Hot compress head telescopic adjusting structure of foot tub and foot tub
By employing a rotatable and telescopic adjustable rod structure in the foot bath, the problems of inaccurate adjustment and easy fatigue of flexible tubes are solved, enabling rapid and precise adjustment of the hot compress area and extending its service life, thus improving the user experience.
Patent Information
- Application Number
- CN202422484146.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-10-14
AI Technical Summary
In existing knee heating pad designs, the flexible tubes are not adjustable precisely and are prone to fatigue, resulting in a poor user experience and a short lifespan.
A rotatable and telescopic adjustable rod is used instead of a flexible tube. The rotation and telescopic adjustment of the hot compress area are achieved through the combination of the rotating rod and the telescopic rod. Combined with positioning buckles and guide structures, the accuracy and stability of the adjustment are ensured.
It enables rapid and precise adjustment of the hot compress area, improves the user experience, extends the service life, and reduces maintenance costs.
Smart Images

Figure CN223586118U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to foot bath basin field, especially a foot bath basin's hot compress head telescopic adjusting structure and foot bath basin. BACKGROUND
[0002] In modern life, with the continuous improvement of people's health consciousness, various health care devices are increasingly favored by consumers. In order to further improve the user experience, the foot bath basin combined with the knee hot compress function appears in the market, aiming to provide more comprehensive hot compress health care experience for users.
[0003] The knee hot compress component design in the prior art generally uses a flexible pipe as a medium for connecting the hot compress head and the main structure to realize the adjustment of the angle and height of the hot compress head. Although this design gives the user the ability to adjust the hot compress position to a certain extent, it is inconvenient in actual operation. Specifically, the user often needs to repeatedly bend the flexible pipe to try to find the most suitable hot compress position. This process is not only tedious and time-consuming, but also difficult to achieve precise adjustment due to the flexibility and elasticity of the flexible pipe, often only achieving an approximate satisfactory effect, which is difficult to meet the user's demand for precise hot compress position.
[0004] In addition, the flexible pipe is prone to material fatigue after frequent bending adjustment. This physical fatigue not only reduces the flexibility and durability of the flexible pipe, but also may cause micro-damage to the structure, thereby shortening the service life of the entire hot compress assembly. In the long run, this not only increases the user's maintenance cost, but also affects the overall performance and user experience of the product. UTILITY MODEL CONTENTS
[0005] The utility model aims at solving the above technical problem, and provides a foot bath basin's hot compress head telescopic adjusting structure and foot bath basin, which replaces the flexible pipe with a rotatable telescopic adjusting rod, so that the hot compress head can be more conveniently and quickly adjusted to the hot compress position.
[0006] A foot bath basin's hot compress head telescopic adjusting structure, comprising a basin body of a foot bath basin and a hot compress head assembly, the hot compress head assembly comprising an adjusting rod and a hot compress part, the adjusting rod comprising a rotating rod body and a telescopic rod body, the rotating rod body being rotatably installed on the side wall of the basin body to form a rotating adjustment, the rotating rod body being provided with a telescopic cavity, one end of the telescopic rod body being telescopically installed in the telescopic cavity to form a telescopic adjustment, the hot compress part being installed at the other end of the telescopic rod body, and the position of the hot compress part being adjusted by the rotating adjustment and the telescopic adjustment.
[0007] The heat application head telescopic adjusting structure of the foot bath tub according to the present application can rotate the heat application part through the rotation of the rotating rod body and the tub body, so that the heat application part can rotate with the adjusting rod, and when it is needed to be stored, the heat application part can be rotated to the outside of the tub body for storage, and when it is needed to be applied, the heat application part can be rotated to the top of the tub body, so that the heat application part can be applied when the user uses the foot bath tub. The heat application part can be telescoped through the telescopic installation of the telescopic rod body and the rotating rod body, so that the user can adjust the height of the heat application part according to the need, so that it can be applied to users of different heights for heat application. The adjusting structure of the flexible pipe can more conveniently and quickly adjust the position of the heat application part due to the lack of the elastic performance of the flexible pipe.
[0008] Further, the rotating rod body is provided with a positioning buckle, and the telescopic rod body is provided with a positioning rack, and the positioning buckle and the positioning rack cooperate to position the position of the telescopic rod body after telescopic adjustment.
[0009] Further, the rotating rod body extends into the telescopic cavity and has a guide strip, and the telescopic rod body is provided with a guide groove, and the guide strip and the guide groove cooperate to guide the telescopic adjustment of the telescopic rod body. The guide structure can make the telescopic rod body stably slide in the rotating rod body.
[0010] Further, the rotating rod body includes a rotating shaft, which is rotatably installed on the tub body, and a wire hole is formed in the middle of the rotating shaft, and a first wire slot is formed in the telescopic rod body, and the telescopic rod body is hollow, and the external connecting line of the heat application part is connected to the tub body through the inside of the telescopic rod body, the first wire slot and the wire hole. The rotating shaft of the rotating rod body has the effects of rotating installation and providing the external connecting line to pass through, which is convenient for the heat application part to be powered and controlled through the tub body.
[0011] Further, the rotating rod body further includes an inner lining, which is installed in the middle of the rotating shaft, and the wire hole is formed in the inner lining, and the inner lining extends inwardly to the inside of the first wire slot, so that the inner lining cooperates with the side wall of the first wire slot to limit the telescopic length of the telescopic adjustment. The inner lining can not only improve the structural strength of the rotating shaft, but also protect the external connecting line of the heat application part, and the inner lining is also used for guiding and limiting the telescopic rod body during telescopic adjustment to avoid the telescopic rod body from being pulled out of the rotating rod body.
[0012] Further, the tub body is provided with a mounting position for the rotating installation of the rotating shaft, and a second wire slot is formed in the mounting position, and a notch is formed in the rotating shaft, and the notch communicates with the wire hole and the second wire slot.
[0013] Further, the basin body is provided with an axle hole and a bearing, the bearing is installed in the axle hole, a first rotation limiting groove is arranged on the inner side wall of the bearing, a first rotation limiting block is arranged on the outer side of the rotating shaft, the rotating shaft is rotatably installed in the bearing, and the first rotation limiting groove and the first rotation limiting block are matched to limit the rotation angle of the rotation adjustment.
[0014] Further, the first rotation limiting groove is provided with a positioning groove, the first rotation limiting block is also a positioning block, and the positioning groove and the positioning block are matched to position the rotating rod body when the rotating rod body is rotationally adjusted.
[0015] Further, the rotating rod body further comprises a limiting disc, the basin body is provided with a mounting position for rotationally mounting the rotating shaft, the rotating shaft extends into the basin body from the mounting position, and the limiting disc is fixed on the rotating shaft, so that the rotating shaft is limited in the mounting position. The limiting disc can limit the rotating shaft of the rotating rod body on the basin body, so that the rotating rod body cannot easily fall off the basin body.
[0016] Further, the mounting position is provided with a second rotation limiting block, and the limiting disc is provided with a second rotation limiting groove, and the second rotation limiting groove and the second rotation limiting block are matched to limit the rotation angle of the rotation adjustment.
[0017] A foot bath basin comprises the heat compress head telescopic adjustment structure of the foot bath basin. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a perspective view of the foot bath basin of the utility model.
[0019] Figure 2 It is an explosion view of the heat compress head telescopic adjustment structure of the foot bath basin of the utility model.
[0020] Figure 3 It is a sectional view of the heat compress head telescopic adjustment structure of the foot bath basin of the utility model.
[0021] Figure 4 It is a perspective view of part of the shell of the basin body of the utility model.
[0022] Figure 5 It is an explosion view of the heat compress head telescopic adjustment structure of the foot bath basin of the utility model from another angle.
[0023] Figure 6 It is a perspective view of the bearing of the utility model.
[0024] Figure 7 It is a perspective view of the limiting disc of the utility model. DETAILED DESCRIPTION
[0025] The utility model discloses a hot compress head telescopic adjusting structure of foot bath basin and foot bath basin.
[0026] As Figures 1 to 7 The utility model discloses a hot compress head telescopic adjusting structure of foot bath basin and foot bath basin, including the basin body 1 and hot compress head subassembly 2 of foot bath basin, hot compress head subassembly 2 includes adjusting lever 21 and hot compress part 22, adjusting lever 21 includes rotary lever body 211 and telescopic lever body 212, rotary lever body 211 can rotate and install on the lateral wall of basin body 1 and form rotation adjustment, be equipped with telescopic cavity in rotary lever body 211, one end of telescopic lever body 212 can be installed in telescopic cavity and form telescopic adjustment, hot compress part 22 installs at the other end of telescopic lever body 212, cooperate the position of hot compress part 22 through rotation adjustment and telescopic adjustment, form the rotation adjustment of hot compress part 22 through the rotation installation of rotary lever body 211 and basin body 1, so that hot compress part 22 can rotate with adjusting lever 21, as Figure 1 Telescopic lever body 212 whole appearance presents as straight strip shape on one side, and arc shape on the other side, one end of straight strip shape inserts into rotary lever body 211 and telescopes, one end of arc shape cooperates with the shell of basin body 1, when needing to store, can hot compress part 22 is rotated to the outside of the shell of basin body 1 and is stored, when needing hot compress, can hot compress part 22 is rotated to the top of basin body 1, so that hot compress part 22 can be hot compress when user uses foot bath basin, form the telescopic adjustment of hot compress part 22 through the telescopic installation of telescopic lever body 212 and rotary lever body 211, so that user can adjust the height of hot compress part 22 according to the need, to make it applicable to the user of different height and carry out hot compress, relative to the adjusting structure of flexible pipe, because not having the elastic performance of flexible pipe, the rotation telescopic adjustment of the application can more conveniently and quickly adjust the position of hot compress part 22.
[0027] As Figure 2 And Figure 3 As shown in the drawings, the rotary lever body 211 is provided with a positioning buckle 2111, and the telescopic lever body 212 is provided with a positioning rack 2121. The positioning buckle 2111 and the positioning rack 2121 cooperate to position the position of the telescopic lever body 212 after telescopic adjustment. The positioning buckle 2111 is not installed on the same side as the rotary lever body 211 that is rotationally installed on the basin body 1. The position of the positioning rack 2121 is opposite to the position of the positioning buckle 2111. The rotation installation structure of the rotary lever body 211 avoids affecting the functions of the positioning buckle 2111 and the positioning rack 2121. The positioning buckle 2111 is provided with a through slot on the side. The through slot increases the elastic performance of the positioning buckle 2111, so that the positioning buckle 2111 can smoothly slide between the teeth of the positioning rack 2121 and position the telescopic lever body 212 in the teeth of the positioning rack 2121.
[0028] As shown in Figure 2 , the rotating rod body 211 is a flat tube as a whole, the telescopic cavity in the rotating rod body 211 is also flat, and the telescopic rod body 212 is also a flat tube as a whole. The rotating rod body 211 extends a guide strip 2112 into the telescopic cavity. The telescopic rod body 212 is provided with a guide groove 2123. The guide strip 2112 and the guide groove 2123 cooperate to guide the telescopic adjustment of the telescopic rod body 212. Preferably, the guide strip 2112 is arranged on both sides of the flat telescopic cavity, and the guide groove 2123 is correspondingly arranged on both sides of the flat telescopic rod body 212. The guide structure does not affect the rotation structure and telescopic structure of the adjusting rod 21.
[0029] As shown in Figures 2 to 7 , the rotating rod body 211 includes a rotating shaft 213, which is rotatably mounted on the basin body 1. The rotating shaft 213 is provided with a wire hole 2141 in the middle. The telescopic rod body 212 is provided with a first wire groove 2122. The telescopic rod body 212 is hollow. The external connecting line of the hot compress part 22 is connected to the basin body 1 through the inside of the telescopic rod body 212, the first wire groove 2122, and the wire hole 2141. The rotating shaft 213 of the rotating rod body 211 has the effects of rotating installation and external connecting line passing through, which facilitates the power supply and control of the hot compress part 22 through the basin body 1.
[0030] The rotating rod body 211 further includes an inner lining 214, which is mounted in the middle of the rotating shaft 213. The wire hole 2141 is formed in the inner lining 214. The inner lining 214 extends inwardly to the inside of the first wire groove 2122, so that the inner lining 214 cooperates with the side wall of the first wire groove 2122 to limit the telescopic length of the telescopic adjustment. The inner lining 214 can not only improve the structural strength of the rotating shaft 213, but also protect the external connecting line of the hot compress part 22. In addition, the inner lining 214 is also used for guiding and limiting the telescopic rod body 212 during telescopic adjustment, so as to avoid the telescopic rod body 212 from being pulled out of the rotating rod body 211. Figure 5 As shown in Figure 5 , the rotating shaft 213 extends a protruding portion into the wire hole 2141. The shape of the outer shape of the inner lining 214 cooperates with the shape of the protruding portion, so that the inner lining 214 can be smoothly installed into the rotating shaft 213, thereby avoiding the rotation of the inner lining 214 in the rotating shaft 213. In addition, a limiting structure can be further provided to further limit the action of the inner lining 214 and the rotating shaft 213.
[0031] The basin body 1 is provided with a mounting position for the rotating installation of the rotating shaft 213. Figures 3 to 5As shown, the mounting position of the application is the shaft hole 11 and bearing 12 provided on the basin body 1, and the shaft hole 11 and bearing 12 are respectively provided with a fan-shaped slot, and the slot of the two fan-shaped slots is overlapped to form a second wiring slot 13 on the mounting position, the shaft hole 11 is provided with a bayonet 111, and the bearing 12 is provided with a clamping strip 121, and when the bearing 12 is installed on the shaft hole 11, the clamping strip 121 is clamped into the bayonet 111, so that the two fan-shaped slots can be overlapped to form the second wiring slot 13; the shaft 213 is provided with a notch 216, and the notch 216 is connected with the wiring hole 2141 and the second wiring slot 13, as shown in Figure 5 As shown, the inner lining 214 is also provided with the notch 216, and a protruding part is arranged between the inner lining 214 and the shaft 213 for guidance, so that the two notches 216 can be overlapped, so that the wiring hole 2141 can be connected with the second wiring slot 13 through the notch 216.
[0032] As shown in Figures 3 to 6 The basin body 1 is provided with a shaft hole 11 and a bearing 12, and the bearing 12 is installed in the shaft hole 11, as shown in Figure 6 The inner side wall of the bearing 12 is provided with a first rotation limiting slot 122, as shown in Figure 5 The outer side of the shaft 213 is provided with a first rotation limiting block 2131, and the shaft 213 is rotatably installed in the bearing 12, and the first rotation limiting slot 122 and the first rotation limiting block 2131 cooperate to limit the rotation angle of the rotation adjustment.
[0033] The first rotation limiting slot 122 is provided with a positioning slot 123, and the first rotation limiting block 2131 is also a positioning block, and the positioning slot 123 and the positioning block cooperate to position the position of the rotating rod body 211 during rotation adjustment, as shown in Figure 6 As shown, one positioning slot 123 is arranged on both sides of the first rotation limiting slot 122, and the adjusting rod 21 can be positioned to the storage position and the working position during rotation adjustment through the positioning slot 123.
[0034] As shown in Figure 5 And Figure 7 As shown, the rotating rod body 211 further includes a limiting disc 215, the basin body 1 is provided with a mounting position for rotatably installing the shaft 213, the shaft 213 extends into the basin body 1 from the mounting position, and the limiting disc 215 is fixed on the shaft 213, so that the shaft 213 is limited in the mounting position, as shown in Figure 5 As shown, the protruding part of the shaft 213 extending into the wiring hole 2141 is a fixed column with a screw hole, and the limiting disc 215 cooperates with the fixed column, so that the limiting disc 215 can be fixed on the shaft 213 through a screw, so that the shaft 213 can be limited and installed on the mounting position.
[0035] The mounting position is provided with a second rotation limiting block 112, as shown in Figure 4 The outer side wall of the shaft hole 11 is provided with a second rotation limiting block 112, the limiting disc 215 is provided with a second rotation limiting groove 2151, the second rotation limiting groove 2151 and the second rotation limiting block 112 cooperate to limit the rotation angle of the rotation adjustment, so that the connecting line of the hot compress part 22 can also pass out of the second rotation limiting groove 2151.
[0036] As shown in Figure 3 And Figure 7 The limiting disc 215 is provided with a connecting strip 2152, when the limiting disc 215 is fixed on the rotating shaft 213, the connecting strip 2152 can be inserted into the gap 216, but will not completely block the gap 216, the connecting strip 2152 can provide the connecting effect between the limiting disc 215 and the rotating shaft 213, and avoid the influence of the external connecting line in the gap 216 on the installation of the limiting disc 215.
[0037] According to the disclosure and teaching of the above description, the skilled in the art of the utility model can also change and modify the above embodiments. Therefore, the utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes of the utility model should also fall within the protection scope of the claims of the utility model. In addition, although some specific terms are used in the specification, these terms are only for convenience of description, and do not constitute any limitation on the utility model.
Claims
1. A hot compress head telescopic adjusting structure of a foot bath basin, characterized in that, The basin body comprises a basin body of a foot bath basin and a hot compress head assembly, the hot compress head assembly comprises an adjusting rod and a hot compress part, the adjusting rod comprises a rotating rod body and an extension rod body, the rotating rod body is rotatably installed on the side wall of the basin body to form a rotating adjustment, the rotating rod body is provided with an extension cavity, one end of the extension rod body is telescopically installed in the extension cavity to form an extension adjustment, and the hot compress part is installed on the other end of the extension rod body.
2. The hot compress head telescopic adjusting structure of foot bath basin according to claim 1, characterized in that, The rotating rod body is provided with a positioning buckle, the extension rod body is provided with a positioning rack, and the positioning buckle and the positioning rack are matched to position the position of the extension rod body after the extension adjustment.
3. The hot compress head telescopic adjusting structure of foot bath basin according to claim 1, characterized in that, The rotating rod body extends into the extension cavity and is provided with a guide strip, the extension rod body is provided with a guide groove, and the guide strip and the guide groove are matched to guide the extension adjustment of the extension rod body.
4. The hot compress head telescopic adjusting structure of foot bath basin according to claim 1, characterized in that, The rotating rod body comprises a rotating shaft, the rotating shaft is rotatably installed on the basin body, the middle part of the rotating shaft is provided with a wire hole, the extension rod body is provided with a first wire groove, the extension rod body is hollow, and the external connecting line of the hot compress part is connected to the basin body through the inside of the extension rod body, the first wire groove and the wire hole.
5. The hot compress head telescopic adjusting structure of foot bath basin according to claim 4, characterized in that, The rotating rod body further comprises an inner lining, the inner lining is installed on the middle part of the rotating shaft, the wire hole is formed in the inner lining, the inner lining extends inwardly to the inside of the first wire groove, and the inner lining is matched with the side wall of the first wire groove to limit the extension length of the extension adjustment.
6. The hot compress head telescopic adjusting structure of foot bath basin according to claim 4, characterized in that, The basin body is provided with a mounting position for the rotating installation of the rotating shaft, the mounting position is formed with a second wire groove, the rotating shaft is formed with a notch, and the notch is communicated with the wire hole and the second wire groove.
7. The hot compress head telescopic adjusting structure of foot bath basin according to claim 4, characterized in that, The basin body is provided with a shaft hole and a bearing, the bearing is installed in the shaft hole, the inner side wall of the bearing is provided with a first rotation limiting groove, the outer side of the rotating shaft is provided with a first rotation limiting block, the rotating shaft is rotatably installed in the bearing, and the first rotation limiting groove and the first rotation limiting block are matched to limit the rotation angle of the rotating adjustment.
8. The hot compress head telescopic adjusting structure of foot bath basin according to claim 7, characterized in that, The first rotation limiting groove is provided with a positioning groove, the first rotation limiting block is also a positioning block, and the positioning groove and the positioning block are matched to position the rotating rod body during the rotating adjustment of the rotating rod body.
9. The hot compress head telescopic adjusting structure of foot bath basin according to claim 4, characterized in that, The rotating rod body further comprises a limiting disc, the basin body is provided with a mounting position for the rotating installation of the rotating shaft, the rotating shaft extends into the basin body from the mounting position, and the limiting disc is fixed on the rotating shaft so that the rotating shaft is limited in the mounting position.
10. The hot compress head telescopic adjusting structure of foot bath basin according to claim 9, characterized in that, The mounting position is provided with a second rotation limiting block, the limiting disc is provided with a second rotation limiting groove, and the second rotation limiting groove and the second rotation limiting block are matched to limit the rotation angle of the rotating adjustment.
11. A footbath, characterised in that The hot compress head extension adjustment structure comprises the foot bath basin of any one of claims 1 to 10.