Abstract:
A wiper connector and a wiper assembly thereof. The connector is detachably coupled between a wiper arm and a wiper, wherein the connector comprises a connector body and a stopper. The connector body has a longitudinal groove. One end of a stopper is detachably and rotatably disposed at one end of the longitudinal groove, and the other end of the stopper is detachably retained to the longitudinal groove so that the stopper movably shields a part of an opening of the longitudinal groove.
Abstract:
A device for locking a vehicle seat has a pawl which can be pivoted about a first pivot axis and, in a closed position, is in engagement with a positionally fixed fitting and, in an open position, is free from the fitting, wherein the pawl has a first clamping surface, furthermore a locking element for locking the pawl in the closed position, which locking element can be pivoted about a second pivot axis and has a second clamping surface which, in a locking position, bears against the first clamping surface and, in the process, keeps the pawl in the closed position, and, in an unlocking position, is free from the first clamping surface, and an actuating element which interacts with the locking element in order to transfer the locking element into the unlocking position. A stop is provided for the actuating element in such a manner that, upon action of a torque exerted by the pawl on the locking element, the actuating element interacts in a blocking manner with the stop and blocks the further movement of the locking element before the latter reaches the unlocking position. In the region of the second clamping surface, the locking element has a material which is softer than a material which the pawl has in the region of the first clamping surface, and the pawl has a projection on which the first clamping surface is at least partially formed.
Abstract:
A system for receiving and ejecting a fluid testing device test strip includes a strip connector having first and second guide rails, and divider walls each having a channel. A sled has first and second legs connected to a cross member. Each leg has a contact leg extending inwardly from a chamfered end. The first and second legs when positioned parallel to the guide rails have the contact leg captured in the divider wall channels retaining the sled in sliding contact with the guide rails for motions in loading and ejection directions. A mechanism assembly is movably connected to the fluid testing device. The cross member is coupled so operation in a first direction displaces the sled in the loading direction positioning the sled in a test strip test position, and opposite operation positions the contact legs in direct contact with and ejects the test strip.
Abstract:
A quick release fastener is provided for a hand-operated band saw with a saw band run on wheels in a housing, which has a base tray and a hinged lid and on which there is a handle. The handle is fixed to an upper angled edge of the lid and located below the handle there is a spring-loaded handle bar with two bent ends. The one end is fixed at the edge of the lid and the other end engages in a groove in the base tray through a recess in the edge.
Abstract:
A system for receiving and ejecting a fluid testing device test strip includes a strip connector having first and second guide rails, and divider walls each having a channel. A sled has first and second legs connected to a cross member. Each leg has a contact leg extending inwardly from a chamfered end. The first and second legs when positioned parallel to the guide rails have the contact leg captured in the divider wall channels retaining the sled in sliding contact with the guide rails for motions in loading and ejection directions. A mechanism assembly is movably connected to the fluid testing device. The cross member is coupled so operation in a first direction displaces the sled in the loading direction positioning the sled in a test strip test position, and opposite operation positions the contact legs in direct contact with and ejects the test strip.
Abstract:
A locking mechanism 10 for a quick coupler A has a movable locking element 11. A biasing element 13 is adapted to bias the locking element 11 to move in a first direction. An operator 12 is arranged to move the locking element 11 against the bias of the biasing element 13. The locking element 11 has teeth or serrations 19 which, when the locking element 11 is moved by the biasing element 13 in the first direction, is engageable with further teeth or serrations 20 coupled to a movable wedge element F of the quick coupler A to lock the wedge element 11 against movement. The movement of the locking element 11 creates a compressive force that causes the teeth/serrations 19, 20 to positively mesh and remain meshed.
Abstract:
A latch comprises a frame securable to a device enclosure, and a handle slidably secured to the frame, wherein the handle can slide between an inward position and an outward position, and wherein the distal end of the handle has a drive pin. The latch further comprises a rigid pawl having a latch key, a distal end pivotally secured to the frame, and a slot that receives the drive pin. Inserting the handle causes the drive pin to move within the slot, push the pawl toward a side of a chassis bay, and deploy the latch key into engagement with a slot in the side of the chassis bay. Withdrawing the handle causes the drive pin to move within the slot, pull the pawl away from a side of the chassis bay, and withdraw the latch key out of engagement with the slot in the side of the chassis bay.
Abstract:
One embodiment of a gun configured with the soft recoil system comprises a plurality of recoiling parts that initially moves in the direction of the projectile being fired before moving in a direction opposite to that of a projectile during the firing of the round. The soft recoil system throttles the movement of the recoiling parts such that the energy expended during the firing of the round is spread over a longer time period and a longer distance than would normally occur. The soft recoil system stores at least a portion of the energy transferred to the recoiling parts and the user may selectively release at least a part of that portion of energy to offset the energy imparted to the gun during the firing of the next round.
Abstract:
A connection arrangement for releasably connecting an electrical device and a power control module, the power control module including a device for controlling the supply of electrical power to the functional component. The connection arrangement includes a first connecting portion associated with the electrical device or the power control module and configured to engage with a second connecting portion associated with the other one of the device and module. The first connecting portion including a first locking member and the second connecting portion including a second locking member, wherein when the first and second connection portions are engaged the first and second locking members are movable relative to each other between an unlocked position in which the first and second connection portions are separable and a locked position in which the first and second connection portions are locked together. Preferably, the electrical device is a power tool module.