JP2006271654A - Cosmetic-application system and method using liquid delivery method - Google Patents

Cosmetic-application system and method using liquid delivery method Download PDF

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JP2006271654A
JP2006271654A JP2005094566A JP2005094566A JP2006271654A JP 2006271654 A JP2006271654 A JP 2006271654A JP 2005094566 A JP2005094566 A JP 2005094566A JP 2005094566 A JP2005094566 A JP 2005094566A JP 2006271654 A JP2006271654 A JP 2006271654A
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data
liquid
cosmetic
makeup
face
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Kumiko Yoshida
久美子 吉田
Katsuhiko Kobayashi
克彦 小林
Yoshiaki Suzuki
良明 鈴木
Jun Kawai
潤 河合
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Canon Inc
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Canon Inc
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a cosmetic-application system which enables a proper finish according to a made up surface. <P>SOLUTION: This cosmetic-application system has a means for obtaining data on the the made up surface, a means for processing the data, a retaining means for retaining the data, and a delivery means for delivering a cosmetic liquid. With this system, the cosmetic liquid is applied on the made up surface by a liquid delivery method using the data. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は液体吐出法を用いた化粧システム及び化粧方法に関する。   The present invention relates to a makeup system and a makeup method using a liquid discharge method.

従来の化粧は人手と時間がかかるものであった。その為、ある程度の自動化されたツールとして、化粧品を塗布表面に塗布するためのデバイスおよび方法が、特許文献1に開示されている。
特開2003−210248号公報
Conventional makeup takes time and labor. Therefore, Patent Document 1 discloses a device and a method for applying a cosmetic product to an application surface as an automated tool to some extent.
Japanese Patent Laid-Open No. 2003-210248

被化粧面として代表される肌には、人種によって千差万別であり、一個人でも季節や体調によって変化するものである。それに対し、各種メーカーが発売している化粧品の色種類に限りがあり、必ずしも万人に一致する色とはいえない。従って、日々変化する被化粧面に対し毎回同じ仕上がりを期待できるものではなかった。   The skin represented by the face to be dressed varies from race to race, and even an individual changes depending on the season and physical condition. On the other hand, the color types of cosmetics sold by various manufacturers are limited, and it is not necessarily a color that matches everyone. Therefore, the same finish cannot be expected every time on the surface to be changed which changes every day.

本発明は、液体吐出法を用いた化粧システムに関し、被被化粧面のデータを取得する手段と、前記データを処理する処理手段と、前記データを保持する保持手段と、化粧液体を吐出する吐出手段と、を有し、前記データを用いて前記化粧液体を前記被化粧面に液体吐出法によって塗布することを特徴とする。   The present invention relates to a makeup system using a liquid ejection method, a means for acquiring data of a face to be covered, a processing means for processing the data, a holding means for holding the data, and a discharge for discharging a cosmetic liquid. Means for applying the cosmetic liquid onto the face to be decorated by a liquid discharge method using the data.

本発明では、上述した課題を鑑み、変化する被化粧面に応じて、適正な仕上がりを可能にする。   In the present invention, in view of the above-described problems, an appropriate finish is made possible according to the changing surface to be decorated.

本実施例に用いられる液体(化粧液体)とは、人体に塗付する液体であり、(A)被化粧面の洗浄に用いる液体、(B)下地処理用液体、(C)色材、香料等の液体、(D)密着、カバー保護層に用いられる液体、の少なくとも1つを含む。本実施例における化粧の工程は、上述の液体を用いた工程を少なくとも1つ含む。   The liquid (decorative liquid) used in the present embodiment is a liquid applied to the human body, (A) a liquid used for cleaning the face to be decorated, (B) a base treatment liquid, (C) a coloring material, and a fragrance. Etc., (D) adhesion, and at least one of the liquid used for the cover protective layer. The cosmetic process in the present embodiment includes at least one process using the above-described liquid.

本実施例に用いられる吐出方式は、安定で信頼性高く寿命の長いシステムとするには、ノズル詰まりやコゲを避けるために、化粧液体には水分や溶剤が入った溶液を用いた液体吐出方式が好ましい。具体的には、水分、溶剤を含む化粧液体に熱エネルギーを付与し、液体に気泡を発生させ、その気泡によって液体を吐出するBJ方式や、加熱によって不具合が生じる性質の液体の場合には、圧電素子を用いた方式をでも良いし、その他の例として熱溶融を併用したものであってもよい。   The discharge method used in the present embodiment is a liquid discharge method using a solution containing moisture or a solvent in the cosmetic liquid in order to avoid nozzle clogging and burnt in order to make the system stable, reliable and have a long life. Is preferred. Specifically, in the case of a BJ method in which heat energy is applied to a cosmetic liquid containing moisture and a solvent, bubbles are generated in the liquid, and the liquid is discharged by the bubbles, or in the case of a liquid that has a problem due to heating, A method using a piezoelectric element may be used, and as another example, a method using heat melting together may be used.

次に、上述の(A)〜(D)に記載の液体を用いた各工程の説明を行う。本実施例においては、以下の工程を少なくとも1つ含んでいれば良く、必要に応じて、他の工程を増やしても構わない。   Next, each process using the liquid described in the above (A) to (D) will be described. In the present embodiment, it is sufficient that at least one of the following steps is included, and other steps may be increased as necessary.

(A)被化粧面の洗浄工程
被化粧面の洗浄工程においては、被化粧面の洗浄を行い、必要に応じて洗浄液を除去する。また、被化粧面が顔等の場合は化粧水や乳液等を塗付する工程を本工程に含めても良い。この場合、被化粧面に液体を吐出し、該液体を被化粧面に浸透せる。洗浄や浸透工程には、常温付近で1秒から分オーダーの時間が必要である。この後、液体を蒸発させる、といった一連の過程が必要である。また、液体を溶解させる場合には数秒〜数分必要である。乾燥工程は、溶剤、水分が適度に乾燥し、飛びきらないように、分〜数十分の間隔が好ましい。
(A) Washing process of the face to be dressed In the process of cleaning the face to be dressed, the face to be dressed is cleaned, and the cleaning liquid is removed as necessary. Further, in the case where the makeup surface is a face or the like, a step of applying a lotion or milky lotion may be included in this step. In this case, the liquid is discharged onto the face to be dressed, and the liquid is allowed to permeate the face to be dressed. The washing and infiltration process requires a time on the order of 1 second to around minutes at room temperature. Thereafter, a series of processes such as evaporating the liquid is necessary. In addition, it takes several seconds to several minutes to dissolve the liquid. The drying step is preferably performed at intervals of minutes to several tens of minutes so that the solvent and moisture are appropriately dried and do not fly.

(B)下地処理(ファンデーション)/(C)色材、香料のお化粧
下地処理の工程においては、ファンデーション等の下地用液体を被化粧面に塗付し、次に色材等の化粧用液体を塗付する。下地となじませて下地と密着させる為に相溶させてもよい。下地とのなじませる為には、常温で1秒から10秒オーダーほどの時間を置くのが好ましい。また、液体を溶解させる場合には数秒〜数分必要である。さらに被化粧面の溶剤や水分がある程度飛ぶように、時間を置く。ただし、次の工程に進む際に、時間を置きすぎて被化粧面の乾燥が進みすぎると、被化粧面のクラックや密着不足となる不具合が出る可能性があるので、好ましくは数秒〜数分の時間を置いて次の工程に進むのが良い。
(B) Foundation treatment (foundation) / (C) Coloring material and fragrance makeup In the surface treatment step, foundation liquid such as foundation is applied to the surface to be coated, and then cosmetic liquid such as coloring material. Apply. You may make it melt | dissolve in order to make it adhere | attach and adhere | attach with a foundation | substrate. In order to be familiar with the groundwork, it is preferable to set a time of about 1 second to 10 seconds at room temperature. In addition, it takes several seconds to several minutes to dissolve the liquid. Furthermore, allow time for the solvent and moisture on the makeup surface to fly to some extent. However, when proceeding to the next step, if too much time is left and the drying of the face to be dressed proceeds too much, there is a possibility that the face to be faced will be cracked or insufficiently adhered, so preferably several seconds to several minutes It is better to move on to the next step after a while.

(D)密着、カバー保護層/(E)光学特性層
密着、カバー保護層の工程においては、仕上げようのカバー液体を被化粧面に塗付する。下の層となじませて密着させる為に相溶させてもよい。下の層となじませる為には、常温で1秒から10秒オーダーほどの時間を置くのが好ましい。また、液体を溶解させる場合には数秒〜数分必要である。さらに、被化粧面の溶剤や水分がある程度飛び表面が落着くまでの数秒〜数分間は被化粧面に触れないことが好ましい。また、必要に応じて光学特性の層を形成する。
(D) Adhesion, cover protective layer / (E) optical property layer In the step of adhesion, cover protective layer, a cover liquid to be finished is applied to the face to be decorated. You may make it compatible so that it may become intimate with the lower layer. In order to blend in with the lower layer, it is preferable to set a time of about 1 to 10 seconds at room temperature. In addition, it takes several seconds to several minutes to dissolve the liquid. Furthermore, it is preferable not to touch the face to be dressed for several seconds to several minutes until the surface of the face to which the solvent or moisture on the face has come off to some extent. Further, a layer having optical characteristics is formed as necessary.

このように、本実施例においては、各液体の塗布工程の間の時間を制御することで、適正な仕上がりを可能にする。時間の制御については後述する。   Thus, in the present embodiment, an appropriate finish can be achieved by controlling the time between the application steps of each liquid. Time control will be described later.

図2は本発明の一実施例におけるシステム構成図である。本システム構成は、被化粧面データ入力部、データ制御部、データ保存部、吐出部から構成される。   FIG. 2 is a system configuration diagram in one embodiment of the present invention. This system configuration includes a to-be-coated surface data input unit, a data control unit, a data storage unit, and a discharge unit.

被化粧面データ入力部は、光学入力部(LED、ラインセンサ、フォトダイオード等)を有し、被化粧面の色データ(明度・彩度・色相)および表面状態(荒れ、プリントヘッドと被化粧面間距離)のデータを採取する。また、デジタルカメラやCCDスキャナも搭載し、仕上がり状態を画像で残すことも可能である。   The cosmetic surface data input unit has an optical input unit (LED, line sensor, photodiode, etc.), and color data (brightness / saturation / hue) and surface state (roughness, print head and cosmetics) of the cosmetic surface. Collect data on the distance between surfaces. A digital camera and a CCD scanner can also be installed, and the finished state can be left as an image.

データ制御部では、制御回路とメモリ、タイマ−を有し、データ入力部で得られたデータのデータ処理およびデータ入出力を行う。   The data control unit includes a control circuit, a memory, and a timer, and performs data processing and data input / output of data obtained by the data input unit.

データ保存部では、データ保存用のハードディスクを内蔵しており、被化粧面データ入力部で採取したデータおよび各種色データ、画像データを保存し、また、既に保存済みのデータを出力する。   The data storage unit has a built-in hard disk for data storage, stores the data collected by the face data input unit, various color data, and image data, and outputs already stored data.

吐出部では、プリントヘッド、液体貯蔵部、液流路、3次元移動装置、センサ等で構成され、被化粧面への化粧液体吐出制御と、位置制御を行う。   The discharge unit includes a print head, a liquid storage unit, a liquid flow path, a three-dimensional movement device, a sensor, and the like, and performs makeup liquid discharge control and position control on the face to be decorated.

図1に本発明における化粧の仕上がりを決定するフローを示す。初期入力をするか否かで分岐するのが特徴の一つであり、その後どんな仕上げにするかによりフローが変化する。   FIG. 1 shows a flow for determining the makeup finish in the present invention. One of the features is that it branches depending on whether or not the initial input is made, and then the flow changes depending on what finishing is performed.

被化粧面の状態を、光学入力部を用いて取得しない場合は、まず、保存データの中からデータを読み出す。保存データに従い、吐出部より被化粧面に化粧液体(化粧インク)の塗付をn回行う。液体の用途や塗付工程は上述したとおりである。塗布後の仕上がりは、被化粧面データ入力部のデジタルカメやCCDスキャナ等を用いて採取し、データとして保存することが可能である。   When the state of the face to be decorated is not acquired using the optical input unit, first, the data is read out from the stored data. In accordance with the stored data, the cosmetic liquid (makeup ink) is applied n times to the face to be decorated from the discharge unit. The use of the liquid and the application process are as described above. The finish after application can be collected and stored as data using a digital turtle or a CCD scanner in the face-to-be-coated surface data input section.

被化粧面の状態を取得する場合は、被化粧面データ入力部によって被化粧面の状態を取得する。この際、入力(取得)データは一度データ保存部に保存され、その後仕上がり具合によって分岐される。あらかじめデータ保存部に保存しているデータから最適値データを選択するスタンダードモードにおいては、入力された入力データと最適値データとの差分をデータ制御部で演算し、演算結果に従い吐出部のヘッドより被化粧面に化粧インクの塗付をn回行う。液体の用途や塗付工程は上述したとおりである。   When acquiring the state of the face to be dressed, the state of the face to be dressed is acquired by the face to be face data input unit. At this time, the input (acquisition) data is once stored in the data storage unit, and then branched depending on the finish. In the standard mode in which the optimum value data is selected from the data stored in the data storage unit in advance, the difference between the input data and the optimum value data input is calculated by the data control unit, and from the head of the discharge unit according to the calculation result The cosmetic ink is applied n times on the surface to be decorated. The use of the liquid and the application process are as described above.

また、例えば、肌色を明るめに設定したり、目元のトーンを暗めに設定する等、各種データを選択するオプションモードによっても、同様に化粧インクを吐出することができ、いずれも、塗布後の仕上がりは、再度入力することによって、データ保存部に保存が可能である。   In addition, cosmetic ink can be ejected in the same way depending on the option mode that selects various data, such as setting the skin color lighter or setting the tone of the eyes darker. Can be stored in the data storage unit by inputting again.

〔実施例1〕
まず、図1のフローチャートにおいて「被化粧面状態入力」の分岐がYesとなった場合データ入力部のLEDとラインセンサ、フォトダイオード等を用いて化粧する対象物である顔や手の形状と、明るさの分布を測定する場合を示す。
[Example 1]
First, in the flowchart of FIG. 1, when the branch of “input face state input” is Yes, the shape of the face or hand that is the object to be makeup using the LED of the data input unit and the line sensor, photodiode, The case where the distribution of brightness is measured is shown.

図3(a−1)の化粧装置1に示すように、化粧液体を吐出するヘッド部の先端には、光学入力部である光学式センサ5がとりつけられている。この装置を用いて図3(a−2)のように被化粧面の状態をセンシングして、図3(a−3)のような被化粧面の入力(取得)データを得る。ここで得られた入力データは、データ保存部にて保存される(以下、入力データ)。次に、「仕上がり具合選択」にてスタンダードおよびオプションいずれかのモードを選択し、スタンダードの場合はデータ保存部に保存してあったスタンダードデータ(以下、スタンダードデータ)と入力データを、データ制御部にて差分計算した化粧液体を、図4に示すように被化粧面に吐出する。また、オプションモードの場合は、あらかじめ保存部に保存してあったオプションデータからデータを選択し、そのデータに従って吐出を行う。   As shown in the cosmetic device 1 in FIG. 3A-1, an optical sensor 5 that is an optical input unit is attached to the tip of the head unit that discharges the cosmetic liquid. Using this device, the state of the face to be dressed is sensed as shown in FIG. 3A-2, and input (acquisition) data of the face to be dressed as shown in FIG. 3A-3 is obtained. The input data obtained here is stored in a data storage unit (hereinafter referred to as input data). Next, select either standard or optional mode in “Select finish”, and in the case of standard, the standard data (hereinafter referred to as “standard data”) and input data saved in the data storage unit are input to the data control unit. The makeup liquid that has been subjected to the difference calculation is discharged onto the makeup surface as shown in FIG. In the case of the option mode, data is selected from option data stored in the storage unit in advance, and ejection is performed according to the data.

被化粧面は顔や手等でる為、曲率や凹凸がある。その為、化粧液体を吐出するヘッドもそれに対応した曲率をもって動く。図4に示すようにプリントヘッド6は、図中2、3、4の矢印で各々示されたように、x軸、y軸、z軸の3方向に移動可能である。また、プリントヘッド6に備え付けられている光学式センサ5で、反射率によって化粧面の凸部を感知する。この光学式センサによって、プリントヘッドと被化粧面の距離データを取得しながらプリントヘッドとの位置合わせを行い、吐出するため、口や鼻等の凹凸にも対応し、化粧液体を均等に吐出することが出来る。この光学式センサ5は、LEDから光を被化粧面にあて、ラインセンサにて距離を、フォトダイオードで明るさを、反射する角度で被化粧面の荒れを測定する。仕上がった化粧面のデータを保存する場合は、被化粧面データ入力部のデジタルカメラ、CCDスキャナを使って仕上がりデータを入力し、データ保存部に保存する。   Since the surface to be covered is a face or a hand, there are curvature and unevenness. For this reason, the head for discharging the cosmetic liquid also moves with a curvature corresponding to the head. As shown in FIG. 4, the print head 6 is movable in three directions of x-axis, y-axis, and z-axis as indicated by arrows 2, 3, and 4 in the figure. Further, the optical sensor 5 provided in the print head 6 senses the convex portion of the decorative surface based on the reflectance. This optical sensor aligns the print head with the print head while acquiring distance data between the print head and the surface to be dressed, and discharges the liquid evenly to cope with irregularities such as the mouth and nose. I can do it. The optical sensor 5 applies light from the LED to the face to be dressed, measures the distance by the line sensor, the brightness by the photodiode, and the roughness of the face to be dressed by the reflection angle. When storing the data of the finished decorative surface, the finished data is input using a digital camera or a CCD scanner of the makeup surface data input unit and stored in the data storage unit.

また、図1のフローチャートにおいて「被化粧面状態入力」の分岐がNoとなった場合、データ保存部にあらかじめ保存してあったデータをデータ制御部で読み出し、吐出部から塗布を行う。この場合も仕上がり状態をデータ保存部に保存することが出来る。   In addition, when the branch of “input cosmetic surface state” is No in the flowchart of FIG. 1, data stored in advance in the data storage unit is read out by the data control unit, and application is performed from the discharge unit. In this case as well, the finished state can be stored in the data storage unit.

図5はデータ制御部で行われるデータ処理の一部を示したものである。   FIG. 5 shows a part of the data processing performed by the data control unit.

データ入力部の光学入力で取得する明るさデータの、測定ラインを図5(a)に示す。そのラインに対して測定を行うと、図5(b)で示すような明るさの入力値(測定値)が得られる。そこで、図5(c)に示すように、測定値と補正(理想)値との差分を求めて補正データを処理し、対応した明るさの化粧液体を吐出する。平均の明るさからある一定以上差をもった領域をシミ、しわ、傷、ホクロ、ニキビと判断し、前記領域を全体の明るさに補正する。これは、被化粧面にまれに発生する欠陥(しみ、しわ、傷、ホクロ、ニキビ)を隠すための処理である。また、図5(d)のように、明るさを全体的に変化させることも可能である。   FIG. 5A shows a measurement line of brightness data acquired by optical input of the data input unit. When measurement is performed on the line, an input value (measurement value) of brightness as shown in FIG. 5B is obtained. Therefore, as shown in FIG. 5C, the difference between the measured value and the correction (ideal) value is obtained, the correction data is processed, and the cosmetic liquid having the corresponding brightness is discharged. An area having a certain difference from the average brightness is determined as a spot, wrinkle, scratch, mole, or acne, and the area is corrected to the overall brightness. This is a process for concealing defects (stains, wrinkles, scratches, moles, acne) that rarely occur on the surface to be decorated. Further, as shown in FIG. 5D, the brightness can be changed as a whole.

本実施例において、吐出部に内蔵される液体貯蔵部に貯蔵される化粧品としては、肌の色を調整する化粧薬剤に加え、肌を紫外線から守るUVパウダーを含む液体であったり、肌の調子を整える希釈液であったり、肌を洗浄する洗浄剤であったり、その他被化粧面に無害な液体に対応することができる。これらの液体貯蔵部に貯蔵される化粧品の吐出は、データ制御部によって塗布の厚みをコントロールする、しないを選択することができる。また、色調整に影響を与えない、かつ吐出調整しにくい液体においては、あらかじめ何らかの方法で塗布をしてから、本システムで化粧を行えばよい。例えば色調整に影響を与えないUVパウダーにおいては、その成分が吐出しにくいものであれば先にUVパウダーを人手で塗布して後から本システムでバインダーのみを吐出してもよい。UVパウダー自体が吐出しやすいものであれば、本システムにて吐出を行っても良い。ここで言うUVパウダーは、紫外線吸収効果を持つものである。   In this embodiment, the cosmetic stored in the liquid storage unit built in the discharge unit is a liquid containing UV powder that protects the skin from ultraviolet rays in addition to a cosmetic agent that adjusts the skin color, It can be used as a diluting solution for preparing the skin, a cleaning agent for cleaning the skin, and other liquids that are harmless to the face to be decorated. For the discharge of cosmetics stored in these liquid storage units, it is possible to select whether or not the thickness of the application is controlled by the data control unit. In addition, for liquids that do not affect color adjustment and are difficult to adjust for discharge, the liquid can be applied with this method in advance before applying makeup with the present system. For example, in the case of UV powder that does not affect color adjustment, if the component is difficult to be ejected, the UV powder may be manually applied first and then only the binder may be ejected by this system. If the UV powder itself is easy to be ejected, it may be ejected by this system. The UV powder here has an ultraviolet absorption effect.

さらに、本実施例における化粧塗布プロセスの中で、上述の各種化粧インクを図1のようにn回連続塗布する際に、各種化粧インクの塗布面への浸透性を考慮して、各種化粧インクの塗布間隔をデータ制御部にてタイマー制御することが出来る。ほぼ多くの人が化粧をする場合には複数の化粧品および薬品を使用する。各化粧品および薬品には、被化粧面への適正浸透時間があり、従来の化粧品塗布方法の場合、最初に塗布した化粧品から次に塗布する化粧品までの待ち時間が適正でないため被化粧面で十分浸透せずに化粧ムラなどの不具合が発生し、被化粧面に対して十分な効果が得られないことが生じる場合があったが、上述のタイマー制御を用いれば、各化粧品のウエイトタイムをシステム的に管理するため、自らの目で確認する必要がなく、寝たままの化粧も可能となる。このタイマー制御は、適切なウエイトタイムを取ることによって、各化粧品の密着性および浸透性を向上させ、各種化粧品の機能を効率よく発揮させることが可能である。さらに、ヘッドの先端にセンサがついている為、被化粧面が移動しても、ヘッドと被化粧面と相対位置を制御し補正することが可能である。   Further, in the cosmetic application process in this embodiment, when the above-described various cosmetic inks are continuously applied n times as shown in FIG. 1, the various cosmetic inks are considered in consideration of the permeability of the various cosmetic inks to the application surface. The application interval can be controlled by the data controller. When almost many people make up, they use multiple cosmetics and drugs. Each cosmetic and chemical has a proper penetration time on the surface to be covered, and in the case of the conventional cosmetic application method, the waiting time from the first applied cosmetic to the next applied cosmetic is not appropriate, so the surface to be applied is sufficient. In some cases, such as cosmetic unevenness may occur without penetration, and sufficient effects may not be obtained on the makeup surface. If the timer control described above is used, the weight time of each cosmetic is Therefore, it is not necessary to check with your own eyes, and you can make up your makeup while lying down. This timer control can improve the adhesiveness and permeability of each cosmetic product by taking an appropriate wait time, and can efficiently exhibit the functions of various cosmetic products. Furthermore, since the sensor is attached to the tip of the head, it is possible to control and correct the relative position between the head and the surface to be dressed even if the surface to be dressed moves.

また、上述の化粧塗布プロセスの中で、仕上がり具合を選択する際の各種データには、データ入力部より入力して得た肌データから好きな色を選んでそれを標準色とする方法と、各化粧品メーカーのホームページにアクセスして、化粧品メーカーが販売しているファンデーション色データをダウンロードする方法と、データ保存部にある色データからデータ抽出する方法とから選択することが出来る。   In addition, in the above-described makeup application process, various data when selecting the finish level, a method of selecting a favorite color from the skin data obtained by inputting from the data input unit and making it a standard color, It is possible to select from a method of accessing the homepage of each cosmetic manufacturer and downloading foundation color data sold by the cosmetic manufacturer and a method of extracting data from the color data in the data storage unit.

〔実施例2〕
実施例1で挙げた化粧塗布プロセスは、図6に示すように、指の爪においても適応可能である。図6のプリントヘッド7から実施例4で挙げた化粧液体8(マニキュア)を塗布する他に、画像データ9を塗布することで、ネイルアートも可能である。その画像データ9は、データ保存部に格納されているほか、インターネットからダウンロードした各種データにも対応することが出来る。
[Example 2]
The cosmetic application process described in the first embodiment can be applied to a fingernail as shown in FIG. In addition to applying the cosmetic liquid 8 (manicure) described in the fourth embodiment from the print head 7 in FIG. 6, nail art is also possible by applying image data 9. The image data 9 is not only stored in the data storage unit, but can also correspond to various data downloaded from the Internet.

〔実施例3〕
実施例1で挙げた化粧塗布プロセスは、図7に示すように歯においても適応可能であり、この場合は、特に歯の色を白くするのに利用される例である。この場合、歯を乾燥させてからプリントヘッド10で化粧液体11を吐出させ、更にフッ素等のコーティング剤でコーティングし、長寿命化を狙う事もできる。
Example 3
The cosmetic application process described in Example 1 can also be applied to teeth as shown in FIG. 7, and in this case, it is an example used particularly for whitening the tooth color. In this case, after the teeth are dried, the cosmetic liquid 11 is ejected by the print head 10 and further coated with a coating agent such as fluorine.

〔実施例4〕
実施例1で挙げた化粧塗布プロセスは、図8に示すように髪においても適応可能であり、この場合は、髪全体に浸透するように、かつ乾燥しやすいように髪を広げて、化粧液体を塗布する例である。
Example 4
The cosmetic application process described in Example 1 can also be applied to hair as shown in FIG. 8. In this case, the cosmetic liquid is spread so as to penetrate into the entire hair and easily dry. It is an example which apply | coats.

以上説明したように、本発明は被化粧面を理想値に近づくように化粧液体を塗付することが可能となり、変化する被化粧面に応じて、適正な仕上がりをもたらすことができる。   As described above, according to the present invention, it is possible to apply the makeup liquid so that the surface to be dressed approaches the ideal value, and an appropriate finish can be brought about according to the surface to be dressed that changes.

一実施例の化粧仕上がりフローを示したものである。1 shows a cosmetic finish flow of one embodiment. 一実施例のシステム構成内容を示したものである。The system configuration content of one embodiment is shown. 一実施例の化粧装置の概略図である。It is the schematic of the makeup | decoration apparatus of one Example. 図3の化粧装置を用いて化粧を行う様子である。It is a mode that makeup | decoration is performed using the makeup | decoration apparatus of FIG. 一実施例の被化粧面の明るさの断面プロファイル。(a)は測定ラインを示す。(b)は(a)における化粧前の明るさの測定値の説明図。(c)は(a)における明るさの測定値と補正値の説明図。(d)は(a)における明るさの測定値を、全体的に明るくシフトさせた様子を示す説明図。The cross-sectional profile of the brightness of the to-be-coated surface of one Example. (A) shows a measurement line. (B) is explanatory drawing of the measured value of the brightness before makeup in (a). (C) is explanatory drawing of the measured value and correction value of the brightness in (a). (D) is explanatory drawing which shows a mode that the measured value of the brightness in (a) was shifted brightly as a whole. 一実施例の指に対して化粧をした略図を示す。1 shows a schematic diagram of makeup applied to a finger according to one embodiment. 一実施例の歯に対して化粧した略図を示す。Fig. 2 shows a schematic representation of a makeup for a tooth of an embodiment. 一実施例の髪の毛に対して化粧をした略図を示す。1 shows a schematic diagram of makeup on the hair of one embodiment.

符号の説明Explanation of symbols

1 化粧装置
5 光学式センサ
6、7、10、12 プリントヘッド
8、11 吐出部より吐出された化粧液体
9 被化粧面に形成された画像
DESCRIPTION OF SYMBOLS 1 Makeup apparatus 5 Optical sensor 6, 7, 10, 12 Print head 8, 11 Cosmetic liquid discharged from discharge part 9 Image formed on to-be-coated surface

Claims (5)

被化粧面のデータを取得する手段と、前記データを処理する処理手段と、前記データを保持する保持手段と、化粧液体を吐出する吐出手段と、を有し、前記データを用いて前記化粧液体を前記被化粧面に液体吐出法によって塗布することを特徴とする化粧システム。   The cosmetic liquid has means for acquiring data on the surface to be applied, processing means for processing the data, holding means for holding the data, and discharge means for discharging a cosmetic liquid, and using the data, the cosmetic liquid Is applied to the surface to be coated by a liquid discharge method. 取得した被化粧面の測定データと理想値との色の差分に応じた化粧液体を、前記吐出手段を用いて前記被化粧面へ吐出することを特徴とする請求項1に記載の化粧システム。   2. The makeup system according to claim 1, wherein a makeup liquid corresponding to the color difference between the acquired measurement data of the surface to be decorated and an ideal value is ejected to the surface to be decorated using the ejection means. 複数の化粧液体を用いる場合に、先の化粧液体を被化粧面に塗付してから次の化粧液体を被化粧面に塗付するまでの時間を制御する手段を有することを特徴とする請求項1または請求項2に記載の化粧システム。   When a plurality of cosmetic liquids are used, it has means for controlling the time from application of the previous cosmetic liquid to the face to be applied until application of the next cosmetic liquid to the face to be decorated. The makeup system according to claim 1 or claim 2. 前記吐出手段と前記被化粧面との相対位置を制御する制御手段を有することを特徴とする請求項1〜3のいずれか1項に記載の化粧システム。   The makeup system according to any one of claims 1 to 3, further comprising a control unit that controls a relative position between the discharge unit and the surface to be dressed. 被化粧面のデータを取得するデータ入力部と、前記データを処理するデータ制御部と、前記データを保持するデータ保存部と、化粧液体を吐出する吐出部と、を有し、前記データを用いて前記化粧液体を前記被化粧面に液体吐出法によって塗布することを特徴とする化粧方法。
A data input unit that obtains data of a makeup surface; a data control unit that processes the data; a data storage unit that holds the data; and a discharge unit that discharges makeup liquid, and uses the data And applying the cosmetic liquid onto the surface to be coated by a liquid discharge method.
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