Abstract:
Hydrocarbon traps used to trap then release unburned hydrocarbons upon startup of a spark ignition internal combustion engine are sensitive to degradation if exposed to normal temperature exhaust gases. On board diagnostics of HC traps are provided by the invention, by incorporating a heat sensitive oxygen storage material in the HC trap material, and using conventional determination of OSC efficiency to determine if the HC trap material has been exposed to excessive temperature.
Abstract:
An acidic detergent composition can be used for removing soils on articles in a dish machine. The acidic detergent composition may be inserted into a dish machine dispenser and a use solution may be formed that contacts a soil on an article and removes the soil on the article. The composition comprises an acid and a surfactant. The composition may be a solid, liquid, gel, paste or pellet.
Abstract:
A filter for filtering particulate matter (PM) from exhaust gas emitted from a compression ignition engine, which filter comprising a porous substrate having inlet surfaces and outlet surfaces, wherein the inlet surfaces are separated from the outlet surfaces by a porous structure containing pores of a first mean pore size, wherein the porous substrate is coated with a wash coat comprising a plurality of solid particles comprising a molecular sieve promoted with at least one metal wherein the porous structure of the wash coated porous substrate contains pores of a second mean pore size, and wherein the second mean pore size is less than the first mean pore size.
Abstract:
An apparatus for laminating a glass sheet assembly includes a first glass sheet arranged in an opposing parallel configuration with respect to a second glass sheet, with a heat sensitive layer of adhesive laminating film disposed between the first glass sheet and the second glass sheet, the glass sheet assembly having a leading edge and a trailing edge and being of a fixed length and width, the laminating film having a bonding temperature at which melting of the laminating film is initiated. The apparatus includes a heating chamber configured to heat the glass sheet assembly, the heating chamber including an array of heating elements to cause differential heating along the length of the glass sheet assembly such that the temperature at the leading edge of the glass sheet assembly is higher than the temperature at the trailing edge of the glass sheet assembly with uniform heating across the width of the glass sheet assembly, and a pressing station configured to press the first and second glass sheets toward each other to purge air or moisture from the glass sheet assembly until the first and second glass sheets adhere together via the adhesive laminating film, where the pressing at the pressing station is initiated at the leading edge of the glass sheet assembly when the temperature of the laminating film at the leading edge of the glass sheet assembly reaches the bonding temperature of the laminating film.
Abstract:
A glass sheet assembly including a first glass sheet arranged in an opposing parallel configuration with respect to a second glass sheet is provided, with a heat sensitive layer of adhesive laminating film disposed between the first glass sheet and the second glass sheet, the glass sheet assembly having a leading edge and a trailing edge and being of a fixed length and width, the laminating film having a bonding temperature at which melting of the laminating film is initiated. The glass sheet assembly is heated using an array of heating elements so as to cause differential heating along the length of the glass sheet assembly such that the temperature at the leading edge of the glass sheet assembly is higher than the temperature at the trailing edge of the glass sheet assembly with uniform heating across the width of the glass sheet assembly. The first and second glass sheets are pressed toward each other to purge air or moisture from the glass sheet assembly until the first and second glass sheets adhere together via the adhesive laminating film, the step of pressing being initiated at the leading edge of the glass sheet assembly when the temperature of the laminating film at the leading edge of the glass sheet assembly reaches the bonding temperature of the laminating film.
Abstract:
A seat belt retractor (10) has an actuator (14) for unlocking and locking the seat belt retractor (10). An inertial sensor (18) detects changes in vehicle acceleration and interacts with the actuator (14) to lock and unlock the seat belt retractor (10). The inertial sensor (18) has one inertial sensor mass, each mass (26, 27, 29, 30, 32, 33) has a wide portion (70) and a narrow portion (72). Preferably each inertial sensor mass (26, 27, 29, 30, 32, 33) has a high density body (31) embedded in the wide portion (70) of the elastomeric material (34). The inertial sensor mass (26, 27, 29, 36, 32, 33) has a greater density than the elastomeric material (34). Moreover, the elastomeric material (34) at least partially surrounds an exterior circumferential surface (38) of the inertial sensor mass (26, 27, 29, 30, 32, 33). The inertial sensor mass (26, 27, 29, 30, 32, 33) has a body (31) having the wide portion (70) and optionally the narrow portion (72) with preferably one or more elastomeric protruding member (54, 58) extending from said body (31). The one or more protruding members (55, 58) are movable relative to said body (31) and soften contact rattle impacts thus reducing noise.
Abstract:
A seatbelt retractor assembly (10) has a seatbelt retractor (14) and an actuator (26) for locking and unlocking the seatbelt retractor (1). An inertial sensor mass (30, 32, 33) detects changes in vehicle speed. The mass (30, 32, 33) has a guide surface (34, 35, 36) for interacting with the actuator (26). The guide surface (34, 35, 36) moves between an unlocking position in which the actuator (26) unlocks the seatbelt retractor (14) and a locking position in which the actuator (26) locks the seatbelt retractor (14). The guide surface (30) has an inner profile portion (62) and at least an outer profile portion (64). The actuator (26) is in contact with the inner profile portion (62) in the unlocking position while moving into contact with the outer profile portion (64) as the actuator (26) moves towards the locking position. The inner profile portion (62) causes a different acceleration of the actuator (26) than the outer profile portion (64).
Abstract:
A seat belt retractor (10) has an actuator (14) for unlocking and locking the seat belt retractor (10). An inertial sensor (18) detects changes in vehicle acceleration and interacts with the actuator (14) to lock and unlock the seat belt retractor (10). The inertial sensor (18) has one inertial sensor mass, each mass (26, 27, 29, 30, 32, 33) has a wide portion (70) and a narrow portion (72). Preferably each inertial sensor mass (26, 27, 29, 30, 32, 33) has a high density body (31) embedded in the wide portion (70) of the elastomeric material (34). The inertial sensor mass (26, 27, 29, 30, 32, 33) has a greater density than the elastomeric material (34). Moreover, the elastomeric material (34) at least partially surrounds an exterior circumferential surface (38) of the inertial sensor mass (26, 27, 29, 30, 32, 33). The inertial sensor mass (26, 27, 29, 30, 32, 33) has a body (31) having the wide portion (70) and optionally the narrow portion (72) with preferably one or more elastomeric protruding member (54, 58) extending from said body (31). The one or more protruding members (55, 58) are movable relative to said body (31) and soften contact rattle impacts thus reducing noise.
Abstract:
A glass sheet assembly including a first glass sheet arranged in an opposing parallel configuration with respect to a second glass sheet is provided, with a heat sensitive layer of adhesive laminating film disposed between the first glass sheet and the second glass sheet, the glass sheet assembly having a leading edge and a trailing edge and being of a fixed length and width, the laminating film having a bonding temperature at which melting of the laminating film is initiated. The glass sheet assembly is heated using an array of heating elements so as to cause differential heating along the length of the glass sheet assembly such that the temperature at the leading edge of the glass sheet assembly is higher than the temperature at the trailing edge of the glass sheet assembly with uniform heating across the width of the glass sheet assembly. The first and second glass sheets are pressed toward each other to purge air or moisture from the glass sheet assembly until the first and second glass sheets adhere together via the adhesive laminating film, the step of pressing being initiated at the leading edge of the glass sheet assembly when the temperature of the laminating film at the leading edge of the glass sheet assembly reaches the bonding temperature of the laminating film.
Abstract:
A punch canister includes a punch head with an axial shaft that has a screw thread which is adapted to be connected during use to the screw threads of a punch element that is slideably associated within a stripper bushing. A punch recess adjustment member is rotatably and slideably associated with the punch head. The adjustment member is adapted to the slideably but non-rotatably rotatably connected during operation to the punch element. A resilient retraction member, e.g., a spring, is located between the punch head and the adjustment member for biasing the adjustment member axially downward on the punch head. A manually releasable detent provided on the adjustment member is operatively associated with the punch head for retaining the adjustment member in any one of a plurality of selected circumferentially distributed angular positions on the punch head such that during operation disengagement of the detent allows the adjustment member and the punch element to be threaded axially on the punch head to control the distance that the punch element is recessed within the stripper bushing. In a preferred form, the detent is a lock that can be disengaged manually when the punch recess adjustment is to be made.