Oscillator for uniformly mixing sputum specimen and operating method of oscillator
An oscillator and specimen technology, applied in the field of oscillator and its operation, can solve the problems of low work efficiency, inability to ensure the consistency of specimen mixing effect, etc., and achieve the effects of adjustable vibration speed, firm and reliable structure, and improved stability
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Embodiment 1
[0026] Such as figure 1 , figure 2 As shown, a vibrator for mixing sputum samples includes a hollow base 6, a holder is arranged directly above the base 6, a motor 7 is arranged in the base 6, and a motor 7 is connected to There is a central rotating shaft 3, and the central rotating shaft 3 is connected to the container, and at least three sets of supporting devices are arranged on the outside of the central rotating shaft 3, and the supporting devices are evenly distributed between the base 6 and the container with the central rotating shaft 3 as the center, and The two ends of the supporting device are respectively connected with the base 6 and the container. The side wall of the base 6 is generally provided with an end cap 8 through a pin shaft, and the end cap 8 can rotate along the pin shaft to cover the entire container to achieve a seal, preventing the liquid in the reagent bottle from splashing out, or during the oscillation process. In the process, due to the neg...
Embodiment 2
[0028] Such as image 3 , Figure 4 As shown, on the basis of Embodiment 1, the support device includes a pillar 4 and a connecting rod 2 connected to each other, the distance between the pillar 4 and the central rotating shaft 3 is greater than the length of the connecting rod 2, and the axis of the pillar 4 and the central rotating shaft The axes of 3 are parallel, the bottom end of the pillar 4 is fixed on the base 6, the top of the pillar 4 is concaved to form a cylindrical groove 12, and the centerline of the cylindrical groove 12 is set on the extension line of the centerline of the pillar 4 , the bottom end of the connecting rod 2 connected with the pillar 4 protrudes to form a cylindrical boss 13, one end of the cylindrical boss 13 is arranged inside the cylindrical groove 12, and the cylindrical boss 13 can rotate around its own axis Rotate in cylinder groove 12, be provided with bearing one 11 between cylinder boss 13 and cylinder groove 12, and the inner wall of bea...
Embodiment 3
[0031] Such as Figure 5 As shown, the number of the supporting devices is four groups, and the connection between adjacent supporting devices forms a regular quadrilateral, and the intersection of the diagonals of the quadrilateral is set on the central rotating shaft 3; the fixed column The number of 10 is five, and with one fixed column 10 as the center, the connection lines between adjacent fixed columns 10 among the other four fixed columns 10 form a regular quadrilateral. Four sets of support devices are the best way to implement it. Generally, regular quadrilaterals have various structures, such as parallelograms, squares, rhombuses, etc. The sides of the quadrilaterals are all equal, so the use of four sets of support devices can form a variety of configurations, which is convenient. It is easier to manufacture and install, and it is also better for solving the problem that the tray 5 itself rotates along the center of the central shaft 3. The regular quadrilateral for...
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