Abstract:
A dismantling device, comprising a base, a bearing mechanism, a moving mechanism and a pulling-out assembly, the bearing mechanism supports a product to be dismantled; the pulling-out assembly comprises a connecting mechanism, a drive mechanism, a catching member and a sliding block; the connecting mechanism comprises an outer framework and an inner framework sliding relative to the outer framework; the outer framework is connected to the moving mechanism and presses against the product; the drive mechanism is connected to the inner framework and the sliding block; the catching member is slidably arranged in the inner framework; the sliding block slides with the catching member; and the drive mechanism drives the catching member to clamps the part and the inner framework dismantles the part from the product.
Abstract:
A rotatable joint to carry high-pressure and low-pressure liquids to a workstation can include a housing, two connecting heads, a first connecting member, a second connecting member, and a rotation member. The housing defines a first connecting hole positioned along a center housing axis and a second connecting member spaced from the first connecting member and parallel to the housing axis. The first connecting member, the second connecting member, and the rotation member can be installed in the housing in that order. One connecting head communicates with the first connecting member, the second connecting member, and the rotation member in that order via the first connecting hole, and the other connecting head communicates with the first connecting member, the second connecting member, and the rotation member in that order, via the second connecting hole.
Abstract:
A lathe includes a main shaft, a moving shaft, a cutter mounted on the moving shaft, and a clamping assembly. The cutter is capable of telescopic translation relative the moving shaft. The clamping assembly includes a cylinder mounted on the cutter, an assembly member mounted on the cylinder, a moving member, and at least two clamping members. The cylinder defines an inner cavity, and a first air intake and a second air intake communicated to the inner cavity. The moving member is movably mounted in the inner cavity and partially received in the assembly member, and capable of telescopic translation relative the assembly member. The clamping members are movably mounted on the assembly member and engaged with the moving member. The clamping members are translatably urged by the moving member in a direction relative the axis defined by the assembly member.
Abstract:
An air-sourced cleaning and deburring workpiece mechanism includes a fixed frame, a transfer assembly coupled to the fixed frame, and a cleaning assembly. The cleaning assembly includes a drive member, a slide member, and a first cleaning member. The drive member can drive the first cleaning member to move back and forth along a transfer direction of the transfer assembly, so that the first cleaning member can be applied to a workpiece.
Abstract:
An apparatus for automatic placement of gaskets on a housing includes a base, the second feeding mechanism, a first detecting member, a bearing mechanism, an assembly mechanism, and a controller. The first detecting member can detect the position of the gaskets relative to the preset position. The detected results are transmitted to the controller by the first detecting member. The controller controls the second feeding mechanism to accurately adjust the position of the gaskets to preset position. Therefore, a projection of the gasket is accurately engaged in a mounting hole of the housing by the assembly mechanism.
Abstract:
A method for machining and finishing a metallic member to provide a finished product without any additional process uses a lathe and a milling process. A non-circular metallic member on a worktable is rotated, and lathe tool moved backwards and forwards to machine the peripheral top portion of the metallic member. The path of the lathe tool machines curved surfaces of the top portion of the metallic member. The rotation of the metallic member is then stopped, and a milling cutter is brought to meet the peripheral sidewall of the metallic member. The movement and feeding of the milling cutter is predetermined. The worktable rotates the metallic member to enable one end edge of the peripheral sidewall and then another to face the milling cutter, and have the end edge chamfered by the milling cutter.
Abstract:
A film-applying machine includes a bracket, a mechanical arm, an application apparatus, and a storage apparatus. The storage apparatus includes a storage mechanism, a driving mechanism, and a first rolling mechanism. The storage mechanism includes a supporting frame mounted to the bracket, and a storage assembly adjustably coupled to the supporting frame. The driving mechanism includes a supporting member and a driving assembly. The supporting member couples with the supporting frame. The driving assembly includes a driving member coupled to the supporting member and a first transmission belt coupled to the driving member. The first rolling mechanism includes a pressing plate and a plurality of rollers. An end of the pressing plate couples with the first transmission belt, and another end is coupled to the supporting frame. The rollers are rotatably mounted on the pressing plate.
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 positioning device is configured to position a workpiece having a location hole. The positioning device includes a supporting member for supporting the workpiece, at least one positioning member, and at least one pressing module mounted on the supporting member. Each of the at least one positioning member includes a driving portion and a locating pin coupled to the driving portion. The driving portion is operable to drive the locating pin to be stretched into the location hole. The pressing module includes a driving member and a pressing member coupled to the driving member. The driving member is used to drive the pressing member press the workpiece after the locating pin stretched into the location hole, and the driving portion is further configured to drive the locating pin move out of the location hole after the pressing member pressed the workpiece.
Abstract:
The threading device includes a thread-pushing rod, a thread-transmitting rod, a first transmission subassembly, a second transmission subassembly, and a first pushing member. The thread-pushing rod defines a first through hole. The thread-transmitting rod is mounted on the thread-pushing rod and defines a second through hole. The first transmission subassembly includes a first rotating member and a spur gear mounted on the first rotating member. The second transmission subassembly includes a second rotating member and a second spur gear mounted on the second rotating member. The second spur gear meshes the first spur gear. A passage is defined by the first rotating member and the second rotating member. A tangent of the passage is aligned with the first through hole and the second through hole. The first pushing member is coupled to the first rotating member and configured to rotate the first rotating member.