CN219614172U - Cold therapy instrument - Google Patents

Cold therapy instrument Download PDF

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Publication number
CN219614172U
CN219614172U CN202320035281.9U CN202320035281U CN219614172U CN 219614172 U CN219614172 U CN 219614172U CN 202320035281 U CN202320035281 U CN 202320035281U CN 219614172 U CN219614172 U CN 219614172U
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China
Prior art keywords
shell
arc
discharge
output end
cabin
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Active
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CN202320035281.9U
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Chinese (zh)
Inventor
刘颖
张宠
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Hangzhou Zhimeiyanhe Medical Cosmetology Clinic Co ltd
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Hangzhou Zhimeiyanhe Medical Cosmetology Clinic Co ltd
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Priority to CN202320035281.9U priority Critical patent/CN219614172U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/30Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change

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  • Thermotherapy And Cooling Therapy Devices (AREA)

Abstract

The utility model provides a cold therapy instrument, which relates to the technical field of medical cosmetology and comprises a bearing part and a shell component, wherein the outer side of one end of the bearing part is provided with the shell component assembled by bolts; the utility model mainly utilizes the shell cabin with an arc structure to be connected to the outer side of one end of the bed board through the bolt connecting plate, so that the face of a user is aligned to the inner convex bars distributed in an arc array at the inner side of the shell cabin, when cold therapy is needed, the cold therapy mechanism is operated, the condensation tube group at the inner side of the shell cabin box sliding cover and the arc fins absorb heat through liquid nitrogen condensation, so that the shell cabin and the inner convex bars below can absorb the heat of the air above the face of the user as much as possible, the temperature of the air is reduced to the therapeutic temperature, and because the face of the user, the inner shell and the inner convex bars are provided with a certain distance, the good safety of the user when the equipment is used is ensured, and because the shell member is smaller in size, the medical care personnel has good convenience in installation operation.

Description

Cold therapy instrument
Technical Field
The utility model relates to the technical field of medical cosmetology, in particular to a cold therapy instrument.
Background
More and more beauty lovers like facial sculptures and whole body sculptures, and postoperative detumescence and pain relief are also important, and traditional forehead medical beauty clinically uses cold compress paper and cold spray equipment, but cannot solve the problem of radical detumescence. The cold therapeutic instrument can form cold air and cold liquid medium lower than body temperature, and the medium can be used for contacting human body to cool down the affected part to treat diseases.
When the existing cryotherapeutic apparatus is used, surrounding gas or contacted liquid is cooled by using liquid nitrogen or dry ice and then contacts the face of a human body, so that the affected part is cooled, and the therapeutic effect is achieved, as disclosed in application number CN202011197452.5, a low-temperature Leng Liao apparatus comprises: organism braced frame is formed with in the organism braced frame: the cold therapy bin is provided with an installation opening, an equipment installation bin and a door body, and the installation opening is arranged on the cold therapy bin and can be closed or opened; however, in the above technology, the whole equipment structure is oversized, the operation is complicated, and the space is closed with a certain risk, so the utility model provides a cold therapy instrument to solve the problems in the prior art.
Disclosure of Invention
According to the cold therapy instrument, the shell cabin of the arc structure is connected to the outer side of one end of the bed board through the bolt connecting plate, the face of a user is aligned to the inner convex rods distributed in the arc array at the inner side of the shell cabin, when cold therapy is needed, the cold therapy mechanism is operated, the condensation tube group and the arc fins at the inner side of the shell cabin box sliding cover condense and absorb heat through liquid nitrogen, the shell cabin and the inner convex rods below can absorb heat of air above the face of the user as much as possible, the temperature of the air is reduced to the therapeutic temperature, and due to the fact that the face of the user, the inner shell and the inner convex rods are a certain distance, good safety of the user in using equipment is guaranteed, and due to the fact that the size of the shell member is small, medical staff has good convenience in installation and operation.
In order to achieve the purpose of the utility model, the utility model is realized by the following technical scheme: the cold therapy instrument comprises a bearing part and a shell component, wherein the outer side of one end of the bearing part is provided with the shell component assembled by bolts, and the inner top side of the bearing part is provided with a cold therapy mechanism which is sleeved with the shell component in a penetrating way;
the shell member comprises a bolt connecting plate, a shell cabin, an inner convex rod, a sliding cover, a handle, an arc-shaped strip, a control panel and a connecting rod, wherein the shell cabin is connected with one end outer side of the bearing part through the bolt connecting plate, the inner convex rod distributed in an arc array is arranged on the inner bottom side of the shell cabin, the sliding cover in sliding connection is arranged above the shell cabin, the handles are arranged on two sides of the sliding cover, the arc-shaped strip is arranged above one end of the shell cabin, the control panel is arranged on the outer side of the shell cabin, and the connecting rod is arranged on two sides of the control panel.
As a further technical scheme, an arc ring structure is formed between the shell cabin and the sliding cover, and a plurality of groups of hole structures are arranged on the sliding cover.
As a further technical scheme, the bearing component comprises a support column, a transverse supporting strip, a bed plate, a headrest, guardrails, a lower plugboard, an upper plugboard and a rubber ring, wherein the transverse supporting strip is arranged on the inner side of the support column, the bed plate is arranged on the top side of the support column, the headrest is arranged above one end of the bed plate, and guardrails assembled by bolts are arranged on two sides of the bed plate.
As a further technical scheme, the top side of the bed board is provided with a lower inserting plate, an upper inserting plate which is inserted is arranged above the lower inserting plate, and rubber rings are arranged at the edges of the circular arc gaps of the lower inserting plate and the upper inserting plate.
As a further technical scheme, the cold therapy mechanism comprises a discharge tank body, a discharge pipe, a discharge pump, a feed valve, a feed pipe, a condensing pipe group, arc fins, a material collecting pipe, a discharge valve, a material collecting pump and a material collecting tank body, wherein the discharge tank body is arranged on the top side of the transverse bar, the output end of the discharge tank body is connected with the discharge pipe, the output end of the discharge pipe is connected with the discharge pump, the output end of the discharge pump is connected with the input end of the feed valve, the output end of the feed valve is provided with the feed pipe, the output end of the feed pipe is connected with the condensing pipe group distributed in an arc array, and the outer side of the condensing pipe group is provided with the arc fins.
As a further technical scheme, the output of condenser nest of tubes is connected with the receipts material pipe, just the output of receipts material pipe is connected with the bleeder valve, the output of bleeder valve is connected with the receipts material pump, just the output of receipts material pump is connected with the receipts material jar body.
The beneficial effects of the utility model are as follows:
the utility model mainly utilizes the shell cabin with an arc structure to be connected to the outer side of one end of the bed board through the bolt connecting plate, so that the face of a user is aligned to the inner convex bars distributed in an arc array at the inner side of the shell cabin, when cold therapy is needed, the cold therapy mechanism is operated, the condensation tube group at the inner side of the shell cabin box sliding cover and the arc fins absorb heat through liquid nitrogen condensation, so that the shell cabin and the inner convex bars below can absorb the heat of the air above the face of the user as much as possible, the temperature of the air is reduced to the therapeutic temperature, and because the face of the user, the inner shell and the inner convex bars are provided with a certain distance, the good safety of the user when the equipment is used is ensured, and because the shell member is smaller in size, the medical care personnel has good convenience in installation operation.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic side view of the present utility model;
FIG. 3 is a schematic perspective view of a bearing component according to the present utility model;
FIG. 4 is a schematic perspective view of a housing member of the present utility model;
fig. 5 is a schematic view of a three-dimensional structure of a condensing tube set and an arc fin according to the present utility model.
Wherein: 1. a carrier member; 101. a support post; 102. a transverse supporting bar; 103. a bed board; 104. a headrest; 105. guard bars; 106. a lower plugboard; 107. an upper plugboard; 108. a rubber ring; 2. a housing member; 201. a bolt connecting plate; 202. a housing compartment; 203. an inwardly protruding stick; 204. a sliding cover; 205. a handle; 206. an arc-shaped strip; 207. a control panel; 208. a connecting rod; 3. a cold therapy mechanism; 301. a discharge tank body; 302. a discharge pipe; 303. a discharge pump; 304. a feed valve; 305. a feed pipe; 306. a condensing tube group; 307. arc fins; 308. a material receiving pipe; 309. a discharge valve; 3010. a material receiving pump; 3011. and a receiving tank body.
Detailed Description
The present utility model will be further described in detail with reference to the following examples, which are only for the purpose of illustrating the utility model and are not to be construed as limiting the scope of the utility model.
According to fig. 1-5, this embodiment proposes a cryotherapeutic apparatus, including a bearing part 1 and a housing member 2, wherein the housing member 2 assembled by bolts is disposed at an outer side of one end of the bearing part 1, and a cryotherapeutic mechanism 3 penetrating and sleeved with the housing member 2 is disposed at an inner top side of the bearing part 1;
the shell member 2 comprises a bolting plate 201, a shell cabin 202, an inner protruding rod 203, a sliding cover 204, a handle 205, an arc-shaped strip 206, a control panel 207 and a connecting rod 208, wherein the shell cabin 202 is in bolted connection with the outer side of one end of the bearing component 1 through the bolting plate 201, the inner protruding rod 203 distributed in an arc array is arranged at the inner bottom side of the shell cabin 202, the sliding cover 204 in sliding connection is arranged above the shell cabin 202, the handles 205 are arranged at the two sides of the sliding cover 204, the arc-shaped strip 206 is arranged above one end of the shell cabin 202, the control panel 207 is arranged at the outer side of the shell cabin 202, and the connecting rod 208 is arranged at the two sides of the control panel 207.
An arc ring structure is formed between the housing compartment 202 and the sliding cover 204, and a plurality of groups of hole structures are arranged on the sliding cover 204.
In this embodiment, when the treatment is needed, the manual operation control panel 207 outputs an instruction, and the housing compartment 202 is closed by the handle 205 and the sliding cover 204 to close the sliding cover 204 on the housing compartment 202.
The bearing part 1 comprises a support column 101, a transverse supporting bar 102, a bed plate 103, a headrest 104, guardrails 105, a lower inserting plate 106, an upper inserting plate 107 and rubber rings 108, wherein the transverse supporting bar 102 is arranged on the inner side of the support column 101, the bed plate 103 is arranged on the top side of the support column 101, the headrest 104 is arranged above one end of the bed plate 103, and the guardrails 105 assembled by bolts are arranged on two sides of the bed plate 103.
In this embodiment, the bed plate 103 is disposed at a treatment site by the support 101, and a headrest 104 is disposed above one end of the bed plate 103, so that the patient can lie on the bed plate 103, and the headrest 104 is placed under the head.
A lower plugboard 106 is arranged on the top side of the bed board 103, an upper plugboard 107 which is inserted and connected is arranged above the lower plugboard 106, and rubber rings 108 are arranged at the edges of the circular arc gaps of the lower plugboard 106 and the upper plugboard 107.
In this embodiment, after the patient lies down, the lower insert plate 106 is placed under the neck of the patient, the lower insert plate 106 is matched with the lower rubber ring 108 to support the neck of the patient, and then the upper insert plate 107 is inserted into the lower insert plate 106.
The cold therapy mechanism 3 comprises a discharge tank 301, a discharge pipe 302, a discharge pump 303, a feed valve 304, a feed pipe 305, a condensing tube group 306, arc fins 307, a material receiving pipe 308, a discharge valve 309, a material receiving pump 3010 and a material receiving tank 3011, wherein the discharge tank 301 is arranged at the top side of the transverse supporting bar 102, the output end of the discharge tank 301 is connected with the discharge pipe 302, the output end of the discharge pipe 302 is connected with the discharge pump 303, the output end of the discharge pump 303 is connected with the input end of the feed valve 304, the output end of the feed valve 304 is provided with the feed pipe 305, the output end of the feed pipe 305 is connected with the condensing tube group 306 distributed in an arc array, and the outer side of the condensing tube group 306 is provided with the arc fins 307.
In this embodiment, the feeding valve 304 is opened, the discharging pump 303 is started to output power to drive the output end of the discharging pump 303 to operate, so that the liquid nitrogen in the material tank 301 is operated to the discharging pipe 302, the liquid nitrogen is input to the feeding valve 304 under the mutual cooperation of the discharging pipe 302 and the discharging pump 303, and enters the feeding pipe 305 through the feeding valve 304, under the interaction of the condensing pipe group 306 and the arc fins 307, the effect of absorbing the heat of the shell cabin 202 is achieved, and the air inside the shell cabin 202 is cooled by the absorbing shell cabin 202 and the inner protruding rod 203, so that the cooled air achieves the therapeutic effect of cold therapy on the face of a patient.
The output of condensing tube group 306 is connected with receiving pipe 308, and the output of receiving pipe 308 is connected with discharge valve 309, and the output of discharge valve 309 is connected with receiving pump 3010, and the output of receiving pump 3010 is connected with receiving jar body 3011.
In this embodiment, after the treatment is completed, the discharge valve 309 is opened, and the receiving pump 3010 is started to output power, so that the receiving pump 3010 returns the liquid nitrogen in the condensing tube set 306 to the receiving tank 3011 for storage through the receiving tube 308 and the discharge valve 309, and then the upper plug board 107 is removed, so that the patient leaves the treatment position.
The working principle of the cold therapy instrument is as follows: firstly, a bed board 103 is arranged at a treatment place through a support column 101, a headrest 104 is arranged above one end of the bed board 103, a patient is laid on the bed board 103, the headrest 104 is arranged below the head, after the patient lies down, a lower plugboard 106 is arranged below the neck of the patient, the lower plugboard 106 is matched with a lower rubber ring 108 to support the neck of the patient, then an upper plugboard 107 is plugged on the lower plugboard 106, then when treatment is needed, a manual operation control panel 207 outputs an instruction, a shell cabin 202 is sealed on the shell cabin 202 through a handle 205 and a sliding cover 204 to achieve a sealing effect, a feed valve 304 is opened, a discharge pump 303 is started to output power to drive the output end of the discharge pump 303 to operate, so that liquid nitrogen in a material tank 301 is driven to operate to a discharge pipe 302, under the mutual cooperation of the discharging pipe 302 and the discharging pump 303, liquid nitrogen is input into the feeding valve 304 and enters the feeding pipe 305 through the feeding valve 304, under the interaction of the condensing pipe group 306 and the arc-shaped fins 307, the effect of absorbing the heat of the shell cabin 202 is achieved, the air inside the shell cabin 202 is cooled by the absorbing shell cabin 202 and the inward protruding rod 203, so that the cooled air achieves the therapeutic effect of cold therapy on the face of a patient, after the treatment is finished, the discharging valve 309 is opened, the power is output by the receiving pump 3010, the receiving pump 3010 returns the liquid nitrogen in the condensing pipe group 306 into the receiving tank 3011 through the receiving pipe 308 and the discharging valve 309 for storage, and then the upper plug board 107 is taken down, so that the patient leaves the therapeutic position.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (6)

1. A cryotherapeutic apparatus comprising a carrier member (1) and a housing member (2), characterized in that: a shell component (2) assembled by bolts is arranged at the outer side of one end of the bearing component (1), and a cold therapy mechanism (3) which is in penetrating sleeve joint with the shell component (2) is arranged at the inner top side of the bearing component (1);
the shell member (2) comprises a bolting plate (201), a shell cabin (202), an inner protruding rod (203), a sliding cover (204), a handle (205), an arc-shaped strip (206), a control panel (207) and a connecting rod (208), wherein the shell cabin (202) is connected with the outer side of one end of the bearing component (1) through the bolting plate (201), the inner protruding rod (203) distributed in an arc array is arranged at the inner bottom side of the shell cabin (202), the sliding cover (204) in sliding connection is arranged above the shell cabin (202), the handles (205) are arranged at the two sides of the sliding cover (204), the arc-shaped strip (206) is arranged above one end of the shell cabin (202), the control panel (207) is arranged at the outer side of the shell cabin (202), and the connecting rod (208) is arranged at the two sides of the control panel (207).
2. The apparatus of claim 1, wherein: an arc ring structure is formed between the shell cabin (202) and the sliding cover (204), and a plurality of groups of hole structures are arranged on the sliding cover (204).
3. The apparatus of claim 1, wherein: the bearing component (1) comprises a support column (101), a transverse supporting strip (102), a bed plate (103), a headrest (104), guardrails (105), a lower plugboard (106), an upper plugboard (107) and a rubber ring (108), wherein the transverse supporting strip (102) is arranged on the inner side of the support column (101), the bed plate (103) is arranged on the top side of the support column (101), the headrest (104) is arranged above one end of the bed plate (103), and the guardrails (105) assembled by bolts are arranged on two sides of the bed plate (103).
4. A cryotherapeutic apparatus according to claim 3, wherein: the upper inserting plate (107) is arranged above the lower inserting plate (106), and rubber rings (108) are arranged at the edges of arc gaps of the lower inserting plate (106) and the upper inserting plate (107).
5. A cryotherapeutic apparatus according to claim 3, wherein: the cold therapy mechanism (3) comprises a discharge tank body (301), a discharge pipe (302), a discharge pump (303), a feed valve (304), a feed pipe (305), a condensing tube group (306), an arc fin (307), a receiving pipe (308), a discharge valve (309), a receiving pump (3010) and a receiving tank body (3011), wherein the discharge tank body (301) is arranged at the top side of the transverse supporting strip (102), the output end of the discharge tank body (301) is connected with the discharge pipe (302), the output end of the discharge pipe (302) is connected with the discharge pump (303), the output end of the discharge pump (303) is connected with the input end of the feed valve (304), the output end of the feed valve (304) is provided with the feed pipe (305), the output end of the feed pipe (305) is connected with the condensing tube group (306) distributed in an arc array, and the outer side of the condensing tube group (306) is provided with the arc fin (307).
6. The apparatus of claim 5, wherein: the output end of the condensing tube group (306) is connected with a receiving tube (308), the output end of the receiving tube (308) is connected with a discharge valve (309), the output end of the discharge valve (309) is connected with a receiving pump (3010), and the output end of the receiving pump (3010) is connected with a receiving tank body (3011).
CN202320035281.9U 2023-01-06 2023-01-06 Cold therapy instrument Active CN219614172U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320035281.9U CN219614172U (en) 2023-01-06 2023-01-06 Cold therapy instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320035281.9U CN219614172U (en) 2023-01-06 2023-01-06 Cold therapy instrument

Publications (1)

Publication Number Publication Date
CN219614172U true CN219614172U (en) 2023-09-01

Family

ID=87773019

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320035281.9U Active CN219614172U (en) 2023-01-06 2023-01-06 Cold therapy instrument

Country Status (1)

Country Link
CN (1) CN219614172U (en)

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