This application claims the priority of Japan patent application serial no. 2018-155228, filed on Aug. 22, 2018. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The present disclosure relates to a finger nail printer, and more particularly to a finger nail printer including a placing table, a biasing member, and a positioning unit.
Conventionally, a finger nail printer including a placing table, a biasing member, and a positioning unit is known (see, for example, Japanese Patent Laid-Open No. 2016-150092).
Japanese Patent Laid-Open Publication No. 2016-150092 discloses a fingertip holder for nail art printing including a fingertip pressing member (placing unit), an elastic means (biasing member), and a fingertip restraining member (positioning unit). In Patent Document 1, a fingertip is held between the fingertip pressing member and the fingertip restraining member by using a pressing force of the elastic means. In addition, by pressing the fingertip pressing member against the pressing force, a gap is generated between the fingertip pressing member and the fingertip restraining member, so that the finger can be removed.
In the conventional nail printer including the fingertip holder for nail art printing as described in the above-mentioned Patent Document 1, the finger on which nail printing is performed is fixed due to the pressing force (biasing force) of the elastic means. For this reason, although not described in Patent Document 1, an elastic means having a large pressing force is used in order to stabilize the finger on which nail printing is performed. However, there is a problem that, when removing the finger from the nail printer, it is necessary to press the fingertip pressing member against the pressing force with only one finger on which nail printing is performed, and, if the pressing force (biasing force) of the elastic means (biasing member) is large, it may be difficult for a child or a woman applying a weak force for pressing the fingertip pressing member (placing unit) against the pressing force.
A finger nail printer according to one aspect of the present disclosure includes a device main body, a placing unit for placing a finger, a positioning unit which is provided above the placing unit to constitute an insertion port for inserting a finger between the placing unit and the positioning unit and to fix the finger, and a printer head which performs printing on a nail of the finger placed on the placing unit, in which the placing unit includes a placing table extending from an inside of the device main body to an outside of the device main body via the insertion port, an extension portion provided to protrude in a lateral direction of the placing table, and a biasing member for biasing the placing table toward the positioning unit, and is configured such that the finger is fixed between the placing table and the positioning unit with a biasing force of the biasing member and the finger is capable of being inserted into or removed from the insertion port as the extension portion is pressed downward against the biasing force of the biasing member.
The present disclosure has been made to solve the problems as described above, and it is an objective of the present disclosure to provide a finger nail printer in which even a child or a weak woman can easily press a placing unit downward against a biasing force.
The finger nail printer according to the one aspect of the present disclosure includes the placing unit and the positioning unit, the placing unit includes the placing table, the extension portion, and the biasing member, and is configured such that the finger is fixed between the placing table and the positioning unit with the biasing force of the biasing member and the finger can be inserted and removed as the extension portion is pressed downward against the biasing force of the biasing member. According to this configuration, when a user removes the finger fixed between the placing unit and the positioning unit, by pressing the extension portion downward against the biasing force of the biasing member using a finger other than the fixed finger, the state in which the finger is fixed can be released. As a result, even a child or a weak woman can easily press the placing table downward against the biasing force.
In the finger nail printer according to the one aspect of the present disclosure, an upper surface of the extension portion may include a placing region in which the finger at a place other than being inserted into the insertion port can be placed. According to this configuration, since a finger other than the finger inserted into the insertion port can be placed in the placing region, the finger inserted into the insertion port can be supported by another finger placed on the placing region. For this reason, the finger inserted into the insertion port can be stabilized.
In this case, placing regions may be provided on both sides of the placing table. According to this configuration, when a user presses the extension portion against the biasing force of the biasing member using a finger of another hand which is different from the finger fixed to the insertion port, the extension portion provided on a side convenient for the user can be used.
In the extension portion including the placing region according to the one aspect mentioned above, the placing region may have a length in the lateral direction equal to or longer than a length of a placing surface of the placing table in the lateral direction. According to this configuration, one finger can be placed on the placing table, while a plurality of fingers can be placed in the placing region. For this reason, since the extension portion is easily pressed using a plurality of fingers, even a child or a weak woman can easily press the extension portion against the biasing force of the biasing member.
In the finger nail printer according to the one aspect mentioned above, the extension portion may be configured to be extendable and contractible in the lateral direction of the placing table. According to this configuration, by extending and contracting the extension portion in the lateral direction, it is possible to adjust the extension portion to have a length corresponding to a size of the user's finger.
In the finger nail printer according to the one aspect mentioned above, the at least one extension portions may include a plurality of extension portions having different lengths in the lateral direction, and each of the extension portions may be configured to be removably attached to the placing table. According to this configuration, it is possible to select an extension portion having a length corresponding to a size of the user's finger.
In the finger nail printer according to the one aspect mentioned above, an adjustment drive mechanism which adjusts a length of the extension portion by moving the extension portion in the lateral direction may be further provided. According to this configuration, since the adjustment drive mechanism automatically adjusts the length of the extension portion, a user does not have to adjust the length of the extension portion.
In this case, the placing table includes a sensor for detecting information on a size of the finger, and the adjustment drive mechanism is configured to adjust the length of the extension portion on the basis of results detected by the sensor. According to this configuration, since the adjustment drive mechanism automatically adjusts the length of the extension portion on the basis of the information on the size of the finger detected by the sensor, the extension portion can be automatically adjusted to have a length corresponding to the size of the user's finger.
In the finger nail printer according to the one aspect mentioned above, a control unit may be further provided, the placing table may include a sensor for detecting information on a size of the finger, and the control unit may be configured to output information on a length of the extension portion on the basis of results detected by the sensor. According to this configuration, since information on an optimal length of the extension portion is output on the basis of the information on the size of the finger detected by the sensor, the extension portion can be adjusted to be the optimal length corresponding to the size of the user's finger.
In this case, the sensor may be a tactile sensor. According to this configuration, by detecting a pressure or the like, it is possible to accurately acquire information on the size of the finger placed on the placing table.
The finger nail printer according to the one aspect mentioned above may further include an imaging unit disposed above the placing unit, and a control unit which outputs an image of an upper surface imaged by the imaging unit to a display unit or an external terminal, in which the imaging unit images the extension portion in addition to a nail portion of the finger, and the control unit is configured to output information on a length of the extension portion on the basis of results obtained from imaging the extension portion by the imaging unit. According to this configuration, since the display unit or the external terminal displays the information on the length of the extension portion, the user can adjust the extension portion to an optimal length on the basis of the displayed information.
According to the present disclosure, it is possible to provide a finger nail printer in which even a child or a weak woman can easily press a placing table downward against a biasing force.
Hereinafter, embodiments of the present disclosure will be described with reference to the drawings.
A configuration of a finger nail printer 100 according to a first embodiment of the present disclosure will be described with reference to
As shown in
The finger nail printer 100 is a device that prints a pattern or the like on a nail of a finger placed in the placing unit 2. The printed pattern may be, for example, a pattern stored inside the device main body 1 or a pattern read in from an external device connected to the device main body 1.
As shown in
As shown in
As shown in
The placing table 2a can move in the Z direction, but is configured not to move in the X direction and the Y direction. In addition, in the first embodiment, the finger nail printer 100 is configured such that the placing table 2a moves in the Z direction in conjunction with the extension portion 2b.
As shown in
The mounting regions 2e have lengths in the X direction that are equal to or greater than a length of the placing surface 2d of the placing table 2a in the X direction. Also, the lengths of the mounting regions 2e provided on both sides may differ between the X1 side and the X2 side, or may be the same.
The placement regions 2e are used to place fingers other than the printing target finger when a pattern is printed on a nail of the user. By placing a plurality of fingers other than the printing target in the placement regions 2e, the user can easily stabilize the printing target finger. Also, when the placement regions 2e are provided, the user may stabilize the printing target finger by bringing fingers other than the printing target finger into contact with lower surfaces of the extension portions 2b and sandwiching the extension portions 2b between the printing target finger and other fingers.
The placement regions 2e are also used for pressing the extension portions 2b. The user may use fingers of the same hand having the printing target finger which have been placed on the placement region 2e, or may press it with the other hand. For example, in a case of printing a pattern on a nail of the first finger of a right hand, the middle finger and the ring finger may be placed on the placement region 2e on the X2 side to press the extension portion 2b with the middle finger and the ring finger, or the extension portion 2b protruding to the X1 side may be pressed with a left hand.
A stopper may be provided to maintain a state in which the biasing member 2c is compressed as shown in
As shown in
As shown in
As shown in
The printer head 4 moves to a position facing the placing table 2a when a pattern is printed on the nail using the horizontal moving mechanism, and, at other times, moves to a standby place so as not to come into contact with the finger when the finger is inserted.
As shown in
Next, a method of using the finger nail printer 100 in the first embodiment will be described below.
A user inserts his or her finger into the insertion port 5 while pressing the placing table 2a in the state shown in
Next, the user selects a pattern to be printed on his or her nail. The pattern is selected, for example, such that patterns are displayed on the terminal connected to the finger nail printer 100 and the user selects the pattern.
When the pattern is selected, the printer head 4 operates to print the pattern on the user's nail. When the printer head 4 completes the printing of the pattern on the nail, the user presses the placing table 2a or the extension portions 2b downward. As a result, as shown in
In the first embodiment, the following effects can be obtained.
In the first embodiment, as described above, the finger nail printer 100 includes the placing unit 2 and the positioning unit 3, the placing unit 2 includes the placing table 2a, the extension portions 2b, and the biasing member 2c, and is configured such that the finger is fixed between the placing table 2a and the positioning unit 3 with the biasing force of the biasing member 2c, and the finger can be inserted and removed as the extension portions 2b are pressed downward against the biasing force of the biasing member 2c. By configuring this way, when removing the finger fixed between the placing unit 2 and the positioning unit 3, the user can release the fixed state of the finger by pressing the extension portions 2b downward against the biasing force of the biasing member 2c using a finger other than the fixed finger. As a result, even a child or a weak woman can easily press the placing table 2a downward against the biasing force.
Also, in the first embodiment, as described above, the upper surfaces of the extension portions 2b include the placement regions 2e in which fingers other than the finger inserted into the insertion port 5 can be placed. In this way, since fingers other than the finger inserted into the insertion port 5 can be placed in the placement regions 2e, the finger inserted into the insertion port 5 can be supported with other fingers placed on the placement regions 2e. For this reason, the finger inserted into the insertion port 5 can be stabilized.
Also, in the first embodiment, as described above, the placing regions 2e are provided on both sides of the placing table 2a. In this way, when the extension portions 2b are pressed against the biasing force of the biasing member 2c using a finger of another hand which is different from the finger fixed to the insertion port 5, the extension portion 2b provided on a side convenient for the user can be used. As a result, when the user presses the extension portions 2b, it is possible to prevent the user's arms from crossing, so that the extension portions 2b can be easily pressed.
Also, in the first embodiment, as described above, the placement regions 2e have lengths in the lateral direction equal to or longer than a length of the placing surface 2d of the placing table 2a in the lateral direction. In this way, one finger can be placed on the placing table 2a, while a plurality of fingers can be placed in the mounting regions 2e. For this reason, since the extension portions 2b can be easily pressed using a plurality of fingers, even a child or a weak woman can more easily press the extension portions 2b against the biasing force of the biasing member 2c.
Next, a second embodiment will be described with reference to
For example, as shown in
Further, in an example of
The remaining configuration of the second embodiment is the same as that of the first embodiment mentioned above.
In the second embodiment, the following effects can be obtained.
In the second embodiment, as described above, the extension portions 22b are configured to be extendable and contractible in the lateral direction of the placing table 2a. In this way, the extension portions 22b can be adjusted to be lengths corresponding to sizes of the user's fingers by extending and contracting the extension portions 22b in the lateral direction.
In the second embodiment, as described above, the plurality of extension portions 22b having different lengths in the lateral direction are included, and each of the extension portions 22b is configured to be removably attached to the placing table 2a. In this way, it is possible to select the extension portions 22b having lengths corresponding to sizes of the user's fingers.
The other effects of the second embodiment are the same as those of the first embodiment.
Next, a third embodiment will be described with reference to
As shown in
As shown in
The adjustment drive mechanism 7 is configured to adjust the lengths of the extension portions 32b on the basis of results detected by the sensor 8. For example, when the sensor 8 detects that the little finger is placed on the placing table 2a, in order to stabilize the printing target finger, the finger nail printer 300 uses the adjustment drive mechanism 7 to lengthen the length of the extension portion 32b so that the ring finger and the middle finger can be placed thereon.
The remaining configuration of the third embodiment is the same as that of the first embodiment mentioned above.
In the third embodiment, the following effects can be obtained.
In the third embodiment, as described above, the adjustment drive mechanism 7 which adjusts the lengths of the extension portions 32b by moving the extension portions 32b in the lateral direction is further provided. In this way, since the lengths of the extension portions 32b are automatically adjusted by the adjustment drive mechanism 7, there is no need for the user to adjust the lengths of the extension portions 32b.
In the third embodiment, the placing table 2a includes the sensor 8 for detecting information on the size of the finger, and the adjustment drive mechanism 7 is configured to adjust the lengths of the extension portions 32b on the basis of the results detected by the sensor 8. In this way, since the adjustment drive mechanism 7 automatically adjusts the lengths of the extension portions 32b on the basis of the information on the size of the finger detected by the sensor 8, the extension portions 32b can be automatically adjusted to the lengths corresponding to the size of the user's finger.
The other effects of the third embodiment are the same as those of the first embodiment.
Next, a fourth embodiment will be described with reference to
As shown in
As shown in
The control unit 9 is configured to output information on the lengths of the extension portions 32b on the basis of the results detected by the sensor 8. For example, when the sensor 8 detects that the printing target finger is the little finger, in order to stabilize the printing target finger, the control unit 9 outputs information to increase the length of the extension portion 32b so that the ring finger and the middle finger can be placed thereon. Also, for example, when the printing target finger is the little finger, the control unit 9 outputs information such as to lengthen the length of the extension portion 32b on one side, not the extension portions 32b on both sides. An output destination is, for example, an external terminal owned by the user. The user adjusts the lengths of the extension portions 32b on the basis of the output information.
The remaining configuration of the fourth embodiment is the same as that of the first embodiment mentioned above.
In the fourth embodiment, the following effects can be obtained.
In the fourth embodiment, as described above, the control unit 9 is further provided, the placing table 2a includes the sensor 8 for detecting information on the size of the finger, and the control unit 9 is configured to output information on the lengths of the extension portions 32b on the basis of the results detected by the sensor 8. In this way, since the information on optimal lengths of the extension portions 32b is output on the basis of the information on the size of the finger detected by the sensor 8, the extension portions 32b can be adjusted to be optimal lengths corresponding to sizes of the user's fingers.
In the fourth embodiment, as described above, the sensor 8 is a tactile sensor. According to this configuration, by detecting the pressure or the like, it is possible to accurately acquire information on the size of the finger placed on the placing table 2a.
The other effects of the fourth embodiment are the same as those of the first embodiment mentioned above.
Next, a fifth embodiment will be described with reference to
The imaging unit 6 is configured to capture an image of the upper surface of the finger placed on the placing unit 2. In addition, the imaging unit 6 can move and change an angle of view to image the extension portions 2b.
The control unit 9 performs control to display the image captured by the imaging unit 6 on a display unit 10 or an external terminal 11. As shown in
The control unit 9 performs control to output information on the lengths of the extension portions 2b. The control unit 9 causes the display unit 10 to display information on the lengths of the extension portions 2b on the basis of the images of the upper surface of the finger and the lengths of the extension portions 2b captured by the imaging unit 6. For example, when the little finger is placed on the placing table 2a, in order to stabilize the printing target finger, information to increase the length of the extension portions 2b is displayed so that the ring finger and the middle finger can be placed thereon. As a result, the user adjusts the lengths of the extension portions 2b on the basis of the displayed information.
The remaining configuration of the fifth embodiment is the same as that of the first embodiment mentioned above.
In the fifth embodiment, the following effects can be obtained.
In the fifth embodiment, as described above, the imaging unit 6 disposed above the placing unit 2, and the control unit 9 which outputs the image of the upper surface captured by the imaging unit 6 to the display unit 10 or the external terminal 11 are further provided, the imaging unit 6 captures the image of the extension portions 2b in addition to a nail portion of the finger, and the control unit 9 is configured to output information on the lengths of the extension portions 2b on the basis of results obtained from the imaging of the extension portions 2b by the imaging unit 6. In this way, since information on the lengths of the extension portions 2b is displayed on the display unit 10 or the external terminal 11, the user can adjust the extension portions 2b to be optimal lengths of the extension portions 2b on the basis of the displayed information.
The other effects of the fifth embodiment are the same as those of the first embodiment mentioned above.
Also, it should be understood that the embodiments described herein are exemplary and are not to be considered as limiting in every respect. The scope of the present disclosure is indicated not by the description of the embodiments described above but by the claims, and further includes all modifications (modified examples) within the meaning and scope equivalent to the claims.
For example, in the first embodiment, although the example in which the placement regions have lengths in the lateral direction (X direction) equal to or greater than the length of the placing surface of the placing table in the lateral direction (X direction) has been described, the disclosure is not limited thereto. In the present disclosure, the placing regions may have lengths in the lateral direction (X direction) shorter than the length of the placing surface of the placing table in the lateral direction (X direction).
Also, in the first embodiment, although the example in which the extension portions are provided on both sides of the placing table has been described, the present disclosure is not limited thereto. In the present disclosure, the extension portion may be provided on only one side.
Also, in the second embodiment, although the example in which a plurality of the extension portions are screwed and locked at the side of the placing table has been described, the present disclosure is not limited thereto. In the present disclosure, for example, a pin may be provided in the extension portion, inserted into the placing table, and then fixed as a tip of the pin is expanded.
Also, in the third and fourth embodiments, although the example in which the sensor is a tactile sensor has been described, the present disclosure is not limited thereto. In the present disclosure, any sensor may be used as long as it can detect information on a size of a finger.
Also, in the third and fourth embodiments, although the example in which the sensor detects the information on the size of the finger has been described, the present disclosure is not limited thereto. In the present disclosure, the control unit may detect the information on the size of the finger from the image of the finger captured by the imaging unit.
Also, in the third embodiment, although the example in which the adjustment drive unit is configured of the rack and pinion mechanism, the present disclosure is not limited thereto. In the present disclosure, it may be configured of a belt and pulley mechanism.
Also, in the fourth embodiment, although the example in which the information on the lengths of the extension portions is output on the basis of the results detected by the sensor has been described, the present disclosure is not limited thereto. The present disclosure may be used for other purposes on the basis of the results detected by the sensor. For example, whether the printing target finger is an adult's finger or a child's finger may be detected, and the control unit may be designed to change an order of displaying types of a pattern to be selected.
Also, in the fifth embodiment, although the example in which the imaging unit captures the image of the upper surface of the finger and the image of the extension portions, the present disclosure is not limited thereto. In the present disclosure, the upper surface of the finger and the extending portions may be imaged by providing a plurality of imaging units.
Number | Date | Country | Kind |
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2018-155228 | Aug 2018 | JP | national |
Number | Name | Date | Kind |
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20120147113 | Yamasaki | Jun 2012 | A1 |
Number | Date | Country |
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2016150092 | Aug 2016 | JP |
Number | Date | Country | |
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20200062004 A1 | Feb 2020 | US |