Blood taking needle sorting vibration feeding machine
By using weight sensors and automatic feeding system in the blood collection needle sorting and vibration loading machine, combined with the design of the drive motor and the mixing motor, the problem of supply interruption caused by untimely feeding by workers is solved, and uninterrupted material supply and uniform distribution are achieved to ensure the stable operation of the production line.
Patent Information
- Application Number
- CN202421839095.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-07-31
AI Technical Summary
When the existing vibration feeding machine sorts the blood-collecting needle, it is easy for workers to interrupt the feeding of the feed due to untimely filling, which affects the continuous operation of the production line.
Weight sensors are used to detect the amount of materials, and the electronic discharge valve and telescopic hose are automatically fed. The driving motor drives the circular rotating plate to make the materials evenly spread, and combines with the mixing motor to prevent the materials from being caught and fed, achieving uninterrupted feeding.
It ensures the continuous operation of the blood collection needle sorting vibration loader, avoids the influence of manual feeding, and ensures stable feeding of the production line.
Smart Images

Figure CN223148932U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of loading machines, in particular to a vibrating loading machine for sorting blood collection needles. Background Art
[0002] A blood collection needle is an instrument used to collect blood samples during medical examinations. It consists of a needle head and a needle rod. The needle head is provided at the head of the needle rod. A sheath is slidably connected to the needle rod. A return spring is provided between the sheath and the needle rod, and the initial position of the sheath is located at the head of the needle head and the needle rod.
[0003] In the prior art, the blood collection needle is mainly large at one end and small at the other end. During packaging and processing, a vibrating loading machine is used for sorting and conveying. However, in order to ensure sorting, the internal capacity of the vibrating loading machine is not sufficient. Sometimes, the workers cannot feed the materials in time, resulting in the interruption of equipment feeding and affecting the operation of the subsequent production line. Therefore, a vibrating loading machine for sorting blood collection needles is needed to meet people's needs. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a vibrating loading machine for sorting blood collection needles to solve the problem that the workers cannot feed the materials in time, resulting in the interruption of equipment feeding and affecting the operation of the subsequent production line as mentioned in the above background art.
[0005] To achieve the above purpose, the utility model provides the following technical solution: A vibrating loading machine for sorting blood collection needles, including a loading machine bracket. A sorting vibrating table is fixedly installed on the loading machine bracket. A weight sensor is fixedly installed inside the sorting vibrating table. An additional bracket is fixedly installed on the loading machine bracket. The top end of the additional bracket is fixedly installed with a top plate. A material hopper is fixedly installed on the top plate. A stable bracket is fixedly installed between the material hopper and the top plate. An electronic blanking valve is fixedly installed at the bottom end of the material hopper. A telescopic hose is fixedly installed on the bottom side of the electronic blanking valve. The telescopic hose is adapted to the sorting vibrating table. Two U-shaped mounting brackets are fixedly installed on the bottom side of the top plate. The same circumferential rotating plate is slidably installed on the two U-shaped mounting brackets. The bottom end of the telescopic hose is fixedly installed on the circumferential rotating plate.
[0006] Preferably, a driving motor is fixedly installed on the bottom side of the top plate. The output end of the driving motor is fixedly installed with a driving rod. One end of the driving rod is rotatably installed on the circumferential rotating plate.
[0007] Preferably, a driving hole is opened at one end of the driving rod. A driving shaft is rotatably installed in the driving hole. The driving shaft is fixedly installed on the circumferential rotating plate.
[0008] Preferably, one end of the circumferential rotating plate is rotatably installed with a driven rod. A central groove is opened in the driven rod. A central fixing rod is rotatably installed in the central groove. The central fixing rod is fixedly installed on the bottom side of the top plate.
[0009] Preferably, a driven groove is formed in the driven rod, and a driven shaft is rotatably installed in the driven groove. The driven shaft is fixedly installed on the circumferential rotating plate.
[0010] Preferably, a cover plate is fixedly installed on the material hopper, and a stirring shaft is rotatably installed on the cover plate. One end of the stirring shaft extending into the material hopper is fixedly installed with an upper stirring rod and a lower stirring rod.
[0011] Preferably, a protective cover is fixedly installed on the cover plate, and a stirring motor is fixedly installed on the protective cover. The output end of the stirring motor extends into the protective cover and is fixedly installed with a driving gear. The top end of the stirring shaft extends into the protective cover and is fixedly installed with a driven gear. A driving chain is movably sleeved between the driven gear and the driving gear.
[0012] The beneficial effects of the present utility model are:
[0013] In the present utility model, a large amount of materials are stored in the material hopper on the top of the sorting vibrating table. When the materials inside the sorting vibrating table are reduced to a certain extent under the detection of the weight sensor, they are supplemented into the sorting vibrating table through the electronic blanking valve and the telescopic hose, so as to ensure the uninterrupted operation of the device and avoid the influence of manual feeding on the device.
[0014] In the present utility model, the U-shaped mounting frame and the circumferential rotating plate are used in cooperation to drive the telescopic hose to perform circular motion above the sorting vibrating table, so as to ensure that the materials can be evenly sprinkled in the sorting vibrating table, reduce the accumulation of materials, and use the upper stirring rod and the lower stirring rod in the material hopper to stir evenly to prevent the materials from being stuck together and affecting the falling of the materials. Description of the Drawings
[0015] Figure 1 It is a three-dimensional structural schematic diagram of a blood collection needle sorting vibrating feeding machine proposed by the present utility model;
[0016] Figure 2 It is a side view structural schematic diagram of a blood collection needle sorting vibrating feeding machine proposed by the present utility model;
[0017] Figure 3 It is a sectional view structural schematic diagram of a blood collection needle sorting vibrating feeding machine proposed by the present utility model;
[0018] Figure 4 It is a structural schematic diagram of the U-shaped mounting frame part of a blood collection needle sorting vibrating feeding machine proposed by the present utility model;
[0019] Figure 5 It is a structural schematic diagram of the cover plate part of a blood collection needle sorting vibrating feeding machine proposed by the present utility model.
[0020] In the figure: 100, the loader bracket; 101, the sorting vibrating table; 102, the weight sensor; 200, the additional bracket; 201, the top plate; 300, the material hopper; 301, the stabilizing bracket; 302, the electronic blanking valve; 303, the telescopic hose; 400, the U-shaped mounting bracket; 401, the circumferential rotating plate; 402, the driving motor; 403, the driving rod; 404, the driving hole; 405, the driving shaft; 406, the driven rod; 407, the central groove; 408, the central fixing rod; 409, the driven groove; 410, the driven shaft; 500, the cover plate; 501, the stirring shaft; 502, the upper stirring rod; 503, the lower stirring rod; 504, the protective cover; 505, the stirring motor; 506, the driven gear; 507, the driving gear; 508, the driving chain. Detailed implementation manner
[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0022] Refer to Figures 1-5 , a blood collection needle sorting vibrating loader, including a loader bracket 100, a sorting vibrating table 101 is fixedly installed on the loader bracket 100, a weight sensor 102 is fixedly installed inside the sorting vibrating table 101, an additional bracket 200 is fixedly installed on the loader bracket 100, a top plate 201 is fixedly installed at the top end of the additional bracket 200, a material hopper 300 is fixedly installed on the top plate 201, a stabilizing bracket 301 is fixedly installed between the material hopper 300 and the top plate 201, an electronic blanking valve 302 is fixedly installed at the bottom end of the material hopper 300, a telescopic hose 303 is fixedly installed at the bottom side of the electronic blanking valve 302, and the telescopic hose 303 is adapted to the sorting vibrating table 101. A same circumferential rotating plate 401 is slidably installed on two U-shaped mounting brackets 400 at the bottom side of the top plate 201, and the bottom end of the telescopic hose 303 is fixedly installed on the circumferential rotating plate 401. A large amount of materials are stored in the material hopper at the top of the sorting vibrating table. When the materials inside the sorting vibrating table are reduced to a certain extent under the detection of the weight sensor, they are supplemented into the sorting vibrating table through the electronic blanking valve and the telescopic hose, so as to ensure the uninterrupted operation of the device and avoid the influence of manual feeding on the device.
[0023] In an optional embodiment: a driving motor 402 is fixedly installed at the bottom side of the top plate 201, a driving rod 403 is fixedly installed at the output end of the driving motor 402, and one end of the driving rod 403 is rotatably installed on the circumferential rotating plate 401.
[0024] It should be noted that the output end of the driving motor 402 drives the driving rod 403 to rotate, and the rotating driving rod 403 drives the circumferential rotating plate 401 to perform a circular motion on the U-shaped mounting frame 400, so that the telescopic hose 303 performs a circular motion on the top of the sorting vibrating table 101 under the drive of the circumferential rotating plate 401, thereby ensuring that the materials can be evenly sprinkled into the sorting vibrating table 101 and reducing the accumulation of materials.
[0025] In an alternative embodiment: a driving hole 404 is formed at one end of the driving rod 403, a driving shaft 405 is rotatably installed in the driving hole 404, and the driving shaft 405 is fixedly installed on the circumferential rotating plate 401.
[0026] In an alternative embodiment: a driven rod 406 is rotatably installed at one end of the circumferential rotating plate 401, a central groove 407 is formed in the driven rod 406, a central fixing rod 408 is rotatably installed in the central groove 407, the central fixing rod 408 is fixedly installed on the bottom side of the top plate 201, a driven groove 409 is formed in the driven rod 406, and a driven shaft 410 is rotatably installed in the driven groove 409. The driven shaft 410 is fixedly installed on the circumferential rotating plate 401.
[0027] It should be noted that the driving rod 403 realizes the effect of driving the circumferential rotating plate 401 to move through the driving hole 404 and the driving shaft 405. At the same time, the other end of the circumferential rotating plate 401 rotates on the central fixing rod 408 through the driven rod 406. The two ends of the circumferential rotating plate 401 are synchronously coordinated to achieve the rotation effect. The driven rod 406 rotates on the central fixing rod 408 through the central groove 407, and the central groove 407 also rotates on the driven shaft 410 through the driven groove 409.
[0028] In an alternative embodiment: A cover plate 500 is fixedly installed on the hopper 300. A stirring shaft 501 is rotatably installed on the cover plate 500. One end of the stirring shaft 501 extending into the hopper 300 is fixedly installed with an upper stirring rod 502 and a lower stirring rod 503. A protective cover 504 is fixedly installed on the cover plate 500. A stirring motor 505 is fixedly installed on the protective cover 504. The output end of the stirring motor 505 extends into the protective cover 504 and is fixedly installed with a driving gear 507. The top end of the stirring shaft 501 extends into the protective cover 504 and is fixedly installed with a driven gear 506. A driving chain 508 is movably sleeved between the driven gear 506 and the driving gear 507. It should be noted that in the hopper 300 part, when the stirring motor 505 is started, the output end of the stirring motor 505 drives the driving gear 507 to rotate. The rotating driving gear 507 drives the driven gear 506 to rotate through the driving chain 508. The rotating driven gear 506 drives the stirring shaft 501 to rotate. The rotating stirring shaft 501 drives the upper stirring rod 502 and the lower stirring rod 503 to stir evenly in the hopper 300 to prevent the materials from jamming and affecting the falling of the materials.
[0029] Working principle of the present utility model:
[0030] After the sorting vibrating table 101 is started, continuous sorting and feeding can be achieved. When the weight detected by the weight sensor 102 in the sorting vibrating table 101 drops to a certain value, the electronic blanking valve 302 is started, so that the material loaded in the hopper 300 can fall into the sorting vibrating table 101 through the electronic blanking valve 302 and the telescopic hose 303. Then the driving motor 402 is started, and the output end of the driving motor 402 drives the driving rod 403 to rotate. The rotating driving rod 403 drives the circumferential rotating plate 401 to move in a circular motion on the U-shaped mounting bracket 400, so that the telescopic hose 303 moves in a circular motion on the top of the sorting vibrating table 101 under the drive of the circumferential rotating plate 401, thereby ensuring that the material can be evenly sprinkled in the sorting vibrating table 101 and reducing the accumulation of materials. The driving rod 403 realizes the effect of driving the circumferential rotating plate 401 to move through the driving hole 404 and the driving shaft 405. At the same time, the other end of the circumferential rotating plate 401 rotates on the central fixing rod 408 through the driven rod 406. The two ends of the circumferential rotating plate 401 cooperate synchronously to achieve the rotation effect. The driven rod 406 rotates on the central fixing rod 408 through the central groove 407, and the central groove 407 also rotates on the driven shaft 410 through the driven groove 409. In the part of the hopper 300, the stirring motor 505 is started, and the output end of the stirring motor 505 drives the driving gear 507 to rotate. The rotating driving gear 507 drives the driven gear 506 to rotate through the driving chain 508. The rotating driven gear 506 drives the stirring shaft 501 to rotate. The rotating stirring shaft 501 drives the upper stirring rod 502 and the lower stirring rod 503 to stir evenly in the hopper 300 to prevent the materials from jamming and affecting the falling of the materials.
[0031] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A blood collection needle sorting and vibrating feeding machine, comprising a feeding machine bracket (100), characterized in that: A sorting vibrating table (101) is fixedly installed on the feeding machine bracket (100), and a weight sensor (102) is fixedly installed inside the sorting vibrating table (101). An additional bracket (200) is fixedly installed on the feeding machine bracket (100). A top plate (201) is fixedly installed at the top end of the additional bracket (200). A material hopper (300) is fixedly installed on the top plate (201). A stabilizing bracket (301) is fixedly installed between the material hopper (300) and the top plate (201). An electronic blanking valve (302) is fixedly installed at the bottom end of the material hopper (300). A telescopic hose (303) is fixedly installed at the bottom side of the electronic blanking valve (302). The telescopic hose (303) is adapted to the sorting vibrating table (101). Two U-shaped mounting brackets (400) are fixedly installed on the bottom side of the top plate (201). The same circumferential rotating plate (401) is slidably installed on the two U-shaped mounting brackets (400). The bottom end of the telescopic hose (303) is fixedly installed on the circumferential rotating plate (401).
2. The blood collection needle sorting and vibrating feeding machine according to claim 1, characterized in that: A driving motor (402) is fixedly installed on the bottom side of the top plate (201). A driving rod (403) is fixedly installed at the output end of the driving motor (402). One end of the driving rod (403) is rotatably installed on the circumferential rotating plate (401).
3. The blood collection needle sorting and vibrating feeding machine according to claim 2, characterized in that: A driving hole (404) is formed at one end of the driving rod (403). A driving shaft (405) is rotatably installed in the driving hole (404). The driving shaft (405) is fixedly installed on the circumferential rotating plate (401).
4. The blood collection needle sorting and vibrating feeding machine according to claim 1, characterized in that: One end of the circumferential rotating plate (401) is rotatably installed with a driven rod (406). A central groove (407) is formed in the driven rod (406). A central fixing rod (408) is rotatably installed in the central groove (407). The central fixing rod (408) is fixedly installed on the bottom side of the top plate (201).
5. The sorting and vibrating feeding machine for blood collection needles according to claim 4, characterized in that: A driven groove (409) is formed in the driven rod (406). A driven shaft (410) is rotatably installed in the driven groove (409). The driven shaft (410) is fixedly installed on the circumferential rotating plate (401).
6. The sorting and vibrating feeding machine for blood collection needles according to claim 1, wherein: A cover plate (500) is fixedly installed on the material hopper (300). A stirring shaft (501) is rotatably installed on the cover plate (500). Upper stirring rods (502) and lower stirring rods (503) are fixedly installed at one end of the stirring shaft (501) extending into the material hopper (300).
7. A blood collection needle sorting and vibrating feeding machine according to claim 1, characterized in that: A protective cover (504) is fixedly installed on the cover plate (500). A stirring motor (505) is fixedly installed on the protective cover (504). The output end of the stirring motor (505) extends into the protective cover (504) and is fixedly installed with a driving gear (507). The top end of the stirring shaft (501) extends into the protective cover (504) and is fixedly installed with a driven gear (506). A driving chain (508) is movably sleeved between the driven gear (506) and the driving gear (507).