CN215616222U - Automatic assembling machine for plastic needle seat - Google Patents

Automatic assembling machine for plastic needle seat Download PDF

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Publication number
CN215616222U
CN215616222U CN202121660896.8U CN202121660896U CN215616222U CN 215616222 U CN215616222 U CN 215616222U CN 202121660896 U CN202121660896 U CN 202121660896U CN 215616222 U CN215616222 U CN 215616222U
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China
Prior art keywords
plastic needle
carrier
rotary table
sleeve
feeding mechanism
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CN202121660896.8U
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Chinese (zh)
Inventor
胡木生
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Kunshan Wofu Intelligent Equipment Co ltd
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Kunshan Wofu Intelligent Equipment Co ltd
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Priority to CN202121660896.8U priority Critical patent/CN215616222U/en
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Abstract

The utility model discloses an automatic plastic needle base assembling machine which comprises a rotary table, a plurality of groups of carrier sleeves, a first feeding mechanism, a second feeding mechanism, a compression joint mechanism, a first detection mechanism, a second detection mechanism and a discharging mechanism, wherein the carrier sleeves are arranged on the periphery of the rotary table at equal intervals and used for limiting plastic needle bases, the first feeding mechanism is sequentially arranged outside the rotary table and used for conveying the plastic needle bases to fall into the carrier sleeves, the second feeding mechanism is used for conveying aluminum cores to fall into the plastic needle bases, the compression joint mechanism is arranged in a lifting mode and used for compression joint of the aluminum cores and the plastic needle bases to be tightly matched, the first detection mechanism is arranged in front of the compression joint mechanism and used for detecting whether parts exist in the carrier sleeves, the second detection mechanism is arranged behind the compression joint mechanism and used for detecting the assembling height of the aluminum cores and the plastic needle bases in the carrier sleeves, and the discharging mechanism is arranged outside the rotary table and used for pushing and penetrating through the plastic needle bases and the aluminum cores in the carrier sleeves from bottom to top. The utility model realizes the automatic and efficient assembly of the plastic needle seats in batches.

Description

Automatic assembling machine for plastic needle seat
Technical Field
The utility model belongs to the technical field of medical instrument assembly, and particularly relates to an automatic plastic needle seat assembling machine.
Background
The conventional apparatus that has the syringe needle among the medical instrument is supporting to have the plastics needle file that is used for the protection, and in order to promote the protectiveness and the suitability of plastics needle file, its inside equipment has the aluminium core, assembles consuming time and wasting force through the manual work, and has more difficulty, can't realize the production operation of mass. Therefore, an assembling machine suitable for assembling the plastic needle seat is needed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problems and provides an automatic plastic needle seat assembling machine, so that the plastic needle seats can be assembled automatically and efficiently in batch. In order to achieve the purpose, the technical scheme of the utility model is as follows:
the automatic plastic needle seat assembling machine comprises a rotary table, a plurality of groups of carrier sleeves which are arranged on the circumferential direction of the rotary table at equal intervals and used for limiting plastic needle seats, a first feeding mechanism which is arranged outside the rotary table according to the sequence and used for conveying the plastic needle seats to fall into the carrier sleeves, a second feeding mechanism which is used for conveying aluminum cores to fall into the plastic needle seats, a pressing and connecting mechanism which is arranged in a lifting mode and used for pressing and connecting the aluminum cores and the plastic needle seats to be tightly matched, a first detection mechanism which is arranged in front of the pressing and connecting mechanism and used for detecting whether parts in the carrier sleeves exist, a second detection mechanism which is arranged behind the pressing and connecting mechanism and used for detecting the assembling height of the aluminum cores and the plastic needle seats in the carrier sleeves, and a blanking mechanism which is arranged outside the rotary table and used for pushing and penetrating through the plastic needle seats and the aluminum cores in the carrier sleeves from bottom to top.
Specifically, the carrier sleeve comprises a hollow sleeve penetrating through the turntable and a flange arranged at the top of the sleeve and hung on the surface of the turntable; the plastic needle holder is characterized in that a supporting groove for supporting the plastic needle holder is formed in the sleeve, two ends of the plastic needle holder are arranged in a penetrating mode, one end of the aluminum core penetrates through the bottom of the plastic needle holder to extend out, and the other end of the aluminum core is in limiting hanging connection with the inside of the plastic needle holder.
Specifically, the first feeding mechanism comprises a vibration track, a telescopic side push plate arranged at the tail end of the vibration track and used for side pushing and limiting materials, a fixed plate arranged at the bottom of the side push plate and a material guide pipe penetrating through the fixed plate; the bottom end of the material guide pipe is arranged corresponding to the sleeve; and the side push plate is provided with an arc-shaped positioning groove for positioning incoming materials, and the positioning groove is arranged corresponding to the top end of the material guide pipe.
Specifically, the first feeding mechanism is consistent with the second feeding mechanism in structure, the first feeding mechanism is internally provided with a vibration track for feeding the plastic needle seat, and the second feeding mechanism is internally provided with a vibration track for feeding the aluminum core.
Specifically, the compression joint mechanism comprises a group of compression bars arranged in a lifting and moving manner and a pressure plate used for guiding the compression bars to be pressed into the carrier sleeve; the pressure plate is internally provided with a guide hole corresponding to the pressure rod.
Specifically, the first detection mechanism comprises a first sensor which is arranged above the carrier sleeve and used for detecting the positions of the plastic needle seat and the aluminum core; the second detection mechanism comprises a second sensor which is arranged above the carrier sleeve and used for detecting the height of the plastic needle seat into which the aluminum core is arranged.
Specifically, unloading mechanism is including locating carousel below and carrier cover corresponding liftable ejector pin, locate the lower feed bin of the corresponding carrier cover of carousel top.
Compared with the prior art, the automatic plastic needle seat assembling machine has the beneficial effects that:
the carrier sleeve for loading the plastic needle base is arranged on the turntable, so that the aluminum core can penetrate through the plastic needle base for assembly, and the assembly efficiency is improved; the compression joint mechanism tightly matches the aluminum core and the plastic needle seat to realize effective positioning and assembly; the first detection mechanism and the second detection mechanism carry out accurate induction detection on the components in the carrier sleeve, and the assembly in place is ensured to be error-free; the unloading mechanism cooperates with the carrier sleeve, the automatic liftout breaks away from, and the unloading is simple and easy and quick.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a schematic sectional view of the carrier sleeve in the present embodiment;
FIG. 3 is a schematic view of the plastic needle holder assembly in this embodiment;
FIG. 4 is a schematic view of a loading mechanism in the present embodiment;
FIG. 5 is a schematic view of a pressing mechanism in the present embodiment;
the figures in the drawings represent:
the device comprises a turntable 1, a plastic needle seat 2, an aluminum core 21, a carrier sleeve 3, a sleeve 31, a flange 32, a support groove 33, an inclined ring 34, a first feeding mechanism 4, a vibration track 41, a side pushing plate 42, a fixed plate 43, a material guide pipe 44, a positioning groove 45, a second feeding mechanism 5, a crimping mechanism 6, a pressing rod 61, a pressing plate 62, a guide hole 63, a first detection mechanism 7, a second detection mechanism 71, a first sensor 72, a second sensor 73, a blanking mechanism 8, an ejector rod 81 and a blanking bin 82.
Detailed Description
The technical solutions in the embodiments of the present invention are described clearly and completely below, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments.
Example (b):
referring to fig. 1-5, this embodiment is an automatic assembling machine for plastic needle seat, the device comprises a rotary table 1, a plurality of groups of carrier sleeves 3 which are arranged on the circumferential direction of the rotary table 1 at equal intervals and used for limiting plastic needle seats 2, a first feeding mechanism 4 which is arranged outside the rotary table 1 in sequence and used for conveying the plastic needle seats 2 to fall into the carrier sleeves 3, a second feeding mechanism 5 which is used for conveying aluminum cores 21 to fall into the plastic needle seats 2, a crimping mechanism 6 which is arranged in a lifting mode and used for crimping the aluminum cores 21 to be tightly matched with the plastic needle seats 2, a first detection mechanism 7 which is arranged in front of the crimping mechanism 6 and used for detecting whether parts in the carrier sleeves 3 exist, a second detection mechanism 71 which is arranged behind the crimping mechanism 6 and used for detecting the assembly height of the aluminum cores 21 and the plastic needle seats 2 in the carrier sleeves 3, and a blanking mechanism 8 which is arranged outside the rotary table 1 and used for pushing and penetrating through the plastic needle seats 2 and the aluminum cores 21 in the carrier sleeves 3 from bottom to top.
The carrier sleeve 3 comprises a hollow sleeve 31 penetrating through the turntable 1 and a flange 32 arranged at the top of the sleeve 31 and hung on the surface of the turntable 1; the inside of the sleeve 31 is provided with a supporting groove 33 for supporting the plastic needle holder 2, and the top end of the supporting groove 33 is provided with a sloping inclined ring 34. The bottom of supporting groove 33 bottom is located to the bottom of plastics needle file 2, and the both ends of plastics needle file 2 link up the setting, and the one end of aluminium core 21 runs through the bottom setting that extends plastics needle file 2, and the spacing articulate in the inside of plastics needle file 2 of the other end of aluminium core 21.
The first feeding mechanism 4 comprises a vibration track 41, a telescopic side pushing plate 42 arranged at the tail end of the vibration track 41 and used for side pushing and limiting materials, a fixing plate 43 arranged at the bottom of the side pushing plate 42 and a material guide pipe 44 penetrating through the fixing plate 43; the bottom end of the guide tube 44 is disposed corresponding to the position of the sleeve 31. The side push plate 42 is provided with an arc-shaped positioning groove 45 for positioning incoming materials, and the positioning groove 45 is arranged corresponding to the top end of the material guide pipe 44.
The first feeding mechanism 4 and the second feeding mechanism 5 are consistent in structure, the plastic needle seat 2 is fed on the vibration track 41 in the first feeding mechanism 4, and the aluminum core 21 is fed on the vibration track 41 in the second feeding mechanism 5.
The compression joint mechanism 6 comprises a group of compression bars 61 which can be arranged in a lifting and moving way and a pressure plate 62 which is used for guiding the compression bars 61 to be pressed into the carrier sleeve 3; the pressure plate 62 is provided with a guide hole 63 corresponding to the pressure rod 61.
The first detection mechanism 7 comprises a first sensor 72 which is arranged above the carrier sleeve 3 and is used for detecting the positions of the plastic needle seat 2 and the aluminum core 21, and the first sensor 72 detects whether the plastic needle seat 2 or the aluminum core 21 is installed. The second detection mechanism 71 comprises a second sensor 73 arranged above the carrier sleeve 3 and used for detecting the height of the aluminum core 21 assembled in the plastic needle seat 2, and the second sensor 73 detects the height of the aluminum core 21 inserted in the plastic needle seat 2, so as to judge whether the aluminum core 21 is assembled in place.
The blanking mechanism 8 comprises a push rod 81 which is arranged below the turntable 1 and can be lifted corresponding to the carrier sleeve 3, and a blanking bin 82 which is arranged above the turntable 1 and corresponds to the carrier sleeve 3; the ejector rod 81 penetrates through the bottom end of the carrier sleeve 3 to eject the assembled plastic needle seat 2 and the aluminum core 21 to be separated, and the plastic needle seat enters the blanking bin 82 for blanking.
When the embodiment is applied, the carrier sleeve 3 for loading the plastic needle base 2 is arranged on the turntable 1, so that the aluminum core 21 can penetrate through the plastic needle base 2 for assembly, and the assembly efficiency is improved; the compression joint mechanism 6 tightly fits the aluminum core 21 and the plastic needle seat 2 to realize effective positioning and assembly; the first detection mechanism 7 and the second detection mechanism 71 perform accurate induction detection on the components in the carrier sleeve 3, so that no error exists in the in-place assembly; the blanking mechanism 8 is matched with the carrier sleeve 3, automatic ejection is carried out, and blanking is simple and rapid.
What has been described above are merely some embodiments of the present invention. It will be apparent to those skilled in the art that various changes and modifications can be made without departing from the inventive concept thereof, and these changes and modifications can be made without departing from the spirit and scope of the utility model.

Claims (7)

1. Automatic kludge of plastics needle file, its characterized in that: the automatic feeding device comprises a rotary table, a plurality of groups of carrier sleeves which are arranged on the circumferential direction of the rotary table at equal intervals and used for limiting plastic needle seats, a first feeding mechanism which is arranged outside the rotary table according to the sequence and used for conveying the plastic needle seats to fall into the carrier sleeves, a second feeding mechanism which is used for conveying aluminum cores to fall into the plastic needle seats, a pressing mechanism which is arranged in a lifting mode and used for pressing and connecting the aluminum cores and the plastic needle seats to be tightly matched, a first detection mechanism which is arranged in front of the pressing mechanism and used for detecting whether parts in the carrier sleeves exist, a second detection mechanism which is arranged behind the pressing mechanism and used for detecting the assembling height of the aluminum cores and the plastic needle seats in the carrier sleeves, and a blanking mechanism which is arranged outside the rotary table and used for pushing and penetrating through the plastic needle seats and the aluminum cores in the carrier sleeves from bottom to top.
2. The automatic assembling machine for plastic needle seats according to claim 1, is characterized in that: the carrier sleeve comprises a hollow sleeve penetrating through the turntable and a flange arranged at the top of the sleeve and hung on the surface of the turntable; the plastic needle holder is characterized in that a supporting groove for supporting the plastic needle holder is formed in the sleeve, two ends of the plastic needle holder are arranged in a penetrating mode, one end of the aluminum core penetrates through the bottom of the plastic needle holder to extend out, and the other end of the aluminum core is in limiting hanging connection with the inside of the plastic needle holder.
3. The automatic assembling machine for plastic needle seats according to claim 2, is characterized in that: the first feeding mechanism comprises a vibration track, a telescopic side push plate arranged at the tail end of the vibration track and used for side pushing and limiting materials, a fixed plate arranged at the bottom of the side push plate and a material guide pipe penetrating through the fixed plate; the bottom end of the material guide pipe is arranged corresponding to the sleeve; and the side push plate is provided with an arc-shaped positioning groove for positioning incoming materials, and the positioning groove is arranged corresponding to the top end of the material guide pipe.
4. The automatic assembling machine for plastic needle seats according to claim 3, is characterized in that: the first feeding mechanism is consistent with the second feeding mechanism in structure, the first feeding mechanism internally vibrates the track to feed the plastic needle seat, and the second feeding mechanism internally vibrates the track to feed the aluminum core.
5. The automatic assembling machine for plastic needle seats according to claim 1, is characterized in that: the compression joint mechanism comprises a group of compression rods arranged in a lifting and moving manner and a pressure plate used for guiding the compression rods to be pressed into the carrier sleeve; the pressure plate is internally provided with a guide hole corresponding to the pressure rod.
6. The automatic assembling machine for plastic needle seats according to claim 1, is characterized in that: the first detection mechanism comprises a first sensor which is arranged above the carrier sleeve and used for detecting the positions of the plastic needle seat and the aluminum core; the second detection mechanism comprises a second sensor which is arranged above the carrier sleeve and used for detecting the height of the plastic needle seat into which the aluminum core is arranged.
7. The automatic assembling machine for plastic needle seats according to claim 1, is characterized in that: the blanking mechanism comprises an ejector rod and a blanking bin, the ejector rod is arranged below the rotary table and can lift corresponding to the carrier sleeve, and the blanking bin is arranged above the rotary table and corresponds to the carrier sleeve.
CN202121660896.8U 2021-07-21 2021-07-21 Automatic assembling machine for plastic needle seat Active CN215616222U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121660896.8U CN215616222U (en) 2021-07-21 2021-07-21 Automatic assembling machine for plastic needle seat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121660896.8U CN215616222U (en) 2021-07-21 2021-07-21 Automatic assembling machine for plastic needle seat

Publications (1)

Publication Number Publication Date
CN215616222U true CN215616222U (en) 2022-01-25

Family

ID=79891285

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121660896.8U Active CN215616222U (en) 2021-07-21 2021-07-21 Automatic assembling machine for plastic needle seat

Country Status (1)

Country Link
CN (1) CN215616222U (en)

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