Scar massager
By designing handheld housing, vibration components, scar massagers connecting the rotor and replaceable rollers, the problem of patients requiring regular hospital treatment is solved, and independent treatment and multi-functional massage is achieved, reducing costs and meeting personalized needs.
Patent Information
- Application Number
- CN202421188699.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-27
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-05-27
AI Technical Summary
The existing scar massagers require patients to go to the hospital for regular treatment. The treatment costs are high and the usage is single. The massage components cannot be replaced according to the needs of different patients.
A scar massager including a handheld housing, a vibration assembly, a connecting rotor, a connecting assembly, an elastic assembly and a roller are designed. The vibration of the vibration assembly, an adjustable angle connecting rotor and a replaceable roller assembly are achieved to achieve autonomous treatment and multifunctional massage.
It realizes independent treatment of patients at home, reduces treatment costs, meets the personalized treatment needs of different patients, and facilitates the replacement of massage components.
Smart Images

Figure CN223232982U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of massagers, in particular to a scar massager. Background Art
[0002] Scar patients generally take long-term physical therapy and body therapy for rehabilitation treatment. The current body therapy method for treating scars mainly requires medical staff to massage the scars to stretch the scars and promote drug absorption. However, scar treatment is a long process, so patients are required to go to the hospital for massage regularly, and the resulting treatment costs are high. On the other hand, the number of medical staff is limited, and it is difficult to treat a large number of patients, which brings great inconvenience to the patient's recovery. Therefore, there is an urgent need for a simple scar massager that can be used at home, has multiple functions that can be adjusted, and can replace massage components according to different needs. Utility Model Content
[0003] In order to overcome the existing scar compression treatment methods, patients need to go to the hospital regularly for massage treatment, which makes it difficult for patients to accept. At the same time, some existing scar installers have a single massage method of use, and the massage components cannot be replaced according to the different treatment needs of patients, which cannot meet the treatment needs of different patients.
[0004] The technical solution of the utility model is: a scar massager, including a handheld shell, a vibration component, a connecting rotor, a connecting component, an elastic component and a roller; the vibration component is installed inside the handheld shell; the lower end of the vibration component is connected to the connecting rotor through a spiral structure; the connecting component is installed at one end of the connecting rotor; the roller is snap-connected on the inner side of the connecting component; and the elastic component is installed at one end of the roller.
[0005] Preferably, when in use, the switch of the vibration component can be turned on or off, and the vibration of the vibration component can synchronously drive the vibration of the lower component, which solves the problem of the single method of use of the existing scar massager, and the outer shell can protect the internal components to prevent the internal components from being damaged by external forces. At the same time, the lower connecting component can be connected by using the connecting rotating head, and a movable opening is provided on the connecting rotating head, which allows the connecting component to rotate at different angles to meet different needs during treatment. At the same time, the roller is installed on the connecting component, and the roller can spray the medicine on the patient's scar while rotating to treat the patient, solving the problem that patients need to go to the hospital regularly for massage treatment, which causes high costs that are difficult to accept. The elastic component installed on the roller can be easily removed and replaced, solving the problem that the existing massager has no way to replace the roller, resulting in an inability to meet the treatment needs of different patients.
[0006] Preferably, the handheld housing includes an outer protective shell, a connecting buckle, a rubber sleeve and a fixing ring; the outer shell of the vibration component is provided with an outer protective shell; the upper end of the outer protective shell is installed with a rubber sleeve; the inner side wall of the outer protective shell is installed with a connecting buckle; the lower end face of the outer protective shell is spirally connected with a fixing ring. When in use, the outer protective shell can effectively protect the internal components to prevent the internal components from being damaged by external forces. At the same time, the connecting buckle and the fixing ring can be used to tightly assemble the internal components and the handheld housing to prevent them from falling off. At the same time, the rubber sleeve can better press the switch when in use.
[0007] Preferably, the vibration assembly includes an outer protective shell, a battery, a motor, an eccentric block, a control panel, a button, a mounting block and a connector; the outer protective shell is connected to the outer protective shell by a snap-fit inside; two batteries are arranged inside the outer protective shell; the bottom of the two batteries are electrically connected to the motor; an eccentric block is arranged at the bottom of the motor; the upper end of the battery is electrically connected to the control panel; a button is arranged on the upper end face of the control panel; a mounting block is installed on the outer side wall of the outer protective shell; a connector is installed on the lower end face of the outer protective shell. When in use, the outer protective shell can be used to provide secondary protection for the internal parts, and the battery can be used to provide electrical energy for the assembly to drive the operation of the motor, and the operation of the motor will synchronously drive the synchronous operation of the eccentric block below, causing the assembly to start vibrating. At the same time, the control panel installed on the top can be used to control the operation of the motor, and the switch arranged above the control panel can be used to manually adjust the overall operation. The vibration assembly can be installed on the equipment using the mounting block, and the assembly below can be installed and connected using the connector.
[0008] Preferably, the connecting turntable includes a connecting platform, a mounting groove, a connecting plug, a fixing bolt and a movable opening; the lower end of the joint is spirally connected to the connecting platform; a mounting groove is provided on the lower end surface of the connecting platform; a connecting plug is installed above the connecting platform; a movable opening is provided on the connecting plug; a fixing bolt is installed on the inside of the movable opening. When in use, the connecting platform can be installed on the component using the mounting groove, and the component below can be installed and connected using the connecting plug, and the component below can be fixed on the connecting turntable using the fixing bolt. At the same time, the movable opening is provided on the connecting plug to ensure that the component below can move within a certain range.
[0009] Preferably, the connecting component includes a connecting fork, a movable rotating shaft, a connecting shaft, a block connecting disc and a connecting disc; the movable rotating shaft is rotatably connected to the fixing bolt; the connecting fork is installed on the outer layer of the movable rotating shaft; connecting shafts are installed on both sides of the connecting fork; the block connecting disc is installed on the side end of the connecting shaft; a group of connecting discs are installed on the side end of the connecting shaft, and when in use, the connecting fork can be installed on the device using the movable rotating shaft, and the block connecting disc and the connecting disc below can be firmly installed using the connecting shaft installed on the connecting fork, and the block connecting disc and the connecting disc can be used to install and connect the components below.
[0010] Preferably, the elastic component includes a tray, a fixed block, a spring and a chassis; a tray is provided on the side end face of the clamping block connecting the disc; multiple groups of fixed blocks are installed on the lower end face of the tray; springs are installed on the lower end faces of the multiple groups of fixed blocks; dampers are provided on the upper and lower ends of the springs; a chassis is installed under the spring, and when in use, the tray can be used to support and connect the upper component, and the spring can be used to provide elastic support for the tray, which facilitates the installation and disassembly of the component, and the fixed block can be used to firmly fix the spring to prevent displacement, and the chassis can be provided to separate the elastic component from the component installed below the elastic component.
[0011] Preferably, the roller includes a shell, a medicine storage cylinder, a medicine outlet hole, an inlet groove, an annular card groove, a fixed groove, a medicine delivery pipeline, a medicine release hole and a fixed tube; a medicine storage cylinder is installed on the lower end surface of the bottom plate; a medicine outlet hole is provided on the medicine storage cylinder; a fixed tube is provided on the outer layer of the medicine storage cylinder; a circular hole corresponding to the position of the medicine outlet hole is provided on the fixed tube; a plurality of groups of inlet grooves are provided on the inner side wall of the fixed tube; an annular card groove is provided below the plurality of groups of inlet grooves; a plurality of groups of fixed grooves are provided above the annular card groove; a plurality of groups of fixed grooves are staggered with the inlet grooves; a shell is rotatably installed on the outer layer of the fixed tube; a medicine delivery pipeline is provided on the inner side wall of the shell; a plurality of groups of medicine release holes are provided on the medicine delivery pipeline. When in use, the shell can be used to treat the scar of the patient. Massage, and at the same time, the medicine storage cylinder can be used to store medicine, and the medicine storage cylinder and the fixed tube are set to be fixedly connected, so that the medicine storage cylinder can be stably connected to the component while remaining stationary, and the component can be installed inside the device by using the entry slot, and the normal movement of the component can be ensured by using the annular groove, and the component can be fixed by using the fixed groove, and the fixed tube and the shell are rolled together to ensure that the fixed tube is stationary while the shell is rolled to massage the patient, and the medicine in the medicine storage cylinder can be poured into the medicine delivery pipe of the shell along the medicine outlet hole, and the internal medicine can be sprayed onto the patient's body surface by using the medicine release hole to complete the medicine treatment.
[0012] Beneficial effects of the utility model:
[0013] 1. During use, you can choose to turn on or off the switch of the vibration component. The vibration of the vibration component can synchronously drive the vibration of the lower component, which solves the problem of the single usage method of the existing scar massager. The outer shell can protect the internal components to prevent the internal components from being damaged by external forces. At the same time, the connecting component below can be connected using the connecting turntable. The connecting turntable is provided with a movable opening, which allows the connecting component to rotate at different angles to meet different needs during treatment. At the same time, the roller is installed on the connecting component. The roller can spray the medicine on the patient's scar while rotating to treat the patient, solving the problem that patients need to go to the hospital regularly for massage treatment, which causes high costs that are unacceptable. The elastic component installed on the roller can be easily removed and replaced, solving the problem that there is no way to replace the roller of the existing massager, resulting in an inability to meet the treatment needs of different patients.
[0014] 2. The outer protective shell can provide secondary protection for the internal parts. At the same time, the battery can provide power to the components to drive the operation of the motor. The operation of the motor will synchronously drive the synchronous operation of the eccentric block below, causing the component to start vibrating. At the same time, the control panel installed on the top can be used to control the operation of the motor, and the switch set above the control panel can be used to manually adjust the overall operation.
[0015] 3. The tray can be used to support and connect the components above, and the spring can be used to elastically support the tray, which is convenient for the installation and disassembly of the components. The fixing block can be used to firmly fix the spring to prevent displacement, and the chassis can be set to separate the elastic component and the components installed below the elastic component.
[0016] 4. The outer shell can be used to massage the patient's scar, and the medicine storage tube can be used to store medicine. The medicine storage tube and the fixed tube are set to be fixedly connected, so that the medicine storage tube can be stably connected to the component while remaining stationary. The component can be installed inside the chassis by using the inlet groove, and the normal movement of the component inside the chassis can be ensured by using the annular groove, and the component can be fixed by using the fixed groove. The fixed tube and the outer shell are rolled together to ensure that the fixed tube does not move while the outer shell is rolled to massage the patient. The medicine in the medicine storage tube can be poured into the medicine delivery pipe of the outer shell along the medicine outlet hole, and the medicine release hole can be used to spray the internal medicine onto the patient's body surface to complete the medicine treatment. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 What is shown is a schematic diagram of the three-dimensional structure of the structure of the utility model;
[0018] Figure 2Shown is a schematic diagram of the three-dimensional structure of the shell of the utility model;
[0019] Figure 3 Shown is a schematic diagram of the three-dimensional structure of the vibration component of the utility model;
[0020] Figure 4 Shown is a schematic diagram of the three-dimensional structure of the connecting rotor of the present invention;
[0021] Figure 5 Shown is a schematic diagram of the three-dimensional structure of the connecting assembly of the present invention;
[0022] Figure 6 Shown is a schematic diagram of the three-dimensional structure of the elastic component of the utility model
[0023] Explanation of reference numerals: 1. Handheld housing; 2. Vibration assembly; 3. Connecting head; 4. Connecting assembly; 5. Elastic assembly; 6. Roller; 101. Outer protective shell; 102. Connecting buckle; 103. Rubber sleeve; 104. Fixing ring; 201. Outer protective shell 201; 202. Battery; 203. Motor; 204. Eccentric block; 205. Control panel; 206. Button; 207. Mounting block; 208. Connector; 301. Connecting platform; 302. Mounting slot; 303. Connecting plug; 304, fixing bolt; 305, movable opening; 401, connecting fork; 402, movable rotating shaft; 403, connecting shaft; 404, clamping block connecting disc; 405, connecting disc; 501, tray; 502, fixing block; 503, spring; 504, chassis; 601, housing; 602, medicine storage cylinder; 603, medicine outlet; 604, inlet slot; 605, annular clamping slot; 606, fixing slot; 607, medicine delivery pipeline; 608, medicine release hole; 609, fixing tube. DETAILED DESCRIPTION
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0025] See also Figure 1-3The utility model provides an embodiment: a scar massager, comprising a handheld shell 1, a vibration component 2, a connecting rotating head 3, a connecting component 4, an elastic component 5 and a roller 6; the vibration component 2 is installed inside the handheld shell 1; the lower end of the vibration component 2 is connected to the connecting rotating head 3 through a spiral structure; the connecting component 4 is installed at one end of the connecting rotating head 3; the inner side of the connecting component 4 is snap-connected to the roller 6; the elastic component 5 is installed at one end of the roller 6. When in use, the switch of the vibration component 2 can be turned on or off, and the vibration of the vibration component 2 can synchronously drive the vibration of the lower component, which solves the problem of the single use method of the existing scar massager, and the handheld shell 1 can prevent the internal components from being damaged. The invention relates to a massage therapy device for treating a patient's skin, and a massage technique for treating a patient's skin, which is convenient for the patient to use. ... In order to meet the treatment needs of different patients, the handheld shell 1 includes an outer protective shell 101, a connecting buckle 102, a rubber sleeve 103 and a fixing ring 104; the outer shell of the vibration component 2 is provided with an outer protective shell 101; the upper end of the outer protective shell 101 is installed with a rubber sleeve 103; the inner side wall of the outer protective shell 101 is installed with a connecting buckle 102; the lower end surface of the outer protective shell 101 is spirally connected with a fixing ring 104. When in use, the outer protective shell 101 can be used to effectively protect the internal components to prevent the internal components from being damaged by external forces. At the same time, the connecting buckle 102 and the fixing ring 104 can be used to tightly assemble the internal components and the handheld shell 1 to prevent them from falling off. The rubber sleeve 103 provided at the same time can better press the switch when in use. The vibration component 2 includes an outer protective shell 201, a battery 202, a motor 203, an eccentric block 204, a control panel 205, a button 206, a mounting block (207) and a connector 208; the outer protective shell 101 is snap-connected to the outer protective shell 201; two batteries 202 are provided inside the outer protective shell 201; the bottoms of the two batteries 202 are electrically connected to the motor 203; the bottom of the motor 203 is provided with an eccentric block 204; the upper end of the battery 202 is electrically connected to the control panel 205; the upper end surface of the control panel 205 is provided with a button 206; the outer side wall of the outer protective shell 201 is installed with a mounting block 207;A connector 208 is mounted on the lower end of the outer casing 201. During use, the outer casing 201 provides secondary protection for the internal components. The battery 202 also provides power to the assembly, driving the motor 203. The operation of the motor 203 in turn drives the eccentric mass 204 below, causing the assembly to vibrate. The control panel 205 mounted above controls the operation of the motor 203, while buttons 206 above the control panel 205 allow for manual adjustment of the entire assembly. The mounting block 207 allows the vibration assembly 2 to be mounted on the device, while the connector 208 allows for the installation and connection of the lower assembly.
[0026] See also Figure 4-5 The connecting rotor 3 includes a connecting platform 301, a mounting groove 302, a connecting plug 303, a fixing bolt 304 and a movable opening 305; the lower end of the joint 208 is spirally connected to the connecting platform 301; the lower end surface of the connecting platform 301 is provided with a mounting groove 302; a connecting plug 303 is installed above the connecting platform 301; a movable opening 305 is provided on the connecting plug 303; a fixing bolt 304 is installed inside the movable opening 305. When in use, the connecting platform 301 can be installed on the component by using the mounting groove 302, and the component below can be installed and connected by using the connecting plug 303. At the same time, the component below can be fixed on the connecting rotor 3 by using the fixing bolt 304, and the movable opening 305 is provided on the connecting plug 303 to ensure that the component below can be moved within a certain range. The inner movement, the connecting component 4 includes a connecting fork 401, a movable rotating shaft 402, a connecting shaft 403, a block connecting disc 404 and a connecting disc 405; the movable rotating shaft 402 is rotatably connected to the fixing bolt 304; the outer layer of the movable rotating shaft 402 is installed with a connecting fork 401; connecting shafts 403 are installed on both sides of the connecting fork 401; the block connecting disc 404 is installed on the side end of the connecting shaft 403; a group of connecting shafts 403 are installed with a connecting disc 405 on the side end. When in use, the connecting fork 401 can be installed on the device using the movable rotating shaft 402, and the connecting shaft 403 installed on the connecting fork 401 can be used to firmly install the block connecting disc 404 and the connecting disc 405 below, and the block connecting disc 404 and the connecting disc 405 can be used to install and connect the components below.
[0027] See also Figure 6, the elastic component 5 includes a tray 501, a fixing block 502, a spring 503 and a chassis 504; the side end surface of the card block connecting the disc 404 is provided with a tray 501; a plurality of groups of fixing blocks 502 are installed on the lower end surface of the tray 501; springs 503 are installed on the lower end surfaces of the plurality of fixing blocks 502; dampers are provided on the upper and lower ends of the springs 503; a chassis 504 is installed under the springs 503, and when in use, the tray 501 can be used to support and connect the components above, and the springs 503 can be used to elastically support the tray 501, which is convenient for the installation and disassembly of the components, and the fixing blocks 502 can be used to firmly fix the springs 503 to prevent deviation The bottom plate 504 is provided to separate the elastic component 5 from the components installed below the elastic component 5. The roller 6 includes a shell 601, a medicine storage cylinder 602, a medicine outlet hole 603, an inlet groove 604, an annular groove 605, a fixed groove 606, a medicine delivery pipeline 607, a medicine release hole 608 and a fixed tube 609. The bottom surface of the bottom plate 504 is provided with a medicine storage cylinder 602; the medicine storage cylinder 602 is provided with a medicine outlet hole 603; the outer layer of the medicine storage cylinder 602 is provided with a fixed tube 609; the fixed tube 609 is provided with a circular hole corresponding to the position of the medicine outlet hole 603; the inner side wall of the fixed tube 609 is provided with a plurality of groups of inlet grooves 606. 04; an annular card slot 605 is provided below the multiple groups of inlet slots 604; a plurality of fixed slots 606 are provided above the annular card slot 605; the plurality of fixed slots 606 are staggered with the inlet slots 604; the outer layer of the fixed tube 609 is rotatably mounted with a shell 601; a drug delivery pipeline 607 is provided on the inner side wall of the shell 601; a plurality of drug release holes 608 are provided on the drug delivery pipeline 607. When in use, the shell 601 can be used to massage the scar of the patient, and the drug storage cylinder 602 can be used to store the drug solution, and the drug storage cylinder 602 and the fixed tube 609 are arranged to be fixedly connected, so that the drug storage cylinder 602 can remain stationary. The component is stably connected to the device under normal circumstances, and the component can be installed inside the device by using the inlet groove 604. At the same time, the normal movement of the component can be ensured by using the annular groove 605, and the component can be fixed by using the fixing groove 606. The fixed tube 609 and the shell 601 are in a rolling connection, which can ensure that the fixed tube 609 does not move while the patient is massaged by the rolling of the shell 601. The medicine in the medicine storage tube 602 can be poured into the medicine delivery pipe 607 of the shell 601 along the medicine outlet hole 603, and the medicine inside can be sprayed onto the patient's body surface by using the medicine release hole 608 to complete the medicine treatment.
[0028] During use, the outer protective shell 101 can be used to effectively protect the internal components to prevent them from being damaged by external forces. At the same time, the connecting buckle 102 and the fixing ring 104 can be used to tightly assemble the internal components and the handheld shell 1 to prevent them from falling off. At the same time, the rubber sleeve 103 can better press the switch during use. At the same time, the outer protective shell 201 can provide secondary protection for the internal parts. At the same time, the battery 202 can provide power for the components to drive the operation of the motor 203, and the operation of the motor 203 will synchronously drive the synchronous operation of the eccentric block 204 below, allowing the components to start vibrating. At the same time, the control panel 205 installed on the top can be used to control the operation of the motor 203, and the button 206 set above the control panel 205 can be used to manually adjust the overall operation. The mounting block 207 can be used to install the vibration component 2 on the device, and the connector 208 can be used to install and connect the components below.
[0029] Next, the connecting platform 301 can be installed on the component using the installation groove 302, and the lower component can be installed and connected using the connecting plug 303. At the same time, the lower component can be fixed on the connecting turntable 3 using the fixing bolt 304. At the same time, a movable opening 305 is provided on the connecting plug 303 to ensure that the lower component can move within a certain range. At the same time, the connecting fork 401 can be installed on the device using the movable rotating shaft 402. At the same time, the connecting shaft 403 installed on the connecting fork 401 can be used to firmly install the lower block connecting disc 404 and the connecting disc 405. At the same time, the lower component can be installed and connected using the block connecting disc 404 and the connecting disc 405.
[0030] Finally, the tray 501 can be used to support and connect the components above, and the spring 503 can be used to elastically support the tray 501, which is convenient for the installation and disassembly of the components. The fixing block 502 can be used to firmly fix the spring 503 to prevent deviation, and the chassis 504 can be set to separate the elastic component 5 and the components installed below the elastic component 5. At the same time, the shell 601 can be used to massage the patient's scar, and the medicine storage cylinder 602 can be used to store medicine. The medicine storage cylinder 602 and the fixed tube 609 are set to be fixedly connected, so that the medicine storage cylinder 602 can remain stationary. The component is stably connected to the device, and the component can be installed inside the device by using the inlet groove 604. At the same time, the normal movement of the component can be ensured by using the annular groove 605, and the component can be fixed by using the fixing groove 606. The fixed tube 609 and the shell 601 are rolled together to ensure that the fixed tube 609 does not move while the patient is massaged by the rolling of the shell 601. The medicine in the medicine storage tube 602 can be poured into the medicine delivery pipe 607 of the shell 601 along the medicine outlet hole 603, and the medicine inside can be sprayed onto the patient's body surface by using the medicine release hole 608 to complete the medicine treatment.
[0031] Through the above steps, when in use, you can choose to turn on or off the switch of the vibration component 2, and the vibration of the vibration component 2 can synchronously drive the vibration of the lower component, which solves the problem of the single method of use of the existing scar massager, and the handheld shell 1 can protect the internal components to prevent the internal components from being damaged by external forces. At the same time, the lower connecting component 4 can be connected using the connecting head 3. The connecting head 3 is provided with a movable slot, which allows the connecting component 4 to rotate at different angles to meet different needs during treatment. At the same time, the roller 6 is installed on the connecting component 4. The roller 6 can spray the medicine on the patient's scar while rotating to treat the patient, solving the problem that the patient needs to go to the hospital regularly for massage treatment, which causes high costs that are unacceptable. The elastic component 5 installed on the roller 6 can easily remove the roller 6 for replacement, solving the problem that the existing massager has no way to replace the roller 6, resulting in an inability to meet the treatment needs of different patients.
[0032] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. A scar massager, comprising a handheld housing (1), a vibration component (2), a connecting rotor (3), a connecting component (4), an elastic component (5) and a roller (6); the handheld housing (1) is internally mounted with the vibration component (2); the lower end of the vibration component (2) is connected to the connecting rotor (3) via a spiral structure; one end of the connecting rotor (3) is mounted with the connecting component (4); the inner side of the connecting component (4) is engaged with the roller (6); and one end of the roller (6) is mounted with the elastic component (5).
2. A scar massager according to claim 1, characterized in that: The handheld housing (1) comprises an outer protective shell (101), a connecting buckle (102), a rubber sleeve (103) and a fixing ring (104); the outer shell of the vibration component (2) is provided with the outer protective shell (101); the upper end of the outer protective shell (101) is installed with the rubber sleeve (103); the inner side wall of the outer protective shell (101) is installed with the connecting buckle (102); and the lower end surface of the outer protective shell (101) is spirally connected with the fixing ring (104).
3. The scar massager according to claim 1, characterized in that: The vibration assembly (2) comprises an outer protective shell (201), a battery (202), a motor (203), an eccentric block (204), a control panel (205), a button (206), a mounting block (207) and a connector (208); the outer protective shell (201) is snap-connected to the inner portion of the outer protective shell (101); two batteries (202) are arranged inside the outer protective shell (201); the bottoms of the two batteries (202) are electrically connected to the motor (203); the bottom of the motor (203) is provided with an eccentric block (204); the upper end of the battery (202) is electrically connected to the control panel (205); the upper end surface of the control panel (205) is provided with a button (206); the outer side wall of the outer protective shell (201) is provided with the mounting block (207); and the lower end surface of the outer protective shell (201) is provided with a connector (208).
4. A scar massager according to claim 3, characterized in that: The connecting rotor (3) comprises a connecting platform (301), a mounting groove (302), a connecting plug (303), a fixing bolt (304) and a movable opening (305); the lower end of the joint (208) is spirally connected to the connecting platform (301); the lower end surface of the connecting platform (301) is provided with a mounting groove (302); the connecting plug (303) is installed above the connecting platform; the connecting plug (303) is provided with a movable opening (305); and the fixing bolt (304) is installed inside the movable opening (305).
5. The scar massager according to claim 4, characterized in that: The connecting assembly (4) comprises a connecting fork (401), a movable rotating shaft (402), a connecting shaft (403), a clamping block connecting disc (404) and a connecting disc (405); the movable rotating shaft (402) is rotatably connected to the fixing bolt (304); the connecting fork (401) is installed on the outer layer of the movable rotating shaft; connecting shafts (403) are installed on both sides of the connecting fork (401); the clamping block connecting disc (404) is installed on the side end of the connecting shaft (403); and a group of connecting shafts (403) are installed on the side end of each connecting shaft (403).
6. The scar massager according to claim 5, characterized in that: The elastic component (5) comprises a tray (501), a fixing block (502), a spring (503) and a chassis (504); the tray (501) is provided on the side end surface of the clamping block connecting disc (404); multiple groups of fixing blocks (502) are installed on the lower end surface of the tray (501); the lower end surfaces of the multiple groups of fixing blocks (502) are all installed with springs (503); dampers are provided on the upper and lower ends of the springs (503); and the chassis (504) is installed below the springs (503).
7. The scar massager according to claim 6, characterized in that: The roller (6) includes a housing (601), a medicine storage barrel (602), a medicine outlet (603), an inlet groove (604), an annular clamping groove (605), a fixing groove (606), a medicine delivery pipeline (607), a medicine release hole (608) and a fixing tube (609); the lower end surface of the chassis (504) is provided with a medicine storage barrel (602); the medicine storage barrel (602) is provided with a medicine outlet (603); the outer layer of the medicine storage barrel (602) is provided with a fixing tube (609); the fixing tube (609) is provided with a medicine outlet (603); 03) corresponding circular holes; multiple groups of inlet grooves (604) are provided on the inner wall of the fixed tube (609); an annular clamping groove (605) is provided below the multiple groups of inlet grooves (604); multiple groups of fixed grooves (606) are provided above the annular clamping groove (605); the multiple groups of fixed grooves (606) and the inlet grooves (604) are staggered; the outer layer of the fixed tube (609) is rollingly mounted with an outer shell (601); a drug delivery pipeline (607) is provided on the inner wall of the outer shell (601); and multiple groups of drug release holes (608) are provided on the drug delivery pipeline (607).