RETRACTABLE IRON
20200196729 ยท 2020-06-25
Inventors
Cpc classification
A45D2001/004
HUMAN NECESSITIES
International classification
Abstract
An apparatus for styling hair includes a hinged frame two arms and a hinge. A platen for engaging hair and having a plurality of through holes arranged in a pattern has a mounted surface against a first one of the arms and a free surface facing a second one of the two arms. A pin carrier is interposed between the first one of the arms and the flat plate, having a plurality of pins arranged in the pattern for inserting into the through holes. A mechanism is coupled to the pin carrier, movable between an extended state wherein the plurality of pins protrudes above the free surface and a retracted state wherein the plurality of pins are retracted below the free surface. The perforated platen and a mating platen can be heated for styling hair and a user can easily move the pins between the engaged and retracted states.
Claims
1. An apparatus for styling hair, comprising: a hinged frame comprising two opposing arms and a hinge; a perforated platen for engaging hair comprising a plurality of through holes arranged in a pattern, having a mounted surface against a first one of the arms and a free surface facing a second one of the two arms; a pin carrier interposed between the first one of the arms and the perforated plate, comprising a plurality of pins coupled to a substrate and arranged in the pattern for inserting into the through holes; and a mechanism coupled to the pin carrier, movable between an extended state wherein the plurality of pins protrude above the free surface and a retracted state wherein the plurality of pins are retracted below the free surface.
2. The apparatus of claim 1, further comprising a sliding actuator coupled to the mechanism for moving the mechanism between the extended state and the retracted state.
3. The apparatus of claim 2, further comprising a resilient spring biasing the pin carrier towards one of the extended state and the retracted state.
4. The apparatus of claim 2, further comprising a ramp disposed against the pin carrier, positioned for transforming motion of the pin carrier parallel to the perforated platen into motion perpendicular to the perforated platen.
5. The apparatus of claim 4, wherein the ramp is formed in a frame of the mechanism fixed to the first one of the two arms.
6. The apparatus of claim 2, wherein the sliding actuator comprises a manual actuator mounted in a receiver of the hinged frame.
7. The apparatus of claim 1, wherein the mechanism comprises an assembly of components.
8. The apparatus of claim 1, wherein each of the plurality of pins comprises a stainless steel material.
9. The apparatus of claim 8, wherein each of the plurality of pins has a diameter in a range of 0.5 to 1.5 mm.
10. The apparatus of claim 8, wherein each of the plurality of pins has length in a range of 1 to 4 mm.
11. The apparatus of claim 8, wherein the stainless steel material is coated with one of a ceramic or fluoropolymer.
12. The apparatus of claim 1, wherein the pin carrier comprises two separate pieces, each holding two rows of the plurality of pins.
13. The apparatus of claim 12, wherein pins in a first of the two rows are spaced apart a uniform amount that is less than spacing between pins in a second of the two rows.
14. The apparatus of claim 13, wherein each of the two separate pieces is positioned relative to the perforated platen so the first of the two rows is along and closer to an edge of the perforated platen than the second of the two rows.
15. The apparatus of claim 1, wherein the perforated platen is flat and smooth on its free surface.
16. The apparatus of claim 1, wherein the perforated platen is in conductive communication with a resistive heating element.
17. The apparatus of claim 1, further comprising a water reservoir for producing steam.
18. The apparatus of claim 1, further comprising a second platen mounted to the second arm opposite to the perforated platen.
19. The apparatus of claim 1, wherein the through holes have cylindrical walls.
20. The apparatus of claim 1, wherein the pattern of through holes include a row of more closely-spaced holes along each long edge of the smooth plate, and two or more rows of more widely-spaced holes there between.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009] The features, nature, and advantages of the present disclosure will become more apparent from the detailed description set forth below when taken with the drawings in which like reference characters identify like elements correspondingly throughout the specification and drawings.
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION
[0016] Various aspects are now described referring to the drawings. In this description, for explanation, numerous specific details provide a thorough understanding of one or more aspects. It may be evident, however, that the aspects of the disclosure may be practiced without these specific details. In other instances, well-known structures and devices are shown in block diagram form to facilitate describing these aspects.
[0017] Referring to
[0018] The apparatus 100 may further include a pin carrier 106, 106 interposed between the first one of the arms 114 and the perforated plate. The pin carrier may be made of any suitable structural material in any useful shape. While dual pin carriers 106, 106 are illustrated in
[0019] Each pin carrier 106, 106 includes a plurality of pins 104, 104 coupled to a substrate and arranged in the pattern of perforations for inserting into the through holes. The pins 104, 104 should be smooth enough for detangling hair, for example a surface roughness of about 3 micrometers or smoother and made of a ductile and/or tough structural material capable of operating in the expected high-temperature environment. Suitable materials may include, for example, stainless steel, uncoated or coated with a high-temperature friction-reducing coating as described for the perforated platen 108, structural ceramics, or similarly tough materials. The detangling pins illustrated in
[0020] The apparatus 100 may further include a mechanism 149 coupled to the pin carrier 106, 106. The mechanism 149 may be an assembly of multiple components, for example, a slider 138, a link 148, a sliding actuator 144, and a frame 142. The slider 138 includes sliding bearings 136 of low-friction material at or near its four corners. The bearings 136 facilitate smooth sliding of the slider 138 relative to the integrated pin carrier 107, under a pushing or pulling force exerted by the user against the manual actuator 144 in a receiver of the first arm 114. The pushing or pulling force is transmitted to the slider 138 by the link 148.
[0021] The frame 142 may include linear cams 140, also called ramps, that a lower surface or additional bearings of the slider traverses as it slides back and forth. The cams or ramps convert linear motion parallel to perforated plate 108 into linear motion perpendicular to the perforated plate 108, pushing the pin carrier 107 towards the perforated plate 108 and compressing resilient spring members 102 (for example, coil springs). The resilient members 102 impart a return force when the slider moves in the opposite direction and back down the ramps 140. Thus, the mechanism 149 and pin carrier 107 are movable between an extended state wherein the plurality of pins protrudes above the free surface and a retracted state wherein the plurality of pins is retracted below the free surface of the perforated plate 108. The resilient springs 102 bias the pin carrier towards one of the extended state and the retracted state (bias towards the retracted state is illustrated). In the assembled mechanism 149 fixed to the first arm 114, the ramps 140 are disposed against the pin carrier 107 by the slider 138 and springs 102, positioned for transforming motion of the pin carrier 107 parallel to the perforated platen 108 into motion perpendicular to the perforated platen. Other reciprocating mechanisms may also be used, instead of the illustrated sliding linear-cam mechanism.
[0022] The apparatus may further include a water reservoir 117 for producing steam (
[0023] In other aspects, the perforated platen 108 and/or a second platen are in thermal conductive communication with a resistive heating wire or element under the control of a heating circuit. While various circuits are known in the art and any suitable heating circuit may be used,
[0024] The apparatus 100 may include a second platen 103 mounted to the second arm opposite to the smooth plate (
[0025]
[0026] Just as the shape and configuration of the platens may be varied, so may the shape of the pins and matching perforations. Besides pins with circular or elliptical cross-sections, pins and holes of other cross sections may also be useful. For example, rectangular, polygonal or elongated elliptical detanglers may be useful; slots may be useful as perforations instead of, or besides cylindrical pins and holes. Many other mechanisms for retraction or extension may also be useful, instead of the illustrated sliding mechanism. For example, useful retraction-extension mechanisms (also known as reciprocating mechanisms) may include rack-and-pinion mechanisms, hydraulic or pneumatic pistons, electric linear motors, slider-crank mechanisms, rotating camshafts, or other mechanisms.
[0027] The previous description of the disclosed aspects is provided to enable any person skilled in the art to make or use the present disclosure. Various modifications to these aspects will be clear to those skilled in the art, and the generic principles defined may be applied to other embodiments without departing from the spirit or scope of the disclosure. The present disclosure and the appended claims are not limited to the embodiments shown herein and encompass a wider scope consistent with the principles and novel features disclosed.