B23K2101/35

Soldering a conductor to an aluminum metallization

A method of making a semiconductor including soldering a conductor to an aluminum metallization is disclosed. In one example, the method includes substituting an aluminum oxide layer on the aluminum metallization by a substitute metal oxide layer or a substitute metal alloy oxide layer. Then, substitute metal oxides in the substitute metal oxide layer or the substitute metal alloy oxide layer are at least partly reduced. The conductor is soldered to the aluminum metallization using a solder material.

Electrically conductive copper components and joining processes therefor

Methods of manufacturing electrically conductive copper components for electric devices and method of joining electrically conductive copper components are provided. Each of the electrically conductive copper components are manufactured to include a preexisting coating of joining material located on or adjacent to a joining surface thereof.

PROCESS FOR PRODUCING ALUMINUM MEMBER AND ALUMINUM MEMBER
20200406399 · 2020-12-31 ·

Provided is a process for producing an aluminum member, including irradiating a surface of an aluminum raw material member including, as a component, aluminum or aluminum alloy and unavoidable impurities with a top-hat laser beam at an intensity of from 110 MW/cm2 to 320 MW/cm2, wherein the aluminum member includes, in sequence, a base layer containing, as a component, aluminum or aluminum alloy and having unavoidable impurities; an oxide layer containing an aluminum oxide; and a porous layer containing a porous aggregate of aluminum metal particles.

METHOD FOR WELDING PRETREATMENT OF COATED STEEL SHEETS
20200398377 · 2020-12-24 ·

The disclosure relates to a method for welding sheets provided with an aluminum silicon anti-corrosion coating, wherein chronologically before the welding, the aluminum silicon layer on the sheets in the region of the weld joint and the underlying intermetallic interlayer between the base material and the anti-corrosion coating is passed over with a laser and as a result, on the one hand, material of the aluminum silicon layer and the underlying intermetallic interlayer is vaporized and aspirated and on the other hand, a reaction with the base material extending into the base material is produced so that a metallic reaction ablation layer or alloying ablation layer is produced, which has iron and possibly alloying elements from the base material and aluminum silicon from the aluminum silicon layer and the intermetallic interlayer, the reaction layer reaching a thickness of 5 m to 100 m.

Control of intermetallic compound growth in aluminum to steel resistance welding

A method of resistance spot welding a workpiece stack-up that includes an aluminum workpiece and an overlapping adjacent steel workpiece so as to minimize the thickness of an intermetallic layer comprising FeAl intermetallic compounds involves providing reaction-slowing elements at the faying interface of the aluminum and steel workpieces. The reaction-slowing elements may include at least one of carbon, copper, silicon, nickel, manganese, cobalt, or chromium. Various ways are available for making the one or more reaction-slowing elements available at the faying interface of the aluminum and steel workpieces including being dissolved in a high strength steel or being present in an interlayer that may take on a variety of forms including a rigid shim, a flexible foil, a deposited layer adhered to and metallurgically bonded with a faying surface of the steel workpiece, or an interadjacent organic material layer that includes particles containing the reaction-slowing elements.

Surface modified electrodes
10827936 · 2020-11-10 · ·

A method for forming an implantable electrode (100) includes exposing a conductive surface of the electrode (100) with a first application of an excimer laser (215) and creating a first surface texture on a conductive surface with a second application of the excimer laser. In one example, a low impedance implantable electrode includes a conductive surface and a coating disposed over the conductive surface. The coating may have a lower contact impedance with biological tissue than the conductive surface. At least a portion of the coating has an excimer laser textured surface.

Laser brazing method and production method for lap joint member

The present invention provides a method for laser brazing an Al alloy to a steel sheet so as to produce a lap joint member that excels in bonding strength with respect to the Al alloy. The laser brazing method includes a brazing step of forming a brazed part (9) for bonding an Al alloy (3) to a hot dip Zn-based alloy coated steel sheet (1) in which a coating layer (2) contains 1.0 to 22.0% by mass of Al and a coating weight per surface is 15 to 250 g/m.sup.2.

Electrically conductive base material and layer composite, method for producing the same, and use of the same

The invention relates to an electrically conductive base material (112) for receiving a coating material (114) which comprises electrically conductive particles (116), a method for the production thereof and the use thereof as current collector for an electrode material comprising electrically conductive particles. The base material (112) comprises a metal foil, wherein at least one surface (118) of the base material (112) provided for receiving the electrically conductive particles (116) has a first structure (120) and a second structure (122), wherein the first structure (120) has first ridges (124) and/or first grooves (126) relative to the surface (118) of the base material (112) and wherein the second structure (122) has second ridges (128) and/or second grooves (130) relative to the surface (132) of the first structure (120). Herein, the first ridges (124) and/or the first grooves (126) have first dimensions, wherein the second ridges (128) and/or the second grooves (130) have second dimensions, wherein the first dimensions exceed the second dimensions by a factor of at least 10. The invention further relates to an electrically conductive layer composite (110) which comprises the base material (112) and a coating material (114) comprising electrically conductive particles (116), a method for the production thereof and the use thereof in a secondary element of a rechargeable battery, in particular in a lithium ion battery. Herein, the particles (116) in the coating material (114) adhere to first ridges (124) and/or to first grooves (126) in a first structure (120) on the surface (118) of the base material (112) and/or to second ridges (128) and/or to second grooves (130) in a second structure (122) on the surface (132) of the first structure (120). A good bonding of the coating material (114) to the base material (112) reduces or prevents a layer delamination of the coating material (114) from the base material (112).

Laser ablation system having a moveable carriage with clamping system configured to clamp and seal against a workpiece

A laser ablation system comprises a volume configured to contain a workpiece and a carriage configured to move within the volume relative to a workpiece. The carriage comprises a clamping system, a laser enclosure, and a laser ablation work head within the laser enclosure. The clamping system is configured to clamp the workpiece and seal against a portion of the workpiece.

Robotic Laser and Vacuum Cleaning for Environmental Gains
20200254494 · 2020-08-13 ·

Methods, systems, and apparatuses are disclosed for the selective and controlled removal of debris from specific areas of a substrate outer surface without adversely impacting the substrate outer surface, including substrate outer surface coatings, and returning an actual substrate outer surface profile containing affixed debris to a predetermined substrate outer surface profile by comparing a library of predetermined profiles to an actual substrate outer surface profile in real time.