packing of multicomponent, a bag magnesium sulfate powder divide into repetitious usage usually, the magnesium sulfate powder after opening the bag exposes in the air, easily wet, influence treatment, the resource has been wasted.
SUMMERY OF THE UTILITY MODEL
The utility model provides a new hybrid magnesium sulfate wet heat application piece, the technical problem that solve are that current magnesium sulfate applies ointment or plaster fixed mode wastes time and energy, drops easily, can not self-heating, and the unable clean aseptic problem of assurance of preparation environment.
In view of this, the utility model provides a novel hybrid magnesium sulfate wet and hot compress piece, include: the mixing bag is sequentially divided into a liquid cavity, a solid cavity and an adsorption cavity from right to left through a thermoplastic seal, a destructible first interval thermal fuse wire is arranged between the liquid cavity and the solid cavity, and a destructible second interval thermal fuse wire is arranged between the solid cavity and the adsorption cavity; sterile water disposed within the liquid chamber; magnesium sulfate powder arranged in the solid cavity; self-adhesion paster sets up adsorb the intracavity, the self-adhesion paster includes polyurethane foam pad, first overburden, second overburden, annular pressure sensitive adhesive post, aseptic cotton and thin slice formula spontaneous heating subsides, polyurethane foam pad openly center is provided with the resettlement groove, aseptic cotton setting is in the resettlement groove, annular pressure sensitive adhesive post sets up the periphery of resettlement groove, and interior limit with aseptic cotton bonding, first overburden sets up polyurethane foam pad's front, polyurethane foam pad's the back is provided with through the second overburden thin slice formula spontaneous heating subsides, the third overburden covers thin slice formula spontaneous heating pastes the setting.
In any one of the above technical solutions, preferably, one end of the mixing bag, where the adsorption cavity is provided, is provided with an easy-to-tear opening.
In any one of the above technical solutions, preferably, a surface of the first cover layer is provided with a thermosensitive pigment.
In any one of the above technical solutions, preferably, the top of the polyurethane foam pad is uniformly provided with through holes.
In any one of the above technical solutions, preferably, folding lines are disposed on two sides of the liquid chamber and the solid chamber.
In any one of the above solutions, preferably, the thickness of one end of the ring-shaped pressure-sensitive adhesive patch bonded to the aseptic cotton is 2 mm to 3 mm, and the thickness of the other end is 1 mm to 1.5 mm.
In any one of the above technical solutions, preferably, a contact edge of the liquid-state cavity and the first heat-insulating fusible link, a contact edge of the first heat-insulating fusible link and the solid-state cavity, a contact edge of the solid-state cavity and the second heat-insulating fusible link, and a contact edge of the second heat-insulating fusible link and the adsorption cavity are all set to be trapezoidal.
In any one of the above technical solutions, preferably, the liquid chamber, the solid chamber and the adsorption chamber are all made of transparent materials.
In any one of the above technical solutions, preferably, the setting ratio of the sterile water to the magnesium sulfate powder is 2: 1.
Compared with the prior art, the utility model has the advantages of: the closed sterile mixed environment is adopted, so that the infection of external bacteria is effectively avoided, and the cleanness of the application is ensured; in addition, the first heat-insulating fusible link and the second heat-insulating fusible link are arranged, so that quantitative sterile water and magnesium sulfate powder can be aseptically mixed only by extrusion, the structure is simple, and time and labor are saved; and be provided with annular pressure sensitive adhesive card on this self-adhesion paster, can only paste in the patient affected part through pressure, be convenient for paste in tearing open and get, this annular pressure sensitive adhesive card's temperature toleration is better for this autoadherend is through the self-heating of slice formula subsides self-heating when realizing the hot compress, does not influence the adhesion nature from the adherend.
Drawings
Fig. 1 shows a schematic view of the overall structure of a hybrid magnesium sulfate wet hot compress patch according to an embodiment of the present invention;
fig. 2 shows a schematic cross-sectional structural view of a self-adhesive patch 102 according to an embodiment of the present invention;
fig. 3 shows a schematic illustration of an implementation of the self-adhesive patch 102 according to an embodiment of the invention;
fig. 4 shows a schematic view of an implementation of the self-adhesive patch 102 according to another embodiment of the present invention.
Wherein, the names corresponding to the reference numbers in the drawings are: mixing bag 101, self-adhesive patch 102, thermoplastic seal 103, liquid cavity 104, solid cavity 105, adsorption cavity 106, first interval thermal fuse 107, second interval thermal fuse 108, polyurethane foam pad 109, first cover layer 110, second cover layer 111, annular pressure-sensitive adhesive patch 112, sterile cotton 113, sheet type self-heating patch 114, third cover layer 115, heat-sensitive pigment 116, easy-tear opening 117, folding line 118, and the like,
Detailed Description
In order to make the aforementioned objects, features and advantages of the present invention more clearly understood, the present invention will be described in further detail with reference to the accompanying drawings and detailed description. It should be noted that the embodiments and features of the embodiments of the present application may be combined with each other without conflict.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced in other ways than those specifically described herein, and therefore the scope of the present invention is not limited by the specific embodiments disclosed below.
The present invention will be further described with reference to fig. 1 to 4.
As shown in fig. 1 to 4, a hybrid magnesium sulfate moist-heat compress patch comprises a mixing bag 101, magnesium sulfate powder (not shown), sterile water (not shown) and a self-adhesive patch 102, wherein the mixing bag 101 is sequentially divided into a liquid cavity 104, a solid cavity 105 and an adsorption cavity 106 from right to left by a thermoplastic seal 103, a destructible first interval hot melt line 107 is arranged between the liquid cavity 104 and the solid cavity 105, and a destructible second interval hot melt line 108 is arranged between the solid cavity 105 and the adsorption cavity 106; the sterile water is arranged in the liquid cavity 104, the magnesium sulfate powder is arranged in the solid cavity 105, and the sub-cavity arrangement is convenient for separately placing the sterile water and the magnesium sulfate powder, so that the sterile water and the magnesium sulfate powder can be mixed in real time when the application is needed, and the quality change caused by long-time mixing of the sterile water and the magnesium sulfate powder is effectively avoided, wherein the destructible first interval thermal fuse wire 107 and the second interval thermal fuse wire 108 are blank pressing capable of being broken through extrusion, so that the sterile water in the liquid cavity and the magnesium sulfate powder in the solid cavity can be conveniently mixed through simple extrusion operation, the mixed liquid can be conveniently flowed into the adsorption cavity 106 through simple extrusion, time and labor are saved, and the cleanness of a mixing environment is ensured; the self-adhesive patch 102 is arranged in the adsorption cavity 106, the self-adhesive patch 102 comprises a polyurethane foam pad 109, a first covering layer 110, a second covering layer 111, an annular pressure-sensitive adhesive plaster 112, sterile cotton 113 and a sheet type self-heating plaster 114, a placement groove (not shown in the figure) is arranged at the center of the front surface of the polyurethane foam pad 109, the sterile cotton 113 is arranged in the placement groove, the annular pressure-sensitive adhesive plaster 112 is arranged at the periphery of the placement groove, the inner edge of the annular pressure-sensitive adhesive plaster is bonded with the sterile cotton 113, the first covering layer 110 is arranged at the front surface of the polyurethane foam pad 109, the back surface of the polyurethane foam pad 109 is provided with the sheet type self-heating plaster through the second covering layer 111, a third covering layer 115 covers the sheet type self-heating plaster, the polyurethane foam pad 109 is made of hydrophilic materials, so that liquid entering the adsorption cavity 106 can be quickly absorbed by the sterile cotton 113 arranged at the center of the polyurethane foam pad 109, through holes are uniformly formed in the top of the polyurethane foam pad 109, and the mixed liquid entering the adsorption cavity 106 can be absorbed by the self-adhesive patch 102 conveniently through the through holes; the annular pressure-sensitive adhesive patch 112 arranged on the periphery of the placement groove enables an adhesive sensitive to pressure to have high adhesiveness and temperature resistance, and due to the annular arrangement, the adhesive can be tightly pasted on an affected part of a patient in a pressing and surrounding mode, the thickness range of one end, bonded by the annular pressure-sensitive adhesive patch 112 and the sterile cotton 113, of the annular pressure-sensitive adhesive patch is 2 mm to 3 mm, the thickness range of the other end is 1 mm to 1.5 mm, the annular pressure-sensitive adhesive patch 112 is enabled to be in a structure with a thick inner part and a thin outer part, and the problem that the adhesive patch 102 is bonded and then begins to fall off from the outer side can be effectively avoided.
On the other hand, as shown in fig. 3 and 4 in particular, the rear surface of the polyurethane foam pad 109 is provided with a sheet-type self-heating patch through a second cover layer 111, the sheet-type self-heating patch is wrapped by a third cover layer 115, the sheet-type self-heating patch is ensured not to contact with other impurities in the adsorption cavity 106, the ineffective reaction of the sheet-type self-heating patch is avoided, heat can be provided after the third cover layer 115 is uncovered, and self-heating type hot application is realized, the surface of the first cover layer 110 is provided with a thermal pigment 116, and the thermal pigment 116 can identify the temperature of the current application surface in real time after the sheet-type self-heating patch works; one end of the mixing bag 101, which is provided with the adsorption cavity 106, is also provided with an easy-to-tear opening 117, and the easy-to-tear opening 117 is convenient for tearing the adsorption cavity 106 and taking out the self-adhesive patch 102; folding lines 118 are further arranged on two sides of the liquid cavity and the solid cavity, and the folding lines 118 are convenient for a user to bend the liquid cavity or the solid cavity along the folding lines 118, so that the effectiveness of the squeezing action is improved; the contact edge of the liquid cavity and the first heat-insulating fuse 107, the contact edge of the first heat-insulating fuse 107 and the solid cavity, the contact edge of the solid cavity and the second heat-insulating fuse 108, and the contact edge of the second heat-insulating fuse 108 and the adsorption cavity 106 are all set to be trapezoidal, the trapezoidal setting reduces the range of bearing pressure, so that the first heat-insulating fuse 107 and the second heat-insulating fuse 108 are conveniently broken, in addition, the liquid cavity, the solid cavity and the adsorption cavity 106 are all made of transparent materials (not shown in the figure), the transparent materials are convenient for a user to observe the mixing degree of sterile water and magnesium sulfate powder and the adsorption degree of the self-adhesion patch 102, the setting ratio of the sterile water to the magnesium sulfate powder is 2:1, on one hand, the magnesium sulfate solution with a ratio of not fifty percent is conveniently formed, the use standard is met, on the other hand, the affected part size of a patient can be determined, the self-adhesive patches 102 with different sizes are selected, the content of the sterile water and the content of the magnesium sulfate powder are also different, but the ratio of the sterile water to the magnesium sulfate powder is 2: 1.
In the actual use process, the mixed magnesium sulfate wet and hot compress patch can be manufactured by directly selecting sterile water and magnesium sulfate powder with different volumes and self-adhesive patches with different sizes to be assembled in a mixed bag, packaging the mixed magnesium sulfate wet and hot compress patch by using a thermoplastic seal strip, printing a volume identifier and an introduction of a use method on the surface of the mixed bag after packaging, when a user needs to use magnesium sulfate for application, selecting the mixed magnesium sulfate wet and hot compress patch with a proper volume according to the size of an affected part of a patient, folding a liquid cavity along a folding line firstly, extruding the sterile water into a solid cavity through a first interval hot melting line, fully mixing the sterile water and the magnesium sulfate powder by shaking the user, folding the solid cavity along the folding line, extruding mixed liquid mixed with the magnesium sulfate powder into an adsorption cavity, and absorbing the mixed liquid by a self-adhesive body quickly by shaking the user, in the process, the user can observe the mixing and adsorption degree through the transparent material; ensure after the self-adhesion paster fully absorbs mixed liquid, open the absorption chamber through easily tearing the mouth, take out the self-adhesion paster, next, the user tears the third overburden, treat thin formula spontaneous heating subsides fully back of generating heat, wherein the degree of generating heat of thin formula spontaneous heating subsides can be through setting up the temperature sensing pigment real-time observation on first overburden surface, tear first overburden, with the help of annular pressure sensitive adhesive post with the self-adhesion paster bonding in patient's affected part, the hot compress in-process, polyurethane foam pad can effectively keep warm, maintain the validity of hot compress, treat after the hot compress, tear and accomplish this hot compress from the adherend promptly.
The technical scheme of the utility model is described in detail in the above with the attached drawings, the technical scheme of the utility model provides a novel mixed magnesium sulfate wet and hot compress patch and a use method thereof, a closed sterile mixed environment is adopted, the infection of external bacteria is effectively avoided, and the cleanness of the application is ensured; in addition, the first heat-insulating fusible link and the second heat-insulating fusible link are arranged, so that quantitative sterile water and magnesium sulfate powder can be aseptically mixed only by extrusion, the structure is simple, and time and labor are saved; and be provided with annular pressure sensitive adhesive card on this self-adhesion paster, can only paste in the patient affected part through pressure, be convenient for paste in tearing open and get, this annular pressure sensitive adhesive card's temperature toleration is better for this autoadherend is through the self-heating of slice formula subsides self-heating when realizing the hot compress, does not influence the adhesion nature from the adherend.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (9)
1. A hybrid magnesium sulfate moist heat patch, comprising:
the mixing bag is sequentially divided into a liquid cavity, a solid cavity and an adsorption cavity from right to left through a thermoplastic seal, a destructible first interval thermal fuse wire is arranged between the liquid cavity and the solid cavity, and a destructible second interval thermal fuse wire is arranged between the solid cavity and the adsorption cavity;
sterile water disposed within the liquid chamber;
magnesium sulfate powder arranged in the solid cavity;
self-adhesion paster sets up adsorb the intracavity, the self-adhesion paster includes polyurethane foam pad, first overburden, second overburden, annular pressure sensitive adhesive post, aseptic cotton and thin slice formula spontaneous heating subsides, polyurethane foam pad openly center is provided with the resettlement groove, aseptic cotton setting is in the resettlement groove, annular pressure sensitive adhesive post sets up the periphery of resettlement groove, and interior limit with aseptic cotton bonding, first overburden sets up polyurethane foam pad's front, polyurethane foam pad's the back is provided with through the second overburden thin slice formula spontaneous heating subsides, and the third overburden covers thin slice formula spontaneous heating pastes the setting.
2. The hybrid magnesium sulfate moist thermal patch as set forth in claim 1, wherein the end of the mixing bag where the adsorption cavity is located is provided with a tear-off opening.
3. The hybrid magnesium sulfate moist thermal patch as set forth in claim 1, wherein a surface of the first cover layer is provided with a thermal sensitive pigment.
4. The hybrid magnesium sulfate moist hot compress patch as recited in claim 1, wherein the top of the polyurethane foam pad is uniformly provided with through holes.
5. The hybrid magnesium sulfate moist thermal patch as set forth in claim 1, wherein the liquid chamber and the solid chamber are provided with fold lines on both sides.
6. The hybrid magnesium sulfate moist thermal patch as set forth in claim 1, wherein the annular pressure sensitive adhesive patch is bonded to the aseptic cotton at one end thereof with a thickness ranging from 2 mm to 3 mm and at the other end thereof with a thickness ranging from 1 mm to 1.5 mm.
7. The hybrid magnesium sulfate moist thermal patch according to claim 1, wherein the contact edge of the liquid chamber with the first spaced thermal fuse, the contact edge of the first spaced thermal fuse with the solid chamber, the contact edge of the solid chamber with the second spaced thermal fuse, and the contact edge of the second spaced thermal fuse with the adsorption chamber are all configured as trapezoids.
8. The hybrid magnesium sulfate moist thermal patch as set forth in claim 1, wherein the liquid chamber, the solid chamber and the adsorption chamber are all made of transparent material.
9. The hybrid magnesium sulfate moist thermal patch as set forth in claim 1, wherein the weight ratio of the sterile water to the magnesium sulfate powder is 2: 1.
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CN201920629983.3U CN210447349U (en) | 2019-05-05 | 2019-05-05 | Mixed magnesium sulfate wet and hot compress patch |
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CN201920629983.3U CN210447349U (en) | 2019-05-05 | 2019-05-05 | Mixed magnesium sulfate wet and hot compress patch |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110227005A (en) * | 2019-05-05 | 2019-09-13 | 张平丽 | A kind of damp and hot applying patch of hybrid magnesium sulfate and its application method |
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2019
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110227005A (en) * | 2019-05-05 | 2019-09-13 | 张平丽 | A kind of damp and hot applying patch of hybrid magnesium sulfate and its application method |
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