shoe drying and deodorizing machine

文档序号:1698394 发布日期:2019-12-13 浏览:34次 中文

阅读说明:本技术 一种鞋子烘干去味机 (shoe drying and deodorizing machine ) 是由 戚立哲 于 2019-10-30 设计创作,主要内容包括:本发明公开了一种鞋子烘干去味机,包括烘干机,述烘干机内设有工作腔,所述工作腔内设有翻面机构,所述翻面机构用于将鞋子翻面,所述工作腔左端壁内设有连接腔,所述翻面机构下侧设有烘干去味机构,所述烘干去味机构包括转动设置在所述连接腔左端壁与所述工作腔右端壁间的带轮轴,所述工作腔内的所述带轮轴上固定设有四个第一风扇,本装置可自动化地对鞋子进行烘干并将鞋子臭味除去还附上香味,在烘干时可自动将鞋翻面,拥有较好的烘干效果,在进行烘干除臭时,所产生的尾气装置内可自动处理,防止对周围环境造成污染,在鞋子烘干后,可自动将鞋子推出,节约能源的同时也可防止鞋子烧坏。(The invention discloses a shoe drying and deodorizing machine, which comprises a dryer, wherein a working cavity is arranged in the dryer, a turn-over mechanism is arranged in the working cavity and used for turning over shoes, a connecting cavity is arranged in the left end wall of the working cavity, a drying and deodorizing mechanism is arranged at the lower side of the turn-over mechanism and comprises a pulley shaft rotatably arranged between the left end wall of the connecting cavity and the right end wall of the working cavity, four first fans are fixedly arranged on the pulley shaft in the working cavity, the device can automatically dry the shoes and remove odor of the shoes and add fragrance, the shoes can be automatically turned over during drying, a better drying effect is achieved, tail gas generated during drying and deodorizing can be automatically treated in a device to prevent pollution to the surrounding environment, and the shoes can be automatically pushed out after being dried, the shoes can be prevented from being burnt out while the energy is saved.)

1. The utility model provides a shoes are dried and are removed flavor machine, includes the drying-machine, its characterized in that:

A working cavity is arranged in the dryer, a turn-over mechanism is arranged in the working cavity, and the turn-over mechanism is used for turning over the shoes;

A connecting cavity is arranged in the left end wall of the working cavity, a drying and deodorizing mechanism is arranged on the lower side of the turnover mechanism and comprises a pulley shaft which is rotatably arranged between the left end wall of the connecting cavity and the right end wall of the working cavity, four first fans are fixedly arranged on the pulley shaft in the working cavity, a second fan is fixedly arranged on the pulley shaft in the connecting cavity, an electric heating block is fixedly arranged on the rear end wall of the working cavity and can dissipate heat after working, hot air at the electric heating block is blown to a shoe by the rotation of the first fans to dry the shoe, a second fan is fixedly arranged on the pulley shaft in the connecting cavity, and tail gas blown out by the first fans can be treated by the rotation of the connecting cavity;

the upper side of the turnover mechanism is provided with a push-out mechanism, and the dried shoes can be pushed out of the working cavity through the work of the push-out mechanism.

2. The shoe drying and deodorizing machine according to claim 1, wherein: the turnover mechanism also comprises a motor fixedly connected with the left end surface of the working cavity, the right end surface of the motor is rotatably provided with a driving shaft, the driving shaft is fixedly provided with a driving belt wheel, the right end of the driving shaft is fixedly provided with a driving gear, the left end wall of the working cavity is internally provided with a rotating shaft through a first torsional spring in a rotating manner, the rotating shaft is fixedly provided with a semicircular gear, the semicircular gear is meshed with the driving gear, the right end of the rotating shaft is fixedly provided with a supporting plate, the upper end surface of the supporting plate is fixedly provided with a thrust block, the right end surface of the supporting plate is uniformly and fixedly provided with eight supporting rods, the right ends of the eight supporting rods are fixedly provided with a placing block, the right end of the placing block penetrates through the working cavity and is positioned in an external space, a, a positioning rod is fixedly arranged between the front end wall and the rear end wall of the placing cavity, and a baffle is rotatably arranged on the positioning rod through a pressure spring.

3. The shoe drying and deodorizing machine according to claim 1, wherein: the push-out mechanism with the horizontal axle that the working chamber left end wall rotated the connection, the horizontal axle with be equipped with the second torsional spring between the working chamber left end wall, the fixed ejector beam that is equipped with on the horizontal axle, be equipped with the flexible chamber of opening down in the ejector beam lower terminal surface, flexible chamber upper end wall is fixed and is equipped with expanding spring, the expanding spring lower extreme fixed be equipped with flexible chamber sliding connection's flexible piece, the fixed transmission bevel gear that is equipped with of horizontal axle right-hand member, the working chamber rear end wall rotates and is equipped with the output shaft, fixed output bevel gear and the ejector beam of being equipped with on the output shaft, the ejector beam is located output bevel gear front side, output bevel gear with the transmission bevel gear meshing.

4. The shoe drying and deodorizing machine according to claim 1, wherein: the drying and deodorizing mechanism also comprises a power supply fixedly connected with the rear end wall of the working cavity, a moving groove with a forward opening is arranged in the rear end wall of the working cavity, a moving spring is fixedly arranged on the upper end wall of the moving groove, a moving block which is in sliding connection with the moving groove is fixedly arranged at the lower end of the moving spring, a plug is fixedly arranged at the front end of the moving block and is positioned at the upper side of the power supply, the plug and the electric heating block are electrically conducted through an electric wire, a driving belt wheel is fixedly arranged on a belt wheel shaft, the driving belt wheel and the driving belt wheel are in friction transmission through a belt, a discharge cavity with a downward opening is arranged in the upper end wall of the connecting cavity, a sensor is arranged on the right end wall of the discharge cavity, a deodorizing block and a deodorizing block are arranged in the discharge cavity, the deodorizing block is positioned at the upper side of the deodorizing block, the working chamber right-hand member wall is equipped with two storage chambeies that communicate external space, the fixed fragrant smell ball that is equipped with of storage chamber rear end wall, storage chamber right-hand member wall installs the filter.

5. The shoe drying and deodorizing machine according to claim 3, wherein: the first torsion spring and the second torsion spring are in a normal state.

6. The shoe drying and deodorizing machine according to claim 4, wherein: the fragrance ball can emit fragrance.

Technical Field

the invention relates to the field of shoe maintenance, in particular to a shoe drying and deodorizing machine.

background

Shoes are the instrument that the protection people foot does not receive the injury, are generally used for daily dress, and in overcast and rainy weather, shoes are moist very easily, and the shoes after the humidity produce the peculiar smell easily, and current processing method to moist shoes is directly blown for the hair-dryer mostly, gives off the peculiar smell to around easily when blowing, causes environmental pollution, influences the atmosphere, and the hair-dryer blows easy overheated, troublesome poeration.

Disclosure of Invention

The invention aims to provide a shoe drying and deodorizing machine, which solves the problems that peculiar smell is easily generated during shoe drying, the operation is troublesome and the like.

The invention is realized by the following technical scheme.

The invention discloses a shoe drying and deodorizing machine which comprises a dryer, wherein a working cavity is arranged in the dryer, a turn-over mechanism is arranged in the working cavity, and the turn-over mechanism is used for turning over shoes;

A connecting cavity is arranged in the left end wall of the working cavity, a drying and deodorizing mechanism is arranged on the lower side of the turnover mechanism and comprises a pulley shaft which is rotatably arranged between the left end wall of the connecting cavity and the right end wall of the working cavity, four first fans are fixedly arranged on the pulley shaft in the working cavity, a second fan is fixedly arranged on the pulley shaft in the connecting cavity, an electric heating block is fixedly arranged on the rear end wall of the working cavity and can dissipate heat after working, hot air at the electric heating block is blown to a shoe by the rotation of the first fans to dry the shoe, a second fan is fixedly arranged on the pulley shaft in the connecting cavity, and tail gas blown out by the first fans can be treated by the rotation of the connecting cavity;

the upper side of the turnover mechanism is provided with a push-out mechanism, and the dried shoes can be pushed out of the working cavity through the work of the push-out mechanism.

Preferably, the turn-over mechanism further comprises a motor fixedly connected with the left end face of the working cavity, a driving shaft is rotatably arranged on the right end face of the motor, a driving belt wheel is fixedly arranged on the driving shaft, a driving gear is fixedly arranged on the right end of the driving shaft, a rotating shaft is rotatably arranged in the left end wall of the working cavity through a first torsion spring, a semicircular gear is fixedly arranged on the rotating shaft and meshed with the driving gear, a supporting plate is fixedly arranged on the right end of the rotating shaft, a thrust block is fixedly arranged on the upper end face of the supporting plate, eight supporting rods are uniformly and fixedly arranged on the right end face of the supporting plate, a placing block is fixedly arranged on the right ends of the eight supporting rods, the right end of the placing block penetrates through the working cavity and is positioned in an external space, a placing cavity penetrating through the left and, a positioning rod is fixedly arranged between the front end wall and the rear end wall of the placing cavity, and a baffle is rotatably arranged on the positioning rod through a pressure spring.

Preferably, the ejecting mechanism with the transverse shaft that the working chamber left end wall rotated the connection, the transverse shaft with be equipped with the second torsional spring between the working chamber left end wall, the fixed ejector beam that is equipped with on the transverse shaft, be equipped with the flexible chamber of opening down in the ejector beam lower extreme facial features, flexible chamber upper end wall is fixed and is equipped with expanding spring, the expanding spring lower extreme fixed be equipped with flexible chamber sliding connection's flexible piece, the transverse shaft right-hand member is fixed and is equipped with transmission bevel gear, the working chamber rear end wall rotates and is equipped with the output shaft, the fixed output bevel gear and the ejector beam that is equipped with on the output shaft, the ejector beam is located output bevel gear front side, output bevel gear with transmission bevel gear meshes.

Preferably, the drying and deodorizing mechanism further comprises a power supply fixedly connected with the rear end wall of the working chamber, a moving groove with a forward opening is arranged in the rear end wall of the working chamber, a moving spring is fixedly arranged on the upper end wall of the moving groove, a moving block slidably connected with the moving groove is fixedly arranged at the lower end of the moving spring, a plug is fixedly arranged at the front end of the moving block and positioned on the upper side of the power supply, the plug and the electric heating block are electrically conducted through an electric wire, a driving belt wheel is fixedly arranged on a belt wheel shaft, the driving belt wheel and the driving belt wheel are in friction transmission through a belt, a discharge cavity with a downward opening is arranged in the upper end wall of the connecting cavity, a sensor is arranged on the right end wall of the discharge cavity, a water removing block and a deodorizing block are arranged in the discharge cavity, the deodorizing block is positioned on the upper side of the water removing block, and a discharge, the working chamber right-hand member wall is equipped with two storage chambeies that communicate external space, the fixed fragrant smell ball that is equipped with of storage chamber rear end wall, storage chamber right-hand member wall installs the filter.

Preferably, the first torsion spring and the second torsion spring are in a normal state.

Preferably, the scent ball may emit scent.

The invention has the beneficial effects that: this device can be automized and carry out the stoving and detach shoes stink and still attach fragrant smell to shoes, can be automatic when drying with shoes turn-over, possess better stoving effect, when drying the deodorization, but automatic processing in the produced tail gas device prevents to cause the pollution to the surrounding environment, and after shoes are dried, can release shoes voluntarily, also can prevent that shoes from burning out when the energy saving.

drawings

In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings 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 only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.

FIG. 1 is a schematic view of the whole structure of the shoe drying and deodorizing machine of the present invention;

FIG. 2 is an enlarged view of the point A in FIG. 1;

FIG. 3 is a schematic view of the direction B-B in FIG. 1;

Fig. 4 is a schematic view in the direction of C-C in fig. 1.

Detailed Description

the invention will now be described in detail with reference to fig. 1-4, wherein for ease of description the orientations described hereinafter are now defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.

The mechanical mechanism schematic diagram of a shoe drying and deodorizing machine described with reference to fig. 1-4 includes a dryer 10, a working chamber 11 is provided in the dryer 10, a turn-over mechanism 70 is provided in the working chamber 11, and the turn-over mechanism 70 is used for turning over shoes;

A connecting cavity 12 is arranged in the left end wall of the working cavity 11, a drying and deodorizing mechanism 71 is arranged on the lower side of the turnover mechanism 70, the drying and deodorizing mechanism 71 comprises a pulley shaft 44 which is rotatably arranged between the left end wall of the connecting cavity 12 and the right end wall of the working cavity 11, four first fans 42 are fixedly arranged on the pulley shaft 44 in the working cavity 11, a second fan 13 is fixedly arranged on the pulley shaft 44 in the connecting cavity 12, an electric heating block 43 is fixedly arranged on the rear end wall of the working cavity 11, the electric heating block 43 can radiate heat after working, hot air at the electric heating block 43 is blown to shoes through the rotation of the first fans 42, the shoes can be dried, a second fan 13 is fixedly arranged on the pulley shaft 44 in the connecting cavity 12, and tail gas blown out by the first fans 42 can be treated through the rotation of the connecting cavity 12;

The upper side of the turnover mechanism 70 is provided with a push-out mechanism 72, and the dried shoes can be pushed out of the working cavity 11 through the work of the push-out mechanism 72.

Beneficially, the turn-over mechanism 70 further comprises a motor 14 fixedly connected to the left end face of the working chamber 11, a driving shaft 48 is rotatably arranged at the right end face of the motor 14, a driving pulley 49 is fixedly arranged on the driving shaft 48, a driving gear 50 is fixedly arranged at the right end of the driving shaft 48, a rotating shaft 18 is rotatably arranged in the left end wall of the working chamber 11 through a first torsion spring 19, a semicircular gear 15 is fixedly arranged on the rotating shaft 18, the semicircular gear 15 is engaged with the driving gear 50, a supporting plate 32 is fixedly arranged at the right end of the rotating shaft 18, a thrust block 21 is fixedly arranged at the upper end face of the supporting plate 32, eight supporting rods 33 are uniformly and fixedly arranged at the right end face of the supporting plate 32, a placing block 36 is fixedly arranged at the right end of the eight supporting rods 33, the right end of the placing block 36 penetrates through the working chamber 11 and is located in the external space, the upper end face of the placing cavity 35 is communicated with the external space, a positioning rod 37 is fixedly arranged between the front end wall and the rear end wall of the placing cavity 35, and a baffle 34 is rotatably arranged on the positioning rod 37 through a pressure spring 38.

Beneficially, the push-out mechanism 72 is a transverse shaft 25 rotatably connected to the left end wall of the working chamber 11, a second torsion spring 57 is disposed between the transverse shaft 25 and the left end wall of the working chamber 11, a push-out rod 27 is fixedly disposed on the transverse shaft 25, a telescopic chamber 56 with a downward opening is disposed in the lower end face of the push-out rod 27, a telescopic spring 55 is fixedly disposed on the upper end wall of the telescopic chamber 56, a telescopic block 22 slidably connected to the telescopic chamber 56 is fixedly disposed at the lower end of the telescopic spring 55, a transmission bevel gear 28 is fixedly disposed at the right end of the transverse shaft 25, an output shaft 29 is rotatably disposed on the rear end wall of the working chamber 11, an output bevel gear 30 and a push-out rod 27 are fixedly disposed on the output shaft 29, the push-out rod 27 is located in front of the output bevel gear 30, and the output bevel gear 30.

Beneficially, the drying and deodorizing mechanism 71 further includes a power supply 54 fixedly connected to the rear end wall of the working chamber 11, a moving groove 51 with a forward opening is provided in the rear end wall of the working chamber 11, a moving spring 52 is fixedly provided on the upper end wall of the moving groove 51, a moving block 45 slidably connected to the moving groove 51 is fixedly provided at the lower end of the moving spring 52, a plug 53 is fixedly provided at the front end of the moving block 45, the plug 53 is located on the upper side of the power supply 54, the plug 53 and the electric heating block 43 are electrically conducted through an electric wire 58, a driving pulley 46 is fixedly provided on the pulley shaft 44, the driving pulley 46 and the driving pulley 49 are in friction transmission through a belt 47, a discharge chamber 24 with a downward opening is provided in the upper end wall of the connecting chamber 12, a sensor 16 is installed on the right end wall of the discharge chamber 24, a water removing block 17 and a deodorizing block 20 are installed in, the deodorization block 20 is positioned on the upper side of the deodorization block 17, the left end wall of the discharge cavity 24 is provided with a discharge pipe 23 communicated with the external space, the right end wall of the working cavity 11 is provided with two storage cavities 39 communicated with the external space, the rear end wall of each storage cavity 39 is fixedly provided with a fragrance ball 41, and the right end wall of each storage cavity 39 is provided with a filter plate 40.

Advantageously, the first torsion spring 19 and the second torsion spring 57 are in a normal state.

Advantageously, the fragrance ball 41 can emit fragrance.

sequence of mechanical actions of the whole device:

(1) the shoes are manually placed into the placing cavity 35, the baffle 34 is pushed to rotate, and the shoes are placed into the space formed by the eight supporting rods 33 with the right sides facing upwards.

(2) The motor 14 is started to drive the driving shaft 48 to rotate, the driving shaft 48 drives the driving belt wheel 49 and the driving gear 50 to rotate, the driving gear 50 is meshed with the semicircular gear 15 to drive the semicircular gear 15 to rotate one hundred eighty degrees, the semicircular gear 15 drives the rotating shaft 18 to rotate, the first torsion spring 19 is compressed, the rotating shaft 18 drives the supporting rod 33 to rotate, and therefore the shoe is rotated one hundred eighty degrees, and the front face of the shoe faces downwards.

(3) The thrust block 21 rotates along with the rotating shaft 18, the thrust block 21 firstly pushes the telescopic block 22 to ascend and then descend, the plug 53 is pushed to be inserted into the power supply 54 after the thrust block 21, the movable spring 52 is stretched, the power supply 54 is electrified for the electric heating block 43 through the electric wire 58 to generate heat, meanwhile, through friction transmission of the belt 47, the driving belt wheel 49 drives the driving belt wheel 46 to rotate, the driving belt wheel 46 drives the belt wheel shaft 44 to rotate, the first fan 42 and the second fan 13 rotate along with the belt wheel shaft 44, the first fan 42 can blow heat generated by the electric heating block 43 to a shoe, the shoe is dried, and fragrance emitted by the fragrance ball 41 is blown to the shoe to deodorize

(4) The second fan 13 blows the tail gas with water vapor after the first fan 42 blows to the exhaust cavity 24, the sensor 16 can detect the water vapor content in the tail gas, the water vapor can be absorbed by the water removal block 17, the deodorization block 20 can remove odor, and the rest gas is exhausted to the external space from the exhaust pipe 23.

(5) When the sensor 16 detects that the water vapor content in the tail gas reaches a certain value, the shoe is dried, the sensor 16 gives a signal to the motor 14, the working state of the motor 14 changes, the driving shaft 48 is driven to rotate reversely, the driving gear 50 rotates reversely, the semicircular gear 15 is driven to rotate reversely through the meshing of the driving gear 50 and the semicircular gear 15, the supporting plate 32 is driven to rotate reversely, the thrust block 21 rotates reversely along with the supporting plate 32, the thrust block 21 is separated from the plug 53, the movable spring 52 is reset, the plug 53 is driven to be pulled out of the power supply 54, and the electric heating block 43 is powered off to stop heating.

(6) In the rotating direction, the thrust block 21 can push the telescopic block 22 to rotate, the telescopic block 22 drives the rotating block 26 to rotate, the transverse shaft 25 rotates along with the rotating block 26, the second torsion spring 57 is compressed, the transmission bevel gear 28 rotates along with the transverse shaft 25, the transmission bevel gear 28 is meshed with the output bevel gear 30 to drive the output bevel gear 30 to rotate, the push rod 27 rotates along with the output bevel gear 30, and shoes among the eight support rods 33 can be pushed out into the placing cavity 35.

the above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

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