The present invention relates to a braze bonded nail head lead, wherein the nail head lead and braze alloy preform are formed into a single use part for brazing.
Nail head leads and brazing discs are currently used in conjunction in the diode industry to facilitate brazing a nail head lead to a semiconductor chip. Conventional diode manufacturing is done by attaching a nail head lead 10 made of copper or silver to a molybdenum or tungsten stud joined to chip assembly 12 using a brazing disc 14 made from an alloy of silver, copper, and sometimes phosphorus. The assembly requires placing the components into a ceramic package 16, and then into a vacuum brazing operation as depicted in
As shown in
As such, there is a need in the art for a braze bonded nail head lead having a braze preform fastened to a nail head lead prior to manufacturing of the diode assembly, in order to improve efficiency, quality, and cost. Furthermore, the proposed manufacturing process aims to couple the nail head lead and the braze preform so as not to distort the braze preform having a thickness between 0.0015 and 0.003 inches.
In particular, welding techniques for bonding such a small braze preform would result in distortion of the braze preform by virtue of the heat effected zone of the weld spot. Such distortion results in a braze disc that would no longer lay flat. In addition, entrapment of gases common to welding would result in bond imperfections that would interfere with the functionality of the braze bond.
A braze bonded nail head lead wherein the nail head lead formation, the braze alloy preform formation, and the coupling of the braze disc preform to the nail head lead occur in subsequent steps.
In accordance with an embodiment of the invention, a braze bonded nail head includes a nail head lead having a first end and a braze alloy preform coupled to the first end of the nail head lead. Further, the nail head lead and the braze alloy preform are permanently coupled together by way of a weld joint to form a single use part for assembly brazing. According to one aspect of the invention, the weld joint is formed by way of micro-tig welding.
According to another aspect of the invention, one of the nail head lead and the braze alloy preform includes at least one protrusion extending therefrom, while the other of the nail head lead and the braze alloy preforms includes at least one interfit element configured to interfit with the at least one protrusion.
According to yet another aspect of the invention, at least one protrusion includes a center post extending from a first side of the first end of the nail head lead, and the at least one interfit element comprises an orifice formed in the center of the braze alloy preform. The orifice is configured to interfit with the center post.
In accordance with another embodiment of the invention, a method of manufacturing a braze bonded nail head lead includes providing a wire, forming the wire into a nail head lead, aligning the nail head lead with a braze alloy preform, stamping the braze alloy preform on the first side of the first end of the nail head lead, and coupling the braze alloy preform to a first side of the first end of the nail head lead by way of a weld joint. Forming the wire into a nail head lead includes forming a first end having the first side and a second side and a shaft extending from the second side of the first end.
According to one aspect of the invention, coupling the braze alloy preform to the first side of the first end of the nail head lead by way of a weld joint comprises precision micro-tig-welding the braze alloy preform to the first end of the nail head lead.
According to another aspect of the invention, the method further includes forming at least one protrusion on one of the first end of the nail head lead and the braze alloy preform, and forming at least one interfit element on the other of the first end of the nail head lead and the braze alloy preform. The at least one protrusion is configured to interfit with the at least one interfit element.
In accordance with yet another embodiment of the invention, a braze bonded nail head lead includes a nail head lead having a first end with a first side and a second side, a braze alloy preform coupled to the first side of the first end of the nail head lead, and a weld joint centrally located on the braze alloy preform and extending through the braze alloy preform to the first end of the nail head lead. The nail head lead also includes a shaft extending from a second side of the first end of the nail head lead. According to one aspect of the invention, the weld joint is formed via precision micro-tig-welding.
According to another aspect of the invention, the nail head lead includes a protrusion extending from the first end of the nail head lead, and the braze alloy preform includes an interfit element formed therethrough and configured to interfit with the protrusion of the nail head lead. A diameter of the protrusion and a diameter of the interfit element are approximately the same so that the braze alloy preform and the nail head lead are coupled to each other when the protrusion and the interfit element.
These and other aspects and objects of the present invention will be better appreciated and understood when considered in conjunction with the following description and the accompanying drawings. It should be understood, however, that the following description, while indicating preferred embodiments of the present invention, is given by way of illustration and not of limitation. Many changes and modifications may be made within the scope of the present invention without departing from the spirit thereof, and the invention includes all such modifications. Further, although many methods and materials similar or equivalent to those described herein may be used in the practice of the present invention, a few such suitable methods and materials are described in greater detail below.
A clear conception of the advantages and features constituting the present invention, and of the construction and operation of typical mechanisms provided with the present invention, will become more readily apparent by referring to the exemplary, and therefore non-limiting, embodiments illustrated in the drawings accompanying and forming a part of this specification, wherein like reference numerals designate the same elements in the several views, and in which:
In describing the preferred embodiment of the invention which is illustrated in the drawings, specific terminology will be resorted to for the sake of clarity. However, it is not intended that the invention be limited to the specific terms so selected and it is to be understood that each specific term includes all technical equivalents which operate in a similar manner to accomplish a similar purpose.
The present invention and the various features and advantageous details thereof are explained more fully with reference to the non-limiting embodiments described in detail in the following description.
First referring to
Next,
As will be described later, the braze alloy preform 40 is stamped on the first side 26 of the first end 22 of the nail head lead 20. Subsequently, the braze alloy preform 40 and the nail head lead 20 are coupled together via a joint 46 formed by welding. In the representative embodiment of the invention, the joint 46 is centrally located on the braze alloy preform 40 and extends through the braze alloy preform 40 to the first end 22 of the nail head lead 20 in order to permanently couple the braze alloy preform 40 to the nail head lead 20.
Now referring to
In representative embodiments of the invention, the first end 50 of the nail head lead 48 may have a thickness 64 ranging from 0.007 to 0.015 inches±0.002 inches. The nail head lead 48 also includes a shaft 66 extending from a second side 68 of the first end 22 of the nail head lead 20. The nail head lead 48 may have a length 76 ranging from 0.55 to 1.10 inche±0.010 inches. In addition, the shaft 66 may have a diameter 70 ranging from 0.020 to 0.060 inches±0.001 inches.
As shown in
While
Next,
Next,
In the representative embodiment of the invention, each nail head lead may be formed using a 4-slide machine which includes a second slide that engages to grip a wire and advance it into a die zone, a third slide that engages to form the wire into a nail head lead, and a fourth slide that engages to cut the finished nail head lead to size. When completed, all slides open and the finished nail head lead is ejected. A braze alloy preform may then be coupled to finished the nail head lead.
With respect to the embodiment shown in
In alternative embodiments of the invention, such as those shown in
In regard to the embodiment depicted in
Further, in the embodiment shown in
In alternative embodiments of the invention, the braze alloy preform 26 may be coupled to the nail head lead 20 via an adhesive, 3-D printing, electroplating, direct cladding, and other coupling methods. Additionally, braze alloy preforms 26 and nail head leads 20 using these alternative coupling methods may or may not include protrusions 24 and interfit elements as described above.
In some embodiments of the invention, the nail head lead 48 is formed, the braze alloy preform 60 is formed, and the nail head lead 48 and the braze alloy preform are coupled together in a single simultaneous step. In other embodiments of the invention, each formation and coupling step may be performed separately.
It is further contemplated that in other embodiments of the invention, protrusions 54 and interfit elements 62 such as those shown in
In the representative embodiments of the invention, it is contemplated that the nail head lead 20, 48 comprises at least one of silver or copper. However, it is also contemplated that other materials known in the art may be used as well. Similarly, while the representative embodiments of the invention include a braze alloy preform 40, 60 comprising an alloy of at least one of silver and copper and phosphorus, it is also contemplated that other materials known in the art may also be used.
Now referring to
In step 100, the nail head leads are oriented first end up in a feeder track, such as a bowl feeder. As the feeder track moves the nail head leads through the system, each nail head lead is aligned underneath a braze disc stamping tool, which includes braze alloy preform. In step 102, the braze disc stamping tool stamps a braze alloy preform onto the first side of the first end of the nail head lead. In one embodiment of the invention, the feeder track includes a holder for each nail head lead that is configured to receive the braze alloy preform and maintain its position on the first end of the nail head lead. In embodiments of the invention using the nail head leads 48 shown in
In one embodiment of the invention, the braze disc stamping tool is configured to receive a pancake coil of strip comprising the material of the braze alloy preform. Subsequent to stamping the braze alloy preform onto the first side of the first end of the nail head lead, the braze disc stamping tool cuts the braze alloy preform from the pancake coil of strip.
Next, step 104 feeds the nail head lead and its respective braze alloy preform to a micro-welding location. In step 106, the braze alloy preform and the nail head lead are micro-welded to form the joint 46. While
The above described process and later brazing process may be performed in a vacuum setting. However, it is also contemplated that either process may be performed in an atmosphere setting. In an atmosphere setting, a flux may be used to prepare the surfaces to be joined.
Other objects, features and advantages of the present invention will be apparent to those skilled in the art. The invention described herein is not limited in any manner by the descriptions, definitions or characteristics of any brazing material or the metals or alloys or ceramics that may be joined thereby, of any flux composition. Any brazing flux or brazing material may be used for the purposes of the invention.
It is specifically intended that the present invention not be limited to the embodiments and illustrations contained herein, but includes modified forms of those embodiments including portions of the embodiments and combinations of elements of different embodiments as come within the scope of the following claims.
This application claims priority to U.S. Provisional Application No. 62/398,047, filed on Sep. 22, 2016, the entire contents of which are each hereby expressly incorporated by reference into this application.
Filing Document | Filing Date | Country | Kind |
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PCT/US2017/052975 | 9/22/2017 | WO | 00 |
Number | Date | Country | |
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62398047 | Sep 2016 | US |