The present invention relates to a dye blending device, in particular to a hair dye blending device.
In the existing hair dyeing service, when a customer requires dying, a hairdresser provides a color disk or hair samples having been dyed with different colors for the customer to select, and then use corresponding hair dyes to blend out a specified color after the customer makes a decision.
However, when blending dyes, the ratios of various colors are dependent on the experience of the hairdresser, and the whole dye blending process is extraordinarily complicated, thus consuming a considerable amount of time in the whole process.
To solve the above-described problem, a part of dye suppliers launch a large number of dye sets having blended the dyes properly, thus the consumer can easily select an existing dye color, and the hairdresser can also save the dye blending operation. However, the solution greatly improves the dye purchase cost of a hairdressing salon, and causes unnecessary waste to rarely used dyes.
To sum up, how to provide a solution for automatically blending hair dyes is a technical problem in the art required to be urgently solved.
To solve the above-described problem, present invention aims to provide a technical solution capable of automatically blending dyes.
To reach the above objective, the present invention proposes a dye blending device. The device comprises a plurality of dye containers, a plurality of motors, a plurality of quantitative pumps, a plurality of electronic control valves, a collection zone, a vibrator, and a controller, wherein the dye containers are connected with a plurality of external dye supplying devices via a pipeline; the motors are connected with the dye containers via the pipeline to apply a pressure to the dye containers; the input ports of the quantitative pumps are connected with the dye containers via the pipeline; one ends of the electronic control valves are connected with the output ports of the quantitative pumps via the pipeline, and the other ends of the electronic valves are connected with the collection zone via the pipeline; the vibrator is disposed in the collection zone; and the controller is connected with the motor, the quantitative pumps, the electronic control valves, and the vibrator, receives a dye blending instruction, instructs the motor to operate and apply a pressure to a specified dye container, enables a quantitative pump and an electronic control valve corresponding to the specified dye container to output a specified dosage of dye to the collection zone, and further enables the vibrator to blend through vibration the mixture dye in the collection zone.
To sum up, the dye blending device of the present invention can automatically blend dyes after receiving a dye blending instruction, thus saving the complicated hair dye blending process for a hairdresser.
For a better understanding of the aforementioned embodiments of the invention as well as additional embodiments thereof, reference should be made to the Description of Embodiments below, in conjunction with the following drawings in which like reference numerals refer to corresponding parts throughout the figures.
The following description is about embodiments of the present invention; however it is not intended to limit the scope of the present invention.
Please refer to
The controller 17 can adopt a microprocessor circuit, a single chip circuit, a digital circuit, an embedded system controller and the like. The motor 12 can adopt a linear motor or a step motor.
In another embodiment, the dye blending device 1 further comprises an JO interface 171 electronically connected with the controller 17, wherein the JO interface 171 is configured to connect one or a plurality of external electronic devices 4 to receive the dye blending instruction from the electronic device 4. The electronic device 4 can be a touch panel, a screen, a keyboard group and other devices capable of inputting and displaying information.
In another embodiment, the dye blending device 1 further comprises a communication module 172 electronically connected with the controller 17, wherein the communication module 172 is in communication with one or a plurality of external control-end devices 5 to receive the dye blending instruction from the control-end device 5. The control-end device 5 can be a controller, a smart phone, a tablet computer and other electronic calculation devices having a wired/wireless communication function.
In another embodiment, the vibrator 16 comprises at least one of a motor vibrator and an ultrasonic vibrator. Please refer to
In another embodiment, the dye blending device 1 further comprises a plurality of sensors (such as a flow sensor, a pressure sensor, an ultrasonic sensor for measuring stock and the like) electronically connected with the controller 17, wherein the sensors are disposed on the dye containers 11 or the dye supplying devices 2 to detect dye stock. In another embodiment, the controller 17 of the dye blending device 1 further analyzes the dye stock to provide at least one of dye order information or automatic dye feeding information.
Please refer to
S101, when the dye blending device 1 is activated, the controller 17 acquires from the electronic device 4 an operating mode inputted by a user via the 10 interface 171, or acquires from the control-end device 5 the operating mode inputted by the user via the communication module 172 (step S102). In the present step, the following options can be provided for the user to select: (1) prescription selection, (2) prescription setting, (3) stock selection, and (4) purchase order.
The control-end device 5 will be taken as an example to describe the present invention hereafter. And the electronic device 4 can also achieve the same or similar technical effects. Please refer to
Taking the above-described operation as an example, the controller 17 configures the output of the dyes by controlling the operating time and output power (influencing on the pressure applied by the motor 12 on the dye containers 11, and the operating effects of the quantitative pumps 13) of the motor 12, the quantitative pumps 13 and the electronic control valves 14 corresponding to the dye containers 11 filled with yellow and red dyes, or by controlling the open and close time, open and close caliber of the electronic control valves 14. The detailed control mode of dye output is as shown in table 2.
To measure dye stocks, a measurement sensor (such as a flow rate sensor, a pressure sensor, an ultrasonic sensor and the like) can be installed at a dye storage position or at a position the dye flows over such as the dye supplying device 2, the pipeline 10, the dye containers 11 and the like to obtain the current dye stocks; and whether to display the dye stocks on the screen of the electronic device 4 or the control-end device 5 is selectable. When the stocks are insufficient, the controller 17 can generate corresponding purchase order information, or the controller 17 triggers the electronic device 4 or the control-end device 5 to generate corresponding purchase order information; the purchase order information is transmitted to the computer of the supplier via a telecommunication network, an Internet or other communication paths to execute an purchase program.
After the user selects the option “prescription selection” via the electronic device 4 or the control-end device 5, the user can click a pull-down menu 51 on the display of the control-end device 5, select the color to be blended, and confirm or cancel the selected option via an Enter key 52 or an Cancel key 53. When the user clicks the Enter key 52, the controller 17 performs determination, then executes step S110 “prescription selection”, and operates the corresponding motor 12, the quantitative pumps 13 and the electronic control valves 14 according to the “operating instruction” in table 1. Before the dye is outputted from the outlet of the pipeline 10, a sensing assembly can be disposed in the collection zone 15 (for example, an ultrasonic sensor or a gravity sensor is utilized to sense whether a container is disposed in the collection zone 15) to sense whether a collection container 3 is disposed at a specified position (S111). If no, then executing step S112 “sending an alarm”; and if yes, then sequentially executing step S113 “determining the discharge amount of the pipeline”, step S114 “discharging”, step S115 “vibrating and stirring”; after the steps above are completed, executing step S116 “sending an alarm once the blending is completed”. After the user selects the option “purchase order” via the electronic device 4 or the control-end device 5, the controller 17 performs determination, then executes step S120 “purchase order”, queries which dye is insufficient, executes step S121 “transmitting an order and device status” to generate corresponding order information and the device status information of the dye blending device 1, and transmits the information to the computer of the supplier via a telecommunication network or an Internet.
After the user selects the option “stock selection” via the electronic device 4 or the control-end device 5, the controller 17 performs determination, then executes step S130 “displaying stock”, displays the quantity of the dyes in the dye containers 11 on the screen of the electronic device 4 or the control-end device 5, executes step S131 to determine whether step S132 “automatic feeding” or step S133 “adjusting dye stock” should be executed, and notifies whether “automatic feeding” or “adjusting dye stock” is required or not via the screen of the electronic device 4 or the control-end device 5.
After the user selects the option “stock selection” via the electronic device 4 or the control-end device 5, the controller 17 performs determination, then executes step S140 “prescription setting” and step S141 “inputting the serial number of a dye station (the dye supplying device 2 filled with a corresponding dye), and the input and output), and automatically adjusts the color to be blended and the ratio thereof through the operating menus as shown in
For example, the user can click a color selection key 54 on the control-end device 5 to select a primary color, and use a ratio adjustment axis 55 to adjust the ratio of each color. After the user clicks the Enter key 52, the selected ratio value is stored in an internal memory; and the corresponding motor 12, the quantitative pumps 13, and the electronic control valves 14 are instructed to execute the feeding operation.
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Number | Date | Country | Kind |
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106120314 | Jun 2017 | TW | national |