Clinical endocrine inspection device for endocrine
By designing an endocrine delivery device that includes a delivery box, a moving wheel, a push rod, a support frame, a partition, a downward movement mechanism, a material push mechanism and an upward movement mechanism, the problem of the existing device being inconvenient for multiple clamping and self-moving is solved, and the automatic delivery box arrangement and stability improvement is achieved.
Patent Information
- Application Number
- CN202510203437.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-05-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing endocrine clinical endocrine testing device is not convenient for multiple connections during use, and the transport roller is not convenient for retracting and releasing, resulting in the device's self-moving.
A device including a delivery box, a moving wheel, a push rod, a support frame, a partition, a downward movement mechanism, a material push mechanism and an upward movement mechanism are designed. By moving the inspection box through the moving wheel, the pushing mechanism drives the support frame to move downward to limit the position. The downward mechanism and the material pushing mechanism are used to automatically arrange the inspection box, and the upward mechanism is used to remove the inspection box.
The multiple position clamping functions of the device are realized, which facilitates the automatic downward and upward movement of the inspection box, avoids the self-moving phenomenon of the device, and improves the convenience and stability of use.
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Figure CN119924997A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical auxiliary tools, and in particular to an endocrine substance testing device for endocrine clinics. Background Art
[0002] With the continuous development of society, health issues have become a focus of people's attention, which has led to a continuous deepening of people's attention to medical care. Endocrinology is an important part of medical health. When testing secretions in the endocrinology department, a corresponding endocrine delivery device for clinical endocrinology is required. The existing endocrine delivery device for clinical endocrinology is extremely inconvenient to use due to its inconvenience in performing multiple card-connecting functions; at the same time, due to the inconvenience of retracting and releasing the transport rollers during use, the device may move by itself during use. Summary of the invention
[0003] The purpose of the present invention is to address the defects and shortcomings of the prior art and to provide an endocrine sample delivery device for endocrine clinical use that is reasonably designed and easy to use. The device can be snapped in multiple positions and can be taken out one by one when needed. At the same time, the transport wheels can be limited during use to prevent the device from moving on its own.
[0004] To achieve the above object, the present invention adopts the following technical scheme: it comprises an inspection box, a moving wheel and a pushing rod, the moving wheels are fixed to the four corners of the outer bottom wall of the inspection box, and the pushing rod is fixed to the upper side of one side wall of the inspection box; it also comprises:
[0005] A support frame, wherein the support frame is sleeved on the lower side of the outer peripheral wall of the inspection box, and the upper side of the support frame is arranged to abut against the convex ring on the upper side of the inspection box, and a pushing mechanism is arranged in the convex ring of the inspection box, and the pushing mechanism is connected to the top wall of the support frame;
[0006] A partition, wherein the partition is arranged at the middle side of the inspection box, and a plurality of inspection boxes are arranged at equal distances on both sides of the partition, and the distance between the lower side of the partition and the inner bottom wall of the inspection box is greater than the height of the inspection box;
[0007] A downward movement mechanism, which is arranged on a side wall and a partition of the inspection box, and is arranged in coordination with the inspection box;
[0008] A material pushing mechanism, the material pushing mechanism is located at the lower side of the partition, the material pushing mechanism is arranged in a side wall of the inspection box, and the material pushing mechanism is arranged to push the inspection box in coordination with the inspection box;
[0009] An upward movement mechanism, which is arranged on the other side wall of the inspection box and in the partition, and is arranged in coordination with the inspection box;
[0010] Through the above technical scheme, after the inspection box is moved to a suitable position by the moving wheels, the support frame is driven downward by the pushing mechanism until the lower side of the support frame contacts the ground, thereby limiting the inspection box and avoiding autonomous movement. The endocrine sampling tube is then placed in the inspection box, and the inspection box is then placed inside the inspection box and located on one side of the downward mechanism. The inspection box is driven downward by the downward mechanism, and the downward distance is the same each time. When the inspection box reaches the lowermost side, the pushing mechanism pushes the inspection box to the other side of the partition, and then the upward mechanism drives the inspection box to move upward in sequence until both sides of the inspection box are full of inspection boxes, and then the support frame is driven upward by the pushing mechanism, which is convenient for driving the support frame upward, thereby driving the inspection box to move.
[0011] As a further improvement of the present invention, a support plate is provided on the upper side of the interior of the inspection box, the support plate is arranged to abut against the upper side of the partition, sliding bars are fixed on both side walls of the support plate, the sliding bars are slidably arranged in the slide grooves on the two inner walls of the inspection box, a movable cover plate is rotated on the upper side of the support plate through a hinge, and the movable cover plate is arranged to abut against the partition;
[0012] Through the above technical solution, when the inspection box containing the endocrine sample is placed into the inspection box, the movable cover is rotated to the upper side of the support plate, and the support plate is moved to the upper side of the upper moving mechanism, so as not to affect the placement of the inspection box; when the sample needs to be taken out, the support plate and the movable cover are moved to the upper side of the lower moving mechanism, so as not to affect the removal of the sample.
[0013] As a further improvement of the present invention, the pushing mechanism comprises:
[0014] The fixing plates are four in number and are fixed on the top wall of the support frame in pairs symmetrically. The two symmetrical fixing plates are arranged adjacent to the upper side of one side wall on the middle side of the side wall of the support frame and tilted outward.
[0015] Tension springs, there are several tension springs, which are equally embedded and fixed on the top wall of the fixed plate, and the upper ends of the tension springs are fixed on the inner top wall of the convex ring of the inspection box;
[0016] There are four movable plates, and they are in one-to-one contact with the inclined surface of the fixed plate, and one side of the two corresponding movable plates in front and behind are matched and contacted;
[0017] Racks, there are four racks, and they are fixed on one side wall of the movable plate respectively, the racks on the two movable plates on the same side are staggered up and down, and a driving gear is meshed between the racks on the upper and lower sides;
[0018] A linkage mechanism, wherein the linkage mechanism is arranged in the partition, and two sides of the linkage mechanism are respectively connected to the driving gears on two sides;
[0019] Through the above technical solution, the driving gears on both sides are driven to rotate through the linkage mechanism, and the driving gears drive the movable plates on both sides to move to both sides through the racks on the upper and lower sides, and the fixed plate is pushed through the inclined surface on the movable plate to make the fixed plate move downward. At this time, the tension spring is stretched, and the fixed plate drives the support frame to move downward.
[0020] As a further improvement of the present invention, the linkage mechanism comprises:
[0021] Linkage rod, the linkage rod is screwed in the partition through bearings, the two ends of the linkage rod pass through the arc grooves on the two sides of the partition and the movable plate in turn, and are screwed in the two side walls of the inspection box through bearings, and the driving gear is sleeved and fixed on the two ends of the linkage rod;
[0022] An insert rod, wherein the insert rod is inserted into the cylindrical groove on the linkage rod, and drive blocks are fixed symmetrically on both sides of the outer ring wall of the insert rod, and the drive blocks are slidably arranged in the strip groove on the inner wall of the cylindrical groove;
[0023] A connecting spring, wherein the connecting spring is embedded in the insertion rod, and the rear end of the connecting spring passes through the rear end of the insertion rod and is fixed on the inner wall of the cylindrical groove of the linkage rod;
[0024] A rotating disk, one side of which is embedded in a circular groove on one side wall of the inspection box. After the front end of the insertion rod passes through the side wall of the inspection box, it is fixedly connected to the rotating disk. A plurality of limit teeth are fixed at equal angles on the outer ring wall of the rotating disk. The limit teeth are inserted in cooperation with the limit tooth grooves on the inner ring wall of the circular groove on the side wall of the inspection box.
[0025] Through the above technical solution, after the rotating disk is pulled to the front side, the limiting teeth on the rotating disk are separated from the limiting tooth grooves, and then the insert rod is driven to rotate through the rotating disk, and the insert rod drives the linkage rod to rotate through the driving block, thereby driving the driving gear to rotate through the linkage rod.
[0026] As a further improvement of the present invention, the downward movement mechanism comprises:
[0027] Rotating rods, there are several rotating rods, and they are equally connected to the partition and the side wall of the inspection box through bearings, and two adjacent rotating rods are connected through a synchronous wheel transmission assembly;
[0028] Limiting plates, there are several limiting plates, and they are fixed on several rotating rods in equal quantity and at equal distances, the limiting plates are movably arranged in the grooves on the partition plate and the side wall of the inspection box, and the limiting plates are matched and abutted against the outer bottom wall of the inspection box;
[0029] Driving rods, there are two driving rods, and they are respectively screwed into one side wall of the inspection box through bearings, the two driving rods are connected through a synchronous wheel transmission assembly, and the driving rods are respectively connected to adjacent rotating rods through the synchronous wheel transmission assembly;
[0030] A downward moving motor, wherein the downward moving motor is embedded and fixed in one side of the top wall of the inspection box, and the output shaft of the downward moving motor is connected to the top end of one of the driving rods;
[0031] Through the above technical scheme, the downward moving motor is started, and the downward moving motor drives the driving rod connected to it to rotate, and the driving rod drives another driving rod to rotate through the synchronous wheel transmission assembly, and the two driving rods drive the rotating rod connected to them to rotate through the synchronous wheel transmission assembly, and the rotating rod drives several other rotating rods to rotate through the synchronous wheel transmission assembly, and the rotating rod drives the limit plate to rotate, and when the arc surface on the limit plate rotates to one side of the inspection box, the inspection box is supported, and when the arc surface of the limit plate rotates to the side away from the inspection box, the support for the inspection box is released, and the inspection box falls downward, and after the limit plate rotates half a circle, the limit plate on the lower side limits the inspection box falling from the upper side.
[0032] As a further improvement of the present invention, the pushing mechanism comprises:
[0033] A push plate, which is arranged at one side of the inspection box, and is arranged to cooperate with and abut against the inspection box at the lower side of the downward movement mechanism;
[0034] Pushing connecting rods, there are four pushing connecting rods, and two of them are screwed together through shaft rods, one end of one of the two screwed pushing connecting rods is screwed to the pushing plate through a hinge seat, and one end of the other pushing connecting rod is screwed to the inner wall of the inspection box through a hinge seat;
[0035] A push rod, wherein the push rod is screwed into the side wall of the inspection box through a bearing, and both ends of the push rod are connected to the shaft rod on the push connecting rod away from the push plate through a worm gear pair;
[0036] A pusher motor, wherein the pusher motor is embedded and fixed in a side wall of the inspection box, and an output shaft of the pusher motor is connected to one end of a pusher rod;
[0037] Through the above technical solution, the pushing motor is started, the pushing motor drives the pushing rod to rotate, the pushing rod drives the pushing connecting rod on that side to rotate through the worm gear pair, the pushing connecting rod drives the other pushing connecting rod connected to it to rotate at the same time, thereby driving the pushing plate to move, and the pushing plate drives the inspection box to move.
[0038] As a further improvement of the present invention, the upward movement mechanism comprises:
[0039] An upward moving plate, wherein the upward moving plate is embedded in the lower side wall of the inspection box, the upper surface of the upward moving plate and the inner bottom wall of the inspection box are arranged in the same plane, the four corners of the lower surface of the upward moving plate are all rotatably connected with an upward moving connecting rod through a hinge seat, and the hinge seat at the lower end of the upward moving connecting rod is movably inserted in a slide groove on the inner bottom wall of the inspection box;
[0040] Moving blocks, there are two moving blocks, which are symmetrically slidably arranged in the lower side wall of the inspection box, and the two sides of the moving blocks are fixedly connected to the hinge seats on both sides respectively;
[0041] There are two reciprocating screw rods, which are respectively screwed to the moving blocks on both sides through threads, the threads of the two reciprocating screw rods are arranged oppositely, and the adjacent ends of the two reciprocating screw rods are fixedly connected, and the reciprocating screw rods are screwed to the lower side wall of the inspection box through bearings;
[0042] An upward moving motor, wherein the upward moving motor is embedded in and fixed in a side wall of the inspection box, and the output shaft of the upward moving motor is fixedly connected to one end of one of the reciprocating screw rods through a bevel gear pair;
[0043] The limiting mechanism is a plurality of limiting mechanisms, and the limiting mechanisms are arranged in equal quantities and at equal distances in the embedded grooves of the inner wall of one side of the inspection box and the one side wall of the partition, and the limiting mechanism is arranged in coordination with the inspection box;
[0044] Through the above technical scheme, the upward moving motor is started, and the upward moving motor drives the reciprocating screw connected to it to rotate through the bevel gear pair, and the reciprocating screw drives another reciprocating screw to rotate, and the two reciprocating screws drive the moving blocks on both sides to reciprocate to both sides, and the moving block drives one end of the upward moving connecting rod to move, and the other end of the upward moving connecting rod drives the upward moving plate to move up and down. When the upward moving plate moves up, the inspection box moved to the upper moving plate is pushed upward, and is limited by the limit mechanism.
[0045] As a further improvement of the present invention, the limiting mechanism comprises:
[0046] A limit frame, one side of which is embedded in the embedding groove, and the other side of which passes through the embedding groove and is disposed in abutment with the lower surface of the convex strip on the side wall of the inspection box. A rotating shaft is passed through and fixed to the interior of the limit frame, and the rotating shaft is screwed to the inner wall of the embedding groove through a bearing;
[0047] A return spring, wherein the return springs are in multiple numbers and are equidistantly fixed in a rectangular groove on the top wall of the embedded groove, and the lower end of the return spring is fixed on the upper surface of the limit frame located on one side of the embedded groove;
[0048] Through the above technical scheme, when the inspection box is pushed upward by the upward moving plate, the convex strips on both sides of the inspection box push the limit frame to the side of the outer side of the embedding groove, so that the outer side of the limit frame rotates into the embedding groove, and when the convex strip on the inspection box is located above the outer side of the limit frame, the reset spring drives the limit frame to reset. At this time, the convex strip of the inspection box contacts the outer side of the limit frame, thereby limiting the inspection box.
[0049] As a further improvement of the present invention, an anti-slip ring is fixed on the bottom wall of the support frame, and the inner and outer peripheral walls of the anti-slip ring are arranged in the same plane as the inner and outer peripheral walls of the support frame;
[0050] Through the above technical solution, after the inspection box is moved to a suitable position and the support frame is moved downward, the protective ring contacts the ground, thereby increasing the stability of the inspection box and avoiding deviation.
[0051] Compared with the prior art, the present invention has the following beneficial effects:
[0052] 1. A downward moving mechanism is set inside the inspection box, which can push the inspection boxes filled with endocrine samples downward one by one, eliminating the need for manual arrangement and placement;
[0053] 2. A pushing mechanism is provided inside the inspection box and on one side of the downward moving mechanism, which can send the samples to the other side of the partition, so as to facilitate the subsequent upward movement of the inspection box;
[0054] 3. The upward moving mechanism arranged on one side of the inspection box away from the downward moving mechanism can push the inspection box upward and cooperate with the limiting mechanism inside the upward moving mechanism to move upward and position in sequence, so that the inspection box can be taken out from the other side of the inspection box in sequence for easy inspection;
[0055] 4. The support frame arranged on the outside of the inspection box can be pushed downward by the pushing mechanism, so that after the inspection box is moved to a suitable position, the support frame can be used to support the inspection box, so that the moving wheels are separated from the ground, thereby increasing the stability of the entire inspection box and avoiding the phenomenon of autonomous movement. BRIEF DESCRIPTION OF THE DRAWINGS
[0056] Figure 1 It is a schematic diagram of the structure of the present invention.
[0057] Figure 2 It is a schematic diagram of the internal structure of the present invention.
[0058] Figure 3 It is an exploded view of the support frame and the pushing mechanism in the present invention.
[0059] Figure 4 for Figure 3 Enlarged view of part A in the middle.
[0060] Figure 5It is a structural schematic diagram of the downward movement mechanism and the inspection box in the present invention.
[0061] Figure 6 It is a structural schematic diagram of the material pushing mechanism in the present invention.
[0062] Figure 7 It is a structural schematic diagram of the upward movement mechanism in the present invention.
[0063] Figure 8 for Figure 7 Enlarged view of part B in the middle.
[0064] Description of reference numerals:
[0065] Inspection box 1, moving wheel 2, pushing rod 3, supporting frame 4, pushing mechanism 5, fixed plate 5-1, tension spring 5-2, movable plate 5-3, rack 5-4, driving gear 5-5, linkage mechanism 5-6, linkage rod 5-6-1, plug rod 5-6-2, driving block 5-6-3, connecting spring 5-6-4, rotating disk 5-6-5, limiting tooth 5-6-6, partition 6, inspection box 7, lowering mechanism 8, rotating rod 8-1, limiting plate 8-2, driving rod 8-3, lowering electric Machine 8-4, pushing mechanism 9, pushing plate 9-1, pushing connecting rod 9-2, pushing rod 9-3, pushing motor 9-4, upward mechanism 10, upward plate 10-1, upward connecting rod 10-2, moving block 10-3, reciprocating screw 10-4, upward motor 10-5, limiting mechanism 10-6, limiting frame 10-6-1, rotating shaft 10-6-2, reset spring 10-6-3, support plate 11, sliding bar 12, movable cover plate 13, anti-slip ring 14, embedded groove 15. DETAILED DESCRIPTION
[0066] The technical solution of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. The preferred embodiments in the description are only used as examples, and all other embodiments obtained by those skilled in the art without making any creative work are within the scope of protection of the present invention.
[0067] Embodiment 1:
[0068] like Figure 1-Figure 8 As shown, this embodiment includes an inspection box 1, a moving wheel 2 and a push rod 3. The four corners of the outer bottom wall of the inspection box 1 are fixed with moving wheels 2 by bolts, and the upper side of the right side wall of the inspection box 1 is welded and fixed with a push rod 3; it also includes:
[0069] The support frame 4 is sleeved on the lower side of the outer peripheral wall of the inspection box 1, and the upper side of the support frame 4 is set to abut against the convex ring on the upper side of the inspection box 1. A pushing mechanism 5 is set in the convex ring of the inspection box 1, and the pushing mechanism 5 is connected to the top wall of the support frame 4; an anti-slip ring 14 is glued and fixed on the bottom wall of the support frame 4, and the inner and outer peripheral walls of the anti-slip ring 14 are set in the same plane as the inner and outer peripheral walls of the support frame 4. After the inspection box 1 is moved to a suitable position and the support frame 4 is moved downward, it is abutted against the ground through the protective ring, thereby increasing the stability of the inspection box 1 and avoiding the phenomenon of deviation;
[0070] Partition 6, the partition 6 is arranged at the middle side of the inspection box 1, and a number of inspection boxes 7 are arranged at equal distances on both sides of the partition 6, and the distance between the lower side of the partition 6 and the inner bottom wall of the inspection box 1 is greater than the height of the inspection box 7; a support plate 11 is arranged on the upper side of the inspection box 1, and the support plate 11 is arranged to abut against the upper side of the partition 6, and sliding bars 12 are welded and fixed on both side walls of the support plate 11, and the sliding bars 12 are slidably arranged in the slide grooves on the two inner walls of the inspection box 1, supporting The upper side of the plate 11 is hingedly connected with a movable cover plate 13, and the movable cover plate 13 is arranged to be in contact with the partition plate 6. When the inspection box 7 containing the endocrine sample is placed in the inspection box 1, the movable cover plate 13 is rotated to the upper side of the support plate 11, and the support plate 11 is moved to the upper side of the upward movement mechanism 10, so as not to affect the placement of the inspection box 7. When the sample needs to be taken out, the support plate 11 and the movable cover plate 13 are moved to the upper side of the downward movement mechanism 8, so as not to affect the taking out of the sample.
[0071] A downward movement mechanism 8, wherein the downward movement mechanism 8 is arranged on the right side wall of the inspection box 1 and in the partition 6, and the downward movement mechanism 8 is arranged in coordination with the inspection box 7;
[0072] The pushing mechanism 9 is located at the lower side of the partition 6. The pushing mechanism 9 is arranged in the right side wall of the inspection box 1. The pushing mechanism 9 is arranged to push the inspection box 7 in cooperation with the inspection box 7.
[0073] The upward movement mechanism 10 is arranged on the left side wall of the inspection box 1 and in the partition 6, and the upward movement mechanism 10 is matched with the inspection box 7.
[0074] Embodiment 2:
[0075] See also Figure 2-3 , Figure 4 As shown, based on Example 1, the pushing mechanism 5 includes:
[0076] The fixing plates 5-1 are four in number and are welded and fixed to the top wall of the support frame 4 in a front-to-back symmetrical manner. The two front-to-back symmetrical fixing plates 5-1 are disposed adjacent to the upper side of one side wall of the middle side of the side wall of the support frame 4 and tilted outward;
[0077] Tension springs 5-2, there are several tension springs 5-2, and they are equally embedded and welded to the top wall of the fixed plate 5-1, and the upper ends of the tension springs 5-2 are welded to the inner top wall of the convex ring of the inspection box 1;
[0078] The movable plates 5-3 are four in number and are in one-to-one contact with the inclined surface of the fixed plate 5-1, and one side of the two corresponding movable plates 5-3 at the front and rear are matched and contacted with each other;
[0079] Racks 5-4, there are four racks 5-4, and they are respectively welded and fixed on one side wall of the movable plate 5-3, the racks 5-4 on the two movable plates 5-3 on the same side are staggered up and down, and a driving gear 5-5 is meshed between the racks 5-4 on the upper and lower sides;
[0080] The linkage mechanism 5-6 is arranged in the partition 6, and the two sides of the linkage mechanism 5-6 are respectively connected to the driving gears 5-5 on both sides; the linkage mechanism 5-6 includes:
[0081] Linkage rod 5-6-1, the linkage rod 5-6-1 is screwed in the partition 6 through bearings, the two ends of the linkage rod 5-6-1 pass through the two sides of the partition 6 and the arc grooves on the movable plate 5-3 in turn, and are screwed in the two side walls of the inspection box 1 through bearings, and the driving gear 5-5 is sleeved and welded and fixed on the two ends of the linkage rod 5-6-1;
[0082] Insertion rod 5-6-2, the insertion rod 5-6-2 is inserted into the cylindrical groove on the linkage rod 5-6-1, and the driving blocks 5-6-3 are symmetrically welded and fixed on both sides of the outer ring wall of the insertion rod 5-6-2, and the driving blocks 5-6-3 are slidably set in the strip groove on the inner wall of the cylindrical groove;
[0083] The connecting spring 5-6-4 is embedded in the plug rod 5-6-2. The rear end of the connecting spring 5-6-4 passes through the rear end of the plug rod 5-6-2 and is welded and fixed to the inner wall of the cylindrical groove of the linkage rod 5-6-1;
[0084] The rotating disk 5-6-5, the left side of the rotating disk 5-6-5 is embedded in the circular groove on the right side wall of the inspection box 1, and the front end of the insertion rod 5-6-2 passes through the side wall of the inspection box 1 and is fixedly connected to the rotating disk 5-6-5. A number of limit teeth 5-6-6 are welded and fixed at equal angles on the outer ring wall of the rotating disk 5-6-5, and the limit teeth 5-6-6 are inserted in coordination with the limit teeth 5-6-6 groove on the inner ring wall of the circular groove on the side wall of the inspection box 1.
[0085] Embodiment 3:
[0086] See also Figure 2 , Figure 5As shown, based on Example 1, the downward movement mechanism 8 includes:
[0087] Rotating rods 8-1, there are several rotating rods 8-1, and they are equally connected to the partition 6 and the side wall of the inspection box 1 through bearings, and two adjacent rotating rods 8-1 are connected through a synchronous wheel transmission assembly;
[0088] The limit plates 8-2 are several in number and are welded and fixed on the several rotating rods 8-1 in equal quantity and at equal distances. The limit plates 8-2 are respectively movably arranged in the grooves on the partition plate 6 and the side wall of the inspection box 1. The limit plates 8-2 are matched and abutted against the outer bottom wall of the inspection box 7.
[0089] Driving rod 8-3, there are two driving rods 8-3, and they are respectively screwed in one side wall of the inspection box 1 through bearings, the two driving rods 8-3 are connected through a synchronous wheel transmission assembly, and the driving rods 8-3 are respectively connected to the adjacent rotating rods 8-1 through the synchronous wheel transmission assembly;
[0090] The downward moving motor 8-4 is embedded and fixed in one side of the top wall of the inspection box 1, and the output shaft of the downward moving motor 8-4 is connected to the top end of the driving rod 8-3 on the left rear side.
[0091] Embodiment 4:
[0092] See also Figure 2 , Figure 6 As shown, based on Example 1, the pushing mechanism 9 includes:
[0093] A push plate 9-1, wherein the push plate 9-1 is disposed at one side of the inspection box 1, and the push plate 9-1 is configured to cooperate with and abut against the inspection box 7 at the lower side of the downward movement mechanism 8;
[0094] Pushing connecting rods 9-2, there are four pushing connecting rods 9-2, and two of them are screwed together through shafts, one end of one of the two screwed pushing connecting rods 9-2 is screwed to the pushing plate 9-1 through a hinge seat, and one end of the other pushing connecting rod 9-2 is screwed to the inner wall of the inspection box 1 through a hinge seat;
[0095] A push rod 9-3, wherein the push rod 9-3 is screwed into the side wall of the inspection box 1 through a bearing, and both ends of the push rod 9-3 are connected to the shaft rod on the push connecting rod 9-2 away from the push plate 9-1 through a worm gear pair;
[0096] The pushing motor 9-4 is embedded in and fixed in a side wall of the inspection box 1, and the output shaft of the pushing motor 9-4 is connected to one end of the pushing rod 9-3.
[0097] Embodiment 5:
[0098] See also Figure 2 , Figure 7-8 As shown, based on Example 1, the upward movement mechanism 10 includes:
[0099] An upward moving plate 10-1 is embedded in the lower side wall of the inspection box 1, and the upper surface of the upward moving plate 10-1 is arranged in the same plane as the inner bottom wall of the inspection box 1. The four corners of the lower surface of the upward moving plate 10-1 are all rotated with an upward moving connecting rod 10-2 through a hinge seat, and the hinge seat at the lower end of the upward moving connecting rod 10-2 is movably inserted into the slide groove on the inner bottom wall of the inspection box 1;
[0100] Moving blocks 10-3, there are two moving blocks 10-3, and they are symmetrically slidably arranged in the lower side wall of the inspection box 1, and the two sides of the moving blocks 10-3 are fixedly connected to the hinge seats on both sides respectively;
[0101] Reciprocating screw rods 10-4, there are two reciprocating screw rods 10-4, and they are respectively screwed to the moving blocks 10-3 on both sides through threads, the threads of the two reciprocating screw rods 10-4 are arranged oppositely, and the adjacent ends of the two reciprocating screw rods 10-4 are fixedly connected, and the reciprocating screw rods 10-4 are screwed into the lower side wall of the inspection box 1 through bearings;
[0102] An upward motor 10-5, wherein the upward motor 10-5 is embedded in and fixed to a side wall of the inspection box 1, and an output shaft of the upward motor 10-5 is fixedly connected to one end of the left reciprocating screw rod 10-4 through a bevel gear pair;
[0103] The limiting mechanism 10-6 is a plurality of limiting mechanisms 10-6, and they are equally and equidistantly arranged in the embedding groove 15 on the inner wall of one side of the inspection box 1 and the one side wall of the partition 6. The limiting mechanism 10-6 is arranged in coordination with the inspection box 7; the limiting mechanism 10-6 comprises:
[0104] A limit frame 10-6-1, one side of the limit frame 10-6-1 is embedded in the embedding groove 15, and the other side of the limit frame 10-6-1 passes through the embedding groove 15 and is set in conflict with the lower surface of the convex strip on the side wall of the inspection box 7. The interior of the limit frame 10-6-1 is penetrated and welded with a rotating shaft 10-6-2, and the rotating shaft 10-6-2 is screwed to the inner wall of the embedding groove 15 through a bearing;
[0105] The reset spring 10-6-3 is a plurality of reset springs 10-6-3 that are equidistant and fixed in a rectangular groove on the top wall of the embedded groove 15. The lower end of the reset spring 10-6-3 is fixed on the upper surface of the limit frame 10-6-1 on one side of the inner side of the embedded groove 15.
[0106] When using the present invention, after the inspection box 1 is moved to a suitable position by the moving wheel 2, the rotating disk 5-6-5 is pulled to the front side, so that the limiting tooth 5-6-6 on the rotating disk 5-6-5 is separated from the limiting tooth 5-6-6 groove, and then the rotating disk 5-6-5 drives the insertion rod 5-6-2 to rotate, and the insertion rod 5-6-2 drives the linkage rod 5-6-1 to rotate through the driving block 5-6-3, thereby driving the driving gear 5-5 to rotate through the linkage rod 5-6-1, and the driving gear 5-5 drives the movable plates 5-3 on both sides to move to both sides through the racks 5-4 on the upper and lower sides, and pushes the fixed plate 5-1 through the inclined surface on the movable plate 5-3, so that the fixed plate 5-1 moves downward, and the tension spring 5-2 is stretched at this time, and the fixed plate 5 -1 drives the support frame 4 to move downward until the lower side of the support frame 4 contacts the ground, thereby limiting the inspection box 1 to prevent autonomous movement, and then put the endocrine sampling tube into the inspection box 7, and then put the inspection box 7 into the inspection box 1 and locate it on one side of the downward movement mechanism 8, start the downward movement motor 8-4, and the downward movement motor 8-4 drives the driving rod 8-3 connected thereto to rotate, and the driving rod 8-3 drives another driving rod 8-3 to rotate through the synchronous wheel transmission assembly, and the two driving rods 8-3 drive the rotating rod 8-1 connected thereto to rotate through the synchronous wheel transmission assembly, and the rotating rod 8-1 drives several other rotating rods 8-1 to rotate through the synchronous wheel transmission assembly, and the rotating rod 8-1 drives the limiting plate 8-2 to rotate, when the limiting When the arc surface on the plate 8-2 rotates to one side of the inspection box 7, it supports the inspection box 7. When the arc surface of the limit plate 8-2 rotates to the side away from the inspection box 7, the support for the inspection box 7 is released, and the inspection box 7 falls downward. After the limit plate 8-2 rotates half a circle, the lower limit plate 8-2 limits the inspection box 7 falling from the upper side. The downward distance each time is the same. When the inspection box 7 reaches the lowermost side, the pushing motor 9-4 is started, and the pushing motor 9-4 drives the pushing rod 9-3 to rotate. The pushing rod 9-3 drives the pushing connecting rod 9-2 on this side to rotate through the worm gear pair, and the pushing connecting rod 9-2 drives the other pushing connecting rod 9-2 connected to it to rotate at the same time, thereby driving the pushing plate 9-1 to move, and the pushing plate 9-1 drives the feeding The inspection box 7 moves, and then the upward motor 10-5 is started. The upward motor 10-5 drives the reciprocating screw 10-4 connected to it to rotate through the bevel gear pair, and the reciprocating screw 10-4 drives another reciprocating screw 10-4 to rotate. The two reciprocating screws 10-4 drive the moving blocks 10-3 on both sides to reciprocate to both sides. The moving blocks 10-3 drive one end of the upward connecting rod 10-2 to move, and the other end of the upward connecting rod 10-2 drives the upward plate 10-1 to move up and down. When the upward plate 10-1 moves up, the inspection box 7 moved to the upward plate 10-1 is pushed upward, so that the convex strips on both sides of the inspection box 7 push the limit frame 10-6-1 to the side outside the embedding groove 15, so that the outer side of the limit frame 10-6-1 rotates to the embedded groove 15.When the convex strip on the inspection box 7 is located above the outer side of the limit frame 10-6-1, the reset spring 10-6-3 drives the limit frame 10-6-1 to reset. At this time, the convex strip of the inspection box 7 contacts the outer side of the limit frame 10-6-1, so that the inspection box 7 can be limited until both sides of the inspection box 1 are filled with inspection boxes 7, and then the support frame 4 is driven to move upward through the pushing mechanism 5, so as to facilitate the support frame 4 to move upward, thereby driving the inspection box 1 to move.
[0107] Compared with the prior art, the beneficial effects of this specific implementation are as follows:
[0108] 1. After the inspection box 7 filled with endocrine samples is placed inside the inspection box 1, it can be pushed downward in sequence by the downward movement mechanism 8, so that there is no need for manual arrangement and placement;
[0109] 2. A pushing mechanism 5 is provided inside the inspection box 1 and on one side of the downward moving mechanism 8, which can deliver the sample to the other side of the partition 6, so as to facilitate the subsequent upward movement of the inspection box 7;
[0110] 3. The upward movement mechanism 10 arranged on one side of the inspection box 1 away from the downward movement mechanism 8 can push the inspection box 7 upward, and cooperate with the limiting mechanism 10-6 inside the upward movement mechanism 10 to move upward and position in sequence, so as to facilitate the inspection box 7 to be taken out from the other side of the inspection box 1 in sequence for inspection;
[0111] 4. The support frame 4 arranged on the outside of the inspection box 1 can be pushed downward by the pushing mechanism 5, so that after the inspection box 1 is moved to a suitable position, the inspection box 1 can be supported by the support frame 4, so that the moving wheels 2 are separated from the ground, thereby increasing the stability of the entire inspection box 1 and avoiding the phenomenon of autonomous movement.
[0112] For those skilled in the art, they can modify the technical solutions described in the aforementioned embodiments and make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. An endocrine sample delivery device for endocrine clinical use, comprising a delivery box (1), a moving wheel (2) and a push rod (3), wherein the moving wheels (2) are fixed to the four corners of the outer bottom wall of the delivery box (1), and the push rod (3) is fixed to the upper side of one side wall of the delivery box (1); characterized in that: It also contains: A support frame (4), wherein the support frame (4) is sleeved on the lower side of the outer peripheral wall of the inspection box (1), and the upper side of the support frame (4) is arranged to abut against the convex ring on the upper side of the inspection box (1), and a pushing mechanism (5) is arranged inside the convex ring of the inspection box (1), and the pushing mechanism (5) is connected to the top wall of the support frame (4); A partition (6), wherein the partition (6) is arranged at the middle side of the inspection box (1), and a plurality of inspection boxes (7) are arranged at equal distances on both sides of the partition (6), and the distance between the lower side of the partition (6) and the inner bottom wall of the inspection box (1) is greater than the height of the inspection boxes (7); A downward movement mechanism (8), wherein the downward movement mechanism (8) is arranged on a side wall of the inspection box (1) and in the partition (6), and the downward movement mechanism (8) is arranged in coordination with the inspection box (7); A material pushing mechanism (9), the material pushing mechanism (9) is located at the lower side of the partition (6), the material pushing mechanism (9) is arranged in a side wall of the inspection box (1), and the material pushing mechanism (9) is arranged to cooperate with the inspection box (7) to push; An upward movement mechanism (10) is arranged on the other side wall of the inspection box (1) and in the partition (6), and the upward movement mechanism (10) is arranged in coordination with the inspection box (7).
2. The endocrine sample delivery device for endocrine clinical use according to claim 1, characterized in that: A support plate (11) is arranged on the upper side of the interior of the inspection box (1), and the support plate (11) is arranged to abut against the upper side of the partition (6). Sliding bars (12) are fixed on both side walls of the support plate (11), and the sliding bars (12) are slidably arranged in sliding grooves on the two inner walls of the inspection box (1). A movable cover plate (13) is screwed on the upper side of the support plate (11) through a hinge, and the movable cover plate (13) is arranged to cooperate with the partition (6) to abut against each other.
3. The endocrine sample delivery device for endocrine clinical use according to claim 1, characterized in that: The pushing mechanism (5) comprises: A fixing plate (5-1), wherein the fixing plates (5-1) are four in number and are fixed on the top wall of the support frame (4) in pairs in a front-to-back symmetrical manner, and the two front-to-back symmetrical fixing plates (5-1) are arranged adjacent to the upper side of one side wall of the middle side of the side wall of the support frame (4) and are inclined outward; A tension spring (5-2), wherein the tension spring (5-2) is in multiple numbers and is embedded and fixed on the top wall of the fixed plate (5-1) in equal quantity and at equal distances, and the upper end of the tension spring (5-2) is fixed on the inner top wall of the convex ring of the inspection box (1); The movable plates (5-3) are four in number and are in one-to-one contact with the inclined surface of the fixed plate (5-1), and one side of two corresponding movable plates (5-3) at the front and rear are matched and contacted with each other; Racks (5-4), there are four racks (5-4), which are respectively fixed on one side wall of the movable plate (5-3), the racks (5-4) on the two movable plates (5-3) on the same side are arranged in an up-and-down staggered manner, and a driving gear (5-5) is arranged to mesh between the racks (5-4) on the upper and lower sides; The linkage mechanism (5-6) is arranged in the partition (6), and two sides of the linkage mechanism (5-6) are respectively connected to the driving gears (5-5) on both sides.
4. The endocrine sample delivery device for endocrine clinical use according to claim 3, characterized in that: The linkage mechanism (5-6) comprises: A linkage rod (5-6-1), wherein the linkage rod (5-6-1) is screwed into the partition (6) via a bearing, and the two ends of the linkage rod (5-6-1) pass through the two sides of the partition (6) and the arc groove on the movable plate (5-3) in sequence, and are screwed into the two side walls of the inspection box (1) via bearings, and the driving gear (5-5) is sleeved and fixed on the two ends of the linkage rod (5-6-1); An insert rod (5-6-2), wherein the insert rod (5-6-2) is inserted into a cylindrical groove on the linkage rod (5-6-1), and drive blocks (5-6-3) are symmetrically fixed on both sides of the outer ring wall of the insert rod (5-6-2), and the drive blocks (5-6-3) are slidably arranged in a strip groove on the inner wall of the cylindrical groove; A connecting spring (5-6-4), wherein the connecting spring (5-6-4) is embedded in the insertion rod (5-6-2), and the rear end of the connecting spring (5-6-4) passes through the rear end of the insertion rod (5-6-2) and is fixed on the inner wall of the columnar groove of the linkage rod (5-6-1); A rotating disk (5-6-5), one side of the rotating disk (5-6-5) is embedded in a circular groove on a side wall of the inspection box (1), and the front end of the insertion rod (5-6-2) passes through the side wall of the inspection box (1) and is fixedly connected to the rotating disk (5-6-5), and a plurality of limiting teeth (5-6-6) are fixed at equal angles on the outer ring wall of the rotating disk (5-6-5), and the limiting teeth (5-6-6) are inserted in cooperation with the limiting teeth (5-6-6) groove on the inner ring wall of the circular groove on the side wall of the inspection box (1).
5. The endocrine sample delivery device for endocrine clinical use according to claim 1, characterized in that: The downward movement mechanism (8) comprises: Rotating rods (8-1), the rotating rods (8-1) are multiple and are equally and equidistantly connected to the partition (6) and a side wall of the inspection box (1) through bearings, and two adjacent rotating rods (8-1) are connected through a synchronous wheel transmission assembly; The limiting plates (8-2) are multiple and are fixed on multiple rotating rods (8-1) in equal quantity and at equal distances. The limiting plates (8-2) are respectively movably arranged in grooves on the partition plate (6) and the side wall of the inspection box (1). The limiting plates (8-2) are arranged to cooperate with and abut against the outer bottom wall of the inspection box (7); Driving rods (8-3), there are two driving rods (8-3), which are respectively screwed into a side wall of the inspection box (1) through bearings, the two driving rods (8-3) are connected through a synchronous wheel transmission assembly, and the driving rods (8-3) are respectively connected to the adjacent rotating rods (8-1) through the synchronous wheel transmission assembly; A downward moving motor (8-4) is embedded in and fixed on one side of the top wall of the inspection box (1), and an output shaft of the downward moving motor (8-4) is connected to the top end of one of the driving rods (8-3).
6. The endocrine sample delivery device for endocrine clinical use according to claim 1, characterized in that: The pushing mechanism (9) comprises: A push plate (9-1), the push plate (9-1) being arranged at one side inside the inspection box (1), the push plate (9-1) being arranged to cooperate with and abut against the inspection box (7) at the lower side of the downward movement mechanism (8); Pushing connecting rods (9-2), there are four pushing connecting rods (9-2), and two of them are screwed together through shaft rods, one end of one of the two screwed pushing connecting rods (9-2) is screwed to the pushing plate (9-1) through a hinge seat, and one end of the other pushing connecting rod (9-2) is screwed to the inner wall of the inspection box (1) through a hinge seat; A push rod (9-3), the push rod (9-3) is screwed into the side wall of the inspection box (1) through a bearing, and both ends of the push rod (9-3) are connected to the shaft rod on the push connecting rod (9-2) away from the push plate (9-1) through a worm gear pair; A material pushing motor (9-4) is embedded in and fixed in a side wall of the inspection box (1), and an output shaft of the material pushing motor (9-4) is connected to one end of the material pushing rod (9-3).
7. The endocrine sample delivery device for endocrine clinical use according to claim 1, characterized in that: The upward movement mechanism (10) comprises: An upward moving plate (10-1), the upward moving plate (10-1) is embedded in the lower side wall of the inspection box (1), the upper surface of the upward moving plate (10-1) and the inner bottom wall of the inspection box (1) are arranged in the same plane, the four corners of the lower surface of the upward moving plate (10-1) are all rotatably connected with an upward moving connecting rod (10-2) through a hinge seat, and the hinge seat at the lower end of the upward moving connecting rod (10-2) is movably inserted into a slide groove on the inner bottom wall of the inspection box (1); Moving blocks (10-3), there are two moving blocks (10-3), which are symmetrically slidably arranged in the lower side wall of the inspection box (1), and the two sides of the moving blocks (10-3) are respectively fixedly connected to the hinge seats on the two sides; Reciprocating screw rods (10-4), there are two reciprocating screw rods (10-4), which are respectively screwed to the moving blocks (10-3) on both sides through threads, the threads of the two reciprocating screw rods (10-4) are arranged oppositely, and the adjacent ends of the two reciprocating screw rods (10-4) are fixedly connected, and the reciprocating screw rods (10-4) are screwed into the lower side wall of the inspection box (1) through bearings; An upward motor (10-5), wherein the upward motor (10-5) is embedded in and fixed in a side wall of the inspection box (1), and an output shaft of the upward motor (10-5) is fixedly connected to one end of one of the reciprocating screw rods (10-4) via a bevel gear pair; The limiting mechanism (10-6) is a plurality of limiting mechanisms (10-6), and they are arranged in equal quantities and at equal distances in the embedding grooves (15) on the inner wall of one side of the inspection box (1) and the wall of one side of the partition (6). The limiting mechanism (10-6) is arranged in coordination with the inspection box (7).
8. The endocrine sample delivery device for endocrine clinical use according to claim 7, characterized in that: The limiting mechanism (10-6) comprises: A limit frame (10-6-1), one side of the limit frame (10-6-1) is embedded in the embedding groove (15), and the other side of the limit frame (10-6-1) passes through the embedding groove (15) and is arranged to abut against the lower surface of the convex strip on the side wall of the inspection box (7). A rotating shaft (10-6-2) passes through and is fixed to the interior of the limit frame (10-6-1), and the rotating shaft (10-6-2) is screwed to the inner wall of the embedding groove (15) through a bearing; A reset spring (10-6-3), wherein the reset springs (10-6-3) are in plurality and are equidistantly fixed in a rectangular groove on the top wall of the embedded groove (15); the lower end of the reset spring (10-6-3) is fixed on the upper surface of a limiting frame (10-6-1) located on one side inside the embedded groove (15).
9. The endocrine sample delivery device for endocrine clinical use according to claim 1, characterized in that: An anti-slip ring (14) is fixed on the bottom wall of the support frame (4), and the inner and outer peripheral walls of the anti-slip ring (14) are arranged in the same plane as the inner and outer peripheral walls of the support frame (4).