Abstract:
A production line oven includes a product gripping mechanism mounted above one side of the production line oven, a plurality of fixtures, a fixture gripping mechanism mounted under the product gripping mechanism, a lifting mechanism, and a conveyor mounted in other side of the production line oven. The product gripping mechanism includes a first guide rail, a support arm mounted to the first guide rail in sliding, and mechanical gripping members connected to the support arm. The fixture gripping mechanism includes a second guide rail and a clamp mechanism mounted to the second guide rail in sliding. The mechanical gripping members are configured to grip of a product. The fixture gripping mechanism is configured to grasp each the fixture to assemble or dismount the fixtures.
Abstract:
A waste collection device configured to remove magnetically-sensitive particles from the air includes a main body, a collection mechanism, an air inlet mechanism, an air exhaust mechanism, and a discharge mechanism. The main body includes a cover, an electric controller, a partition, and a cavity. The partition divides the cavity into a first cavity and a second cavity. The collection mechanism includes a plurality of dust deposition portions received in the first and second cavities. Each dust deposition portion is electrically powered and includes a plurality of dust deposition plates. The air inlet mechanism includes a first wind shield coupled to the first cavity and a second wind shield coupled to the second cavity.
Abstract:
A cleansing device used to purify waste gas includes a housing having an air inlet and an exhaust vent, a filter and a spraying module positioned in the housing. The spraying module is positioned on top of the filter to spray on the filter. The cleansing device further comprises two parallel support members mounted on two opposite inner surfaces of the housing. The filter is slidably mounted on the support members to slide into or out of the housing.
Abstract:
A curing machine to cure a UV-curable adhesive adhering on a workpiece, the workpiece having a slot thereon and a hole on a sidewall of the slot. The hole receives the UV-curable adhesive, the curing machine can include a curing mechanism. The curing mechanism can include a base plate holding a curing assembly and the curing assembly can include a holding member, at least one UV lamp being coupled to the holding member. Axis of the at least one UV lamp can intersect with the holding member at an angle of less than 90 degrees. A workpiece being positioned on the base plate, the UV lamp can irradiate directly an inside or an outside of a sidewall through the hole in the sidewall of the slot.
Abstract:
A method is provided in which both device application and service capability portions of a machine-to-machine (M2M) device can be authenticated to the M2M platform. First, the service capability portion of the M2M device is authenticated at an M2M platform; at this stage, the M2M device enters a partially authenticated state. Next, the device application portion is authenticated at a network application of a M2M system. The M2M platform is informed of the authentication of the device application in order for the M2M device to move from the partially authenticated state to a fully authenticated state.
Abstract:
A measuring device includes a measuring platform, a length measuring mechanism, a width measuring mechanism, a segment difference measuring mechanism, and a controller. The measuring platform includes a fixing board and a support bracket mounted on the fixing board. The length measuring mechanism is mounted on the fixing board for measuring a length of a workpiece. The width measuring mechanism is mounted on the fixing board for measuring a width of the workpiece. The segment difference measuring mechanism for measuring a segment difference, includes a first measuring assembly and a second measuring assembly. Both the first measuring assembly and second measuring assembly include a sensor, a measuring member movably passing through the sensor, and a driver connected to the measuring member. The controller is electrically connected with the length measuring mechanism, the width measuring mechanism, the sensor of the first measuring assembly, and the sensor of the second measuring assembly.
Abstract:
A reshaping device for reshaping a workpiece, includes a worktable, a reshaping assembly, a measuring unit, a positioning assembly, and a controller electrically connected to the reshaping assembly, the measuring unit, and the positioning assembly. The positioning assembly includes a pair of positioning subassemblies and a movable supporting subassembly. Each positioning subassembly comprises a supporting bracket and two positioning members, the two supporting brackets are distributed on the worktable, spaced from each other, for holding the workpiece. The movable supporting subassembly comprises two transmission members and two driving members. The two transmission members are laminated together and disposed on the worktable. The two driving members are respectively assembled to the two transmission members and drive the two transmission members to slide along different directions, thereby supporting the workpiece. The present disclosure further discloses a positioning assembly.
Abstract:
A bonding device includes a first feeding mechanism, a second feeding mechanism, a glue spraying mechanism positioned between the first feeding mechanism and the second feeding mechanism, and a bonding mechanism. The first feeding mechanism comprises a mounting frame and a transmission belt mounted on the mounting frame. The second feeding mechanism includes a support frame, a feeding member positioned on the support frame, a positioning plate mounted on the support frame and located below the feeding member, and a first driver connected to the positioning plate. The feeding member vertically defines at least one feeding groove. The positioning plate defines a matching groove matching with the first workpiece The bonding mechanism includes a second driver and a suction member connected to the second driver.
Abstract:
A machine control system includes an input module, a worktable, a first sliding module, a second sliding module, a lathe feeding module, a lathe tool connected to the lathe feeding module, a scraping feeding module, a scraping cutter connected to the scraping feeding module, and a control module. The control module is electrically connected to the input module, the worktable, the first sliding module, the second sliding module, the lathe feeding module, and the scraping feeding module wherein the input module inputs control parameters into the control module to control the first sliding module and the second sliding module. The lathe feeding module controls the lathe tool to slide along a third direction perpendicular to the first direction and the second direction reciprocally, and the scraping feeding module controls the scraping cutter to slide along the third direction and rotate along a first axis.