摘要:
A laser cladding tool head and a to-be-processed surface sensing method therefor, which are used for a computer numerical control (CNC) processing machine (100). The laser cladding tool head (20) is also provided with a thermal temperature gauge sensing module (24) and a photographic lens sensing module (25), and is configured to sense temperature, brightness and shape of a molten pool during cladding operation and provide same to a computer numerical control unit (40) for feedback control, thereby further improving processing efficiency and quality of a workpiece.
摘要:
A combined type computer numerical control processing machine, comprising at least one cutting tool head, a laser cladding tool head, a laser surface heat treatment tool head and a computer numerical control unit, and all the tool heads can be alternately arranged on a tool chuck of the processing machine. A user can complete the cutting and laser cladding and/or laser surface heat treatment of a workpiece at a time by using a single tool machine, and the workpiece does not need to be moved in different machine tools, thereby simplifying processing steps, and shortening the processing time. Also provided is a processing method using the combined type computer numerical control processing machine.
摘要:
A detection and repair device for powder additive manufacturing. The detection and repair device (100) comprises a powder bed unit (2), a repair unit (3) and a detection unit (4); the powder bed unit has a powder bed platform (21), a powder spreading mechanism (22) and a laser unit (23); the repair unit has a processing mechanism (32); the detection unit has a camera (41) and a controller (42), the controller determining, according to image data of the powder bed platform captured by the camera, whether to spread powder or remove a powder spread defect, or to drive the processing mechanism to repair the surface of a work piece (101). Further disclosed is a detection and repair method for powder additive manufacturing. The method, by detecting image data obtained after powder spreading and image data obtained after fusion, can efficiently determine various defects and improve the quality of work pieces.