1. A computer-readable medium containing computer readable instruction when executed by a computing device perform a method of securely accessing information, the method comprising:
receiving an access request for information from a location,
receiving location information associated with the location,
comparing the location information to a database of predefined locations,
requiring a location-based input based on a security rule associated with a comparison of the location information to the predefined locations of the database, and
providing access to the information if the location-based input satisfies an acceptable response.
2. The computer-readable medium of claim 1, the method further comprising administering a first location-based input by a local user and a second location-based input by a remote administrator.
3. The computer-readable medium of claim 1, the method further comprising enabling a plurality of location-based security rules, each location-based security rule corresponding to a device, network, system, application, transaction, and content associated with the access request.
4. The computer-readable medium of claim 1, the method further comprising requiring a biometric identifier when the comparison yields that the location requires a high level of security.
5. The computer-readable medium of claim 1, the method further comprising requiring a corporate identification (ID) and password when the comparison yields the location of an office location.
6. The computer-readable medium of claim 1, the method further comprising authenticating the location information.
7. The computer-readable medium of claim 1, the method further comprising informing an administrator when the location-based input is incorrect.
8. The computer-readable medium of claim 1, the method further comprising utilizing one of at least an iris scanning application, face recognition application, voice recognition application, handfinger recognition application, fingerprint recognition application, RFID tag application, andor smartcard application to verify the access request when the comparison yields a location that requires a high level of security.
9. The computer-readable medium of claim 1, the method further comprising requiring a user ID when the comparison yields the location of a home location.
10. A computer-readable medium having computer executable instructions when executed by a computer perform a method of secure access to information, the method comprising:
identifying a location associated with an access request, and
providing a number of location-based security rules requiring user specific identifiers based on the location of the access request and content of the access request, wherein each location-based security rule is associated with at least one of an access request and location of the access request.
11. The computer-readable medium of claim 10, the method further comprising requiring a biometric identifier when the location of the access request requires a high level of security.
12. The computer-readable medium of claim 10, the method further comprising requiring a corporate ID and password when the location of the access request corresponds to a corporate office.
13. The computer-readable medium of claim 10, the method further comprising utilizing one of at least an iris scanning application, face recognition application, voice recognition application, handfinger recognition application, fingerprint recognition application, RFID tag application, andor smartcard application to verify the access request when the location of the access request requires a high level of security.
14. The computer-readable medium of claim 10, the method further comprising requiring a user ID when the location of the access request corresponds to a home location.
15. The computer-readable medium of claim 10, the method further comprising authenticating the location of the access request.
16. The computer-readable medium of claim 10, wherein each location-based security rule corresponds to a device, network, system, application, transaction, or content associated with the access request.
17. The computer-readable medium of claim 10, the method further comprising informing an administrator when at least one of the location-based security rules is violated.
18. A system including a processor for executing computer executable instructions for performing a method of enabling access to information, the system comprising:
means for examining an access request for the information,
means for identifying a location associated with the access request, and
means for providing a level of security including requiring user specific identifiers based in part on the location, wherein the level of security is based at least in part on the location associated with the access request.
19. The system of claim 18, further comprising means for enabling one or more location-based security rules, each location-based security rule corresponding to a device, network, system, application, transaction, or content associated with the access request.
20. The system of claim 18, further comprising utilizing one of at least an iris scanning application, face recognition application, voice recognition application, handfinger recognition application, fingerprint recognition application, RFID tag application, andor smartcard application when the access request requires a high level of security.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A method for anodizing and dyeing a metallic article, the metallic article comprises a first dipped end, a second dipped end opposite to the first dipped end, and a decorated surface between the first dipped end and the second dipped end, the decorated surface of the metallic article being dyed, the method comprising steps as follows:
anodizing the metallic article to form an anodization layer on the decorated surface thereof by an anodizing treatment in an electrolyte solution, wherein the anodization layer is porous by having a plurality of holes therein, an immersion time of the decorated surface immersed in the electrolyte solution is varied gradually along a predetermined direction, and a depth of the plurality of holes of the anodization layer after the anodizing step thereby changes gradually along the predetermined direction; and
coloring the metallic article sealed in a dyeing treatment.
2. The method for anodizing and dyeing a metallic article of claim 1, wherein in the anodizing step, the first dipped end of the metallic article enters in the electrolyte solution first and exits last when the metallic article is immersed in the electrolyte solution, such that the depth of the plurality of holes of the anodization layer increases gradually from the second dipped end toward the first dipped end of the metallic article.
3. The method for anodizing and dyeing a metallic article of claim 2, wherein a predetermined velocity of the metallic article immersing in the electrolyte solution is constant.
4. The method for anodizing and dyeing a metallic article of claim 1, wherein the method further comprises a step of pre-treating the metallic article by a pre-anodizing treatment before the anodizing step.
5. The method for anodizing and dyeing a metallic article of claim 5, wherein the pre-anodizing treatment comprises a polishing, texturing, degreasing, alkaline etching, or desmutting.
6. The method for anodizing and dyeing a metallic article of claim 1, wherein the method further comprises a step of sealing the metallic article by a sealing treatment after the step of coloring the metallic article to seal the plurality of holes after the metallic article has been dyed.
7. The method for anodizing and dyeing a metallic article of claim 1, wherein the metallic article is made of aluminum, aluminum alloy, magnesium, magnesium alloy, titanium, or titanium alloy.
8. The method for anodizing and dyeing a metallic article of claim 1, wherein the anodizing treatment comprises a direct current anodizing treatment, an alternating current anodizing treatment, or a pulse current anodizing treatment.
9. The method for anodizing and dyeing a metallic article of claim 1, wherein sealing agents of the sealing solution comprise nickel acetate, nickel sulfate, or cobalt sulfate.
10. A method for anodizing and dyeing a metallic article, the metallic article is made of aluminum alloy and comprises a first dipped end, a second dipped end opposite to the first dipped end, and a decorated surface located between the first dipped end and the second dipped end, the decorated surface of the metallic article being dyed, the method comprising steps as follows:
anodizing the metallic article to form an anodization layer on the decorated surface by an anodizing treatment, wherein the anodization layer is porous by having a plurality of holes therein, the first dipped end of the metallic article enters in the electrolyte solution first and exits last when the metallic article is immersed in the electrolyte solution, such that the depth of the plurality of holes of the anodization layer increases gradually from the second dipped end toward the first dipped end; and
coloring the metallic article sealed in a dyeing treatment.
11. The method for anodizing and dyeing a metallic article of claim 11, wherein a predetermined velocity of the metallic article immersing in the electrolyte solution is constant.
12. The method for anodizing and dyeing a metallic article of claim 11, wherein the method further comprises a step of pre-treating the metallic article by a pre-anodizing treatment before the step of anodizing the metallic article.
13. The method for anodizing and dyeing a metallic article of claim 13, wherein the pre-anodizing treatment comprises a polishing, texturing, degreasing, alkaline etching, or desmutting.
14. The method for anodizing and dyeing a metallic article of claim 11, wherein the method further comprises a step of sealing the metallic article by a sealing treatment after the step of coloring the metallic article to seal the plurality of holes after the metallic article has been dyed.
15. The method for anodizing and dyeing a metallic article of claim 11, wherein the metallic article is made of aluminum, aluminum alloy, magnesium, magnesium alloy, titanium, or titanium alloy.
16. The method for anodizing and dyeing a metallic article of claim 11, wherein the anodizing treatment comprises a direct current anodizing treatment, an alternating current anodizing treatment, or a pulse current anodizing treatment.
17. A method for anodizing and dyeing a metallic article, the metallic article comprises a first sprayed end, a second sprayed end opposite to the first sprayed end, and a decorated surface between the first sprayed end and the second sprayed end, the decorated surface of the metallic article being dyed, the method comprising steps as follows:
anodizing the metallic article to form an anodization layer on the decorated surface thereof by an anodizing treatment in an electrolyte solution, wherein the anodization layer is porous by having a plurality of holes therein, the electrolyte solution is sprayed on the decorated surface of the metallic article, a spraying duration of the decorated surface is varied gradually from the second sprayed end toward the first sprayed end; and
coloring the metallic article sealed in a dyeing treatment.