The present invention relates to a welding connection element, and more particularly to a welding connection element capable of completing fastening connection and unfastening of at least two objects, achieving repeated quick fastening connection and unfastening.
To couple at least one object, lock connection is usually performed using a screw so as to couple the object.
However, although being capable of coupling at least one object into a form that is not easily separated, the conventional fixing means above may result in a complicated disassembly process after the assembly.
In view of the issues and drawbacks of the prior art, the inventor has dedicated to research and development of a welding connection element so as to complete fastening connection and unfastening of at least two objects, achieving the object of repeated quick fastening connection and unfastening.
To achieve the above and other objects, the present invention provides a welding connection element including a body and an assembly portion. The body includes a fitting fastening portion. Further, the welding connection element has a welding surface configured to be welding connected and assembled to an object.
The present invention further provides a welding connection element including a body and an assembly portion. The body includes a fitting fastening portion. The welding connection element is configured to be arranged at a carrier, picked up by a tool, compared with an assembly position of an object by a comparison device, and placed at the assembly position by the tool so as to be assembled to the object.
The present invention further provides a welding connection element including a body and an assembly portion. The assembly portion is for assembling to an object. The body includes a fitting fastening portion having an elastic withdrawal space. The elastic withdrawal space is capable of elastically withdrawing two or more fastening portions, so as to enable the fastening portions to be receivingly fastened in another object.
The present invention further provides a welding connection element including a body, an assembly portion and a fitting fastening portion. The welding connection element has a welding surface configured to be welded to a welding surface of an object. The welding surface of the object is provided in advance with a solder layer configured to be heated and to welding connect the welding connection element and the welding surface of the object.
The present invention further provides a welding connection element including a body, an assembly portion and a fitting fastening portion. The welding connection element has a welding surface configured to be welding connected to a welding surface of an object. The welding surface of the object is provided in advance with a solder layer configured to be heated and to welding connect the welding connection element and the welding surface of the object. A non-welding surface of the object is under the welding surface of the object.
The present invention further provides a welding connection element including a body, an assembly portion and a fitting fastening portion. The welding connection element has a welding surface configured to be welding connected to a welding surface of an object. The welding surface of the object is provided in advance with a solder layer configured to be heated and to welding connect the welding connection element and the welding surface of the object. The welding connection element is provided in advance at a carrier, taken out by a tool, compared with an assembly position of the object by a comparison device, and placed at the assembly position by the tool, so as to be assembled to the object.
The present invention further provides a welding connection element including a body and an assembly portion. The assembly portion is configured to be assembled to an object. The body includes a fitting fastening portion having an elastic withdrawal space. The elastic withdrawal space is capable of withdrawing two or more fastening portions, so as to enable the fastening portions to be fittingly fastened in another object. The welding connection element has a welding surface configured to be welding connected to a welding surface of the object. The welding surface of the object is provided in advance with a solder layer configured to be heated and to welding connect the welding connection element and the welding surface of the object. The welding connection element is provided in advance at a carrier, taken out by a tool, compared with an assembly position of the object by a comparison device, and placed at an assembly position of the object by the tool, so as to be assembled to the object.
The present invention further provides a welding connection element including a body and an assembly portion. The assembly portion is for assembling to an object. The body includes a fitting fastening portion having an elastic withdrawal space. The elastic withdrawal space is capable of elastically withdrawing two or more fastening portions so as to enable the fastening portions to be receivingly fastened in another object. The welding connection element has a welding surface configured to be welding connected to a welding surface of the object. The welding surface of the object is provided in advance with a solder layer configured to be heated and to welding connect the welding connection element and the welding surface of the object.
The present invention further provides a welding connection element including a body and an assembly portion. The assembly portion is configured to be assembled to an object. The body includes a fitting fastening portion having an elastic withdrawal space. The elastic withdrawal space is capable of elastically withdrawing two or more fastening portions so as to enable the fastening portions to be receivingly fastened in another object. The welding connection element is provided in advance at a carrier, taken out by a tool, compared with an assembly position of the object by a comparison device, and placed at the assembly position by the tool, so as to be assembled to the object.
The present invention further provides a welding connection element including a body and an assembly portion. The assembly portion is for assembling to an object. The body includes a fitting fastening portion, which has an elastic withdrawal space configured to enable the fastening portion to be receivingly fastened in another object. The welding connecting portion is provided in advance at a carrier, taken out by a tool, compared with an assembly position of the object by a comparison device, and placed at the assembly position by the tool, so as to be assembled to the object.
The present invention further provides a welding connection element including a body and an assembly portion. The assembly portion is configured to be assembled to an object. The body includes a fitting fastening portion, which has an elastic withdrawal space configured to enable to the fastening portion to be receivingly fastening in another object. The welding connection element has a welding surface configured to be welding connected to a welding surface of the object. The welding surface of the object is provided in advance with a solder layer configured to be heated and to welding connect the welding connection element and the welding surface of the object.
In the foregoing welding connection element, a support portion is provided below the fastening portion of the body, and is configured to fittingly engage another object receivingly fastened.
In the foregoing welding connection element, the assembly portion includes a shoulder, which is capable of supporting an assembled portion of the object.
The foregoing welding connection element is assembled to an assembled portion of the object. The assembled portion is an insertion portion, a recess, a protrusion, a slot, a hole or a planar surface portion.
In the foregoing welding connection element, the welding surface of the object is arranged on a planar surface, on a surface, in an insertion portion or on a surface of an insertion portion of the object.
In the foregoing welding connection element, the fitting fastening portion includes two or more fastening portions, between which an elastic withdrawal space is present. The elastic withdrawal space is capable of elastically withdrawing to enable the fastening portions to be receivingly fastening in another object.
In the foregoing welding connection element, the welding surface of the welding connection element is provided at the assembly portion, and is configured to be heated and welding connected to the welding surface of the object.
In the foregoing welding connection element, the welding surface of the welding connection element is provided at the assembly portion. The welding surface of the object is provided in advance with a solder layer configured to be heated and to weld connect the welding connection element and the welding surface of the object.
The foregoing welding connection element is provided in advance at a carrier, which includes a cover. The cover is opened, and the welding connection element is picked up and placed at the object by the tool for welding connection.
In the foregoing welding connection element, the welding connection element is provided in advance at a carrier, taken out by a tool, compared with an assembly position of the object by a comparison device, and placed at the assembly portion by the tool, so as to be assembled to the object.
In the foregoing welding connection element, the welding surface of the welding connection element, or the welding surface of the object configured for assembly and welding connection, is a copper layer, a tin layer or a nickel layer.
The foregoing welding connection element is picked up by a tool from a carrier provided in advance, compared with an assembly position of the object by a comparison device, and placed at the assembly position by the tool, so as to be assembled with the object. The tool is a vacuum suction tool, fastener, a fixture or a magnetic tool.
The foregoing welding connection element is picked up by a tool from a carrier provided in advance, and compared and placed at an assembly position by a comparison tool. The comparison tool is a visual comparison device, an image comparison device, a distance comparison device or a computer comparison device.
In the foregoing welding connection element, the fitting fastening portion includes two or more fastening portions, between which an elastic withdrawal space is present. Each of the fastening portions has a guiding surface configured to enable the elastic withdrawal space to elastically withdraw while guiding another object to be receivingly fastened.
In the foregoing welding connection element, the fitting fastening portion is a thread body, a protrusion fastener, a column body, an inner fastener or an outer fastener.
The foregoing welding connection element is provided with an intermediate body. The welding connection element is picked up by a tool via the intermediate body, compared with an assembly position of the welding connection element and the object, placed at the assembly position and welding connected to the object.
The foregoing welding connection element is provided with an intermediate body. The welding connection element is picked by a tool via the intermediate body and placed at the assembly position of the object for welding connection, and the intermediate body is then removed.
In the foregoing welding connection element, the intermediate body is a plate or a fastener.
In the foregoing welding connection element, a support portion is provided between the fastening connecting portion and the assembly portion. The support portion is configured to define the position for the assembly portion to be assembled to the object, and support the position of another object that is receivingly fastened in the fitting fastening portion.
In the foregoing welding connection element, the object is a printed circuit board.
The foregoing welding connection element is provided at a carrier, which is a feed belt or a feed tray.
The foregoing welding connection element is picked up at the assembly portion by the tool, and placed at the assembly position of the object.
In the foregoing welding connection element, the assembly portion has s width more than that of an assembled portion of the object, and the fitting fastening portion has a width less than that of the assembled portion of the object. The fitting fastening portion is first inserted in the assembled portion and then assembled to the object by the assembly portion.
In the foregoing welding connection element, a limiting portion of the body has a width less than that of an assembled portion of the object and more than that of the fitting fastening portion, and is configured to be inserted at the assembled portion so as to limit a space and a position corresponding to the assembled portion.
In the foregoing welding connection element, the body has an elastic element. The elastic element presses the fitting fastening portion vertically or horizontally to provide a reciprocal elastic force.
In the foregoing welding connection element, the fitting fastening portion is a fastener formed integrally with the body. Alternatively, the fitting fastener is a notch between the fastening portions and is an integrally formed with the body, the fitting fastening portion is a fastener assembled at the body, or the fitting fastener is a sphere assembled at the body.
In the foregoing welding connection element, the fitting fastening portion has an outer diameter corresponding to a fastening connected structure of another object, and is configured to be shrunken by applying interference from bottom-up or from top-down to being capable of passing through the fastening connected structure, and then restoringly expanded to being fastened to the fastening connected structure, so as to be fastening connected to the another object.
The foregoing welding connection element further includes a body and an assembly portion. The assembly portion is configured to be assembled to an object. The body includes a fitting fastening portion having an elastic withdrawal space. The elastic withdrawal space is capable of elastically withdrawing two or more fastening portions, so as to enable the fastening portions to be receivingly fastened in another object.
In the foregoing welding connection element, the fitting fastening portion has an outer diameter more than that of a fastening connected structure of another object, and is configured to be shrunken by horizontally applying interference to being capable of passing through the fastening connected structure, and then restoringly expanded to being fastened by the fastening connected structure to another object.
In the foregoing welding connection element, the fitting fastening portion has an outer diameter more than that of an opening portion of a fastening connected structure of another object to be fastened to, and is configured to be shrunken by horizontally applying interference to being capable of passing through the opening portion of the fastening connected structure, and then restoringly expanded to being fastened at a receivingly fastening portion larger than the opening portion of the fastening connected structure, so as to be fastening connected to another object.
Thus, the welding connection element of the present invention is capable of fastening connecting or unfastening to complete fastening connection or unfastening of at least two object, achieving the object of repeated quick fastening connection or unfastening.
To fully understand the objects, features and functions of the present invention, details of the present invention are given in specific embodiments with the accompanying drawings under.
Referring to
The fitting fastening portion 13 of the present invention has an elastic withdrawal space 132 (as shown in
Further, the fitting fastening portion 13 has an outer diameter more than that of a fastening connected structure of the another object 6, and is configured to be shrunken by applying interference from top-down or bottom-up to being capable of passing through the fastening connected structure, and to be restoringly expanded and fastened to the fastening connected structure, so as to enable the fastening portions 131 to be fastening connected to the another object 6.
The welding connection element 1 of the present invention is arranged at a carrier 3 (or be provided in advance at a carrier 3), picked up by a tool 4, compared with an assembly position of the object 2 by a comparison device 5, and placed at the assembly position by the tool 4, so as to enable the welding connection element 1 to be assembled to the object 2 (as shown in
The welding connection element 1 of the present invention has a welding surface 14 configured to be welding connected to a welding surface 21 of the object 2. The welding surface 21 of the object 2 is provided in advance with a solder layer 22 configured to be heated and to welding connect the welding surfaces 13 and 21 of the welding connection element 1 and the object 2, enabling the welding connection element 1 to be assembled to the object 2. A non-welding surface 23 of the object 2 is under the welding surface 21 of the object 2. The welding surface 21 of the object 2 is arranged on a planar surface, on a surface, in an insertion potion or on a surface of an insertion surface. Further, the welding connection element 1 is assembled to an assembled portion 24 of the object 2. The assembled portion 24 is an insertion portion (as shown by parts a and b in
To put to use (as shown in
In one embodiment of the present invention, a support portion 15 (as shown in
In one embodiment of the present invention, the assembly portion 12 includes a shoulder 16 (as shown in
In one embodiment of the present invention, the welding surface 14 of the welding connection element 1 is provided at the assembly portion 12, and is configured to be heated and welding connected to the welding surface 21 of the object 2. Thus, the welding connection element 1 is enabled to be stably coupled with the another object 6.
In one embodiment of the present invention, the fitting fastening portion 13 may a thread body (as shown by part a in
Further, the fitting fastening portion 13 is a fastening portion integrally formed with the body 11. Alternatively, the fitting fastening portion 13 is a notch between the fastening portions and is an integrally formed with the body 11, the fitting fastening portion 13 is a fastener assembled at the body 11, or the fitting 13 fastening portion is a sphere assembled at the body 11.
In one embodiment of the present invention, the welding surface 14 of the welding connection element 1, or a welding surface 21 of the object 2 configured for assembly and welding connection, is a copper layer, a tin layer or a nickel layer. Thus, the present invention is enabled to better meet requirements of actual applications.
In one embodiment of the present invention, the carrier 3 includes a cover 31 (as shown in
In one embodiment of the present invention, the welding connection element 1 is provided at the carrier 3, which is a feed belt (as shown by part a in
In one embodiment of the present invention, the tool 4 is a vacuum suction tool, a fattener, a fixture or a magnetic fool. Thus, the present invention is enabled to better meet requirements of actual applications.
In one embodiment of the present invention, the comparison device 5 is a visual comparison device, an image comparison device, a distance comparison device or a computer comparison device. Thus, the present invention is enabled to better meet requirements of actual applications.
As shown in
As shown in
As shown in
In one embodiment of the present invention, once the welding connection element 1 is picked up by the tool 4 via the intermediate body 17, placed at the assembly position of the object 2 and welding connected, the intermediate body 17 may be removed, so as to fastening connect the another object 6 by the fitting fastening portion 13. Thus, the present invention is enabled to better meet requirements of actual applications.
In one embodiment of the present invention, the intermediate body 17 is a plate (as shown in
As shown in
In one embodiment of the present invention, the assembly portion 12 has a width more than that of the assembled portion 24 of the object 2, and the fitting fastening portion 13 has a width less than that of the assembled portion 24 of the object 2. The fitting fastening portion 13 is first inserted in the assembled portion 24, and is the assembled to the object 2 by the assembly portion 12. Thus, the present invention is enabled to better meet requirements of actual applications.
In one embodiment of the present invention, a limiting portion 111 of the body 11 has a width less than that of the assembled portion 24 of the object 2 and more than that of the fitting fastening portion 13, and is configured to be inserted in the assembled portion 24, so as to limit the space and position corresponding to the assembled portion 24. Thus, the present invention is enabled to better meet requirements of actual applications.
As shown in
In one embodiment of the present invention, the elastic element 18 may be provided horizontally between the body 11 and the fitting fastening portion 13 (as shown in
Further, the fitting fastening portion 13 has an outer diameter more than that of a fastening connected structure of another object, and is configured to be shrunken by horizontally applying interference to being capable of passing through the fastening connected structure, and then restoringly expanded to being fastened to the fastening connected structure, so as to enable the fastening portions 131 to be fastening connected to the another object (as shown in
As shown in
While the invention has been described by way of example and in terms of the embodiments, a person skilled in the art should understood that the embodiments are for illustrating the present invention and are not to be construed as limitations to the scope of the present invention. It should be noted that, equivalent modifications and substitutions made to the embodiments are to be encompassed with the scope of the present invention. Therefore, the protection scope of the present invention is to be accorded with the appended claims.
This application is a divisional patent application of U.S. application No. 16/876,521 filed on May 18, 2020, which is a continuation-in-part patent application of U.S. application No.16/740,632 filed on Jan. 13, 2020, which is a CIP of U.S. application No. 15/132,357 filed on Apr. 19, 2016, the entire contents all of which are hereby incorporated by reference for which priority is claimed under 35 U.S.C. § 120.
Number | Date | Country | |
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Parent | 16876521 | May 2020 | US |
Child | 18132465 | US |
Number | Date | Country | |
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Parent | 16740632 | Jan 2020 | US |
Child | 16876521 | US | |
Parent | 15132357 | Apr 2016 | US |
Child | 16740632 | US |