CN219803957U - Foot soaking massager - Google Patents

Foot soaking massager Download PDF

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Publication number
CN219803957U
CN219803957U CN202223599880.8U CN202223599880U CN219803957U CN 219803957 U CN219803957 U CN 219803957U CN 202223599880 U CN202223599880 U CN 202223599880U CN 219803957 U CN219803957 U CN 219803957U
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China
Prior art keywords
basin body
connecting wire
electric connecting
assembly
wire
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CN202223599880.8U
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Chinese (zh)
Inventor
欧阳杰鹏
肖移龙
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Foshan Xingman Information Technology Co Ltd
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Foshan Xingman Information Technology Co Ltd
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Priority to CN202223599880.8U priority Critical patent/CN219803957U/en
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Abstract

The utility model relates to a foot bath massager, comprising: the basin body is at least partially foldable, and can be folded or unfolded along the height direction; the power supply module is arranged on the basin body and is positioned at the lower part of the basin body, and the display control module is arranged on the basin body and is positioned at the upper part of the basin body; the guide assembly can synchronously move along with the folding and unfolding processes of the basin body; the power module is connected with one end of an electric connecting wire, the other end of the electric connecting wire bypasses the guide assembly and then is connected with the display control module, and in the movement process of the guide assembly, the guide assembly guides the electric connecting wire to slide so as to adjust the length of the electric connecting wire positioned on two sides of the electric connecting wire, so that the electric connecting wire is kept in a tensioned state. The guide assembly capable of synchronously moving with the folding and unfolding processes of the basin body is used for guiding the electric connecting wire, so that the electric connecting wire is prevented from influencing the electric transmission effect after being stretched and bent for a long time.

Description

Foot soaking massager
Technical Field
The utility model relates to the technology of physiotherapy equipment, in particular to a foot soaking massager.
Background
In the foldable foot soaking massager, in order to enable the bottom power panel to supply power to the display panel on the cover body, the bottom power panel is usually required to be connected with the display panel through an electric connecting wire, as the basin body is often folded and unfolded, the basin body is required to be equipped with a telescopic elastic electric connecting wire for connection, but in a state that the basin body is unfolded for a long time, after being in a stretching state for a long time, the elastic resilience can be weakened, the complete shrinkage time becomes long, long-time stretching state is also likely to cause failure due to the fact that the elastic electric connecting wire cannot rebound in time when the basin body descends, the elastic electric connecting wire is forced to compress, deform and twist, the condition that the elastic electric connecting wire deviates out of an original descending track occurs in the descending process is caused, and the effect of complete shrinkage is not achieved, so that the integral folding effect of the basin body is affected.
Disclosure of Invention
Based on the above, it is necessary to provide a foot bath massager capable of effectively guiding an electrical connection wire in the foot bath massager to solve the problem that the lifting process is affected by the electrical connection wire.
A foot bath massager, comprising: the basin body is internally provided with a foot soaking cavity for accommodating feet, at least part of the basin body can be folded, and the basin body can be folded or unfolded along the height direction; the power supply module is arranged on the basin body and is positioned at the lower part of the basin body, and the display control module is arranged on the basin body and is positioned at the upper part of the basin body; the guide assembly can synchronously move along with the folding and unfolding processes of the basin body; the power module is connected to the one end of electric connecting wire, the other end of electric connecting wire is walked around behind the direction subassembly with show accuse module and be connected in the direction subassembly motion process, direction subassembly guide electric connecting wire slides in order to adjust the electric connecting wire length electric connecting wire that is located its both sides.
The utility model discloses a foot soaking massager, wherein a basin body can be folded and unfolded, a display control module is arranged at the upper end part of the basin body, so that a user can conveniently use the foot soaking massager, a power supply module is arranged at the lower part of the basin body and is connected with the display control module through an electric connecting wire, so that electric connection between the basin body and the display control module is realized, the two ends of the electric connecting wire are respectively connected with the power supply module and the display control module through a guide assembly capable of synchronously moving with the folding and unfolding processes of the basin body, the middle part of the electric connecting wire sequentially bypasses the guide assembly, and the guide assembly is used for guiding the electric connecting wire to move along with the folding and unfolding processes of the basin body, so that the electric connecting wire is kept to be straightened or kept in a basically straightened state, and particularly, the electric connecting wire is easy to bend in the folding process of a product, the electric transmission capacity of the electric connecting wire is influenced after long-term repeated bending, the electric connecting wire is kept in the straightened state, interference between the electric connecting wire and other structural members can be avoided, and the service life of the product is effectively prolonged.
In one embodiment, the guiding assembly comprises a rotating member, the rotating member can rotate, the part of the electric connection wire is wound on the rotating member, and the rotating member rotates to enable the electric connection wire to slide relative to the rotating member in the process of folding and unfolding the basin body. Through being equipped with the rotation piece on the direction subassembly, the electricity connecting wire is drawn forth the back from power module and is wound on rotating the piece, wears out and be connected with the display and control module through the other end of rotating the subassembly, at the folding of basin body with open the in-process, rotate the piece and can rotate for the basin body, the pivoted in-process is driven the electricity connecting wire subassembly and is gone up and descend the motion in the basin body to realize the process of leading electricity connecting wire and basin body synchronous motion.
In one embodiment, the guiding assembly comprises a fixing seat and a rotating shaft, the rotating shaft is installed on the fixing seat and can rotate relative to the fixing seat, and the part of the electric connecting wire is wound on the rotating shaft. Through being equipped with the pivot on the fixing base, the pivot is as rotating the piece, and the electric connection line winds to establish and rotates on rotating the piece, rotates at the in-process for fixing base pivoted, can guide around establishing the electric connection line above that and move.
In one embodiment, the guide assembly comprises a pulley assembly comprising a pulley and a pulley bracket, the pulley is the rotating member, the pulley is arranged on the pulley bracket, and the part of the electrical connection wire is wound around the pulley. This rotating member is the pulley, and the pulley cover is established on the pulley bracket, and when the basin body opened the process, the direction of motion of direction subassembly and basin body was the same, and the pulley subassembly can be along the upper portion direction motion towards the basin body, when the basin body carries out folding process, can be along the direction motion near basin body lower part direction, at this in-process, guide electric connecting wire moves thereupon, avoids the failure risk after the spring electric wire is tensile for a long time, and the motion process is more laborsaving, and the simple structure of pulley subassembly, and the occupation space of pulley subassembly is little.
In one embodiment, the pulley can rotate relative to the pulley bracket, a sliding channel is formed between the pulley and the pulley bracket, and the electric connecting wire penetrates through the sliding channel. The outer surface of pulley and pulley support between form sliding channel, pass the sliding channel of guide assembly after the stiff end is walked around to the electricity connecting wire for guide assembly can further improve the guide motion accuracy to the electricity connecting wire, and further, the pulley can rotate for the pulley support and make the resistance that produces between pulley and the electricity connecting wire in the motion process littleer, avoids the electricity connecting wire to appear the condition of card line along pulley motion in-process, and the line cover is also equivalent to movable pulley at the in-process of guide electricity connecting wire motion.
In one embodiment, the basin body comprises a base, the guide assembly comprises a wire sleeve and an elastic piece, a part of the electric connecting wire is wound on the wire sleeve and supports at least one part of the wire sleeve, one end of the elastic piece is fixed on the base, and the other end of the elastic piece is connected with the wire sleeve; in the process of opening the basin body, the electric connecting wire is pulled up by the upper portion of the basin body, the wire sleeve is pulled up by the electric connecting wire, the elastic piece deforms to extend, in the process of folding the basin body, the restoring force of the elastic piece pulls down the wire sleeve, and the wire sleeve drives the electric connecting wire to descend and adjusts the length of the electric connecting wire positioned on two sides of the electric connecting wire. Through being equipped with the elastic component, basin body base and line cover are connected respectively at the both ends of elastic component, form the cambered surface on the lateral wall of line cover, and the electric connection line slides around the cambered surface of line cover. In the process of opening the basin body, as the electric connecting wire is stretched and lifted by the basin body, the wire sleeve is stretched upwards along with the electric connecting wire, one end of the elastic piece is connected with the wire sleeve to enable the wire sleeve to be tensioned along with the electric connecting wire, when the basin body is folded, the elastic piece is elastically restored to stretch the wire sleeve downwards, so that the electric connecting wire wound on the side wall of the wire sleeve is guided to descend, the electric connecting wire can be distributed on the left side and the right side of the wire sleeve, the electric connecting wire cannot be bent to interfere a lifting structure arranged on the basin body, and the guiding effect of the guiding assembly is improved.
In one embodiment, the basin further comprises a telescopic piece, the telescopic piece is respectively connected with the upper portion of the basin body and the lower portion of the basin body, the telescopic piece can be lengthened or shortened to drive the basin body to be unfolded or folded, and the guide component is connected to the telescopic piece so as to realize synchronous movement with the basin body through extension or shortening of the telescopic piece. The two ends of the telescopic piece are respectively connected with the upper part and the lower part of the basin body, and the telescopic piece is used for driving the upper part and the lower part of the basin body to carry out the relative change of the positions, so that the basin body can realize the working process of automatic opening and folding. Wherein, the extension piece can be for containing extension rod, hinge connecting rod etc. can extend and the structure that shortens, through setting up the direction subassembly on the extension piece for thereby the direction subassembly can be automatic with the folding of basin body with open descend and rise, thereby the motion of guide electric connecting wire.
In one embodiment, the basin further comprises a support frame assembly, the support frame assembly is arranged in the base, one end of the telescopic piece is arranged on the support frame assembly, the other end of the telescopic piece is connected with the upper portion of the basin, the telescopic piece is located in the accommodating cavity of the support frame assembly when being shortened, a first accommodating cavity is formed in the support frame assembly, and the guide assembly is connected with the lower end of the telescopic piece and located in the first accommodating cavity. Through being equipped with the support frame subassembly on the base, be equipped with in the support frame subassembly and hold the extensible member that the chamber is used for accomodating under the folding situation, and the first chamber of accomodating that is equipped with, be used for accomodating the electric connecting wire of connecting power module and showing between the accuse module, guide assembly also is located first accomodate the chamber, at the folding in-process of basin body, electric connecting wire can be along with extensible member downstream, accomodate in first accomodate the intracavity, when the extensible member extension, electric connecting wire also rises simultaneously, guide assembly guides electric connecting wire and makes electric connecting wire regularly accomodate more in first accomodate the intracavity simultaneously in the in-process of upwards stretching and downstream, thereby avoid electric connecting wire knot, the emergence of the adverse condition such as buckling.
In one embodiment, the support frame assembly is provided with a fixed end near one end of the upper portion of the basin body, one end of the electric connecting wire bypasses the fixed end and then is connected with the guide assembly, the guide assembly is located between the fixed end and the lower portion of the basin body, and the height from the fixed end to the lower portion of the basin body is greater than the height from the guide assembly to the lower portion of the basin body. The support frame subassembly is located the basin inside and is equipped with the stiff end, through setting up the stiff end in the top of direction subassembly, the electricity connecting wire is from setting up after the power module in basin lower part draws forth the stiff end earlier, then bypasses direction subassembly to stretch out to showing accuse module and realize the electricity connection from direction subassembly's exit end, on direction subassembly's opposite both sides, its one side electricity connecting wire draws forth from the stiff end, the opposite side electricity connecting wire extends to basin upper portion from direction subassembly's exit end. The height of the guide component from the lower part of the basin body is smaller than that of the fixed end from the lower part of the basin body, so that the guide component serves as a movable pulley, and the movable pulley model is formed by the movement among the fixed end, the guide component and the electric connecting wire, so that the basin body is manually or mechanically driven to fold and open more labor-saving, and the movement of the electric connecting wire is effectively guided.
In one embodiment, the expansion piece comprises an upper ejector rod, a lower ejector rod and a core assembly, the upper ejector rod is connected with the upper portion of the basin body, the other end of the upper ejector rod is connected with the core assembly, one end of the lower ejector rod is connected with the bottom wall of the support frame assembly or the bottom wall of the base, the other end of the lower ejector rod is connected with the core assembly, the core assembly and the upper ejector rod ascend relative to the lower ejector rod when the core assembly works, the upper ejector rod extends relative to the core assembly, and the guide assembly is connected with the lower end of the core assembly. The telescopic part of this embodiment adopts the structure of last ejector pin, lower ejector pin, is equipped with driving motor in the core subassembly, and is equipped with the lead screw in the core subassembly and is connected with last ejector pin, lower ejector pin respectively, driving motor drive lead screw motion, at the in-process that the basin body was opened, the lead screw is used for driving the ejector pin motion, goes up the ejector pin and drives the basin body upper portion of connecting above that under the drive of lead screw and outwards stretches out, another lead screw drives down the ejector pin motion simultaneously, because lower ejector pin is fixed in the lower part of the basin body, so lower ejector pin gives core subassembly reaction force upward movement at the drive of lead screw. In the moving process, the movement assembly stretches out in the direction away from the bottom of the basin body at the speed A due to the acting force of the lower ejector rod, and the upper part of the basin body rises at twice the speed A due to the synchronous movement of the upper ejector rod and the lower ejector rod.
Drawings
FIG. 1 is an open cross-sectional view of the foot bath massager of embodiment 1;
FIG. 2 is a folded cross-sectional view of the foot bath massager of embodiment 1;
FIG. 3 is a sectional view showing a partial structure of the opening process of the foot bath massager of the embodiment 1;
FIG. 4 is a perspective view of the extension process of the telescoping member and guide assembly of example 1;
FIG. 5 is a cross-sectional view of FIG. 4;
FIG. 6 is an opened cross-sectional view of the foot bath massager of embodiment 2;
fig. 7 is a partial sectional view showing the structure of the foot bath massager of example 2 during the opening process.
Wherein, the correspondence between the reference numerals and the component names is:
1 basin body, 101 foot soaking cavity, 11 upper basin body, 12 base and 13 cover body;
2, a power module;
3, a display control module;
4, an electric connection wire;
5 a support frame assembly 501 a first receiving cavity;
6 guide components, 61 pulley components, 611 pulleys, 612 pulley brackets, 62 wire sleeves and 63 elastic pieces;
7 telescopic parts, 71 upper ejector rods, 72 lower ejector rods and 73 movement assemblies;
8 fixed end.
Detailed Description
In order that the above-recited objects, features and advantages of the present utility model will be more clearly understood, a more particular description of the utility model will be rendered by reference to the appended drawings and appended detailed description. It should be noted that, without conflict, the embodiments of the present utility model and features in the embodiments may be combined with each other.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model, however, the present utility model may be practiced in other ways than those described herein, and therefore the scope of the present utility model is not limited to the specific embodiments disclosed below.
The following describes foot bath massagers according to some embodiments of the present utility model with reference to the accompanying drawings.
Example 1
As shown in fig. 1 to 7, this embodiment further defines, in addition to the features of the above-described embodiment: a foot bath massager, comprising: basin body 1, power module 2, display and control module 3, direction subassembly 6 and electric connection line 4, basin body 1 includes basin body 11 and base 12, goes up basin body 11 setting in the upper portion of base 12 and be formed with the bubble foot chamber that holds the foot in it, goes up basin body 11 and can fold or open along its direction of height. The power module 2 is arranged on the basin body 1 and is positioned at the lower part of the basin body 1 and is usually arranged in the base 12; the display control module 3 is arranged on the upper basin body 11 and is positioned at the upper part of the upper basin body 11, and if the cover body 13 is arranged at the upper part of the basin body 1, the display control module 3 is usually arranged on the cover body 13, and the power supply module 2 and the display control module 3 are electrically connected through an electrical connection wire. In the process of opening the basin body, the upper part of the basin body 11 (including the cover body 13) moves upwards away from the base 12, in the process of folding the basin body, the upper part of the basin body moves downwards towards the direction close to the base, and the guide component 6 can move synchronously with the folding and opening process of the basin body 1, for example, the guide component is connected with the upper part of the basin body through a connecting piece, so as to realize synchronous linkage with the basin body, wherein the connecting piece can be a structural piece connected with the upper part of the basin body or a structural piece connected with the upper part of the basin body to drive the basin body to fold or open, such as a telescopic piece 7 in the following embodiment. One end of the electric connecting wire 4 is connected with the power module 2, the other end of the electric connecting wire 4 bypasses the guide assembly 6 and is connected with the display control module 3, and in the movement process of the guide assembly 6, the guide assembly 6 guides the electric connecting wire 4 to slide so as to adjust the lengths of the electric connecting wires positioned on two sides of the electric connecting wire 4, so that the electric connecting wire 4 is kept in a straightened or basically straightened state.
The utility model discloses a foot soaking massager, wherein a basin body 1 can be folded and unfolded, a display control module 3 is arranged at the upper end part of the basin body 1, so that a user can conveniently use the foot soaking massager, a power module 2 is arranged at the lower part of the basin body 1 and is connected with the display control module 3 through an electric connecting wire 4, so that electric connection between the basin body 1 and the display control module is realized, two ends of the electric connecting wire 4 are respectively connected with the power module 2 and the display control module 3 through a guide assembly 6 capable of synchronously moving with the folding and unfolding processes of the basin body 1, the middle part of the electric connecting wire 4 sequentially bypasses the guide assembly 6, and the guide assembly 6 is used for guiding the electric connecting wire 4 to move along with the folding and unfolding processes of the basin body 1, so that the electric connecting wire is kept in a straightened state, the electric transmission capability is prevented from being influenced after the electric connecting wire is bent for a long time, the electric connecting wire is prevented from interfering with other structural parts, and the service life of a product is effectively improved. Wherein the power module 2 is usually presented in the form of a power panel, and the display control module 3 is presented in the form of a display control panel; the guide component 6 can synchronously move along with the folding and unfolding processes of the basin body, and the guide component 6 can be connected with the upper part of the basin body through a connecting piece, so that the upper part of the basin body
In addition to the features of the above embodiments, the present embodiment further defines: the guiding component comprises a rotating piece, the rotating piece can rotate, the part of the electric connecting wire 4 is wound on the rotating piece, and the rotating piece rotates to enable the electric connecting wire 4 to slide relative to the rotating piece through rotation in the folding and unfolding process of the basin body 1. The rotating piece can be any rotating structural piece such as a rotating shaft, a pulley or a gear, and the like, the rotating piece is arranged on the guide assembly 6, the electric connecting wire is led out from the power module, wound on the rotating piece, penetrated out from the other end of the rotating assembly and connected with the display control module 3, and can rotate relative to the basin body in the folding and unfolding process of the basin body 1, and the electric connecting wire assembly is driven to ascend and descend in the basin body in the rotating process, so that the synchronous movement process of the electric connecting wire 4 and the basin body 1 is led out.
As shown in fig. 1 to 5, this embodiment further defines, in addition to the features of the above-described embodiment: the guide assembly 6 includes a pulley assembly 61, the pulley assembly 61 includes a pulley 611 and a pulley bracket 612, the pulley 611 is a rotating member, the pulley 611 is disposed on the pulley bracket 612, and a portion of the electrical connection wire 4 is wound around the pulley 611. This rotating member is pulley 611, pulley 611 cover is established on pulley support 612, when basin body 1 opens the process, direction of movement of direction subassembly 6 and basin body 1 is the same, pulley assembly 62 can be along the upper portion direction motion towards basin body 1, when basin body 1 carries out the folding process, can be along the direction motion that is close to basin body 1 lower part direction, at this in-process, guide electric connecting wire 4 moves thereupon, avoid the failure risk after the spring electric wire long-time stretching, and the motion process is more laborsaving, pulley assembly 61's simple structure, and pulley assembly 61's occupation space is little.
In addition to the features of the above embodiments, the present embodiment further defines: the pulley 611 can rotate relative to the pulley bracket 612, a sliding channel is formed between the pulley 611 and the pulley bracket 612, and the electrical connection wire 4 is arranged in the sliding channel in a penetrating way. The outer surface of the pulley 611 and the pulley bracket 612 form a sliding channel, the electric connecting wire 4 passes through the sliding channel of the guide component 6 after bypassing the fixed end 8, so that the guide component 6 can further improve the accuracy of the guiding movement of the electric connecting wire, and further, the pulley 611 can rotate relative to the pulley bracket 612, so that the resistance generated between the pulley 611 and the electric connecting wire 4 in the movement process is smaller, the situation that the electric connecting wire 4 is blocked in the movement process along the pulley 611 is avoided, and the wire sleeve is equivalent to a movable pulley in the movement process of guiding the electric connecting wire.
As shown in fig. 1 to 7, this embodiment further defines, in addition to the features of the above-described embodiment: still include the extensible member 7, extensible member 7 is connected with the upper portion of basin body 1 and the lower part of basin body 1 respectively, and extensible member 7 can extend or shorten in order to drive basin body 1 folding or opening, and guide assembly 6 connects on extensible member 7 to realize the synchronous motion with basin body 1 through extensible member 7's extension or shortening. The two ends of the telescopic piece 7 are respectively connected with the upper part and the lower part of the basin body 1, and the telescopic piece 7 is used for driving the upper part and the lower part of the basin body 1 to carry out the relative change of the positions, so that the basin body 1 can realize the working process of automatic folding and unfolding. The expansion member 7 may be a structural member capable of being expanded and contracted, including an expansion rod, a hinge link, etc., and the structural member may be manually expanded and contracted, or may be automatically controlled to be expanded and contracted by being connected to an electric driving member. By providing the guide assembly 6 on the telescopic member 7, the guide assembly 6 can automatically descend or ascend with the folding and unfolding of the tub 1, thereby guiding the movement of the electrical connection wire.
As shown in fig. 1, 2 and 6, this embodiment further defines, in addition to the features of the above-described embodiment: still include support frame subassembly 5, the basin body includes base 12, and support frame subassembly 5 sets up in base 12, and extensible member 7 one end sets up on support frame subassembly 5, and extensible member 7's the other end is connected with the upper portion of basin body 1, and extensible member 7 is located support frame subassembly 5 when shortening and holds the intracavity, is equipped with first storage chamber 501 on the support frame subassembly 5, and direction subassembly 6 is connected in extensible member 7's lower extreme and is located first storage chamber 501. Through being equipped with support frame subassembly 5 on base 12, be equipped with in the support frame subassembly 5 and hold the chamber and be used for accomodating the extensible member 7 under the folding situation, and the first chamber 501 of accomodating that is equipped with, be used for accomodating the electric connecting wire 4 of connecting between power module 2 and the display and control module 3, guide assembly 6 also is located first chamber 501 of accomodating, at the folding in-process of basin body 1, electric connecting wire 4 can be along with extensible member 7 downstream, accomodate in first chamber 501 of accomodating, when extensible member 7 extends, electric connecting wire 4 also rises simultaneously, guide assembly 6 guide electric connecting wire 4 makes electric connecting wire 4 more regularly accomodate in first chamber 501 simultaneously in the in-process of upwards stretching and downstream, thereby avoid the emergence of electric connecting wire 4, the adverse circumstances such as buckling.
As shown in fig. 1 to 5, this embodiment further defines, in addition to the features of the above-described embodiment: the support frame subassembly 5 is close to the one end on basin body upper portion and is equipped with stiff end 8, and the one end of electrical connection line 4 is walked around stiff end 8 and is connected with guide assembly 6, and guide assembly 6 is located between stiff end 8 and basin body 1 lower part, and stiff end 8 is greater than guide assembly 6 to the height of basin body 1 lower part. The support frame assembly 5 is located inside the basin body 1 and is provided with a fixed end 8, the fixed end 8 is arranged above the guide assembly 6, the electric connecting wire 4 is led out from the power module 2 arranged at the lower part of the basin body 1, then bypasses the fixed end 8, then bypasses the guide assembly 6, and extends out from the outlet end of the guide assembly 6 to the display control module 3 to realize electric connection, one side of the electric connecting wire is led out from the fixed end 8 on two opposite sides of the guide assembly 6, and the other side of the electric connecting wire extends from the outlet end of the guide assembly 6 to the upper part of the basin body 1. The height of the guide component 6 from the lower part of the basin body 1 is smaller than the height of the fixed end 8 from the lower part of the basin body 1, so that the guide component 6 serves as a movable pulley, and the movement among the fixed end 8, the guide component 6 and the electric connecting wire 4 forms a movable pulley model, so that the manual or mechanical driving basin body 1 is more labor-saving in folding and unfolding processes, and the movement of the electric connecting wire 4 is effectively guided.
As shown in fig. 4, 5 and 7, in some intelligent foot-soaking massage embodiments, the telescopic member is driven to extend and retract by a driving motor, the telescopic member 7 comprises an upper ejector rod 71, a lower ejector rod 72 and a movement assembly 73, the upper ejector rod 71 is connected with the upper portion of the tub body 1, the other end of the upper ejector rod 71 is connected with the movement assembly 73, one end of the lower ejector rod 72 is connected with the bottom wall of the support frame assembly 5 or the bottom wall of the base 12, the other end of the lower ejector rod 72 is connected with the movement assembly 73, when the movement assembly 73 works, the movement assembly 73 and the upper ejector rod 71 are lifted relative to the lower ejector rod 72, the upper ejector rod 71 is extended relative to the movement assembly 73, and the guide assembly 6 is connected with the lower end of the movement assembly 73. The telescopic piece 7 of this embodiment adopts the structure of upper ejector pin 71, lower ejector pin 72, be equipped with driving motor in the core subassembly 73, and be equipped with the lead screw in the core subassembly 73 and be connected with upper ejector pin 71, lower ejector pin 72 respectively, driving motor drive lead screw motion, in the in-process that basin body 1 opened, the lead screw is used for driving upper ejector pin 71 motion, upper ejector pin 7 drives the basin body 1 upper portion of being connected above that outwards stretch out under the drive of lead screw, another lead screw drives lower ejector pin 72 motion simultaneously, because lower ejector pin 72 is fixed in the lower part of basin body 1, lower ejector pin 72 gives core subassembly 73 counter force upward movement at the drive of lead screw. Therefore, the extension of the telescopic piece is realized through the driving motor, and the basin body is driven to be opened. During the above movement, the movement assembly 73 moves at the speed a and protrudes in a direction away from the bottom of the tub 1 due to the force of the lower push rod 72, and the upper part of the tub 1 rises at twice the speed a due to the synchronous movement of the upper push rod 71 and the lower push rod 72.
Example 2
As shown in fig. 6 to 7, the difference between the present embodiment and the above embodiment is that only the guiding component 6 is different, and the other structures are the same, in this embodiment, the basin body includes a base 12, the guiding component 6 includes a wire sleeve 62 and an elastic member 63, a portion of the electrical connection wire 4 is wound around the wire sleeve 62 and holds at least a portion of the wire sleeve 62, one end of the elastic member 63 is fixed on the base 12, and the other end of the elastic member 63 is connected with the wire sleeve 62; in the process of opening the basin body 1, the electric connection wire 4 is pulled up by the upper part of the basin body 1, the wire sleeve 62 is pulled up by the electric connection wire 4, the elastic piece 63 deforms to extend, in the process of folding the basin body 1, the restoring force of the elastic piece 63 pulls down the wire sleeve 62, and the wire sleeve 62 drives the electric connection wire 4 to descend and adjusts the length of the electric connection wires positioned on two sides of the wire sleeve. By being provided with the elastic piece 63, the both ends of the elastic piece 63 are respectively connected with the base 12 of the basin body 1 and the wire sleeve 62, an arc surface is formed on the side wall of the wire sleeve 62, and the electric connecting wire 4 slides around the arc surface of the wire sleeve 62. In the process of opening the basin body 1, as the electric connection wire 4 is stretched and lifted by the basin body 1, the wire sleeve 62 is stretched upwards along with the electric connection wire 4, one end of the elastic piece 63 is connected with the wire sleeve 62 to tighten the electric connection wire, when the basin body 1 is folded, the elastic piece 63 is elastically restored to downwards stretch the wire sleeve 62, so that the electric connection wire 4 wound on the side wall of the wire sleeve 62 is guided to descend, the electric connection wire 4 can be distributed on the left side and the right side of the wire sleeve 62, the electric connection wire 4 cannot be bent to interfere a lifting structure arranged on the basin body 1, and the guiding effect of the guiding assembly 6 is improved.
Example 3
This embodiment is identical to embodiment 1 except that the guide assembly structure is different. The guiding assembly 6 of this embodiment includes a fixing base and a rotating shaft, wherein the rotating shaft is one of the embodiments of the rotating member, and the rotating shaft is mounted on the fixing base and can rotate relative to the fixing base, and a portion of the electrical connection wire 4 is wound on the rotating shaft. Through being equipped with the pivot on the fixing base, the pivot is as rotating the piece, and the electric connection line winds to establish and rotates on rotating the piece, rotates at the in-process for fixing base pivoted, can guide around establishing electric connection line 4 above that and move.
The technical features of the above-described embodiments may be arbitrarily combined, and all possible combinations of the technical features in the above-described embodiments are not described for brevity of description, however, as long as there is no contradiction between the combinations of the technical features, they should be considered as the scope of the description.
The above examples illustrate only a few embodiments of the utility model, which are described in detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.

Claims (10)

1. A foot bath massager, comprising:
the basin body (1), the basin body (1) is internally provided with a foot soaking cavity, at least part of the basin body (1) can be folded, and the basin body (1) can be folded or unfolded along the height direction of the foot soaking massager;
the power supply module (2) and the display control module (3), wherein the power supply module (2) is arranged on the basin body (1) and is positioned at the lower part of the basin body (1), and the display control module (3) is arranged on the basin body (1) and is positioned at the upper part of the basin body (1);
the guide assembly can synchronously move along with the folding and unfolding processes of the basin body (1);
the power module (2) is connected to the one end of electric connecting wire (4), the other end of electric connecting wire (4) is walked around behind the direction subassembly with show accuse module (3) and be connected the direction subassembly motion in-process, direction subassembly guide electric connecting wire (4) slip is in order to adjust the electric connecting wire length electric connecting wire that is located its both sides.
2. Foot bath massager according to claim 1, characterized in that the guiding assembly comprises a rotating member, which can rotate, the part of the electrical connection wire (4) is wound on the rotating member, and the rotating member rotates to enable the electrical connection wire (4) to slide relative to the basin (1) during folding and unfolding.
3. Foot bath massager according to claim 2, characterized in that the guiding assembly comprises a fixed seat and a rotating shaft, the rotating shaft is the rotating member, the rotating shaft is mounted on the fixed seat and can rotate relative to the fixed seat, and the part of the electric connection wire (4) is wound on the rotating shaft.
4. Foot bath massager according to claim 2, characterized in that the guide assembly comprises a pulley assembly (61), the pulley assembly (61) comprises a pulley (611) and a pulley bracket (612), the pulley (611) is the rotating member, the pulley (611) is arranged on the pulley bracket (612), and the part of the electrical connection wire (4) is wound around the pulley (611).
5. Foot bath massager according to claim 4, characterized in that the pulley (611) is rotatable with respect to the pulley support (612), a sliding channel is formed between the pulley (611) and the pulley support (612), the electrical connection line (4) being threaded through the sliding channel.
6. Foot bath massager according to claim 1, characterized in that the basin (1) comprises a base (12), the guiding assembly comprises a wire sleeve (62) and an elastic member (63), the part of the electric connection wire (4) is wound on the wire sleeve (62) and holds at least one part of the wire sleeve (62), one end of the elastic member (63) is fixed on the base (12), and the other end of the elastic member (63) is connected with the wire sleeve (62);
in the process of opening the basin body (1), the other end of the electric connecting wire (4) is pulled up by the upper part of the basin body (1), the wire sleeve (62) is pulled up by the electric connecting wire (4), the elastic piece (63) deforms to stretch, in the process of folding the basin body (1), the restoring force of the elastic piece (63) pulls down the wire sleeve (62), and the wire sleeve (62) drives the electric connecting wire (4) to descend and adjust the length of the electric connecting wire positioned on two sides of the wire sleeve.
7. Foot bath massager according to any one of claims 1-5, characterized in that it further comprises a telescopic member (7), wherein the telescopic member (7) is connected to the upper part of the basin (1) and the lower part of the basin (1), respectively, the telescopic member (7) can be extended or shortened to drive the basin (1) to be opened or folded, and the guiding assembly is connected to the telescopic member (7) to realize synchronous movement with the basin (1) by extension or shortening of the telescopic member (7).
8. The foot bath massager according to claim 7, further comprising a support frame assembly (5), wherein the basin body comprises a base (12), the support frame assembly (5) is arranged in the base (12), one end of the telescopic piece (7) is arranged on the support frame assembly (5), the other end of the telescopic piece (7) is connected with the upper portion of the basin body (1), the telescopic piece (7) is positioned in the accommodating cavity of the support frame assembly (5) when shortening, a first accommodating cavity (501) is arranged on the support frame assembly (5), and the guide assembly is connected to the lower end of the telescopic piece (7) and positioned in the first accommodating cavity (501).
9. The foot bath massager according to claim 8, wherein one end of the support frame assembly (5) close to the upper part of the basin body is provided with a fixed end (8), one end of the electric connection wire (4) bypasses the fixed end (8) and is connected with the guide assembly, the guide assembly is positioned between the fixed end (8) and the lower part of the basin body (1), and the height from the fixed end (8) to the lower part of the basin body (1) is larger than the height from the guide assembly to the lower part of the basin body (1).
10. Foot bath massager according to claim 8, characterized in that the telescopic member (7) comprises an upper ejector rod (71), a lower ejector rod (72) and a movement assembly (73), the upper ejector rod (71) is connected with the upper part of the basin body (1), the other end of the upper ejector rod (71) is connected with the movement assembly (73), one end of the lower ejector rod (72) is connected with the bottom wall of the support frame assembly (5) or the bottom wall of the base (12), the other end of the lower ejector rod (72) is connected with the movement assembly (73), the movement assembly (73) and the upper ejector rod (71) are lifted relative to the lower ejector rod (72) when the movement assembly (73) is operated, and the upper ejector rod (71) is elongated relative to the movement assembly (73), and the guiding assembly is connected with the lower end of the movement assembly (73).
CN202223599880.8U 2022-12-29 2022-12-29 Foot soaking massager Active CN219803957U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223599880.8U CN219803957U (en) 2022-12-29 2022-12-29 Foot soaking massager

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223599880.8U CN219803957U (en) 2022-12-29 2022-12-29 Foot soaking massager

Publications (1)

Publication Number Publication Date
CN219803957U true CN219803957U (en) 2023-10-10

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Family Applications (1)

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CN202223599880.8U Active CN219803957U (en) 2022-12-29 2022-12-29 Foot soaking massager

Country Status (1)

Country Link
CN (1) CN219803957U (en)

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