CN2376861Y - Electric shoe cleaning device - Google Patents

Electric shoe cleaning device Download PDF

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Publication number
CN2376861Y
CN2376861Y CN 99207995 CN99207995U CN2376861Y CN 2376861 Y CN2376861 Y CN 2376861Y CN 99207995 CN99207995 CN 99207995 CN 99207995 U CN99207995 U CN 99207995U CN 2376861 Y CN2376861 Y CN 2376861Y
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China
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capacitor
resistance
negative pole
diode
switch
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Expired - Fee Related
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CN 99207995
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Chinese (zh)
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潘复昌
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Individual
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Individual
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Abstract

The utility model relates to an electric shoe cleaning device. A machine housing is divided into an upper and a lower layers; the upper layer is provided with a shaper which can cause leather shoes to be soft and restore the original shape after heated, and odour can be removed; the lower layer is provided with a motor, and a shaft end is provided with a shoe-cleaning wheel and a polishing wheel. The device is provided with a control circuit for heating, heat-insulating, ozone deodorization and sterilization and shoe-cleaning and polishing, which has the advantages of multiple functions and convenient use.

Description

The electric shoe cleaning device
The utility model relates to a kind of electric shoe cleaning device, belongs to the polishing-shoes apparatus technology.
Phenomenons such as dirty or distortion take place in leather shoes regular meeting in the process of wearing, and therefore must wipe clean leather shoes at any time.Smear shoe polish with special-purpose utensil, make leather shoes keep its shape.Cleaning, smear shoe polish and work such as polishing of leather shoes often carried out by the street pedlar in the street corner in domestic some area; External some public place or hotel then often dispose electric shoe polishing machine, easily and economically.
The purpose of this utility model is that a kind of electric shoe cleaning device will be provided, and it can remedy above-mentioned deficiency.This device has shaping rack, makes cortex become soft by high temperature action, leather shoes are kept or restores to the original state, and has the function of sterilization, deodorizing in addition, can reduce beriberic infection, to leather shoes can clean, oiling and polishing, make the leather shoes can be durable in use.
The purpose of this utility model is achieved in that casing (1) is a double-decker up and down, and leather shoes deodorizing calibrator (9) is housed in the upper strata, is polishing-shoes switch (2), sterilization button (3), insulation button (4) and heat button (5) from right to left successively; Motor M (6), motor (6) two ends shaft are housed in the lower floor, and axle head is respectively adorned a shoe-cleaning machine (7) and polishing wheel (8), the polishing-shoes device have heat, insulation, ozone deodorizing sterilizing function control circuit.
Motor M passes through K switch 3-1 and fuse S AJoin with power supply 220V two ends, quartz ampoule T is also by thermostat KSD and K switch 1-1 is connected in power supply with motor M, simultaneously two ends and transformer T 1Elementary winding joins, and T 1Secondary windings one end is connected to bridge rectifier D by press button S 14-171 end (input) and 2 ends, its output 4 termination rheostat B (model 7889) end, and simultaneously 4 ends respectively are connected to capacitor C with 3 ends 1Two ends; The other end of rheostat B is connected to capacitor C 2, divide again to be connected to diode D 6Negative pole, C 3And resistance R 2D 6Anodal, capacitor C 3The other end and R 2The other end is connected to press button AN jointly 1, be connected to chip I c again 17 ends of (model NE555); Ic 16 ends, 7 be terminated at resistance R 3, divide again in addition to be connected to capacitor C 4, Ic 14 ends and 8 ends, R 2And R 3The other end, capacitor C 3And D 6Negative pole joins; Ic 13 be terminated at resistance R 4, sending and receiving optical diode D again 6Positive pole, simultaneously 3 ends divide again and are connected to diode D 8Negative pole and K switch 1K 1The other end, D 7Negative pole, Ic 11 end, C 5And C 4The other end all is connected to press button AN 1The contact is connected to D again 5Negative pole, capacitor C 3And C 1The other end is connected to 3 ends of bridge rectifier, Ic again 15 ends be connected to capacitor C again 5The other end.
Diode D 9Anodal, capacitor C 6And resistance R 5Be connected to press button AN jointly 2, divide again simultaneously to be connected to chip I c 22 ends of (model NE555), Ic 26,7 two ends be connected to resistance R jointly 6, divide again simultaneously to be connected to capacitor C 7Ic 24 ends and 8 ends and capacitor C 6The other end and D 9Negative pole is connected to rheostat B (7889), Ic jointly 23 be terminated at resistance R 7, sending and receiving optical diode D again 10Positive pole, 3 ends divide again and are connected to diode D 11Negative pole and K switch 2K switch 2The other end and D 11Positive pole, D 11Negative pole, capacitor C 8, Ic 11 end, capacitor C 7All be connected in press button AN 2, be connected to 3 ends of bridge rectifier, capacitor C again 8Another termination Ic 25 ends.
Diode D 12Anodal, capacitor C 9And resistance R 9Be connected to press button AN jointly 3, divide again to be connected to chip I c 32 ends of (model NE555), Ic 36 ends, 7 ends be connected in resistance R 10, divide again to be connected to capacitor C 10Ic 34 ends and 8 ends and R 10, R 9, C 9The other end; D 12Negative pole be connected in rheostat B, Ic 33 be terminated at resistance R 8, sending and receiving optical diode D again 13Positive pole divides again to be connected to diode D 14Negative pole and K switch 3K 3The other end and D 14Positive pole, D 13Negative pole and capacitor C 11And Ic 11 end, capacitor C 10The other end all is connected to press button AN 3The contact, the while is connected to 3 ends of bridge rectifier again.
Transformer T 1Elementary winding passes through K simultaneously again 2-1 and resistance R 11And capacitor C 12Be connected in parallel R 11And C 12Be connected to bridge rectifier D again 19-22 Input 5 ends, the other end 6 is terminated at power supply 220V, 7 ends connect resistance R 12And R 13This resistance R 12And R 13Be connected with the control utmost point of controllable silicon Vs again (controllable silicon model BT169), 7 ends connect positive pole and the tap capacitor C of controllable silicon Vs simultaneously again 13, the negative pole of controllable silicon Vs and resistance R 13The other end be connected to 8 ends of bridge rectifier, simultaneously again with capacitor C 13Be connected to transformer T respectively 2Elementary winding, T 2Secondary windings connect an ozone generator W.
Fig. 1. electric shoe cleaning device schematic diagram (B-B cutaway view)
Fig. 2. electric shoe cleaning device schematic diagram (A-A cutaway view)
Fig. 3. the control circuit schematic diagram of electric shoe cleaning device
Now in conjunction with the accompanying drawings the structure of electric shoe cleaning device is described in detail:
By Fig. 1,2, the casing of electric shoe cleaning device (1) is a structure of two layers up and down.The upper strata mainly is a leather shoes deodorizing calibrator (9), is polishing-shoes switch (2), sterilization button (3), insulation button (4) and heat button (5) from right to left successively; Motor M (6), motor (6) two ends shaft are housed in the lower floor, and axle head is respectively adorned a shoe-cleaning machine (7) and polishing wheel (8).Shoe-cleaning machine (7) and identical being used interchangeably of polishing wheel (8) shape.Calibrator (figure is omitted) is the commercially available prod, is divided into toe-cap and heel two parts, and its length is regulated by screw rod in the centre, can be inserted in the footwear, makes the exceptionally straight unlikely rugosity distortion of vamp.
By Fig. 3, diode D 9Anodal, capacitor C 6And resistance R 5Be connected to press button AN jointly 2, divide again simultaneously to be connected to chip I c 22 ends of (model NE555), Ic 26,7 two ends be connected to resistance R jointly 6, divide again simultaneously to be connected to capacitor C 7Ic 24 ends and 8 ends and capacitor C 6The other end and D 9Negative pole is connected to rheostat B (7889), Ic jointly 23 be terminated at resistance R 7, sending and receiving optical diode D again 10Positive pole, 3 ends divide again and are connected to diode D 11Negative pole and K switch 2K switch 2The other end and D 11Positive pole, D 11Negative pole, capacitor C 8, Ic 11 end, capacitor C 7All be connected in press button AN 2, be connected to 3 ends of bridge rectifier, capacitor C again 8Another termination Ic 25 ends.
Diode D 12Anodal, capacitor C 9And resistance R 9Be connected to press button AN jointly 3, divide again to be connected to chip I c 32 ends of (model NE555), Ic 36 ends, 7 ends be connected in resistance R 10, divide again to be connected to capacitor C 10Ic 34 ends and 8 ends and R 10, R 9, C 9The other end; D 12Negative pole be connected in rheostat B, Ic 33 be terminated at resistance R 8, sending and receiving optical diode D again 13Positive pole divides again to be connected to diode D 14Negative pole and K switch 3K 3The other end and D 14Positive pole, D 13Negative pole and capacitor C 11And Ic 11 end, capacitor C 10The other end all is connected to press button AN 3The contact, the while is connected to 3 ends of bridge rectifier again.
Transformer T 1Elementary winding passes through K simultaneously again 2-1 and resistance R 11And capacitor C 12Be connected in parallel R 11And C 12Be connected to bridge rectifier D again 19-22 Input 5 ends, the other end 6 is terminated at power supply 220V, 7 ends connect resistance R 12And R 13This resistance R 12And R 13Be connected with the control utmost point of controllable silicon Vs again (controllable silicon model BT169), 7 ends connect positive pole and the tap capacitor C of controllable silicon Vs simultaneously again 13, the negative pole of controllable silicon Vs and resistance R 13The other end be connected to 8 ends of bridge rectifier, simultaneously again with capacitor C 13Be connected to transformer T respectively 2Elementary winding, T 2Secondary windings connect an ozone generator W.
Connect power supply, light emitting diode D during use earlier 5Shinny, press AN 1Button triggers the chip I c of timing circuit 1, light emitting diode D 7Shinny indication, K switch 1Energising enters work; K 1-1 contact is connected the 220V power supply and is powered to the quartz ampoule T of 300W through thermostat KSD BDischarge infrared heat energy in-cabinet temperature is raise, when temperature rises to the ceiling temperature of disinfection standard, thermostat KSD automatic disconnection quartz ampoule T BPower supply; When dropping to the following of technological temperature, temperature prescribes a time limit quartz ampoule T BBegin heating again, make sterilisation temp remain on proper state.After leather shoes have been finished high-temperature sterilization, press AN 2Button flip chip Ic 2Circuit, light emitting diode D 10Light K switch 2Just start working, make K switch 2-1 contact is connected, and power supply is through capacitor C 12After the dividing potential drop, pass through bridge rectifier D again 15-18Give capacitor C after the rectification 10Charging, charging finishes after K switch 2-1 contact and bridge rectifier D 19-22Effect, make one-way SCR Vs conducting.
After the leather shoes sterilization, just enter the footwear program of washing.Press AN 3The Ic of button circuits for triggering 3, make light emitting diode D 13Shinny and indicator cock K 3Also start working contact K 3-1 contact is switched on, and motor M is rotated can carry out polishing-shoes work.
Compared with prior art, electric shoe cleaning device has following advantages:
1. calibrator can make cortex become soft with leather shoes through high-temperature process, recovers its original form.
2. the function that sterilizing, deodorizing are arranged can reduce beriberic development, prevents the germina infection procreation.
3. the wheel of motor drives hair, cloth is cleaned vamp, and the polishing that oils makes leather shoes keep its color and luster, The characteristic of outward appearance.

Claims (4)

1. electric shoe cleaning device is characterized in that its casing (1) is a double-decker up and down, and leather shoes deodorizing calibrator (9) is housed in the upper strata, is polishing-shoes switch (2), sterilization button (3), insulation button (4) and heat button (5) from right to left successively; Motor M (6), motor (6) two ends shaft are housed in the lower floor, and axle head is respectively adorned a shoe-cleaning machine (7) and polishing wheel (8), the polishing-shoes device have heat, insulation, ozone deodorizing sterilizing function control circuit.
2. polishing-shoes device according to claim 1 is characterized in that its circuit part of heating.Motor M passes through K switch 3-1 and fuse S AJoin with power supply 220V two ends, quartz ampoule T is also by thermostat KSD and K switch 1-1 is connected in power supply with motor M, simultaneously two ends and transformer T 1Elementary winding joins, and T 1Secondary windings one end is connected to bridge rectifier D by press button S 14-171 end (input) and 2 ends, its output 4 termination rheostat B one end, and simultaneously 4 ends respectively are connected to capacitor C with 3 ends 1Two ends; The other end of rheostat B is connected to capacitor C 2, divide again to be connected to diode D 6Negative pole, C 3And resistance R 2D 6Anodal, capacitor C 3The other end and R 2The other end is connected to press button AN jointly 1, be connected to chip I c again 17 ends; Ic 16 ends, 7 be terminated at resistance R 3, divide again in addition to be connected to capacitor C 4, Ic 14 ends and 8 ends, R 2And R 3The other end, capacitor C 3And D 6Negative pole joins; Ic 13 be terminated at resistance R 4, sending and receiving optical diode D again 6Positive pole, simultaneously 3 ends divide again and are connected to diode D 8Negative pole and K switch 1K 1The other end, D 7Negative pole, Ic 11 end, C 5And C 4The other end all is connected to press button AN 1The contact is connected to D again 5Negative pole, capacitor C 3And C 1The other end is connected to 3 ends of bridge rectifier, Ic again 15 ends be connected to capacitor C again 5The other end.
3. polishing-shoes device according to claim 1 is characterized in that the control circuit of its sterilization.Diode D 9Anodal, capacitor C 6And resistance R 5Be connected to press button AN jointly 2, divide again simultaneously to be connected to chip I c 22 ends, Ic 26,7 two ends be connected to resistance R jointly 6, divide again simultaneously to be connected to capacitor C 7Ic 24 ends and 8 ends and capacitor C 6The other end and D 9Negative pole is connected to rheostat B, Ic jointly 23 be terminated at resistance R 7, sending and receiving optical diode D again 10Positive pole, 3 ends divide again and are connected to diode D 11Negative pole and K switch 2K switch 2The other end and D 11Positive pole, D 11Negative pole, capacitor C 8, Ic 11 end, capacitor C 7All be connected in press button AN 2, be connected to 3 ends of bridge rectifier, capacitor C again 8Another termination Ic 25 ends.
Diode D 12Anodal, capacitor C 9And resistance R 9Be connected to press button AN jointly 3, divide again to be connected to chip I c 32 ends, Ic 36 ends, 7 ends be connected in resistance R 10, divide again to be connected to capacitor C 10Ic 34 ends and 8 ends and R 10, R 9, C 9The other end; D 12Negative pole be connected in rheostat B, Ic 33 be terminated at resistance R 8, sending and receiving optical diode D again 13Positive pole divides again to be connected to diode D 14Negative pole and K switch 3K 3The other end and D 14Positive pole, D 13Negative pole and capacitor C 11And Ic 11 end, capacitor C 10The other end all is connected to press button AN 3The contact, the while is connected to 3 ends of bridge rectifier again.
4. polishing-shoes device according to claim 1 is characterized in that its sterilization circuit partly.Transformer T 1Elementary winding passes through K simultaneously again 2-1 and resistance R 11And capacitor C 12Be connected in parallel R 11And C 12Be connected to bridge rectifier D again 19-22Input 5 ends, the other end 6 is terminated at power supply 220V, 7 ends connect resistance R 12And R 13This resistance R 12And R 13Be connected with the control utmost point of controllable silicon Vs again, 7 ends connect positive pole and the tap capacitor C of controllable silicon Vs simultaneously again 13, the negative pole of controllable silicon Vs and resistance R 13The other end be connected to 8 ends of bridge rectifier, simultaneously again with capacitor C 13Be connected to transformer T respectively 2Elementary winding, T 2Secondary windings connect an ozone generator W.
CN 99207995 1999-04-19 1999-04-19 Electric shoe cleaning device Expired - Fee Related CN2376861Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 99207995 CN2376861Y (en) 1999-04-19 1999-04-19 Electric shoe cleaning device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 99207995 CN2376861Y (en) 1999-04-19 1999-04-19 Electric shoe cleaning device

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CN2376861Y true CN2376861Y (en) 2000-05-10

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CN 99207995 Expired - Fee Related CN2376861Y (en) 1999-04-19 1999-04-19 Electric shoe cleaning device

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102920156A (en) * 2012-11-05 2013-02-13 尹少斌 Intelligent digital leather shoe brush
CN108209837B (en) * 2018-01-24 2020-05-22 芜湖职业技术学院 Full-automatic digital control type shoe-cleaning machine

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102920156A (en) * 2012-11-05 2013-02-13 尹少斌 Intelligent digital leather shoe brush
CN102920156B (en) * 2012-11-05 2014-06-11 尹少斌 Intelligent digital leather shoe brush
CN108209837B (en) * 2018-01-24 2020-05-22 芜湖职业技术学院 Full-automatic digital control type shoe-cleaning machine

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C19 Lapse of patent right due to non-payment of the annual fee
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