| CPC G01N 1/2205 (2013.01) [G01N 1/4077 (2013.01); G01N 2001/4088 (2013.01)] | 5 Claims |

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1. An automatic sample preparation device for sampling filter membranes of ambient air particulate matter, comprising an air particulate matter sampler and a cutter, wherein the cutter comprises a second conical tube; an upper surface of the second conical tube is provided with an air inlet, the air inlet is communicated with inside of the second conical tube, an inner top surface of the second conical tube is provided with a sliding groove, the sliding groove is located outside the air inlet, and a mounting frame is fixedly arranged on an arc-shaped surface of the second conical tube; sliding rods are symmetrically and fixedly arranged on an inner wall of the mounting frame, a sliding block is movably arranged on either of the sliding rods, an elliptical frame is fixedly arranged on tops of the two sliding blocks, and the elliptical frame is located above the mounting frame; a traction plate is fixedly arranged on the elliptical frame, and a traction rod is fixedly arranged on the traction plate, wherein one end of the traction rod movably penetrates inside of the second conical tube, a screening box is fixedly arranged at the other end of the traction rod, and the screening box and the sliding groove are movably arranged; the air inlet is located above the screening box, a drainage block is fixedly arranged on a side surface of the screening box, and a discharging block is fixedly arranged at an end of the drainage block, wherein the drainage block is triangular, the drainage block is tilted downward in a direction of facing the discharging block, and screening holes are formed in the screening box;
two traction racks are fixedly arranged on symmetrical inner walls of the elliptical frame, a fixing frame is fixedly arranged at a bottom of the mounting frame, and an operating motor is fixedly arranged on the fixing frame, wherein a rotating rod is fixedly arranged at an output end of the operating motor, and the rotating rod movably penetrates the fixing frame; a sector gear is fixedly arranged on a top of the fixing frame, the sector gear is located between the two traction racks, and the sector gear is in toothed engagement with only one of the traction racks separately;
a traction tube is fixedly arranged on the second conical tube, a vertical block is fixedly arranged at one end of the traction tube, the vertical block is located inside the second conical tube, and a vertical tube is fixedly arranged at the other end of the traction tube, wherein the vertical tube is located on one side of the second conical tube, and the traction tube is tilted upward in a direction of facing the vertical block; an internal threaded cap is fixedly arranged at a bottom of the vertical tube, and a collecting bottle is threadedly arranged on the internal threaded cap;
a placing opening is formed on a top of the vertical block, the placing opening is communicated with inside of the vertical block, and inner cavities are symmetrically arranged on the vertical block, wherein the inner cavities are located on both sides of the placing opening; a mounting tube is fixedly arranged on each of the inner cavities, an insertion rod is movably arranged at an end of each of the mounting tubes, and an end of the insertion rod moves inside the mounting tube; a shielding block is fixedly arranged at an end of each of the insertion rods, the shielding block movably penetrates the placing opening, a telescopic spring is arranged on the mounting tube and the insertion rod, and both ends of the telescopic spring are fixedly arranged together with the inner cavity and the shielding block respectively; and
the discharging block is located in the placing opening, and symmetrical side surfaces of the discharging block are respectively fitted with the shielding blocks.
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