This application claims priority of Chinese Patent Application No. 201921331457.5, filed on Aug. 15, 2019.
The disclosure relates to a wireless charging coil machine, and more particularly to a jig for use in a wireless charging coil machine.
For a wireless charging coil winding machine, a winding operation of a wireless charging coil typically includes three processes: heating, where a wireless charging wire is heated by a heating system to a predetermined temperature; coil winding, where the wireless charging wire is wound into a coil and self-bonded by heat; and cooling, where the wireless charging coil is cooled down by a cooling system.
Referring to
Therefore, the object of the disclosure is to provide a jig for use in a wireless charging coil machine that has relatively short heating and cooling processes.
According to the disclosure, a jig adapted for use in a wireless charging coil winding machine has a base portion and a main portion.
The base portion surrounds an axis and is adapted to be connected to the wireless charging coil winding machine.
The main portion is made of a heat-conductive material, extends from the base portion along the axis, and has an end wall, a plurality of passage-defining members, and a connecting member. The end wall is distal from the base portion along the axis, and has an end surface adapted for making contact with a wireless charging coil during operation of the wireless charging coil winding machine. The passage-defining members are connected to the end wall, are made by three-dimensional printing, and define a plurality of air passages. The connecting member is connected between the base portion and the passage-defining members, and is formed with a plurality of air slots. The air slots are arranged angularly around the axis and are in spatial communication with the air passages.
During operation of the wireless charging coil winding machine, air is supplied into the air passages, and flows out of the jig through the air slots for facilitating heat transfer between the end surface and the wireless charging coil.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:
Before the present disclosure is described in greater detail, it should be noted that where considered appropriate, reference numerals or terminal portions of reference numerals have been repeated among the figures to indicate corresponding or analogous elements, which may optionally have similar characteristics.
Referring to
The base portion 11 surrounds an axis (X) and is adapted to be connected to a spindle (not shown) of the wireless charging coil winding machine. The main portion 12 is made of a heat-conductive material, extends from the base portion 11 along the axis (X), and has an end wall 121, a plurality of passage-defining members 122, and a connecting member 123.
The end wall 121 is distal from the base portion 11 along the axis (X), and has an end surface 1211 adapted for making contact with a wireless charging coil during a winding operation of the wireless charging coil winding machine.
The passage-defining members 122 are connected to the end wall 121, are made by three-dimensional printing, and define a plurality of air passages 1220. In the present embodiment, the passage-defining members 122 are configured as fins for better heat dissipation, and are arranged angularly around the axis (X).
The connecting member 123 is connected between the base portion 11 and the passage-defining members 122, and is formed with a plurality of air slots 1230. The air slots 1230 are arranged angularly around the axis (X).
The connecting member 123 is further formed with a plurality of communication slots 125 (see
During the winding operation of the wireless charging coil winding machine, air is supplied into the air passages 1220, and flows out of the jig 1 through the air slots 1230 for facilitating heat transfer between the end surface 1211 and the wireless charging coil. More specifically, an annular shielding (not shown) is provided to surround and cover the air passages 1220. During a heating process or a cooling process of the winding operation, hot or cold air is supplied to fill a space between the annular shielding and the air passages 1220 and flows into all air passages 1220 before eventually flowing out of the jig 1 via the air slots 1230. In such a manner, uneven heating or cooling of the wireless charging coil is prevented.
Compared with the prior art, the jig 1 of the present embodiment has a greater heat-conducting surface area in virtue of the passage-defining members 122. In other words, there is more surface area to conduct heat transferred from the hot air to the jig 1 or from the jig 1 to the cold air. As a result, the heating and cooling processes of the winding operation become more efficient, thereby shortening a total cycle time of the winding operation.
It should be noted that, in the present embodiment, the main portion 12 is made by three-dimensional (3D) printing in a manner that the passage-defining members 122 are integrally formed in the main portion 12. However, in a variation of the present embodiment, the passage-defining members 122 may be made separately by 3D printing, and then mounted in the main portion 12. The passage-defining members 122 are made of materials such as copper or die steel.
Referring to
In the second embodiment, the main portion 12 further has an annular outer wall 124 surrounding the passage-defining members 122. The passage-defining members 122 includes a multilayer segment 1221 disposed within the outer wall 124, and a plurality of conducting poles 1222 extending parallel to the axis (X). Some of the conducting poles 1222 are distributed in the multilayer segment 1221 and cooperate with the multilayer segment 1221 to define the air passages 1220; the remainders of the conducting poles 1222 are distributed in the air slots 1230 of the connecting member 123.
The outer wall 124 is formed with a hot air inlet 1241 and a cold air inlet 1242 that are in spatial communication with the air passages 1220.
The communication slots 125 (see
During the heating process of the winding operation, the hot air flows into the jig 1 through the hot air inlet 1241, flows through the air passages 1220, and flows out of the jig 1 through the air slots 1230. Similarly, during the cooling process of the winding operation, the cold air flows into the jig 1 through cold air inlet 1242, flows through the air passages 1220, and flows out of the jig 1 through the air slots 1230.
Similar to the first embodiment, the jig 1 of the present embodiment has a greater heat-conducting surface area than that of the prior art in virtue of the passage-defining members 122 having the conducting poles 1222, and thus, the total cycle time of the winding operation can be shortened by the present embodiment as well.
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiments. It will be apparent, however, to one skilled in the art, that one or more other embodiments may be practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects, and that one or more features or specific details from one embodiment may be practiced together with one or more features or specific details from another embodiment, where appropriate, in the practice of the disclosure.
While the disclosure has been described in connection with what are considered the exemplary embodiments, it is understood that this disclosure is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
---|---|---|---|
201921331457.5 | Aug 2019 | CN | national |