CN212547840U - Protective sleeve for promoting circulation of intravenous infusion - Google Patents

Protective sleeve for promoting circulation of intravenous infusion Download PDF

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Publication number
CN212547840U
CN212547840U CN202021439611.3U CN202021439611U CN212547840U CN 212547840 U CN212547840 U CN 212547840U CN 202021439611 U CN202021439611 U CN 202021439611U CN 212547840 U CN212547840 U CN 212547840U
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heating
main
sheath
intravenous infusion
control box
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CN202021439611.3U
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Chinese (zh)
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王京杉
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王京杉
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Abstract

The utility model relates to a protective sleeve for promoting circulation of venous transfusion, belonging to the technical field of medical auxiliary tools; the technical problem to be solved is as follows: the venous transfusion circulation promoting protective sleeve is convenient to use, efficient, quick and high in comfort level; the technical scheme is as follows: the protective sleeve for promoting circulation of intravenous infusion comprises a heating element, a piece of primary backing, a junction box, a power line, a main control box and a covering fabric layer, wherein the heating element is coiled and fixed on the primary backing, two ends of the heating element are electrically connected with the main control box through the junction box, the main control box is connected with one end of the power line, the other end of the power line is provided with an electric plug, the junction box is fixed on the primary backing, the upper surface and the lower surface of the primary backing are respectively connected with the covering fabric layer in a covering mode to form a wrapping main body, and two opposite edges of the wrapping main body are provided.

Description

Protective sleeve for promoting circulation of intravenous infusion
Technical Field
The utility model discloses short circulation protective sheath of venous transfusion belongs to medical auxiliary appliances's technical field.
Background
The intravenous infusion technique has great significance in clinical work and is mainly used for the following aspects: 1. correcting water and electrolyte disorder and maintaining acid-base balance; 2. supplying nutrition and heat to the organism; 3. treating a disease of the body; 4. increase the blood circulation of the body; 5. improving microcirculation of the organism; 6. maintaining the blood pressure of the body. However, so far, the development of circulation promoting products for infusion sites is still in the technological blank during the nursing operation of intravenous infusion, so that clinical patients usually spontaneously adopt some warming products on the market to assist the infusion sites to achieve the warming effect, for example: a hot water bag and a hand warmer. However, these methods have the following disadvantages: 1. the fixing method is single and cannot be applied to various injection sites; 2. the temperature can not be regulated, the treatment effect can not be achieved, and even the skin of a patient can be damaged; 3. the operation is not convenient enough, reduces medical personnel's work efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model overcomes the deficiencies in the prior art, the technical problem who solves is: the protective sleeve for promoting circulation of venous transfusion is convenient to use, efficient, fast and high in comfort level.
In order to solve the technical problem, the utility model discloses a technical scheme be: the venous transfusion circulation promoting protective sleeve comprises a heating element, a piece of primary backing, a junction box, a power line, a main control box and a covering fabric layer, wherein the heating element is wound and fixed on the primary backing, two ends of the heating element are electrically connected with the main control box through the junction box, the main control box is connected with one end of the power line, the other end of the power line is provided with an electric plug, the junction box is fixed on the primary backing, the upper surface and the lower surface of the primary backing are respectively covered and connected with the covering fabric layer to form a wrapping main body, and two opposite edges of the wrapping main body are provided with snap buttons or;
the heating element is structurally characterized in that a temperature sensing wire is spirally wound and fixed on the heating wire, and an insulating medium layer is arranged between the temperature sensing wire and the contact surface of the heating wire;
a control switch, a constant temperature circuit module, a safety protection circuit module and a fuse are arranged in the main control box;
the heating wire, the fuse, the electric plug and the control switch are electrically connected to form a power-on main loop;
the output end of the temperature sensing wire is connected with the input end of the constant temperature circuit module, and the output end of the constant temperature circuit module is connected with the input end of the control switch;
the safety protection circuit module is electrically connected with the electric plug, the fuse, the temperature sensing wire and the constant temperature circuit module.
A battery box is arranged in the main control box, and a dry battery or a storage battery is arranged in the battery box.
The main control box is provided with a charging USB interface, the power line is a data line, and the electric plug is a charging head matched with the data line.
The sheath main body is rectangular.
The glove accessory is arranged in the middle of the rectangle of the sheath main body, the glove accessory is a mitt and a round opening is arranged at the back of the hand, and the sheath main body on the two sides of the glove accessory is provided with snap buttons or a magic tape auxiliary group.
The rectangle both sides of canning main part are provided with the elasticity extension area of taking elastic function, and primary and secondary button or magic subsides set up at elasticity extension area tip.
The sheath main part is trapezoidal with a narrow top and a wide bottom, and two ends of the sheath main part are connected to form a two-step tubular structure with a wide bottom and a narrow top.
The structure of canning main part is fixed in the middle part of the connecting band for two ridge shape piece bottom ends of symmetric connection, and primary and secondary knot or magic subsides set up at the connecting band tip, and heating element sets up in ridge shape piece, the pitch arc portion of two ridge shape pieces is connected through the thread gluing and the uncovered headgear structure that forms of lower extreme.
The heating wire is a carbon fiber heating wire, and the coating fabric layer is radiation-proof pollution-free fabric.
The outer layer of the covering fabric layer is also covered with radiation-proof pure cotton needle-punched non-woven fabrics.
The control switch is provided with a multi-gear temperature adjusting switch.
Compared with the prior art, the utility model following beneficial effect has:
1. the utility model can heat and preserve the temperature of the venous transfusion part before transfusion, improve the body surface temperature, expand the blood vessel and improve the success rate of puncture;
2. the utility model can maintain the temperature of the transfusion part constant during transfusion, and improve the comfort of the patient;
3. the utility model is suitable for different patient groups and different injection parts through the adjustment of different structures;
4. the utility model adjusts the heating temperature of the heating wire through the gear temperature adjusting switch, thereby facilitating the temperature control operation of medical personnel, and being more efficient and convenient;
5. the utility model discloses make the patient reach best treatment at the infusion in-process, greatly reduced protects the conflict between the suffering from, promotes to protect the harmonious healthy development of suffering from relation.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings;
fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic circuit diagram of the present invention;
fig. 3 is a schematic structural diagram of a first embodiment of the present invention;
fig. 4 is a schematic structural diagram of a second embodiment of the present invention;
fig. 5 is a schematic structural diagram of a third embodiment of the present invention;
fig. 6 is a schematic structural diagram of a fourth embodiment of the present invention;
fig. 7 is a schematic structural diagram of a fifth embodiment of the present invention;
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention; based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
As shown in fig. 1-2, the circulation promoting protective sleeve for intravenous infusion of the present invention comprises a heating element 1, a primary backing 2, a junction box 3, a power cord 4, a primary control box 5, and a covering fabric layer 6, wherein the heating element 1 is wound and fixed on the primary backing 2, two ends of the heating element 1 are electrically connected to the primary control box 5 through the junction box 3, the primary control box 5 is connected to one end of the power cord 4, the other end of the power cord 4 is provided with an electrical plug 7, the junction box 3 is fixed on the primary backing 2, the covering fabric layer 6 is connected to the upper and lower surfaces of the primary backing 2 to form a sheath main body 8, and two opposite edges of the sheath main body 8 are provided with snap buttons or magic tapes 9;
the heating element 1 is structurally characterized in that a temperature sensing wire 12 is spirally wound and fixed on a heating wire 11, and an insulating medium layer is arranged between the contact surface of the temperature sensing wire 12 and the heating wire 11;
the main control box 5 is internally provided with a control switch 51, a constant temperature circuit module 52, a safety protection circuit module 53 and a fuse 54;
the heating wire 11, the fuse 54, the electric plug 7 and the control switch 51 are electrically connected to form a main electrifying loop;
the output end of the temperature sensing wire 12 is connected with the input end of a constant temperature circuit module 52, and the output end of the constant temperature circuit module 52 is connected with the input end of a control switch 51;
the safety protection circuit module 53 is electrically connected to the electrical plug 7, the fuse 54, the temperature-sensitive wire 12, and the constant temperature circuit module 52.
A battery box is arranged in the main control box 5, a dry battery or a storage battery is arranged in the battery box, and the battery box and the electric plug 7 are connected to the electrified main loop in a parallel mode. When in use, the electric plug 7 can be directly connected with the socket to provide power for the whole circuit, the electric plug 7 can also be used for charging the storage battery in the battery box in advance, and when in use, the electric energy of the storage battery is directly used for supplying power for the circuit, and a dry battery can also be arranged in the battery box to supply power for the circuit.
The main control box 5 is provided with a charging USB interface, the power line 4 is a data line, and the electric plug 7 is a charging head matched with the data line. The structure is more suitable for the existing electric appliance charging structure, is more convenient to use and can be disassembled for carrying.
In the utility model, after the heating wire 11 of the heating element 1 is electrified, current passes through the heating wire 11, so that the heating wire 11 generates heat energy to heat the whole sheath main body 8; meanwhile, the purpose of automatic safe temperature control is achieved under the combined action of the 52-level fuse 54 of the constant temperature circuit module, specifically, the temperature sensing wire 12 is spirally wound on the heating wire 11, a layer of insulating medium is arranged between the temperature sensing wire and the heating wire, so that the heating state of the heating wire 11 can be sensed more truly, when the temperature control is failed due to reasons, the constant temperature circuit module 52 rapidly commands the control switch 51 to cut off a power-on main loop, the rear part of the heating wire can be completely eliminated after the fault is treated, and the real safe, efficient and convenient constant temperature regulation and control effect is achieved.
After the method is used, before infusion, the venous infusion part can be heated and insulated, the body surface temperature is improved, blood vessels are expanded, and the puncture success rate is improved; during transfusion, the temperature of the transfusion part can be kept constant, and the comfort of a patient is improved; the working efficiency of medical staff is improved; reduce the conflict of patient care and promote the harmonious and healthy development of the patient care relationship.
The utility model discloses an adjustment of isostructure is applicable to different patient groups, is applicable to different injection positions, and is following right through four embodiments the utility model discloses an embodiment exemplifies.
Example one
As shown in fig. 3, the capsule body 8 has a rectangular shape.
The heating element 1 is arranged in the sheath main body 8, when in use, the sheath main body 8 is opened into a piece type and is mainly used for wrists (basilic veins of hands, cephalic veins of hands), arms (prospermia veins, basilic veins of forearms, inner sides of forearms and median veins), legs (great saphenous veins) and the like, when in use, the sheath main body coats an injection part and is fixed by a snap button or a magic tape 9, so that a puncture part is exposed at one side, after being heated for a certain time, blood vessels are expanded, and then the puncture of a needle head can be carried out, the temperature of the infusion part can be kept constant during infusion, and the comfort degree of.
Example two
As shown in fig. 4, a glove attachment 10 is disposed in the rectangular middle of the wrapping main body 8, the glove attachment 10 is a mitt, a circular opening 18 is disposed at the back of the hand, and snap buttons or hook and loop fastener pairs 19 are disposed on the wrapping main body 8 at two sides of the glove attachment 10.
The heating element 1 is arranged in the sheath main body 8, when in use, a glove is put into the sheath accessory 10, then two ends of the sheath main body 8 are fixedly connected, so that the heating before hand transfusion can be carried out, the body surface temperature is improved, the blood vessel is expanded, the puncture success rate is improved, when in puncture, the sheath main body 8 is unfolded as shown in figure 4, the intravenous puncture injection on the back of the hand is directly carried out in the round opening 18, after the needle head is fixed, the infusion tube is loosely and annularly arranged on the upper surface of the sheath main body 8 at two sides of the glove accessory 10, the snap buttons or the magic tapes 9 at two sides are respectively connected with the corresponding snap buttons or the magic tape sub-group 19, the liquid tube is wrapped in the sheath main body 8 with the heating element 1, so that the liquid medicine heating is realized, and meanwhile, the heating element 1 below the glove accessory 10 can also carry.
EXAMPLE III
As shown in fig. 5, elastic extension bands 17 having an elastic function are disposed on both sides of the rectangular sheath body 8, and snap buttons or hook and loop fasteners 9 are disposed at ends of the elastic extension bands 17.
This embodiment is applicable to thin or fat crowd, can adjust according to elasticity extension band 16, makes its applicable crowd scope wider.
Example four
As shown in fig. 6, the jacket main body 8 is a trapezoid with a narrow top and a wide bottom, and two ends of the jacket main body 8 are connected to form a two-step tubular structure with a wide bottom and a narrow top.
The utility model is suitable for a instep vein and ankle intravenous route. The lower part of the cylindrical heating tube is larger and covers the instep of the patient, and the upper part of the cylindrical heating tube is narrower and covers the ankle of the patient, so that the vein of the foot is heated in a heat preservation way. Fig. 5 is a schematic view, and those skilled in the art will understand that the actual size of the device is that the lower part of the device is cylindrical to cover the instep and the upper part of the device is covered by the ankle.
EXAMPLE five
As shown in fig. 7, the sheath main body 8 is structured such that the bottom ends of two symmetrically connected ridge-shaped pieces 13 are fixed at the middle part of a connecting band 14, a snap fastener or a hook-and-loop fastener 9 is arranged at the end part of the connecting band 14, a heating element 1 is arranged in the ridge-shaped pieces 13, and arc line parts of the two ridge-shaped pieces 13 are connected by a hook-and-loop fastener 15 and the lower end of the two ridge-shaped pieces is open to form a head covering structure.
The embodiment is suitable for scalp intravenous injection, and the head sleeve structure formed by the two ridge-shaped pieces 13 is sleeved on the head of a patient and fixed by the connecting belt 14, so that the comfortable heat preservation and heating of the whole head are realized.
The heating wire 11 is a carbon fiber heating wire, and the covering fabric layer 6 is radiation-proof pollution-free fabric.
The outer layer of the covering fabric layer 6 is further covered with radiation-proof pure cotton needle-punched non-woven fabric 16.
The control switch 51 is provided with a multi-gear temperature adjusting switch.
The utility model discloses an on the basis of safe electric current design, adopt the environmental protection surface fabric of protecting against radiation, utilize fibre heating technology and individual fuel effect principle, the short circulation protective sheath that can be used to venous transfusion of design.
Compare in the liquid heating method of dosing in the past, transfusion system heating method, with warm water bag, warm hand and precious the local traditional mode that warms up, the utility model relates to a more individuation, it is humanized: the multi-standard size is suitable for different patient groups such as infants, teenagers, adults, the elderly and special groups such as obese and lean groups; the design of various styles can be suitable for different injection parts such as hand backs, wrists, arms, legs and ankles; the design of the snap button or the magic tape is more beneficial to wearing and taking off; many grades of temperature adjustment switches make things convenient for medical personnel to the patient epidermis with adjustable, control the temperature operation, and is more high-efficient convenient. The utility model discloses a most environmental protection's radiation protection surface fabric, the most advanced fibre heating technology reaches electrodeless automatic constant temperature form, accomplishes practicality really, health, security.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention.

Claims (10)

1. The venous transfusion circulation promoting protective sleeve is characterized in that: the heating element comprises a heating element (1), a base fabric (2), a junction box (3), a power line (4), a main control box (5) and a coating fabric layer (6), wherein the heating element (1) is fixed on the base fabric (2) in a winding mode, two ends of the heating element (1) are electrically connected with the main control box (5) through the junction box (3), the main control box (5) is connected with one end of the power line (4), an electric plug (7) is arranged at the other end of the power line (4), the junction box (3) is fixed on the base fabric (2), the upper surface and the lower surface of the base fabric (2) are covered and connected with the coating fabric layer (6) to form a wrapping main body (8), and snap buttons or magic tapes (9) which are correspondingly matched are arranged on two opposite sides of the;
the heating element (1) is structurally characterized in that a temperature sensing wire (12) is spirally wound and fixed on a heating wire (11), and an insulating medium layer is arranged between the contact surface of the temperature sensing wire (12) and the heating wire (11);
a control switch (51), a constant temperature circuit module (52), a safety protection circuit module (53) and a fuse (54) are arranged in the main control box (5);
the heating wire (11), the fuse (54), the electric plug (7) and the control switch (51) are electrically connected to form a power-on main loop;
the output end of the temperature sensing wire (12) is connected with the input end of a constant temperature circuit module (52), and the output end of the constant temperature circuit module (52) is connected with the input end of a control switch (51);
the safety protection circuit module (53) is electrically connected with the electric plug (7), the fuse (54), the temperature sensing wire (12) and the constant temperature circuit module (52).
2. The intravenous infusion circulation promotion protective sheath of claim 1, wherein: a battery box is installed in the main control box (5), and a dry battery or a storage battery is installed in the battery box.
3. The intravenous infusion circulation promotion protective sheath of claim 1, wherein: the main control box (5) is provided with a charging USB interface, the power line (4) is a data line, and the electric plug (7) is a charging head matched with the data line.
4. The intravenous infusion circulation promotion protective sheath of claim 1, wherein: the sheath main body (8) is rectangular.
5. The intravenous infusion circulation promotion protective sheath of claim 4, wherein: the glove is characterized in that a glove accessory (10) is arranged in the middle of the rectangle of the wrapping main body (8), the glove accessory (10) is a mitt and is provided with a round opening (18) at the back of the hand, and snap buttons or magic tape auxiliary groups (19) are arranged on the wrapping main body (8) at the two sides of the glove accessory (10).
6. The intravenous infusion circulation promotion protective sheath of claim 4, wherein: the rectangular two sides of the sheath main body (8) are provided with elastic extension belts (17) with elastic function, and snap buttons or magic tapes (9) are arranged at the end parts of the elastic extension belts (17).
7. The intravenous infusion circulation promotion protective sheath of claim 1, wherein: the sheath main body (8) is trapezoidal with a narrow top and a wide bottom, and two ends of the sheath main body (8) are connected to form a two-step tubular structure with a wide bottom and a narrow top.
8. The intravenous infusion circulation promotion protective sheath of claim 1, wherein: the structure of sheath main part (8) is ridge shape piece (13) bottom mounting at connecting band (14) middle part of two symmetric connections, and primary and secondary buckle or magic subsides (9) set up in connecting band (14) tip, and heating element (1) sets up in ridge shape piece (13), the pitch arc portion of two ridge shape pieces (13) is connected through thread gluing (15) and the uncovered headgear structure that forms of lower extreme.
9. The intravenous fluid circulation promotion protective sheath of any one of claims 1-8, wherein: the heating wire (11) is a carbon fiber heating wire, and the coating fabric layer (6) is radiation-proof pollution-free fabric.
10. The intravenous fluid circulation promotion protective sheath of any one of claims 1-8, wherein: the outer layer of the covering fabric layer (6) is also covered with radiation-proof pure cotton needle-punched non-woven fabric (16).
CN202021439611.3U 2020-07-21 2020-07-21 Protective sleeve for promoting circulation of intravenous infusion Active CN212547840U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021439611.3U CN212547840U (en) 2020-07-21 2020-07-21 Protective sleeve for promoting circulation of intravenous infusion

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021439611.3U CN212547840U (en) 2020-07-21 2020-07-21 Protective sleeve for promoting circulation of intravenous infusion

Publications (1)

Publication Number Publication Date
CN212547840U true CN212547840U (en) 2021-02-19

Family

ID=74631098

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021439611.3U Active CN212547840U (en) 2020-07-21 2020-07-21 Protective sleeve for promoting circulation of intravenous infusion

Country Status (1)

Country Link
CN (1) CN212547840U (en)

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