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Indexable milling insert

An indexable milling insert, including an upperside, an underside parallel to an imaginary reference plane, and two cutting edges. Each cutting edge includes a cutting edge line and is formed between a chip surface included in the upperside and a first clearance surface extending between the upperside and the underside, the first clearance surface forming an acute, nominal first clearance angle (α) with a normal to the reference plane. Each cutting edge includes a main edge, which is at least partly convexly curved as viewed in plane elevation from above, and which extends from an initial end, which determines the maximal cutting depth of the milling insert, to a corner edge having a radius of curvature that is smaller than the radius of curvature of the main edge, the main edge rising in the direction from the initial end toward the corner edge such that the distance thereof to the underside successively increases in the direction. A second clearance surface is formed between the cutting edge line and the first clearance surface, the second clearance surface having a width of at most 0.3 mm and a nominal second clearance angle (λ) that is smaller than the first clearance angle. The second clearance surface is of uniform width and the second clearance angle decreases successively in the direction from the initial end toward the corner edge.
Owner:SANDVIK INTELLECTUAL PROPERTY AB

Ladder, in particular swimming-pool ladder

InactiveUS20070125602A1Easily assembleStable and resistantGymnasiumLaddersEngineering
Ladder, in particular for a swimming pool, comprising two uprights (1) and at least one rung (2) fastened to the uprights, the rung (2) comprising, at its ends, a tubular sleeve (3) coaxially surrounding the corresponding upright (1), and a tubular locking insert ring (4) being engaged between the upright (1) and the sleeve (3) in order to lock the rung (2) axially on the upright (1); the insert ring (4) possesses, at each rung end (2), an outer cross section decreasing continuously from the bottom upwards and has a longitudinal slot (5) on at least most of its height; the tubular sleeve (3) has an inner shape complementary to the outer shape of the ring (4), with an inner cross section decreasing continuously from the bottom upwards; a longitudinal groove (15) / key (16) assembly fixes the sleeve and the insert ring together in terms of rotation in order to stabilize the ladder.
Owner:ZODIAC EURO POOLS

Radiator module for commercial motor vehicles

A radiator module for commercial motor vehicles, in particular for agricultural tractors, has a support plate fixed to the chassis and at least one coolant radiator fixed to the support plate. The radiator has a radiator block and two coolant tanks oriented at opposite ends of the block with one tank adjacent the support plate and one spaced away form the support plate. In order to increase the cooling performance of the radiator module despite keeping the installation space above the support plate constant it is proposed that the coolant tank near the plate is constructed from two mutually complementing tank parts. The first tank part is assigned to the radiator block and has an encircling flange for pressure sealed attachment of the coolant radiator on the support plate. A second tank part is assigned to the support plate. By dividing the coolant tank into two parts, one on the radiator block and one on the support plate the effective heat sink area of the coolant radiator can be substantially increased. On the one hand the enlargement is due to the fact that the flange encircling the first tank part also serves to attach the coolant radiator on the support plate and in this region an assembly gap is therefore left between these components. On the other hand the enlargement is due to the fact that by moving part of the coolant tank under the surface of the support plate, the overall height of the coolant radiator is increased accordingly.
Owner:AGCO GMBH

Method and an apparatus for producing carbon dioxide and thermal energy

A method and apparatus for producing very pure carbon dioxide containing gas and thermal energy and the use of such apparatus and method are described. The production apparatus (PA) includes at least one catalytic combustion unit (2) with at least one catalytic burner (NCB) for catalytic combustion of fuel, for burning the fuel efficiently at a temperature of 350 to 850° C. in a retention time of 0.01 to 0.1 s, and at least one heat exchanger (RHE, THE) for at least partial transfer of heat from the gas (CO2G) formed in the combustion to the combustion air (AIR) and the fuel (PG) to be supplied into the catalytic burner (NCB). The production apparatus (PA) also includes at least one catalytic after burner (ACB) for at least partial after purification of the gas (CO2G) formed in the combustion.
Owner:FORMIA EMISSIONS CONTROL

Electroactive elastomer actuator and method for the production thereof

Described is an electroactive elastomer actuator having at least one first band-shaped electroactive elastomer coating and at least one first and one second surface electrode, which are separated by the at least one first electroactive elastomer coating. At least one second electroactive elastomer coating is applied to a surface of the second surface electrode facing away from the electroactive elastomer coating, which forms a band-shaped coating material jointly with the first and second surface electrodes and the first elastomer coating located between the two surface electrodes. The band-shaped coating material is wound around a flat coil form while forming at least two coating material layers. A surface of the first surface electrode facing away from the first elastomer coating makes surface contact with the second electroactive elastomer coating.
Owner:FRAUNHOFER GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG EV

Radiator module for commercial motor vehicles

A radiator module for commercial motor vehicles, in particular for agricultural tractors, has a support plate (7) fixed to the chassis and at least one coolant radiator (10) fixed to the support plate. The radiator has a radiator block (17) and two coolant tanks (19, 20) oriented at opposite ends of the block with one tank (20) adjacent the support plate (7) and one (19) spaced away form the support plate.
In order to increase the cooling performance of the radiator module (6) despite keeping the installation space above the support plate (7) constant it is proposed that the coolant tank near the plate (20) is constructed from two mutually complementing tank parts (26, 28). The first tank part (26) is assigned to the radiator block (17) and has an encircling flange (25) for pressure sealed attachment of the coolant radiator (10) on the support plate (7). A second tank part (28) is assigned to the support plate (7).
By dividing the coolant tank (20) into two parts, one on the radiator block (17) and one on the support plate (7) the effective heat sink area of the coolant radiator (10) can be substantially increased. On the one hand the enlargement is due to the fact that the flange (25) encircling the first tank part also serves to attach the coolant radiator on the support plate and in this region an assembly gap is therefore left between these components. On the other hand the enlargement is due to the fact that by moving part of the coolant tank under the surface of the support plate, the overall height of the coolant radiator is increased accordingly.
Owner:AGCO GMBH
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