The present invention relates to a lamp decoration, and more particularly to a lamp decoration, which is waterproof and has a changeable lamp cover.
A conventional lamp decoration is applied for decorating various indoor and outdoor places. A conventional lamp decoration substantially has a lamp unit or multiple lamp units serially connected to compose a light string. The illumination effects performed by the lamp decoration are applied for attracting participants' attention and creating a festive atmosphere. Therefore, how to improve the lighting variations and decorativeness is the focus of improvement for the lamp decoration products.
The conventional lamp unit substantially has a lamp board, a lamp cover, and a cap. The lamp board is mounted in the lamp cover, and light emitted by the lamp board is transmitted through the lamp cover to produce illumination effects. The cap covers an opening of the lamp cover and has through holes for conducting wires to be mounted throughout the cap. Lamp decorations are usually put on trees and streets outdoors. When snowing or raining, snow water or rain may flow into the through holes of the cap via the conducting wires. In addition, moisture may enter the lamp cover via gaps formed between the lamp cover and the cap to damage electrical units of the lamp board. The life of the lamp decoration would be shortened.
To overcome the shortcomings, the present invention tends to provide a waterproof lamp decoration to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a lamp decoration which is waterproof and has an interchangeable lamp cover.
A waterproof lamp decoration has a lamp unit having a waterproof illumination unit and a lamp cover. The waterproof illumination unit has a transparent shell, an end cap, a lamp board, multiple conducting wires, an encapsulating body, and an engaging portion. The transparent shell has an opening formed in an end of the transparent shell. The end cap covers the opening of the transparent shell to form a chamber between the transparent shell and the end cap. The end cap has multiple through holes communicating with the chamber. The lamp board is mounted in the chamber and has multiple light-emitting diodes (LEDs). The conducting wires are electrically connected with the lamp board and mounted through the through holes of the end cap. The encapsulating body joins and surrounds a connecting portion of the transparent shell, the end cap, and the conducting wires by injection molding and seals gaps formed among the transparent shell, the end cap, and the conducting wires to seal the chamber. The engaging portion is formed in an end of the encapsulating body near the transparent shell. The lamp cover is detachably connected with the engaging portion and surrounds the transparent shell.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
With reference to
The transparent shell 21 has an opening 211 formed in an end thereof. The end cap 22 is mounted in and covers the opening 211 of the transparent shell 21 to form a chamber 215 between the transparent shell 21 and the end cap 22. The end cap 22 has multiple through holes 221 communicating with the chamber 215. The transparent shell 21 and the end cap 22 may each have a respective fixing structure 212, 222 formed therebetween. The fixing structures 212, 222 may be protrusions and recesses respectively corresponding to each other in position to fix the assembling position of the end cap 22.
The lamp board 23 is mounted in the chamber 215, and has a board 230 and multiple light-emitting diodes (LEDs) 232. The board 230 may be a printed circuit board. The LEDs 232 are mounted on the board 230 and are arranged at spaced intervals. The conducting wires 235 are mounted through the through holes 221 of the end cap 22 and are electrically connected with the lamp board 23. Preferably, the transparent shell 21 may further have a board positioning portion 216 formed therein. The lamp board 23 can be fixed in the board positioning portion 216.
The material of the encapsulating body 25 may be selected from a plastic material having low degree of hardness and being flexible, such as soft polyvinylchloride (PVC). The encapsulating body 25 joins and surrounds a connecting portion of the end cap 22, the transparent shell 21, and the conducting wires 235 by injection molding, and seals gaps formed among the end cap 22, the transparent shell 21, and the conducting wires 235 to seal the chamber 215. The gaps abovementioned include gaps formed between the through holes 221 and the conducting wires 235, and gaps formed between the transparent shell 21 and the end cap 22. The encapsulating body 25 prevents moisture from entering the chamber 215 to negatively affect the electrical units of the lamp board 23, and the waterproof property of the waterproof illumination unit 20 is ensured. The light emitted by the lamp board 23 can be transmitted through the transparent shell 21. With reference to
With reference to
The manufacturing process of the waterproof illumination unit 20 is as follows. After the lamp board 23, the conducting wires 235, the end cap 22, and the transparent shell 21 are assembled, the assembly is placed into a plastic injection mold to process injection molding. The material of the encapsulating body 25 is injected into the mold cavity, fills up the mold cavity, and joins and surrounds the connecting portion of the end cap 22, the transparent shell 21, and the conducting wires 235 to form the encapsulating body 25. Thus, the encapsulating body 25 can seal the gaps formed among the end cap 22, the transparent shell 21, and the conducting wires 235. The waterproof illumination unit 20 is tightly sealed for waterproof function, and can prevent moisture from entering the chamber 215 via the gaps formed among the end cap 22, the transparent shell 21, and the conducting wires 235 and negatively affecting the electrical units of the lamp board 23.
With reference
With reference to
In the embodiment, the lamp cover 30 is ball-shaped. The lamp cover 30 is composed of two hemispherical shells 301, 302. The shells 301, 302 each have a respective embedded structure 303, 304 formed thereon and the two embedded structures 303, 304 correspond to each other in position. The lamp cover 30 has multiple facets recessed in an outer surface thereof. The light transmitted through the waterproof illumination unit 20 may be refracted through the facets.
With reference to
With reference to
With reference to
The shapes of the lamp covers 30, 30A, 30B of the lamp units 10, 10A, 10B can be selected by the user's requirements. A lamp decoration may have lamp covers 30, 30A, 30B in the same shape, or may have lamp covers 30, 30A, 30B in different shapes. The lamp covers 30, 30A, 30B are changeable. Thus, the lamp covers 30, 30A, 30B in different shapes may coordinate with the waterproof illumination units 20 to produce various illumination effects. The variability and decorativeness of the waterproof lamp decoration is enhanced.
The waterproof illumination unit 20 has the encapsulating body 25 surrounding and joining the connecting portion of the transparent shell 21, the end cap 22, and the conducting wires 235 and sealing the gaps formed among the transparent shell 21, the end cap 22, and the conducting wires 235 to seal the chamber 215. The structures of the waterproof illumination units 20 can prevent moisture from entering the chambers 215 and negatively influencing the electrical units of the lamp board 23, and the waterproof effect of the waterproof lamp decoration can be ensured.
Moreover, the lamp cover 30 is changeable. The waterproof illumination unit 20 can coordinate with different lamp covers 30, 30A, 30B in different shapes to provide different illumination effects. The variability and decorativeness of the waterproof lamp decoration is enhanced.
Number | Name | Date | Kind |
---|---|---|---|
3355612 | Peek, Jr. | Nov 1967 | A |
5626415 | Huang | May 1997 | A |
5667296 | Cheng | Sep 1997 | A |
6238062 | Hsu | May 2001 | B1 |
6382812 | Hsu | May 2002 | B1 |
6796688 | Huang | Sep 2004 | B2 |
7217005 | Lin | May 2007 | B2 |
7762710 | Chang | Jul 2010 | B2 |
7883261 | Yu | Feb 2011 | B2 |
8376606 | Yu | Feb 2013 | B2 |
20040264187 | Vanderschuit | Dec 2004 | A1 |
20050086801 | Liu | Apr 2005 | A1 |
20080143234 | Yu | Jun 2008 | A1 |
20090080195 | Huang | Mar 2009 | A1 |
20090129099 | Fan | May 2009 | A1 |
20130027940 | Zhang | Jan 2013 | A1 |
20130051079 | Xu | Feb 2013 | A1 |
20140126219 | Fan | May 2014 | A1 |
20160010814 | Peng | Jan 2016 | A1 |
20190353309 | Yu | Nov 2019 | A1 |