Abstract:
Exemplary piston assemblies and methods of making the same are disclosed. An exemplary piston may include a piston body defining a piston axis, the piston body having a skirt and forming a lower surface of a cooling gallery. The body may include radially inner and outer body mating surfaces. The piston may further include a cooling gallery ring cooperating with the piston body to form the cooling gallery. The piston body and cooling gallery ring may be joined together along radially inner and radially outer interface regions to form a generally one-piece piston assembly. In some exemplary approaches, mating surfaces of the body and ring may be positioned adjacent a support surface configured to inhibit or prevent weld spatter formed in a process joining the ring and body from the cooling gallery.
Abstract:
Pistons and methods of making the same are disclosed. An exemplary piston assembly may include a piston crown and skirt. The crown may include a crown collar wall extending downward toward a free end of the crown collar wall. The skirt may include a pair of oppositely disposed pin bosses that each define piston pin bores configured to receive a piston pin for securing a connecting rod between the pin bosses. The skirt may further include a radially inner skirt mating surface abutted along a radially inner interface region with the radially inner crown mating surface, and a radially outer skirt mating surface abutted along a radially outer interface region with the radially outer crown mating surface such that a cooling gallery is substantially enclosed. The skirt may further include an inner collar wall extending upwards to the free end of the crown collar wall.
Abstract:
A substrate (20) having one or more shaped effusion cooling holes formed therein is disclosed. Each shaped cooling hole has a bore (53) angled relative to an exit surface (37) of the combustor liner. One end of the bore is an inlet (13) formed in an inlet surface (36) of the combustor liner. The other end of the bore is an outlet (11) formed in the exit surface (37) of the combustor liner. The outlet has a shaped portion that expands in only one dimension. Also disclosed are methods for making the shaped cooling holes.
Abstract:
The invention relates to a method for producing a piston of an internal combustion engine, wherein the piston has a combustion bowl comprising a combustion bowl rim, and the combustion bowl rim is hardened by being remelted in a first step by means of an inductive energy supply and in a further step by means of a laser beam. According to the invention, the laser beam is deflected during a rotary, progressive motion relative to the piston.
Abstract:
Die vorliegende Erfindung betrifft ein Ramm- und Bohrgerät mit einem Mäkler, einer Umlenkvorrichtung zum Umlenken eines Seils, welche am Kopf des Mäklers verschwenkbar zwischen zumindest einer Transportposition und zumindest einer Arbeitsposition angelenkt ist, wobei die Umlenkvorrichtung um eine schräg auf der Erstreckungsachse des Mäklers stehende Achse drehbar ist.
Abstract:
The invention relates to a method for providing a component of a large machine, especially a piston head or an outlet valve head of a large two-stroke diesel engine, with a protective coating (4) which is applied to the corresponding surface (2 or 14) by means of surfacing. According to the ivnention, the method can be carried out in an economical and careful manner due to the fact that the large machine component provided with the protective coating (4) is cooled during the surfacing process.