Accessory assembling mechanism of handheld safety detector
An assembly mechanism and detector technology, applied in the field of mechanical processing, can solve the problems that the accuracy of manual assembly depends on the technical proficiency of the operator, the assembly quality is unstable, and the deformation of parts is increased, so as to improve assembly quality, high assembly efficiency, and stable quality Effect
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Embodiment 1
[0045] Embodiment 1: In order to be able to solve the problems of low efficiency, poor assembly quality and instability of manually assembling the accessories of the handheld safety detector, the following technical solution is now adopted: an accessory assembly mechanism of the handheld safety detector, which is provided with a frame 1 , the upper surface of the frame 1 is provided with a turntable mechanism, and the outer edge of the turntable mechanism is sequentially provided with a fixture B feeding mechanism, a base C mechanism 5, a deformation mechanism 6, a core E mechanism 7, a casing mechanism 8 and a filling mechanism 9. Fixture B mechanism 4: Put the corresponding fixture B on the base A on the turntable mechanism; Base C mechanism 5: Put the base C into the inside of the fixture B; Deformation mechanism 6: Put the deformation part D Put it inside the base C; movement E mechanism 7: put the movement E inside the deformable part D, and make the two fit together; casi...
Embodiment 2
[0048] The difference between embodiment 2 and embodiment 1 is that the turntable mechanism is provided with an upper disk 3, a lower disk 2 and a rotation source from top to bottom; the rotation source is installed on the upper surface of the frame 1; the output end of the rotation source passes through the rotation shaft Fixed with the lower installation position of the lower disk 2; the extension end of the rotating shaft is connected with the upper disk 3; the turntable mechanism is divided into the upper disk 3 and the lower disk 2; the rotation source (motor) drives the lower disk 2 to rotate, so that the lower disk 2 The corresponding mechanism (device) on the upper surface of the upper surface can rotate with the rotation of the lower disk 2, while the upper disk 3 does not follow the rotation; the design of the upper and lower two-layer turntable mechanism makes it possible in a limited space (two-dimensional Space), by expanding the third-dimensional space, the number...
Embodiment 3
[0051] Embodiment 3 On the basis of Embodiment 2, the horizontal cylinder of the fixture B mechanism 4, the vertical slide table 42 of the fixture B, and the finger cylinder 43 of the fixture B are installed on the upper surface of the upper disk 3, while the fixture B positioning member 44 is installed on the The lower surface of the upper disc 3 is designed in this way to overcome the problem that during the rotation of the fixture B of the lower disc 2, the corresponding mechanism (device) can only be installed outside the outer edge of the lower disc 2, thereby increasing the limited space. Inside, it is difficult to deploy more equipment.
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