CN114348935B - Ampoule bottle bottleneck scratch equipment for mammary gland internal medicine transfusion - Google Patents
Ampoule bottle bottleneck scratch equipment for mammary gland internal medicine transfusion Download PDFInfo
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- CN114348935B CN114348935B CN202210022915.7A CN202210022915A CN114348935B CN 114348935 B CN114348935 B CN 114348935B CN 202210022915 A CN202210022915 A CN 202210022915A CN 114348935 B CN114348935 B CN 114348935B
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- block
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- ampoule bottle
- connecting rod
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- 239000003708 ampul Substances 0.000 title claims abstract description 74
- 239000003814 drug Substances 0.000 title claims abstract description 9
- 210000005075 mammary gland Anatomy 0.000 title claims abstract description 6
- 238000001802 infusion Methods 0.000 claims abstract description 9
- 210000000481 breast Anatomy 0.000 claims abstract description 8
- 230000000903 blocking effect Effects 0.000 claims description 2
- 230000006835 compression Effects 0.000 claims 1
- 238000007906 compression Methods 0.000 claims 1
- 238000006748 scratching Methods 0.000 abstract description 9
- 230000002393 scratching effect Effects 0.000 abstract description 9
- 230000000694 effects Effects 0.000 description 8
- 238000009434 installation Methods 0.000 description 4
- 239000000243 solution Substances 0.000 description 4
- 244000309464 bull Species 0.000 description 3
- 230000005540 biological transmission Effects 0.000 description 2
- 239000007788 liquid Substances 0.000 description 2
- 230000002146 bilateral effect Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 229940079593 drug Drugs 0.000 description 1
- 239000011521 glass Substances 0.000 description 1
- 238000002347 injection Methods 0.000 description 1
- 239000007924 injection Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000004806 packaging method and process Methods 0.000 description 1
- 210000002966 serum Anatomy 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 229960005486 vaccine Drugs 0.000 description 1
Landscapes
- Medical Preparation Storing Or Oral Administration Devices (AREA)
- Devices For Opening Bottles Or Cans (AREA)
Abstract
The invention discloses ampoule bottle neck scratching equipment for infusion in mammary gland medicine. The technical problem of the invention is to provide ampoule bottle neck scratching equipment which is convenient for ampoule bottle neck scratching, automatically drives ampoule bottles to rotate, automatically fixes and unlocks components to realize ampoule bottle rotation, automatically positions the rotating ampoule bottles and automatically clamps and fixes ampoule bottles for breast medical transfusion. The utility model provides a breast internal medicine is ampoule bottleneck mar equipment for infusion, includes the shell, is equipped with the subassembly of placing in the shell inside; the knife blocks are uniformly arranged on the placement component at intervals; the pushing component is arranged on the placing component. The ampoule bottle neck scratching device for the breast medical infusion has the advantages of automatically driving the ampoule bottle, automatically clamping and fixing and unlocking the connecting rod, and automatically positioning the ampoule bottle in a rotating way and automatically clamping and fixing the ampoule bottle.
Description
Technical Field
The invention relates to scratching equipment, in particular to ampoule bottle neck scratching equipment for infusion in a mammary gland medical department.
Background
The ampoule bottle is a small glass container for containing liquid medicine, is commonly used for storing medicines for injection, vaccines, serum and the like, is also used for packaging oral liquid, and is required to be scratched in advance in order to facilitate the use of the ampoule bottle during the infusion of the mammary gland medicine.
The existing ampoule bottleneck scratch technology basically relies on a user to hold a cutter block and manually rotate the cutter block to scratch the ampoule bottleneck, however, in such an operation, the cutter block is manually utilized to scratch, time and energy are consumed, the efficiency is low and certain danger exists, the cutter block is manually rotated or the ampoule bottle is rotated, the same trouble and the labor are wasted, the ampoule bottle is repeatedly rotated for a plurality of circles, the energy is wasted, and finally, the ampoule bottle is not completely fixed during scratching, and is easy to shake and move to influence the scratch.
Therefore, it is necessary to design an ampoule bottle neck scratch device for the infusion of the breast medical department, which is convenient for ampoule bottle neck scratch, automatically drives ampoule bottles to rotate, automatically fixes and unlocks ampoule bottles to rotate, automatically positions the ampoule bottles to rotate, and automatically clamps and fixes the ampoule bottles.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides ampoule bottle neck scratching equipment for the breast medical transfusion, which is convenient for ampoule bottle neck scratching, automatically drives ampoule bottles to rotate, automatically fixes and unlocks components to realize ampoule bottle rotation, automatically positions the rotating ampoule bottles and automatically clamps and fixes the ampoule bottles.
The aim of the invention can be achieved by adopting the following technical scheme:
in a first aspect, a breast medicine infusion is with ampoule bottleneck mar equipment, including: a housing, in which a placement assembly is disposed; the knife blocks are uniformly arranged on the placement component at intervals; the pushing component is arranged on the placing component.
Further, place the subassembly and include: the first support frame is connected with the inside of the shell; the support rods are symmetrically and rotatably connected to the two sides of the upper part of the first support frame; the upper parts of the support rods are connected with the placement frames; the second support frame is connected with the middle of the upper portion of the first support frame, and four cutter blocks are evenly connected to the upper portion of the first support frame in a sliding mode at intervals.
Further, the pushing assembly comprises: the first springs are connected between the cutter block and the second support frame, and the first springs are sleeved on the cutter block; the middle of the upper part of the second support frame is connected with a pressing rod in a sliding manner; the second spring is connected between the pressure lever and the second support frame and sleeved on the pressure lever; the wedge block is connected with the depression bar downside, and the wedge block cooperates with the sword piece each other.
Further, still including rotating assembly, rotating assembly is including: the middle of the lower side of the inner part of the shell is rotatably connected with a rotating shaft; the upper part and the middle part of the rotating shaft are connected with the first belt pulley; the lower parts of the support rods are connected with the second belt pulleys; the conveying belts are connected between the upper first belt pulley and the one-side second belt pulley and between the lower first belt pulley and the one-side second belt pulley; the upper part of the first belt pulley at the upper side is connected with a connecting rod; the inner side of the upper part of the connecting rod is rotatably connected with the rotating plate; a spring is connected between the rotating plate and the connecting rod; the lower part of the wedge-shaped block is connected with a rotating rod; the rotary plate is matched with the rotary rod and the check block; and a third spring is connected between the stop block and the rotating rod.
Further, still including the card subassembly, the card subassembly is including: a connecting rod is connected to one side of the middle part of the rotating rod; the middle of one side of the upper part of the first support frame is connected with a fixed block; the first guide rod is symmetrically connected with one side of the fixed block in a sliding mode up and down; the clamping block is connected between one sides of the first guide rods, and the clamping block is matched with the connecting rod and the connecting rod; and a fourth spring is vertically and symmetrically connected between the clamping block and the first support frame, and the fourth spring is sleeved on the first guide rod.
Further, the device also comprises a limiting component, and the limiting component is arranged on one side of the fixed block.
Further, spacing subassembly is including: the second guide rod is connected to one side of the fixed block in a sliding manner; the upper part of the second guide rod is connected with a limiting block, and the limiting block is matched with the connecting rod; and a fifth spring is connected between the limiting block and the fixed block and sleeved on the second guide rod.
Further, still including fixed subassembly, fixed subassembly is including: the inner sides of the wedge-shaped rods and the cutter blocks are respectively connected with a wedge-shaped rod; the push rods are connected to the outer sides of the upper parts of the placing frames in a sliding mode, and are matched with the wedge-shaped rods; the sixth springs are symmetrically connected between the push rod and the placement frame; the clamping rods are symmetrically and slidably connected to the inner side of the middle part of the placement frame; the outer sides of the clamping rods are respectively connected with a pushing block in a sliding manner, and the pushing blocks are matched with the pushing rods; the seventh springs are connected between the clamping rods and the pushing blocks; and the eighth springs are connected between the pushing block and the placing frame, and are sleeved on the clamping rods.
The invention has the advantages that: (1) According to the invention, the wedge-shaped block drives the rotating rod and the stop dog to move downwards to drive the rotating plate to rotate, the clockwork spring is deformed, then the rotating plate stops rotating, the connecting rod rotates under the action of the clockwork spring, and finally the supporting rod, the placing frame and the ampoule bottle are driven to rotate, so that the effect of automatically driving the ampoule bottle is achieved; (2) According to the ampoule bottle locking device, the connecting rod is driven to move downwards through the rotating rod, the clamping block is pushed to move forwards to release the connecting rod, so that the connecting rod and the ampoule bottle can smoothly rotate for 360 degrees, and the effects of automatically clamping, fixing and unlocking the connecting rod are achieved; (3) When the connecting rod rotates, the limiting block is pushed to move downwards, the connecting rod rotates for 360 degrees, namely, after the ampoule bottle rotates for 360 degrees, the limiting block moves upwards to reset and clamp the connecting rod, so that the effect of automatically positioning the ampoule bottle in a rotating way is achieved; (4) According to the ampoule bottle clamping device, the wedge-shaped rod is driven to move outwards by the cutter block, the push rod is pushed to move downwards, the push block and the clamping rod are pushed to move inwards, and the ampoule bottle is clamped and fixed, so that the ampoule bottle clamping effect is achieved.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic cross-sectional view of the present invention.
FIG. 3 is a schematic view of the installation of the placement module and the pushing module of the present invention.
Fig. 4 is a schematic installation view of the rotating assembly, a schematic partial structure of the placing assembly and the pushing assembly of the present invention.
Fig. 5 is a schematic view of a first partial structure of the rotary assembly of the present invention.
Fig. 6 is a schematic view of a second partial structure of the rotary assembly of the present invention.
Fig. 7 is a schematic view of a third partial structure of the rotary assembly of the present invention.
FIG. 8 is a schematic view of the installation of the clamping assembly and the spacing assembly of the present invention.
Fig. 9 is an enlarged schematic view of the structure at a of the present invention.
Fig. 10 is a schematic installation view of the fixing assembly and a schematic partial structure of the placement assembly of the present invention.
FIG. 11 is a schematic view of a portion of the structure of the fixing assembly and the placement assembly of the present invention.
Wherein the above figures include the following reference numerals: 1. the device comprises a shell, 3, a cutter block, 4, a placement component, 41, a first supporting frame, 42, a supporting rod, 43, a placement frame, 44, a second supporting frame, 5, a pushing component, 51, a first spring, 52, a pressing rod, 53, a wedge block, 54, a second spring, 6, a rotating component, 61, a first belt pulley, 62, a second belt pulley, 63, a conveying belt, 64, a connecting rod, 65, a spring, 66, a rotating plate, 67, a rotating rod, 68, a stop block, 69, a third spring, 610, a rotating shaft, 7, a clamping component, 71, a connecting rod, 72, a first guide rod, 73, a clamping block, 74, a fourth spring, 75, a fixed block, 8, a limiting component, 81, a second guide rod, 82, a limiting block, 83, a fifth spring, 9, a fixed component, 91, a wedge rod, 92, a push rod, 93, a sixth spring, 94, a clamping rod, 95, a pushing block, 96, a seventh spring, 97 and an eighth spring.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are some embodiments of the present invention, but not all embodiments of the present invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Example 1
As shown in fig. 1-3, this embodiment discloses a bottleneck scratch equipment of ampoule bottle for breast medical infusion, including shell 1, sword piece 3, place subassembly 4 and promote subassembly 5, the inside subassembly 4 that is equipped with of shell 1 is placed to the interval on placing the subassembly 4 evenly is equipped with four sword pieces 3, is equipped with on placing the subassembly 4 and promotes subassembly 5.
The placing component 4 comprises a first supporting frame 41, supporting rods 42, a placing frame 43 and a second supporting frame 44, wherein the first supporting frame 41 is connected with the inside of the shell 1, the supporting rods 42 are rotationally connected to the front side and the rear side of the upper portion of the first supporting frame 41 in a bilateral symmetry mode, the placing frame 43 is connected to the upper portion of the supporting rods 42, the second supporting frame 44 is connected to the middle of the upper portion of the first supporting frame 41, and four cutter blocks 3 are evenly connected to the upper portion of the first supporting frame 41 in a sliding mode at intervals.
The pushing assembly 5 comprises a first spring 51, a pressing rod 52, a wedge block 53 and a second spring 54, wherein the first spring 51 is connected between the cutter block 3 and the second supporting frame 44, the first spring 51 is sleeved on the cutter block 3, the pressing rod 52 is connected in the middle of the upper part of the second supporting frame 44 in a sliding mode, the second spring 54 is connected between the pressing rod 52 and the second supporting frame 44, the second spring 54 is sleeved on the pressing rod 52, the wedge block 53 is connected to the lower side of the pressing rod 52, and the wedge block 53 is matched with the cutter block 3.
When a user needs to scratch the ampoule bottle neck, firstly, the ampoule bottle is placed in the placement frame 43 respectively, then the pressing rod 52 and the wedge-shaped block 53 are pushed to move downwards, the second spring 54 is compressed, the cutter block 3 is pushed to move outwards, the first spring 51 is compressed, the cutter block 3 is enabled to move to be contacted with the ampoule bottle neck on the same side, at the moment, the supporting rod 42 is pushed to rotate continuously, the placement frame 43 and the ampoule bottle are driven to rotate continuously, the cutter block 3 scratches the ampoule bottle neck, after the ampoule bottle neck is scratched, the supporting rod 42 is stopped to rotate, the placement frame 43 and the ampoule bottle stop rotating, the pressing rod 52 is loosened, under the action of the second spring 54, the pressing rod 52 and the wedge-shaped block 53 are pushed to move upwards, the wedge-shaped block 53 is far away from the cutter block 3, the cutter block 3 is pushed to move inwards to be far away from the ampoule bottle neck under the action of the first spring 51, and the ampoule bottle neck is restored to the original state, and the ampoule bottle can be taken out and collected, and the ampoule bottle is reciprocated, and the ampoule bottle scratch is achieved.
Example 2
As shown in fig. 1, 2 and 4-11, in some embodiments, the rotary assembly 6 further includes a rotary assembly 6, where the rotary assembly 6 includes a first pulley 61, a second pulley 62, a transmission belt 63, a connecting rod 64, a spring 65, a rotating plate 66, a rotating rod 67, a stopper 68, a third spring 69 and a rotating shaft 610, the rotating shaft 610 is rotatably connected to the middle of the lower side of the inner portion of the housing 1, the first pulley 61 is connected to the upper portion and the middle portion of the rotating shaft 610, the second pulley 62 is connected to the lower portion of the supporting rod 42, the transmission belt 63 is connected between the upper first pulley 61 and the left second pulley 62 and between the lower first pulley 61 and the right second pulley 62, the connecting rod 64 is connected to the upper portion of the upper first pulley 61, the inner side of the connecting rod 64 is rotatably connected to the rotating plate 66, the spring 65 is connected between the rotating plate 66 and the connecting rod 64, the rotating rod 67 is connected to the lower portion of the wedge block 53, the stopper 68 is slidably connected to the left front side of the lower portion of the rotating rod 67, the rotating plate 66 is matched with the stopper 68, and the third spring 69 is connected between the stopper 68 and the stopper 67.
When the wedge 53 moves downwards, the rotating rod 67 and the stop block 68 are driven to move downwards, so that the rotating plate 66 is driven to rotate anticlockwise, meanwhile, a user stabilizes the connecting rod 64 and deforms the spring 65, then the rotating plate 66 is driven to move rightwards after rotating to contact the uppermost end of the track of the rotating rod 67, the connecting rod 64 is loosened, under the action of the spring 65, the connecting rod 64 is driven to rotate 360 degrees, the first belt pulley 61 and the rotating shaft 610 are driven to rotate 360 degrees, the second belt pulley 62 and the supporting rod 42 are driven to rotate 360 degrees through the conveying belt 63, finally, the placing frame 43 and the ampoule bottle are driven to rotate 360 degrees, the ampoule bottle is enabled to finish bottleneck scratch, then the wedge 53 moves upwards, the rotating rod 67 and the stop block 68 are driven to move upwards, the rotating plate 66 moves downwards along the track of the rotating rod 67, the stop block 68 moves rightwards after contacting the rotating plate 66, the third spring 69 is compressed, and the stop block 68 moves leftwards under the action of the third spring 69 after moving through the rotating plate 66, the ampoule bottle is prevented from moving upwards at first, and the ampoule bottle is restored to the original state, and thus the ampoule bottle is driven to reciprocate.
Still including blocking subassembly 7, block subassembly 7 including connecting rod 71, first guide bar 72, fixture block 73, fourth spring 74 and fixed block 75, the bull stick 67 middle part front side is connected with connecting rod 71, be connected with fixed block 75 in the middle of the upper portion front side of first support frame 41, fixed block 75 front side is connected with first guide bar 72 in the upper and lower symmetry sliding mode, be connected with fixture block 73 between the first guide bar 72 rear side, fixture block 73 and connecting rod 64 mutually support with connecting rod 71, upper and lower symmetry is connected with fourth spring 74 between fixture block 73 and the first support frame 41, fourth spring 74 overlaps on first guide bar 72.
Under the initial condition, the connecting rod 64 is fixed in clamping block 73 chucking, when the bull stick 67 moves down, drive connecting rod 71 moves down, after connecting rod 71 moves to contact fixture block 73, will promote fixture block 73 and move forward, fourth spring 74 is compressed, fixture block 73 keeps away from connecting rod 64, loosen connecting rod 64, make connecting rod 64 rotate the reset under the effect of clockwork spring 65, finally drive ampoule and rotate 360 degrees, the bull stick 67 upwards moves after the ampoule scratch finishes, drive connecting rod 71 upwards move and keep away from fixture block 73, under the effect of fourth spring 74, promote the fixture block 73 to move backward and block into connecting rod 64, fix connecting rod 64, resume former state, so reciprocating, reach the effect of automatic chucking is fixed and unblock connecting rod 64.
Still including spacing subassembly 8, spacing subassembly 8 is including second guide bar 81, stopper 82 and fifth spring 83, and fixed block 75 rear side sliding is connected with second guide bar 81, and second guide bar 81 upper portion is connected with stopper 82, and stopper 82 and connecting rod 64 mutually support, are connected with fifth spring 83 between stopper 82 and the fixed block 75, and fifth spring 83 overlaps on second guide bar 81.
When the connecting rod 64 rotates, the limiting block 82 is pushed to move downwards, the fifth spring 83 is compressed, the rotating plate 66 rotates for 360 degrees, namely the ampoule bottle rotates for 360 degrees, after ampoule bottle neck scratches are completed, the limiting block 82 is opposite to the front side slotted hole at the upper part of the connecting rod 64, and under the action of the fifth spring 83, the limiting block 82 is pushed to move upwards and clamped into the connecting rod 64, the connecting rod 64 is fixed, the original state is restored, and the ampoule bottle rotating positioning effect is achieved automatically.
Still including fixed subassembly 9, fixed subassembly 9 is including wedge 91, push rod 92, sixth spring 93, clamping bar 94, ejector pad 95, seventh spring 96 and eighth spring 97, the sword piece 3 inboard all is connected with wedge 91, place frame 43 upper portion outside and all be connected with push rod 92 in a sliding manner, ejector pad 95 and wedge 91 mutually support, all be connected with sixth spring 93 between push rod 92 and the frame 43 of placing, place frame 43 middle part inboard symmetry is connected with clamping bar 94, clamping bar 94 outside all be connected with ejector pad 95 in a sliding manner, ejector pad 95 mutually support with push rod 92, all be connected with seventh spring 96 between clamping bar 94 and the ejector pad 95, all be connected with eighth spring 97 between ejector pad 95 and the frame 43 of placing, eighth spring 97 overlaps on clamping bar 94.
When the cutter block 3 moves outwards, the wedge-shaped rod 91 is driven to move outwards, the wedge-shaped rod 91 moves to be in contact with the push rod 92, the push rod 92 is pushed to move downwards, the sixth spring 93 is compressed, the push block 95 is pushed to move inwards, the eighth spring 97 is compressed, the clamping rod 94 is driven to move inwards, after the ampoule bottle is clamped and fixed, the clamping rod 94 is not moved any more, at the moment, the push block 95 continues to move inwards, the seventh spring 96 is compressed, then the ampoule bottle neck is scratched by the cutter block 3, the cutter block 3 moves inwards to reset, the wedge-shaped rod 91 is driven to move inwards to be away from the push rod 92, the push rod 92 is pushed to move upwards under the action of the sixth spring 93, the push block 95 is pushed to move outwards, the seventh spring 96 is pushed to move outwards after stretching back to the original state, the clamping rod 94 is driven to move outwards, the ampoule bottle is restored to the original state, and the ampoule bottle is released by the clamping rod 94, so that the ampoule bottle can be taken out and fixed in a reciprocating mode is achieved.
The above embodiments are only for illustrating the technical solution of the present invention, and are not limiting; although the invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical scheme described in the foregoing embodiments can be modified or some technical features thereof can be replaced by equivalents; such modifications and substitutions do not depart from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims (2)
1. Ampoule bottleneck mar equipment for mammary gland internal medicine infusion, its characterized in that includes: a housing (1), wherein a placement component (4) is arranged inside the housing (1); the cutter blocks (3) are uniformly arranged on the placement assembly (4) at intervals; the pushing component (5), the placing component (4) is provided with the pushing component (5), and the placing component (4) comprises: the first support frame (41) is connected with the inside of the shell (1); the support rods (42) are symmetrically and rotatably connected with the two sides of the upper part of the first support frame (41); the upper parts of the support rods (42) are connected with the placement frames (43); the second support frame (44) is connected with the middle of the upper part of the first support frame (41), and the four cutter blocks (3) are uniformly and slidably connected to the upper part of the first support frame (41) at intervals;
the pushing component (5) comprises: the first springs (51) are connected between the cutter block (3) and the second supporting frame (44), and the first springs (51) are sleeved on the cutter block (3); the middle of the upper part of the second support frame (44) is connected with the compression bar (52) in a sliding way; a second spring (54), a second spring (54) is connected between the pressure lever (52) and the second supporting frame (44), and the second spring (54) is sleeved on the pressure lever (52); the lower side of the pressing rod (52) is connected with a wedge block (53), and the wedge block (53) is matched with the cutter block (3);
still including rotating assembly (6), rotating assembly (6) are including: a rotating shaft (610), wherein the middle of the lower side of the inner part of the shell (1) is rotatably connected with the rotating shaft (610); the upper part and the middle part of the rotating shaft (610) are connected with the first belt pulley (61); the lower parts of the support rods (42) are connected with the second belt pulleys (62); a conveyor belt (63), wherein the conveyor belt (63) is connected between the upper first belt pulley (61) and the one-side second belt pulley (62) and between the lower first belt pulley (61) and the one-side second belt pulley (62); a connecting rod (64), wherein the connecting rod (64) is connected to the upper part of the upper first belt pulley (61); the rotating plate (66) is rotatably connected with the inner side of the upper part of the connecting rod (64); a spring (65) is connected between the rotating plate (66) and the connecting rod (64); the lower part of the wedge-shaped block (53) is connected with a rotating rod (67); the stop block (68), one side of the lower part of the rotating rod (67) is connected with the stop block (68) in a sliding way, and the rotating plate (66) is matched with the rotating rod (67) and the stop block (68); a third spring (69), wherein the third spring (69) is connected between the stop block (68) and the rotating rod (67);
still including blocking subassembly (7), block subassembly (7) including: a connecting rod (71), wherein one side of the middle part of the rotating rod (67) is connected with the connecting rod (71); a fixed block (75), wherein the fixed block (75) is connected in the middle of one side of the upper part of the first support frame (41); the first guide rod (72) is symmetrically connected with the first guide rod (72) in a sliding mode from top to bottom at one side of the fixed block (75); the clamping block (73), the clamping block (73) is connected between one sides of the first guide rods (72), and the clamping block (73) is matched with the connecting rod (64) and the connecting rod (71); the fourth spring (74) is symmetrically connected between the clamping block (73) and the first supporting frame (41) up and down, and the fourth spring (74) is sleeved on the first guide rod (72);
the device also comprises a limiting component (8), wherein the limiting component (8) is arranged at one side of the fixed block (75);
the limiting component (8) comprises: a second guide rod (81), wherein one side of the fixed block (75) is connected with the second guide rod (81) in a sliding way; the limiting block (82) is connected to the upper portion of the second guide rod (81), and the limiting block (82) is matched with the connecting rod (64); and a fifth spring (83), wherein the fifth spring (83) is connected between the limiting block (82) and the fixed block (75), and the fifth spring (83) is sleeved on the second guide rod (81).
2. The ampoule bottle neck scoring device for breast medical transfusion as claimed in claim 1, further comprising a fixing component (9), wherein the fixing component (9) comprises: the inner sides of the wedge-shaped rods (91) are connected with the wedge-shaped rods (91) respectively; the push rods (92) are connected with the push rods (92) in a sliding manner on the outer sides of the upper parts of the placement frames (43), and the push rods (92) are matched with the wedge-shaped rods (91); the sixth springs (93), the sixth springs (93) are symmetrically connected between the push rod (92) and the placement frame (43); the clamping rod (94) is symmetrically and slidingly connected with the inner side of the middle part of the placement frame (43); the pushing blocks (95) are slidably connected to the outer sides of the clamping rods (94), and the pushing blocks (95) are matched with the pushing rods (92); a seventh spring (96), wherein the seventh spring (96) is connected between the clamping rod (94) and the pushing block (95); eighth springs (97), all be connected with eighth springs (97) between ejector pad (95) and the frame (43) of placing, eighth springs (97) cover is on clamping lever (94).
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