1. Field of the Invention
The present invention relates to a Christmas tree electric connecting trunk device, and more particularly to a Christmas tree electric connecting trunk device that has an electrical connecting assembly to connect two adjacent connecting tubes of the Christmas tree electric connecting trunk device. The Christmas tree electric connecting trunk device prevents connecting tubes from relatively rotating and disadvantaging connection of male and female connectors of the electrical connecting assembly due to over fabricating tolerance, which improves convenience and efficiency of assembling the Christmas tree electric connecting trunk device.
2. Description of Related Art
A Christmas tree generally has two or more connecting tube stacked and assembled perfectly one by one for convenience use.
To overcome the shortcomings, the present invention provides a Christmas tree electric connecting trunk device to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a Christmas tree electric connecting trunk device that has an electrical connecting assembly to connect two adjacent connecting tubes of the Christmas tree electric connecting trunk device. The Christmas tree electric connecting trunk device prevents connecting tubes from relatively rotating and disadvantaging connection of male and female connectors of the electrical connecting assembly due to over fabricating tolerance, which improves convenience and efficiency of assembling the Christmas tree electric connecting trunk device.
A Christmas tree electric connecting trunk device in accordance with the present invention comprises at least one first tube assembly and at least one second tube assembly. Each first tube assembly has a first connecting tube, a first rotating alignment element, a guiding element and a male connector. The at least one second tube assembly corresponds to and is connected detachably to the at least one first tube assembly. Each of the at least one second tube assembly has a second connecting tube, a second rotating alignment element and a female connector. a resilient pressing portion is formed between the male and female connectors to perform tight engagement therebetween.
Other objectives, 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 further reference to
Each of the at least one first tube assembly 1 has a first connecting tube 10, a first rotating alignment element 20, a guiding element 30 and a male connector 70.
The at least one second tube assembly 2 corresponds to and is connected detachably to the at least one first tube assembly 1. Each of the at least one second tube assembly 2 has a second connecting tube 50, a second rotating alignment element 60 and a female connector 80.
The first connecting tube 10 has a first connecting end 101, a first mounting hole 100 and a first through hole 110. The first mounting hole 100 is defined axially in the first connecting tube 10. The first through hole 110 is defined radially through the first connecting tube 10.
The first rotating alignment element 20 is mounted radially on the first connecting end 101 and has a collar 21 and an alignment receptacle 22.
The collar 21 is mounted around the first connecting end 101 and has a fitting hole 210 defined through the collar 21 and mounted around the first connecting end 101.
The alignment receptacle 22 is formed on protrudes radially out from the collar 21 and has an alignment hole 220 defined in the alignment receptacle 22.
The guiding element 30 is mounted on an outer wall of the first connecting tube 10 and has a mounting portion 31 and a guiding portion 32.
The mounting portion 31 is mounted in the first through hole 110 and has a guide fastening hole 310 defined through the mounting portion 31.
The guiding portion 32 is aligned with the fitting hole 210 of the collar 21 of the first rotating alignment element 20 and has a guiding rail 320. The guiding rail 320 is defined in the guiding portion 32, communicates with the fitting hole 210.
The second connecting tube 50 is connected detachably to the first connecting tube 10 and has a second connecting section 51, a second mounting hole 500, an inserting hole 510 and a second through hole 511.
The second connecting section 51 is formed on the second connecting tube 50 and is mounted in the first connecting end 101.
The second mounting hole 500 is defined in the second connecting tube 50.
The inserting hole 510 is defined radially in the second connecting tube 50.
The second through hole 511 is defined radially through the second connecting tube 50.
The second rotating alignment element 60 is mounted radially on the second connecting section 51 of the second connecting tube 50 and has an alignment pin 65 and a mounting block 61.
The alignment pin 65 is formed on and protrudes axially from the second rotating alignment element 60, is engaged detachably with the alignment hole 220 of the alignment receptacle 22 and extends slidably in the guiding rail 320.
The mounting block 61 is formed on the second rotating alignment element 60 and is mounted securely in the second through hole 511.
With further reference to
With further reference to
The male terminals 73 correspond to and are slightly loosely mounted respectively in the first assembling holes 72 and each male terminal 73 has a first wire connecting portion 731 and an electric contacting probe 735. The first wire connecting portion 731 is formed on the male terminal 73 and has a through aperture 732 defined through the first wire connecting portion 731. Furthermore, an outer diameter of the first wire connecting portion 731 is slightly smaller than an inner diameter of the first assembling hole 72. The electric contacting probe 735 is mounted rotatably in and protrudes downward from the fire wire connecting portion 731, extends out of the first assembling hole 72, and is capable of slightly rotating relatively to a corresponding first wire connecting portion 731.
The fastening pins 75 are mounted respectively through the positioning holes 712 and respectively in the through apertures 732. An outer diameter of each fastening pin 75 is slightly smaller than an inner diameter of the through aperture 732.
The female connector 80 is mounted securely in the second mounting hole 500 of the second connecting tube 50 and has a female mounting bracket 81 and two female terminals 83.
The female mounting bracket 81 is mounted securely in the second mounting hole 500 and has two second assembling holes 82 and a female fastening hole 810. The second assembling holes 82 are defined in the female mounting bracket 81. Two electrode marks, such as “+” and “−” symbols or red and black signs, may be printed adjacent the peripheries of the second assembling holes 82. The female fastening hole 810 is defined in the female mounting bracket 81 such that a fastener such as a bolt can extend in the inserting hole 510 and the female fastening hole 810.
The female terminals 83 correspond to the male terminals 73, are mounted respectively in the second assembling holes 82 and each female terminal 83 has a second wire connecting portion 831 and an electric contacting socket 835.
The second wire connecting portion 831 is formed on the female terminal 83.
The electric contacting socket 835 is formed on the second wire connecting portion 831 and has a socket hole 838 defined in the electric contacting socket 835 and selectively engaged with the electric contacting probe 735 of a corresponding male terminal 73. The socket hole 838 has a horn-like widened portion formed on a periphery of the socket hole 838 to guide the electric contacting probe 735 of the corresponding male terminal 73 into the socket hole 838.
Furthermore, one of each electric contacting probe 735 and each electric contacting socket 835 has a resilient pressing portion formed thereon to tightly engage the electric contacting probe 735 with the socket hole 838 of the electric contacting socket 835 of a corresponding second terminal 83.
In the first embodiment of the Christmas tree electric connecting trunk device in accordance with the present invention, the resilient pressing portions are formed respectively on the electric contacting probes 735 of the male terminals 73. The resilient pressing portion of each male terminal 73 is multiple curved resilient strips 738 formed radially on the electric contacting probe 735. When the electric contacting probe 735 is inserted in the socket hole 838 of the electric contacting socket 835 of the corresponding second terminal 83, the curved resilient strips 738 tightly press against an inner surface of the socket hole 838. Furthermore, the first wire connecting portion 731 of each male terminal 73 is a sleeve and having a wire hole 730 defined in the sleeve for receiving a wire 76. The second wire connecting portion 831 of each second terminal 83 is a bolt on which a wire 86 and a nut 87 are mounted.
With further reference to
With further reference to
The present invention has the following advantages.
1. The first rotating alignment element 20 and the second rotating alignment element 60 precisely aligns the first connecting tube 10 and the second connecting tube 50 in rotation, which precisely engages the male terminals 73 of the male connector 70 respectively with the female terminals 83 of the female connector 80. Thus, the problem inadvertently bending and damaging the male terminals 73 due to misalignment between the male connector 70 and the female connector 80 would be completely averted.
2. The first terminals 73 mounted loosely in the male mounting bracket 71 and the female terminals 83 mounted securely in the female mounting bracket 81 may be engaged smoothly under slightly imprecise alignment, which facilitates engagement between the male terminals 73 and female terminals 83.
3. The resilient pressing portions on the electric contacting probes 735 of the male terminals 73 or the electric contacting socket 835 of the female terminals 83 allows the male terminals 73 to tightly connect to the female terminals 83, which ensures the tight connection between the male terminals 73 and the female terminals 83 and prevent issues of poor contact.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and 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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2016 2 0011459 U | Jan 2016 | CN | national |
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