CN212404565U - Hanging ironing machine - Google Patents

Hanging ironing machine Download PDF

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Publication number
CN212404565U
CN212404565U CN202020787589.5U CN202020787589U CN212404565U CN 212404565 U CN212404565 U CN 212404565U CN 202020787589 U CN202020787589 U CN 202020787589U CN 212404565 U CN212404565 U CN 212404565U
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China
Prior art keywords
movable seat
garment steamer
connecting shaft
groove
accommodating groove
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CN202020787589.5U
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Chinese (zh)
Inventor
王晗
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Priority to CN202020787589.5U priority Critical patent/CN212404565U/en
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Abstract

The utility model provides a garment steamer, set up to fixing base and the sliding seat of setting in this fixing base through the base with garment steamer, and set up the sliding seat activity at the inslot of accomodating of fixing base through rotating assembly, so that the sliding seat can move between primary importance and second place, and like this, when garment steamer start work, can rotate the sliding seat to the outside of accomodating the groove from accomodating the inslot portion, with the horizontal dimension of increase base, thereby the outline size of increase base, ensure that garment steamer can not empty in the use. And when the garment steamer finishes working, the movable seat is completely stored in the storage groove, so that the horizontal size of the base is reduced, and the garment steamer is convenient to store and carry.

Description

Hanging ironing machine
Technical Field
The utility model relates to the technical field of household appliances, especially, relate to a garment steamer.
Background
A hanging iron, a vertical iron, is a machine capable of ironing clothes in a hanging state. The tipping angle of each garment steamer must meet the safety standard of 10 °, that is to say, when in operation, the garment steamer is guaranteed not to tip over at an angle of inclination within 10 °.
Among the prior art, the size of the horizontal direction of the base of the garment steamer is great to increase the stress area of the base in the horizontal direction, thereby ensuring that the garment steamer cannot topple over within 10 degrees of inclination angle.
However, because of the great horizontal dimension of the base of the existing garment steamer, the occupied space of the garment steamer is increased, and the carrying and the storage of the garment steamer are inconvenient.
SUMMERY OF THE UTILITY MODEL
The utility model provides a garment steamer to solve current garment steamer's occupation space at least and influence and accomodate and transport effect and other potential problems.
The utility model provides a garment steamer, which comprises a base and a host arranged on the base, wherein the base comprises a fixed seat, a movable seat and a rotating assembly;
the side wall of the fixed seat is inwards sunken to form a receiving groove, the movable seat moves between a first position and a second position of the receiving groove through the rotating assembly, and at least part of the bottom wall of the movable seat is flush with the bottom wall of the fixed seat; the first position is the position when the movable seat is completely accommodated in the accommodating groove, and the second position is the position when the movable seat extends out of the accommodating groove.
The utility model discloses a set up the base into fixing base and the sliding seat of setting in this fixing base, and set up the sliding seat activity at the inslot of accomodating of fixing base through rotating assembly, so that the sliding seat can move between primary importance and second place, make this sliding seat rotate to the outside of accomodating the groove from the inside of accomodating the groove promptly, and rotate to the inside of accomodating the groove from the outside of accomodating the groove, thus, when hanging the ironer and beginning working, can rotate the sliding seat to the outside of accomodating the groove from accomodating the inslot portion, with the horizontal dimension of increase base, thereby increase the outline size of base, and then ensure that hanging the ironer can not topple over when inclination is within 10. And when the garment steamer finishes working, can rotate this sliding seat to the inside of accomodating the groove from the outside axis of rotation of accomodating the groove to make this sliding seat accomodate to accomodating the inslot completely after garment steamer work, reduced the horizontal dimension of this base, thereby be convenient for accomodating and carrying of garment steamer, and the sliding seat passes through the runner assembly activity and sets up on the fixing base, make the sliding seat more convenient and fast at the switching between accomodating state and user state, thereby improved the availability factor of sliding seat. In addition, set up to flush through the diapire with at least partial diapire of sliding seat and fixing base to guarantee that the sliding seat can support subaerial when the second place, thereby play the effect of adjusting the base focus, guarantee that the garment steamer can not topple over.
Optionally, the rotating assembly includes a connecting shaft disposed in the accommodating groove, and the connecting shaft extends along the thickness direction of the fixing seat; the movable seat is eccentrically sleeved on the connecting shaft.
Through setting up the runner assembly into the connecting axle to with the eccentric cover of sliding seat establish on this connecting axle, when guaranteeing that the sliding seat rotates around the connecting axle, can rotate this sliding seat to accomodate the groove outside even in-use position from accomodating the inslot promptly, perhaps can rotate this sliding seat to accomodate inslot portion from accomodating the groove outside, simplified the structure setting of runner assembly, thereby improved the assembly efficiency of base.
Optionally, the inner top wall of the accommodating groove is inclined upward from one end of the accommodating groove close to the center of the fixed seat to the direction of the notch of the accommodating groove, and the movable seat faces the surface of the inner top wall of the accommodating groove and is in contact with the inner top wall of the accommodating groove.
The interior roof through to accomodate the groove is holding the groove from one end that the groove is close to the fixing base center to holding the direction of the notch in groove upwards slope to make the top of accomodating the groove form certain slope, like this, when this sliding seat reaches user state's position second position promptly, this sliding seat can have the interior roof interference fit of certain slope with accomodating the groove, thereby prevented effectively that the sliding seat from rocking at will on the horizontal direction, improved the stability of sliding seat under user state.
Optionally, the top of the accommodating groove is provided with a mounting hole, and one end of the connecting shaft penetrates into the accommodating groove from the mounting hole so as to be conveniently and rapidly assembled on the fixing seat.
Optionally, the connecting axle with mounting hole clearance fit, the mounting hole is located accomodate the outside periphery in groove and is formed with and dodges the position.
Because of accomodating the interior roof in groove and having the slope from accomodating the inslot to the direction tilt up of the notch of accomodating the groove, the sliding seat is in the process of continuous climbing from accomodating the inslot toward outer rotation process, at this climbing in-process, the connecting axle has the phenomenon of slope, clearance between connecting axle and the mounting hole and the dodge position of mounting hole periphery alright supply this connecting axle slope, in order to prevent the sliding seat from damaging the connecting axle at the rotation process, thereby guarantee that the sliding seat can rotate to the position of use from accomodating round this connecting axle steadily.
Optionally, a first stopping portion is formed at one end, located at the top of the fixing seat, of the connecting shaft, and the outer size of the first stopping portion is larger than the radial size of the mounting hole.
The arrangement of the first stopping portion ensures that the connecting shaft is stably assembled in the mounting hole of the fixing seat, so that the connecting shaft stably assembles the movable seat into the accommodating groove of the fixing seat, and meanwhile, the connecting structure between the connecting shaft and the fixing seat is simplified, and the assembling efficiency of the base is improved.
Optionally, the movable seat is of a hollow structure, an extending portion is arranged in the movable seat, an installation channel is formed in the extending portion and arranged along the extending direction of the connecting shaft, the installation channel penetrates through the top wall of the movable seat, and the connecting shaft is arranged in the installation channel in a penetrating mode.
Through setting up the sliding seat into hollow structure to practice thrift the cost of manufacture of sliding seat, alleviateed the weight of this sliding seat simultaneously, make the motion of this sliding seat laborsaving convenient more. In addition, the extension part is arranged in the inner cavity of the movable seat, and the installation channel for the connecting shaft to penetrate is arranged in the extension part, so that the connecting structure between the connecting shaft and the movable seat is prolonged, the movable seat can be stably sleeved on the connecting shaft, meanwhile, the extension part also plays a limiting role in the radial direction of the connecting shaft, and the stability of the connecting shaft in the radial direction is improved.
Optionally, the movable seat includes a top plate and a side plate extending from the outer edge of the top plate toward a direction away from the top plate, the first end of the extension portion is connected to the top plate of the movable seat, the second end of the extension portion extends toward the top plate away from the movable seat, and the second end of the extension portion is flush with or higher than a plane where the bottom of the movable seat is located.
The setting mode of above-mentioned movable seat is in order to simplify the structure of this movable seat for the preparation of the extension on this movable seat and the movable seat is convenient and fast more, has also reduced the movable seat simultaneously and has rotated the area of contact on in-process and ground, thereby has reduced the movable seat and has rotated the frictional force on in-process and ground, makes the rotation of this movable seat more stable and laborsaving.
Optionally, a second stopping portion is formed at one end, extending out of the second end of the extending portion, of the connecting shaft, and the outer contour size of the second stopping portion is larger than the radial size of the mounting channel, so that the movable seat is prevented from being separated from the bottom end of the connecting shaft in the carrying process of the garment steamer, the connecting structure between the connecting shaft and the movable seat is simplified, and the assembling efficiency of the base is improved.
Optionally, the lateral wall of sliding seat is configured into the arc lateral wall, accomodate the groove and include following the arc cell wall that the motion path of sliding seat set up, the partial lateral wall of sliding seat is in accomodate the inslot and pasting arc cell wall motion, like this, this arc cell wall just can play spacing effect to the motion path of sliding seat for the motion path of this sliding seat is more stable, and simultaneously, the arc cell wall laminates with the arc lateral wall of sliding seat mutually, when guaranteeing that the sliding seat can accomodate the effective activity of inslot, has reduced the inside space size of accomodating the groove, from another angle, on the certain basis of the space size of accomodating the groove, can increase the horizontal dimension of sliding seat, thereby increase the lifting surface of base.
Optionally, a limiting part extends from one side of the accommodating groove close to the notch to the inside of the accommodating groove, and the limiting part is arranged opposite to the arc-shaped groove wall;
when the movable seat is located at the second position, the limiting part abuts against one side of the movable seat to ensure that the movable seat cannot shake at the second position, the stability of the movable seat in a use state is improved, and meanwhile, the movable seat is prevented from rotating excessively and directly rotating from the second position to the accommodating groove, so that the part of the movable seat, which is located outside the accommodating groove when the movable seat is located at the second position, is ensured to occupy the maximum ratio. In addition, the setting of this spacing portion also plays quick positioning action to the position that the sliding seat rotated to the user state, as long as guarantee that the sliding seat rotates to contradict with spacing portion promptly, alright accomplish the location of sliding seat under the user state.
Optionally, at least a part of the surface of the limiting portion facing the movable seat is configured to be an arc surface, so as to increase the contact area between the limiting portion and the movable seat, thereby improving the limiting effect of the limiting portion on the movable seat.
Advantages of additional aspects of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive labor.
Fig. 1 is a schematic structural view of a garment steamer according to an embodiment of the present invention in a use state;
FIG. 2 is a schematic view of the structure of FIG. 1 from another perspective;
FIG. 3 is an exploded view of FIG. 1;
FIG. 4 is an enlarged view of a portion of FIG. 3 at I;
fig. 5 is a schematic structural view of a garment steamer according to an embodiment of the present invention in a non-use state;
FIG. 6 is a schematic view of the structure of FIG. 5 from another perspective;
FIG. 7 is a cross-sectional view of FIG. 1;
FIG. 8 is an enlarged view of a portion of FIG. 7 at II;
FIG. 9 is a partial cross-sectional view of FIG. 2;
fig. 10 is a partial enlarged view at III in fig. 9.
Description of reference numerals:
100-a base;
110-a fixed seat;
111-a receiving groove;
112-mounting holes;
113-avoidance position;
114-a limiting part;
120-a movable seat;
121-top plate;
122-side plate;
123-an extension;
130-a rotating assembly;
131-a rotating shaft;
132 — a first stop;
133-a second stop;
200-a host;
300-a water tank;
400-steam generator.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
A hanging iron, a vertical iron, is a machine capable of ironing clothes in a hanging state. The garment steamer generally comprises a base and a main machine arranged on the base, wherein a water tank and a steam generator of the garment steamer are both arranged on the main machine, and the steam generator is communicated with an ironing spray head through a steam pipe. The heating device in the main machine is used for heating water entering the steam generator from the water tank so as to generate steam in the steam generator and flow onto the ironing spray head through the steam pipe. The main machine is also provided with a supporting rod, the top end of the supporting rod is fixed with an ironing board, and the ironing board is used for hanging clothes to be ironed.
When the clothes to be ironed need to be ironed, the clothes to be ironed are firstly hung on the ironing plate, then the main machine and the ironing spray head are opened, and then the steam generated in the steam generator is sprayed to each position of the clothes to be ironed through the handheld ironing spray head, so that the clothes to be ironed become flat and soft.
However, the process of hanging the clothes to be ironed on the ironing board and the ironing spray head are easy to cause the unbalanced stress on the base during the movement process, so that the condition that the garment steamer inclines occurs.
In the prior art, in order to ensure that the garment steamer cannot topple at an inclination angle of 10 degrees, namely to ensure that the garment steamer reaches the safety standard, the horizontal size of the base is generally increased to increase the stress area of the base, thereby improving the stability of the garment steamer. However, the horizontal dimension of the base of the steamer is large, and the occupied space of the steamer in the horizontal direction is increased, so that the carrying and the storage of the steamer are inconvenient.
In order to solve the above problem, the embodiment of the application provides a garment steamer and a base, set up the base with the garment steamer into fixing base and the sliding seat of assembly in this fixing base, and set up the sliding seat activity in the groove of accomodating of fixing base through rotating assembly, so that the sliding seat can move between primary importance and second place, make this sliding seat rotate to the outside of accomodating the groove from the inside of accomodating the groove promptly, and rotate to the inside of accomodating the groove from the outside of accomodating the groove, and like this, when the garment steamer begins the during operation, can rotate the sliding seat to the outside of accomodating the groove from accomodating the inslot portion, with the horizontal dimension of increase base, adjust the base focus, and then ensure that the condition that the garment steamer can not appear empting in the use. And when the garment steamer finishes working, the movable seat can be rotated to the inside of the accommodating groove from the external rotating shaft of the accommodating groove, so that the movable seat is completely accommodated in the accommodating groove after the garment steamer finishes working, the horizontal size of the base is reduced, and the garment steamer is convenient to accommodate and transport.
The structure of the garment steamer provided in the embodiments of the present application will be described in detail below.
FIG. 1 is a schematic view of a garment steamer provided by an embodiment of the present application in use; FIG. 2 is a schematic view of the structure of FIG. 1 from another perspective; FIG. 3 is an exploded view of FIG. 1; FIG. 4 is an enlarged view of a portion of FIG. 3 at I; FIG. 5 is a schematic view of a garment steamer provided by an embodiment of the present application in a non-use state; FIG. 6 is a schematic view of the structure of FIG. 5 from another perspective; FIG. 7 is a cross-sectional view of FIG. 1; FIG. 8 is an enlarged view of a portion of FIG. 7 at II; FIG. 9 is a partial cross-sectional view of FIG. 2; fig. 10 is a partial enlarged view at III in fig. 9.
Referring to fig. 1, an embodiment of the present application provides a garment steamer, which includes a base 100, a main body 200, and a water tank 300 and a steam generator 400 disposed on the main body 200. Wherein, the steam generator 400 is provided in communication with the water tank 300. When the garment steamer is in operation, water in the water tank 300 is supplied to the steam generator 400 through the connecting pipe in the main body 200, and the water in the steam generator 400 is heated by the heating device of the main body 200, so that the liquid water is converted into steam and flows into the ironing head from the steam pipe.
The assembly of the main body 200 and the water tank 300 and the steam generator 400 provided on the main body 200 is more stable by fixing the main body 200 to the base 100.
Referring to fig. 3, the base 100 of the embodiment of the present application includes a fixed base 110, a movable base 120, and a rotating assembly 300. Wherein, a receiving groove 111 is formed on the side wall of the fixed seat 110 in an inward recessed manner, and the movable seat 120 is movably disposed in the receiving groove 111 through the rotating assembly 130, so that the movable seat 120 moves between a first position and a second position of the receiving groove 111. As shown in fig. 5 and 6, the first position is a position in which the movable seat 120 is completely accommodated in the accommodating groove 111. Referring to fig. 1 and 2, the second position is a position where the movable base 120 is extended out of the receiving groove 111.
Referring to fig. 1 and 2, the receiving groove 111 of the embodiment of the present invention can be regarded as a recessed position formed by recessing from the sidewall of the fixing base 110 to the center of the fixing base 110, and therefore, the notch of the receiving groove 111 on the sidewall of the fixing base 111 is used as the notch of the receiving groove 111 in the embodiment of the present invention.
When the accommodating groove 111 is specifically formed, the bottom of the accommodating groove 111 can penetrate through the bottom surface of the fixing seat 110, so that the material cost of the fixing seat 110 is saved, and the movable seat 120 can be more conveniently assembled in the accommodating groove 111 of the fixing seat 110.
For convenience of description, in the embodiment of the present application, the opening of the receiving groove 111 located at the bottom of the fixing base 110 is used as the bottom opening of the receiving groove 111, and the portion of the fixing base 110 located at the top of the receiving groove 111 is used as the top wall of the receiving groove 111.
When the movable seat 120 of the embodiment of the present application is assembled in the accommodating groove 111, at least a part of the bottom wall of the movable seat 120 is flush with the bottom wall of the fixed seat 110, so that the movable seat 120 is supported on a fixed platform, such as the ground, when in the second position, thereby playing a role of adjusting the gravity center of the base 100, and ensuring that the garment steamer cannot topple.
In some examples, the bottom of the movable seat 120 may extend to be flush with the bottom of the fixed seat 110, so that both the fixed seat 110 and the movable seat 120 are supported on the ground, thereby enabling the movable seat 120 to be stably assembled on the fixed seat 110 when the base 100 is supported on a fixed platform, such as the ground.
In addition, the bottoms of the fixed seat 110 and the movable seat 120 are both supported on the ground, so as to increase the contact area between the base 100 and the ground, thereby not only improving the stability of the base 100 relative to the ground, but also increasing the occupied area of the base 100 when the movable seat 120 rotates to the second position, namely, when the movable seat 120 rotates to the outside of the accommodating groove 111, thereby effectively improving the stable support of the base 100 to the host, the water tank and the ironing board arranged above the base 100, and preventing the situation that the garment steamer is toppled over in the using process.
Of course, in other examples, the bottom of the end of the movable seat 120 far away from the receiving groove 111 in the second position may be flush with the bottom wall of the fixed seat 110, and the bottom wall of the other portion of the movable seat 120 is higher than the bottom wall of the fixed seat 110, so that when the fixed seat 110 is supported on the ground, the outer end of the movable seat 120 is also supported on the ground, thereby adjusting the position of the center of gravity of the base 100.
Referring to fig. 1 and 2, specifically, when the garment steamer starts to work, a user may rotate the movable seat 120 from the receiving slot 111 to a direction away from the fixed seat 110, i.e. to the outside of the receiving slot 111, until the movable seat 120 reaches the second position, i.e. to rotate the movable seat 120 from the first position, i.e. the receiving state, to the second position, i.e. the use state, to increase the occupied size of the base 100 in the horizontal direction, so as to improve the stability of the base 100 in the work process of the garment steamer, for example, when the user hangs the garment to be ironed on the ironing board, or holds the ironing board to be ironed, a certain force may be generated on the ironing board or the ironing board, and the force may be transmitted to the base 100, and as the outer size of the base 100 in the horizontal direction increases, the position of the center of gravity of the base 100 is adjusted, thereby effectually prevented that base 100 from receiving excessive rocking to realized effectively the stable support to whole garment steamer, ensured that the garment steamer can not topple over when inclination is within 10.
Referring to fig. 5 and 6, after the operation of the steamer is finished, the user can rotate the movable seat 120 from the outside of the accommodating groove 111 to the inside of the accommodating groove 111, that is, rotate the movable seat 120 from the second position, i.e., the position in the use state, to the first position, i.e., the position in the accommodating state, to accommodate the movable seat 120, so as to save the occupied size of the base 100 in the horizontal direction, and facilitate the accommodation and transportation of the steamer.
In addition, the movable seat 120 of the embodiment of the application is movably disposed on the fixed seat 110 through the rotating assembly 130, so that the movable seat 120 can be switched between the storage state and the use state more conveniently and quickly, and the use efficiency of the movable seat 120 is improved.
When the rotating assembly 120 of the embodiment of the application is specifically arranged, the rotating assembly 120 may be a hinge (for example, a hinge) fixed on the side wall of the accommodating groove 111, and the side wall of the movable seat 120 is connected to the side wall of the accommodating groove 111 through the hinge, so that the movable seat 120 can rotate around the hinge from the inside of the accommodating groove 111 to the outside of the accommodating groove 111, or rotate from the outside of the accommodating groove 111 to the inside of the accommodating groove 111, so that when the steamer is in a use state, the movable seat 120 can be rotated to the outside, i.e., the second position, of the accommodating groove 111, so as to increase the horizontal floor space of the base 100, thereby preventing the steamer from toppling over, and simultaneously when the steamer is in a non-use state, the movable seat 120 can be rotated to the inside, i.e., the first position, of the accommodating groove 111, so as to accommodate the movable seat 120 in the accommodating groove 111, thereby reducing the floor space of the steamer in the horizontal direction.
Referring to fig. 3, 4 and 10, in some examples, the rotating assembly 130 may include a connecting shaft 131 disposed in the receiving groove 111, the connecting shaft 131 extends along a thickness direction of the fixed base 110, and the movable base 120 is eccentrically sleeved on the connecting shaft 131.
For example, one end of the rotating shaft 131 is connected to the top wall of the receiving groove 111, the other end of the rotating shaft 131 extends toward the bottom of the fixed base 110, and the movable base 120 is eccentrically sleeved on the connecting shaft 131. It can be understood that, when the movable seat 120 is eccentrically sleeved on the connecting shaft 131, specifically, when the movable seat 120 is sleeved on the connecting shaft 131, the connecting shaft 131 deviates from the central axis of the movable seat 120, for example, when the movable seat 120 is of a cylindrical structure, the connecting shaft 131 deviates from the central axis of the cylindrical structure, so that when the movable seat 120 rotates around the connecting shaft 131, the movable seat 120 can rotate to the outside of the accommodating groove 111 from the accommodating groove 111, i.e., the accommodating position, or can rotate the movable seat 120 to the inside of the accommodating groove 111 from the outside of the accommodating groove 111, thereby ensuring that the garment steamer cannot topple over in the using process, and also ensuring that the garment steamer cannot occupy too much size in the horizontal direction in the non-using state, and facilitating the carrying and accommodating of the garment steamer.
In addition, in the embodiment of the application, the rotating assembly 130 is arranged to penetrate through the connecting shaft 131 formed on the movable seat 120 and the fixed seat 110, so that the structural arrangement of the rotating assembly 130 is simplified, and the assembly efficiency of the base 100 is improved.
One end of the connecting shaft 131 may be detachably connected to the inner top wall of the accommodating groove 111, for example, one end of the connecting shaft 131 may be clamped or screwed to the inner top wall of the accommodating groove 111. Of course, in some examples, the connecting shaft 131 may also be integrally formed with the inner top wall of the receiving groove 111, for example, the connecting shaft 131 is integrally formed with the fixing base 110 as a single piece, so as to increase the connecting strength between the connecting shaft 131 and the fixing base 110 and simplify the assembling process between the connecting shaft 131 and the fixing base 110.
For convenience of description, in the following description, an end of the connecting shaft 131 located at the top of the fixing base 110 is used as a first end of the connecting shaft 131, and an end of the connecting shaft 131 close to the bottom of the fixing base 110 is used as a second end of the connecting shaft 131.
Referring to fig. 7 and 8, an inner top wall of the accommodating groove 111 according to the embodiment of the present disclosure is inclined upward in a direction from an end of the accommodating groove 111 close to the center of the fixed base 110 to the opening of the accommodating groove 111, and a surface of the movable base 120 facing the inner top wall of the accommodating groove 111 is disposed in contact with the inner top wall of the accommodating groove 111.
The inner top wall of the storage groove 111 refers to a surface of the top wall of the storage groove 111 facing the inside of the storage groove 111. The direction from the end of the receiving groove 111 close to the center of the fixing base 110 to the opening of the receiving groove 111 is specifically the direction from the inside of the receiving groove 111 to the opening.
Referring to fig. 8, the inner top wall of the receiving groove 111 is inclined upward in a direction from an end of the receiving groove 111 near the center of the fixing base 110 to the notch of the receiving groove 111, and the inclination angle, i.e., the slope of the inner top wall of the receiving groove 111, is specifically shown by θ in fig. 8.
This application embodiment is through the interior roof that will accomodate groove 111 upwards slope in the direction from the one end that accomodates groove 111 and be close to fixing base 110 center to the notch of accomodating groove 111, so that the top of accomodating groove 111 forms certain slope, like this, when this sliding seat 120 is followed and is accomodate the groove 111 inside and outside the time rotating, that is to say, this sliding seat 120 is from accomodating the position that first position is the rotation in-process of using position that is the second position, this sliding seat 120 is in the process of climbing, and when this sliding seat 120 reaches using position that is the second position, this sliding seat 120 can have the interior roof interference fit of certain slope with accomodating groove 111, thereby prevented sliding seat 120 effectively and rocked at will in the horizontal direction, the stability of sliding seat 120 under the user state has been improved, ensure that the garment steamer can not topple under the user state.
In a specific implementation, the inclination angle θ of the inner top wall of the receiving groove 111 may be 0.3 ° to 0.7 °. The inclination angle θ of the inner top wall of the accommodating groove 111 is too small, and the movable seat 120 rotates to the outside climbing from the inside of the accommodating groove 111 is not obvious, so that the movable seat 120 cannot reach interference fit with the inner top wall of the accommodating groove 111 when the outside of the accommodating groove 111 is the second position, that is, the movable seat 120 is not in contact with the inner top wall of the accommodating groove 111 when the second position, and therefore the movable seat 120 cannot well play a role in preventing the movable seat 120 from shaking left and right on the use position. Conversely, if the inclination angle θ of the inner top wall of the accommodating groove 111 is too large, the inclination angle of the movable seat 120 is too large during the rotation of the movable seat 120 from the inside of the accommodating groove 111 to the outside of the accommodating groove 111, which may cause the rotating shaft 131 to be excessively inclined, thereby affecting the stability of the rotating shaft 131 on the fixed seat 110.
Based on this, this application embodiment sets up the inclination angle θ of the interior roof of this storage groove 111 in above-mentioned within range to when guaranteeing that the sliding seat 120 can not take place to rock at will when rotating to the storage groove 111 outside promptly and being in the user state, guaranteed that this sliding seat 120 can not influence the assembly stability of this connecting axle in fixing base 110 around the connecting axle rotation in-process. In some examples, the inclination angle θ of the inner top wall of the receiving groove 111 may be a suitable angle value such as 0.3 °, 0.5 ° or 0.7 °.
As shown in fig. 3 and fig. 4, when the rotating shaft 131 is assembled with the fixed base 110, a mounting hole 112 may be formed at the top of the receiving groove 111, for example, the mounting hole 112 is formed at the top of the fixed base 110, the mounting hole 112 penetrates through the receiving groove 111, one end of the rotating shaft 131 penetrates into the receiving groove 111 from the mounting hole 112, and the movable base 120 is sleeved on a portion of the rotating shaft 131 located in the receiving groove 111.
The top of the receiving groove 111 is provided with a mounting hole 112 for the connection shaft 131 to penetrate through, so that the connection shaft 131 is assembled on the fixing base 110, thereby improving the assembly efficiency of the base 100.
When the connecting shaft 131 is specifically assembled with the fixing base 110, the connecting shaft 131 is in clearance fit with the mounting hole 112, that is, a gap is formed between a side wall of the connecting shaft 131 and an inner wall of the mounting hole 112, and as shown in fig. 4, an avoiding position 113 is formed on an outer periphery of the mounting hole 112, which is located outside the accommodating groove 111, for example, an avoiding groove is formed at a position where the mounting hole 112 is provided on the fixing base 110, and the avoiding groove is wound around the outer periphery of the mounting hole 112 to form the avoiding position 113 for inclining the connecting shaft 131.
In the embodiment of the present application, because the inner top wall of the accommodating groove 111 has a slope that inclines upward from the inside of the accommodating groove 111 to the direction of the notch of the accommodating groove 111, the movable seat 120 rotates outward from the inside of the accommodating groove 111 to be in a process of climbing continuously, in the process of climbing, the connecting shaft 131 has a phenomenon of inclination, the clearance between the connecting shaft 131 and the mounting hole 112 and the avoiding position 113 at the periphery of the mounting hole 112 can be used for inclining the connecting shaft 131, so as to prevent the movable seat 120 from being broken due to the fact that the connecting shaft 131 cannot incline during the rotation process, thereby ensuring that the movable seat 120 can stably rotate to the use position from the accommodating position around the connecting shaft 131, and ensuring that the movable seat 120 climbs around the rotating shaft 131.
Referring to fig. 9 and 10, in order to ensure that the connecting shaft 131 is stably fixed on the fixing base 110, a first stopping portion 132 may be formed at one end of the connecting shaft 131 located at the top of the fixing base 110, that is, a first end of the connecting shaft 131, and an outer dimension of the first stopping portion 132 is greater than a radial dimension of the mounting hole 112, so that when the connecting shaft 131 penetrates into the mounting hole 112, the first stopping portion 132 is blocked on the top surface of the fixing base 110, thereby preventing the connecting shaft 131 from being separated from the fixing base 110, and ensuring that the connecting shaft 131 is stably assembled in the mounting hole 112 of the fixing base 110.
The first stopping portion 132 is configured to ensure that the connecting shaft 131 is stably assembled on the fixing base 110, so that the connecting shaft 131 stably assembles the movable base 120 into the accommodating groove 111 of the fixing base 110, and at the same time, simplify a connecting structure between the connecting shaft 131 and the fixing base 110, thereby improving the assembling efficiency of the base 100.
It is understood that the first stopping portion 132 can be a protrusion extending from the first end of the connecting shaft 131 in the direction away from the axis, and the protrusion acts to limit the first end of the connecting shaft 131 from moving into the mounting hole 112. Of course, in some examples, the first stopping portion 132 may also be detachably disposed on a limiting member, such as a limiting ring, at the first end of the connecting shaft 131, so as to facilitate the detachment of the first stopping portion 132, and thus the connecting shaft 131.
In other examples, in order to ensure that the connecting shaft 131 is stably fixed on the fixing base 110, an elastic clip may be further disposed on a side wall of the connecting shaft 131, and a slot may be disposed on an inner wall of the mounting hole 112, so that when the connecting shaft 131 extends into the mounting hole 112, the elastic clip is clipped into the slot, thereby achieving stable connection between the connecting shaft 131 and the fixing base 110. The embodiment of the present application does not specifically limit the connection manner between the connection shaft 131 and the fixing base 110, as long as it is ensured that the connection shaft 131 can be stably inserted into the mounting hole 112 of the fixing base 110.
Referring to fig. 2 and 10, when the movable seat 120 of the embodiment of the present application is specifically disposed, the movable seat 120 may be a hollow structure, so as to save the manufacturing cost of the movable seat 120, and reduce the weight of the movable seat 120, so that the movable seat 120 is more labor-saving and convenient to move.
For example, the movable seat 120 may include a top plate 121 and a side plate 122 extending from an outer edge of the top plate 121 to a direction away from the top plate 121, wherein the top plate 121 of the movable seat 120 faces an inner top wall of the accommodating groove 111, and the top plate 121 and the side plate 122 jointly enclose a hollow cavity of the movable seat 120, so that the structure of the movable seat 120 is simplified, the movable seat 120 is more convenient and faster to manufacture, meanwhile, the contact area between the movable seat 120 and the ground in the rotating process is also reduced, the friction between the movable seat 120 and the ground in the rotating process is reduced, and the rotation of the movable seat 120 is more stable and labor-saving.
It is understood that the top plate 121 and the side plate 122 of the movable seat 120 may also be an integrally formed integral piece, so as to enhance the structural strength of the movable seat 120 and improve the manufacturing efficiency of the movable seat 120.
When the movable seat 120 and the connecting shaft 131 are specifically assembled, a through hole may be formed in the top plate 121 of the movable seat 120, and the connecting shaft 131 may be inserted into the through hole of the top plate 121. It is understood that the through hole is disposed offset from the central axis of the movable seat 120 to ensure that the movable seat 120 can rotate from the inside of the receiving groove 111 to the outside of the receiving groove 111 or from the outside of the receiving groove 111 to the inside of the receiving groove 111 when rotating around the connecting shaft 131.
Referring to fig. 10, in order to further ensure that the movable seat 120 stably rotates around the connecting shaft 131, an extending portion 123 may be disposed in the movable seat 120, an installation channel disposed along an extending direction of the connecting shaft 131 is formed in the extending portion 123, the installation channel penetrates through a top wall of the movable seat 120, for example, the installation channel is communicated with a through hole on a top plate 121 of the movable seat 120, and the connecting shaft 131 is disposed in the through hole and the installation channel in a penetrating manner, so that a connection structure between the connecting shaft 131 and the movable seat 120 is extended, so that the movable seat 120 can be stably sleeved on the connecting shaft 131, and meanwhile, the extending portion 123 also plays a role in limiting the connecting shaft 131 in a radial direction, thereby improving stability of the connecting shaft 131 in the radial direction.
In a specific implementation, a first end of the extending portion 123 is connected to the top wall of the movable seat 120, and a second end of the extending portion 123 extends toward the top wall far away from the movable seat 120, for example, the first end of the extending portion 123 is connected to the top plate 121 of the movable seat 120, and the second end of the extending portion 123 extends toward a direction far away from the top plate 121.
It can be understood that the second end of the extending portion 123 is flush with or higher than a plane where the bottom of the movable seat 120 is located, that is, the second end of the extending portion 123 may extend to a plane where the bottom end of the side plate 122 of the movable seat 120 is located, and may also have a certain distance from the plane where the bottom end of the side plate 122 is located, so as to ensure that the movable seat 120 stably adheres to the ground.
The first end of the extending portion 123 and the top plate 121 of the movable seat 120 may be an integral piece, so as to enhance the connection strength between the extending portion 123 and the top plate 121 and simplify the assembling process between the extending portion 123 and the top plate 121.
As shown in fig. 10, in order to improve the stability of the connecting shaft 131 on the movable seat 120, a second stopping portion 133 may be formed at one end of the connecting shaft 131, which extends out of the second end of the extending portion 123, that is, the second end of the connecting shaft 131, and the outer dimension of the second stopping portion 133 is greater than the radial dimension of the installation channel, so that the connecting structure between the connecting shaft 131 and the movable seat 120 is simplified while the movable seat 120 is not separated from the bottom end of the connecting shaft 131 during the transportation process of the garment steamer, thereby improving the assembly efficiency of the pedestal 100.
The second stopping portion 133 may be a protrusion extending from the second end of the connecting shaft 131 to a direction away from the axis, and the protrusion abuts against the second end of the extending portion 123. Of course, the second stopping portion 133 may also be a limiting member, such as a limiting ring, detachably disposed at the second end of the connecting shaft 131, so as to facilitate the detachment of the second stopping portion 133, thereby facilitating the detachment and installation of the connecting shaft 131.
Referring to fig. 10, the first stopping portion 132 and the second stopping portion 133 are respectively disposed at two ends of the connecting shaft 131, so that the top wall of the movable seat 120 and the accommodating groove 111 is limited between the first stopping portion 132 and the second stopping portion 133, and thus the connecting shaft 131 stably penetrates through the mounting hole 112 of the fixed seat 110 and the mounting channel of the movable seat 120, and the movable seat 120 is further ensured to stably rotate around the connecting shaft 131.
Referring to fig. 6, when the outer sidewall of the movable seat 120 of the embodiment of the present application is specifically configured, it may be configured as an arc sidewall, for example, the movable seat 120 may have a cylindrical structure, wherein the top plate 121 of the movable seat 120 is a circular plate, and the side plate 122 of the movable seat 120 has a circular ring structure.
The accommodating groove 111 according to the embodiment of the present application may include an arc-shaped groove wall (shown in a in fig. 6) disposed along the moving path of the movable seat 120, in other words, the groove wall of the accommodating groove 111 disposed along the moving path of the movable seat 120 is configured as an arc-shaped groove wall a, and a part of the side wall of the movable seat 120 moves along the arc-shaped groove wall in the accommodating groove 111, so that the arc-shaped groove wall a acts as a limit to the moving path of the movable seat 120, and the moving path of the movable seat 120 is more stable.
Simultaneously, the arc cell wall a laminates with the arc lateral wall of sliding seat 120 mutually, when guaranteeing that sliding seat 120 can be in accomodating the effective activity in groove 111, has reduced the inside space size of accomodating groove 111, from another angle, on the certain basis of the space size of accomodating groove 111, can increase sliding seat 120's horizontal dimension to increase the outer contour size of base 100 when the garment steamer is in the user state, improved this garment steamer subaerial support steadiness.
In addition, the groove wall of the accommodating groove 111 extending along the moving path of the movable seat 120 is set to be an arc groove wall, so that the groove wall of the accommodating groove 111 does not hinder the rotating process of the movable seat 120.
As shown in fig. 6, a limiting portion 114 extends from a side of the receiving groove 111 close to the notch to the inside of the receiving groove 111, the limiting portion 114 is disposed opposite to the arc-shaped groove wall a, and when the movable seat 120 is located at the second position, the limiting portion 114 abuts against a side of the movable seat 120 to ensure that the movable seat 120 does not shake at the second position, thereby improving the stability of the movable seat 120 in the use state.
Meanwhile, the limiting portion 114 is disposed to prevent the movable seat 120 from rotating excessively and directly rotating back to the accommodating groove 111 from the second position, so as to ensure that the portion of the movable seat 120 located outside the accommodating groove 111 is the largest when in the second position.
In addition, the position of the movable seat 120 that rotates to the use state is quickly positioned by the positioning portion 114, that is, the movable seat 120 can be positioned in the use state only by ensuring that the movable seat 120 rotates to abut against the positioning portion 114.
It is understood that the position-limiting portion 114 can be formed by designing the space structure of the receiving groove 111 of the fixing base 110 during the specific manufacturing process, that is, the position-limiting portion 114 is formed during the formation of the receiving groove 111. Of course, in some examples, the position-limiting portion 114 may also be a structural member detachably disposed on a groove wall of the receiving groove 111 opposite to the arc-shaped groove wall a. For example, the stopper 114 may be snapped or bonded to the groove wall of the receiving groove 111. The embodiment of the present application does not specifically limit the arrangement manner of the limiting portion 114, as long as the movable seat 120 can be stopped.
At least a part of the surface of the limiting portion 114 facing the movable seat 120 may be configured as an arc surface to increase the contact area between the limiting portion 114 and the movable seat 120, so as to improve the limiting effect of the limiting portion 114 on the movable seat 120.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention.

Claims (12)

1. A garment steamer comprises a base (100) and a main machine (200) arranged on the base (100), and is characterized in that the base (100) comprises a fixed seat (110), a movable seat (120) and a rotating assembly (130);
the side wall of the fixed seat (110) is inwards recessed to form a receiving groove (111), the movable seat (120) moves between a first position and a second position of the receiving groove (111) through the rotating assembly (130), and at least part of the bottom wall of the movable seat (120) is flush with the bottom wall of the fixed seat (110); the first position is a position where the movable seat (120) is completely accommodated in the accommodating groove (111), and the second position is a position where the movable seat (120) extends out of the accommodating groove (111).
2. The garment steamer according to claim 1, wherein the rotating assembly (130) comprises a connecting shaft (131) disposed in the receiving groove (111), and the connecting shaft (131) extends in a thickness direction of the fixing base (110);
the movable seat (120) is eccentrically sleeved on the connecting shaft (131).
3. The garment steamer according to claim 2, wherein the inner top wall of the accommodating groove (111) is inclined upward in a direction from one end of the accommodating groove (111) near the center of the fixed base (110) to the opening of the accommodating groove (111), and the movable base (120) is disposed in contact with the inner top wall of the accommodating groove (111) toward the surface of the inner top wall of the accommodating groove (111).
4. The garment steamer as claimed in claim 3, wherein the top of the accommodating groove (111) is provided with a mounting hole (112), and one end of the connecting shaft (131) penetrates into the accommodating groove (111) from the mounting hole (112).
5. The garment steamer as claimed in claim 4, wherein the connecting shaft (131) is in clearance fit with the mounting hole (112), and an avoiding position (113) is formed on the periphery of the mounting hole (112) outside the accommodating groove (111).
6. The garment steamer as claimed in claim 4, characterized in that one end of the connecting shaft (131) at the top of the fixed base (110) is formed with a first stopper (132), and the outer dimension of the first stopper (132) is larger than the radial dimension of the mounting hole (112).
7. The garment steamer according to any one of claims 2 to 6, wherein the movable seat (120) is of a hollow structure, an extending portion (123) is provided in the movable seat (120), an installation channel is formed in the extending portion (123) and arranged along the extending direction of the connecting shaft (131), the installation channel penetrates through the top wall of the movable seat (120), and the connecting shaft (131) is arranged in the installation channel in a penetrating manner.
8. The garment steamer according to claim 7, wherein the movable seat (120) comprises a top plate (121) and side plates (122) extending from the outer edge of the top plate (121) in a direction away from the top plate (121),
the first end of the extension part (123) is connected with the top plate (121) of the movable seat (120), the second end of the extension part (123) extends towards the top plate (121) far away from the movable seat (120), and the second end of the extension part (123) is flush with or higher than the plane where the bottom of the movable seat (120) is located.
9. The garment steamer as claimed in claim 8, characterized in that the end of the connecting shaft (131) extending beyond the second end of the extension (123) is formed with a second stop (133), the second stop (133) having an outer contour dimension greater than the radial dimension of the mounting channel.
10. The garment steamer according to any one of claims 1 to 6, characterized in that the outer side wall of the movable seat (120) is configured as an arc-shaped side wall;
the accommodating groove (111) comprises an arc-shaped groove wall arranged along the movement path of the movable seat (120), and part of the side wall of the movable seat (120) moves along the arc-shaped groove wall in the accommodating groove (111).
11. The garment steamer as claimed in claim 10, wherein a limit portion (114) extends from one side of the receiving groove (111) close to the notch to the inside of the receiving groove (111), and the limit portion (114) is arranged opposite to the arc-shaped groove wall;
when the movable seat (120) is located at the second position, the limiting part (114) is abutted against one side of the movable seat (120).
12. The garment steamer according to claim 11, characterized in that at least part of the surface of the limit stop (114) facing the movable seat (120) is configured as an arc-shaped surface.
CN202020787589.5U 2020-05-13 2020-05-13 Hanging ironing machine Active CN212404565U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020787589.5U CN212404565U (en) 2020-05-13 2020-05-13 Hanging ironing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020787589.5U CN212404565U (en) 2020-05-13 2020-05-13 Hanging ironing machine

Publications (1)

Publication Number Publication Date
CN212404565U true CN212404565U (en) 2021-01-26

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020787589.5U Active CN212404565U (en) 2020-05-13 2020-05-13 Hanging ironing machine

Country Status (1)

Country Link
CN (1) CN212404565U (en)

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