1. Technical Field
The present disclosure relates to device casings, and particularly, to a casing colored by physical vapor deposition (PVD).
2. Description of Related Art
Colored device casings are usually formed by injection of colored plastic or spraying paint on a surface of a casing. However, neither method provides metal texture, which can enhance the appearance of the device. Furthermore, metal coating technology is complicated and difficult to control, so only a few colors are available for metal casings.
Therefore, it is desirable to provide a casing and a method for fabricating the casing which can overcome the described limitations.
Many aspects of the disclosure can be better understood with reference to the drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present colored device casing and method for fabricating the casing. Moreover, in the drawings, like reference numerals designate corresponding parts throughout various views.
Embodiments of the disclosure will now be described in detail with reference to the accompanying drawings.
Referring to
The base 1 can be metal such as steel, or ceramic or glass. The base 1 includes at least one surface to be coated, which includes at least one smooth region. The smooth region is also referred to as a high-gloss or a mirror-like region. It is noted that the base 1 may include many surfaces to be coated, and each surface includes many different surface conditions. For example, the base 1 may include both a high-gloss region and a matte region.
The bonding layer 2 is formed between the base 1 and the color layer 3 for connection therebetween. Thus, the bonding layer 2 can include any material providing proper adhesion, such as chromium nitride (CrN).
The color layer 3 is configured to provide desired color, and includes one or more metal layers. In one embodiment, the color layer 3 includes a layer of an alloy of titanium.
The coating layer 4 can include any appropriate material for protection, such material providing pollution resistance, electrical insulation, moisture resistance, or mechanical hardness.
The part of the colored device casing 10 including the base 1, the bonding layer 2 and the color layer 3 (i.e. excluding the coating layer 4) may exhibit a Vickers hardness equaling or exceeding 400 HV.
Referring to
Referring also to
Subsequently, a bonding layer 2 is formed on a predetermined surface or region of the base 1. The bonding layer 2 may be formed by PVD, especially PVD sputtering. In one embodiment, argon plasma is excited at a flow rate from 27 to 33 standard cubic centimeters per minute (sccm) by a radio frequency (RF) generator to bombard a chromium target to generate chromium vapor, and nitrogen gas is supplied to react with chromium vapor. As a result, chromium nitride is obtained and deposits on the base 1.
Thereafter, a color layer 3 is formed on the bonding layer 2. This may include sputtering PVD with argon plasma excited by power supplies to bombard a titanium target. In one embodiment, the power bombarding the titanium target is in a range from 13.5 to 16.5 kW, the bias voltage is in a range from 135 to 165 volts (V), the process temperature is in a range from 153° C. to 187° C., the process time is in a range from 54 to 66 minutes. The power bombarding of the titanium target may be supplied by one power supply, such as one RF generator or one medium frequency (MF) generator. This PVD process provides argon gas and nitrogen gas. The argon gas is supplied in a range from 162 to 192 sccm. Supplying nitrogen gas includes a first stage to a fourth stage. The nitrogen gas is supplied at a flow rate from 108 to 132 sccm in the first stage, at a flow rate from 162 to 198 sccm in the second stage, at a flow rate from 216 to 264 sccm in the third stage and at a flow rate from 324 to 396 sccm in the fourth stage. In addition, the PVD process further provides pressure from 3.6 to 4.4 mtorr in the first stage, from 3.618 to 4.422 mtorr in the second stage, from 3.663 to 4.477 mtorr in the third stage and from 4.104 to 5.016 mtorr in the fourth stage.
Accordingly, the colored device casing 10 of the present disclosure provides a desired color and metal texture. The chromaticity coordinate (L*, a*, b*) of the portion of the color layer 3 corresponding to and located over the smooth region of the base 1 is in the range from (about 49.07 to about 51.07, about 0.19 to about 1.19, about 1.94 to about 2.94) according to the CIE LAB system.
Furthermore, a coating layer 4 can be optionally formed on the color layer 3, according to any of various suitable techniques known in the art.
The colored device casing 10 of the present disclosure can be applied to any suitable object or device, such as a notebook or a personal digital assistant (PDA). For example, a mobile phone including the colored device casing 10 shown in
It is to be understood, however, that even though numerous characteristics and advantages of various embodiments have been set forth in the foregoing description, together with details of the structures and functions of the embodiments, the disclosure is illustrative only; and that changes may be made in detail, especially in matters of arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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99101300 | Jan 2010 | TW | national |
This application is related to co-pending U.S. patent applications (Attorney Docket Nos. US32592, US32593, US32594, US32595, US32596, US32597, US32598, US32599, US32600, US32601, US32602, US32603, US32604, US32605, US32606 and US32607), all entitled “COLORED DEVICE CASING AND SURFACE-TREATING METHOD FOR FABRICATING SAME”, invented by Chen et al. Such applications have the same inventors and assignee as the present application.