Conductive fitting push-in mechanism for filter
By designing a conductive hardware pushing mechanism and utilizing vibration loading and automated insertion technology, the problems of difficulty and low efficiency in inserting conductive hardware were solved, enabling efficient automated assembly of the filter, improving the yield rate and reducing costs.
Patent Information
- Application Number
- CN202422667455.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-04
AI Technical Summary
In the prior art, when assembling filters, the horizontal insertion of conductive fittings is difficult and inefficient, resulting in increased scrap rates and costs.
A conductive hardware pushing mechanism was designed, which included a conductive hardware vibration loading tray, a discharge control mechanism, a material receiving and feeding mechanism, and a loading mechanism. Vibration loading, pressure rod positioning, and a mobile alignment module were used to realize automatic insertion, and a rotary loading seat was combined to realize 180° rotational insertion.
The automated and efficient insertion of conductive hardware is achieved, which improves the yield rate and reduces the scrap rate and cost.
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Figure CN223441537U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electronic precision accessory manufacturing installation technical field especially, a kind of for the electrically-conductive fitting push mechanism of filter. BACKGROUND
[0002] Filter assembly, it needs to be inserted in a set of electrically-conductive fitting at two ends respectively, since electrically-conductive fitting is special-shaped part, and needs to be inserted with horizontal posture, manually operating difficulty is big, efficiency is low, and it is easy to produce friction between insertion and filter shell even jam and difficult to pull out, leading to the increase of scrap rate and cost. SUMMARY
[0003] The utility model solves the technical problems that the prior art exists in manually inserting and operating difficulty is big, efficiency is low, and increases the technical problems of scrap rate and cost.
[0004] The technical scheme of the utility model is: a kind of for the electrically-conductive fitting push mechanism of filter, including electrically-conductive fitting vibration feeding tray, discharge control mechanism, receiving and feeding mechanism, charging mechanism, the discharge control mechanism is arranged at the output of electrically-conductive fitting vibration feeding tray for controlling discharge, the receiving and feeding mechanism is arranged at discharge control mechanism for receiving two electrically-conductive fittings every time and sending to charging mechanism, the charging mechanism is used to install and drive filter shell rotation and cooperate receiving and feeding mechanism and insert electrically-conductive fitting at two ends;The receiving and feeding mechanism includes feeding module, discharge module, mobile alignment module, feeding module is used to receive electrically-conductive fitting and send to discharge module, discharge module pushes electrically-conductive fitting horizontally into filter shell and inserts, feeding module and discharge module are all installed on mobile alignment module, and the output end of feeding module and electrically-conductive fitting vibration feeding tray and the butt joint of discharge module and charging mechanism are realized by mobile alignment module.
[0005] Further, the discharge control mechanism includes the pressing rod driven lifting by control material cylinder and arranged on mounting bracket in the utility model, and the pressing rod is positioned product by inserting the center hole of electrically-conductive fitting, and releases product when lifting.
[0006] Further, the mobile alignment module includes the alignment slide plate driven sliding by alignment cylinder and arranged on bottom plate in the utility model, and feeding module and discharge module are all installed on the alignment slide plate.
[0007] Further, the feeding module includes the receiving seat driven sliding by sliding cylinder and left and right in the utility model, and alignment slide plate is equipped with detection sensor for detecting whether the receiving seat is loaded.
[0008] Further, the detection sensor has two in the utility model, and is set respectively corresponding two receiving positions of receiving seat.
[0009] Further, the discharging module comprises a push rod sliding forward and backward driven by a push cylinder, and a guide seat arranged on one side of the push rod, and the push rod can push the conductive fitting in the receiving seat to a discharging position of the guide seat and further push into the filter shell.
[0010] Further, the push rod has two, which are respectively arranged corresponding to two discharging positions, and the push cylinder has two, which are respectively connected to drive the two push rods.
[0011] Further, the loading mechanism comprises a loading seat, a plurality of positioning columns are arranged on the loading seat and used for inserting the filter shell, the bottom of the loading seat is connected with a rotary cylinder through a rotary seat, a rotary limiting block is arranged on the rotary seat, and two stoppers matched with the rotary limiting block are arranged on one side of the rotary seat.
[0012] Further, the loading seat is positioned by a jacking rod, two symmetrical positioning openings are arranged on the loading seat, and the jacking rod is driven by a lifting cylinder and can be inserted into the positioning opening for positioning.
[0013] Compared with the prior art, the utility model has the following advantages: the utility model utilizes the vibration disc automatic feeding, the pressing rod controls the discharging, the receiving feeding mechanism integrates a plurality of function different modules, the structure is compact, can realize product conveying and inlet and outlet material butt joint function, not only can fast transfer the conductive fitting, but also can make it with horizontal attitude accurately inserts, and the filter shell to be assembled can be driven 180 DEG by the loading seat and rotates to cooperate in two ends and inserts respectively, need not manual operation, the whole machine can automatically high -efficient operation, the precision is high, has improved the yield rate greatly, reduced the scrap cost. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the whole machine structure diagram of the utility model;
[0015] Figure 2 It is the cooperation schematic view of the conductive fitting vibration feeding disc and the discharging control mechanism in the utility model;
[0016] Figure 3 It is the perspective view of the receiving feeding mechanism in the utility model;
[0017] Figure 4 It is the perspective view of the receiving feeding mechanism in the utility model;
[0018] Figure 5 It is the cooperation schematic view of the conductive fitting vibration feeding disc, the receiving feeding mechanism and the loading mechanism in the utility model;
[0019] Figure 6The specific structure schematic diagram of the loading mechanism is shown in the utility model.
[0020] Figure 7 The specific arrangement schematic diagram of the rotating limiting block, the stopper and the ejector rod in the loading mechanism of the utility model is shown in the utility model.
[0021] Figure 8 The finished product assembly schematic diagram of the utility model is shown in the utility model.
[0022] Among them: 1, the conductive fitting vibration feeding disc; 2, the discharge control mechanism; 21, the mounting bracket; 22, the material control cylinder; 23, the pressing rod; 3, the material receiving feeding mechanism; 31, the feeding module; 311, the sliding cylinder; 312, the material receiving seat; 32, the discharge module; 321, the advancing cylinder; 322, the push rod; 323, the guide seat; 33, the moving alignment module; 331, the bottom plate; 332, the alignment cylinder; 333, the alignment sliding plate; 4, the loading mechanism; 41, the loading seat; 41a, the positioning column; 41b, the positioning port; 42, the rotating seat; 42a, the rotating limiting block; 43, the rotating cylinder; 44, the stopper; 45, the ejector rod; 46, the lifting cylinder; 5, the detection sensor; a, the filter shell; b, the conductive fitting; b1, the center hole. DETAILED DESCRIPTION
[0023] The specific embodiments of the conductive fitting push-in mechanism for the filter of the utility model are shown in the drawings.
[0024] Embodiment:
[0025] The specific embodiments of the conductive fitting push-in mechanism for the filter of the utility model are shown in the drawings. Figure 1 It mainly comprises the conductive fitting vibration feeding disc 1, the discharge control mechanism 2, the material receiving feeding mechanism 3 and the loading mechanism 4. The discharge control mechanism 2 is arranged at the output end of the conductive fitting vibration feeding disc 1 and is used for controlling the discharge. The material receiving feeding mechanism 3 is arranged at the discharge control mechanism 2 and is used for receiving two conductive fittings b at a time and sending them to the loading mechanism 4. The loading mechanism 4 is used for installing and driving the filter shell a to rotate and cooperate with the material receiving feeding mechanism 3 to insert the conductive fittings b at both ends.
[0026] The cooperation of the conductive fitting vibration feeding disc 1 and the discharge control mechanism 2 is shown in the drawings. Figure 2 It is used for controlling the output of two conductive fittings b at a time. The two conductive fittings b form a group.
[0027] The discharge control mechanism 2 comprises the pressing rod 23 which is arranged on the mounting bracket 21 and is driven to lift by the material control cylinder 22. When the conductive fitting b output by the conductive fitting vibration feeding disc 1 moves to the lower side of the pressing rod 23, the pressing rod 23 is pressed to insert the center hole b1 of the conductive fitting b, so that the product positioning can be carried out. The product can be released by lifting.
[0028] The receiving and feeding mechanism 3 is used to realize product conveying and in-out material butt joint, and is combined with Figure 3 、 Figure 4 The receiving and feeding mechanism 3 comprises a feeding module 31, an out-feeding module 32 and a moving and aligning module 33. The feeding module 31 is used to receive the conductive fittings b and send them to the out-feeding module 32. The out-feeding module 32 horizontally pushes the conductive fittings b into the filter shell a for plug-in installation. The feeding module 31 and the out-feeding module 32 are both installed on the moving and aligning module 33. The moving and aligning module 33 realizes the butt joint of the feeding module 31 and the output end of the conductive fitting vibration feeding disc 1 and the butt joint of the out-feeding module 32 and the feeding mechanism 4.
[0029] The moving and aligning module 33 comprises a sliding plate 333 which is driven by an aligning cylinder 332 to slide forward and backward on a base plate 331. The feeding module 31 and the out-feeding module 32 are both installed on the sliding plate 333.
[0030] The feeding module 31 comprises a receiving seat 312 which is driven by a sliding cylinder 311 to slide left and right. The receiving seat 312 can receive two conductive fittings b at a time. The sliding plate 333 is also provided with two detection sensors 5 which are used to detect whether the receiving seat 312 is loaded. The two detection sensors 5 correspond to two receiving positions of the receiving seat 312 respectively.
[0031] The out-feeding module 32 comprises two push rods 322 which are driven by a push cylinder 321 to slide forward and backward respectively. One side of the push rod 322 is provided with a guide seat 323. The push rod 322 can push the conductive fittings b in the receiving seat 312 to the discharging position of the guide seat 323 and further push them into the filter shell a for plug-in installation. The guide seat 323 can ensure that the plug-in installation is more accurate and will not be skewed.
[0032] The cooperation of the conductive fitting vibration feeding disc 1, the receiving and feeding mechanism 3 and the feeding mechanism 4 is shown in Figure 5 When receiving, the aligning cylinder 332 drives the sliding plate 333 to approach the conductive fitting vibration feeding disc 1, drives the receiving seat 312 to butt joint with the output end of the conductive fitting vibration feeding disc 1, then the sliding cylinder 311 works, drives the receiving seat 312 to move, receives two conductive fittings b at a time, and then the receiving seat 312 continues to move to the guide seat 323 for discharging. When discharging, the aligning cylinder 332 drives the sliding plate 333 to approach the feeding mechanism 4, drives the guide seat 323 to butt joint with the feeding mechanism 4, then the push cylinder 321 works, drives the push rod 322 to push out, pushes the conductive fittings b in the receiving seat 312 to the discharging position of the guide seat 323, and further pushes them into the filter shell a on the feeding mechanism 4 for plug-in installation.
[0033] In this embodiment, the receiving and feeding mechanism 3 is combined with Figure 6 、 Figure 7The loading mechanism 4 comprises a loading seat 41, four positioning columns 41a are arranged on the loading seat 41 and used for inserting the filter shell a. The bottom of the loading seat 41 is connected with a rotating cylinder 43 through a rotating seat 42, the rotating seat 42 is provided with rotating limiting blocks 42a, one side of the rotating seat 42 is provided with two stoppers 44 matched with the rotating limiting blocks 42a, and the maximum rotating angle is controlled to be 180°. In order to improve the reliability and stability of assembly, the loading seat 41 is further positioned through a jacking rod 45, the loading seat 41 is provided with two symmetrical positioning openings 41b, the jacking rod 45 is driven to lift by a lifting cylinder 46, and after the loading seat 41 drives the filter shell a to rotate to the position, the jacking rod 45 is lifted to insert into the corresponding positioning opening 41b, and the loading seat 41 is positioned.
[0034] The filter shell a to be assembled can be driven by the loading seat 41 to rotate by 180°, after the insertion at one end is completed, the filter shell a is automatically rotated and positioned, the second set of conductive fittings b is inserted at the other end, and the finished product is as shown in Figure 8 .
[0035] By using the utility model, the conductive fittings can be automatically assembled, manual operation is not needed, the whole machine can automatically and efficiently work, the precision is high, the yield is greatly improved, and the scrap cost is reduced.
[0036] Of course, the above embodiment is only for describing the technical concept and characteristics of the utility model, the purpose is to enable the person skilled in the art to understand the content of the utility model and to implement it, and it cannot limit the protection scope of the utility model. Any modification according to the spirit and essence of the main technical scheme of the utility model should be covered in the protection scope of the utility model.
Claims
1. A conductive fitting pushing mechanism for a filter, characterized by: The invention comprises a conductive metal fitting vibration loading plate (1), a discharge control mechanism (2), a material receiving and feeding mechanism (3), and a loading mechanism (4); the discharge control mechanism (2) is arranged at the output end of the conductive metal fitting vibration loading plate (1) for controlling the discharge; the material receiving and feeding mechanism (3) is arranged at the discharge control mechanism (2) for receiving two conductive metal fittings (b) each time and sending them to the loading mechanism (4); the loading mechanism (4) is used to install and drive the filter housing (a) to rotate and cooperate with the material receiving and feeding mechanism (3) to insert the conductive metal fittings (b) at both ends; the material receiving and feeding mechanism (3) ) includes a feeding module (31), a discharging module (32), and a moving alignment module (33); the feeding module (31) is used to receive a conductive metal fitting (b) and send it to the discharging module (32); the discharging module (32) pushes the conductive metal fitting (b) horizontally into the filter housing (a) for insertion; the feeding module (31) and the discharging module (32) are both installed on the moving alignment module (33); and the feeding module (31) and the output end of the conductive metal fitting vibration loading tray (1), as well as the discharging module (32) and the loading mechanism (4) are connected by the moving alignment module (33).
2. The conductive fitting pushing mechanism for a filter according to claim 1, characterized in that: The discharge control mechanism (2) includes a pressing rod (23) provided on a mounting bracket (21) and driven to rise and fall by a material control cylinder (22). The pressing rod (23) is inserted into a central hole (b1) of a conductive metal fitting (b) to position the product and release the product when it is lifted.
3. The conductive fitting pushing mechanism for a filter according to claim 1, characterized in that: The movable alignment module (33) comprises an alignment slide (333) provided on a bottom plate (331) and driven by an alignment cylinder (332) to slide back and forth. The feed module (31) and the discharge module (32) are both mounted on the alignment slide (333).
4. The conductive metal fitting pushing mechanism for a filter according to claim 3, characterized in that: The feeding module (31) includes a material receiving seat (312) driven by a sliding cylinder (311) to slide left and right, and a detection sensor (5) for detecting whether material is loaded in the material receiving seat (312) is provided on the alignment slide (333).
5. The conductive fitting pushing mechanism for a filter according to claim 4, characterized in that: There are two detection sensors (5), which are respectively arranged corresponding to the two material receiving positions of the material receiving seat (312).
6. The conductive fitting pushing mechanism for a filter according to claim 4, characterized in that: The discharge module (32) comprises a push rod (322) driven by a propulsion cylinder (321) to slide forward and backward, and a guide seat (323) provided on one side of the push rod (322). The push rod (322) can push the conductive metal fitting (b) in the receiving seat (312) to the discharge position of the guide seat (323) and further push it into the filter housing (a) for insertion.
7. The conductive fitting pushing mechanism for a filter according to claim 6, characterized in that: There are two push rods (322), which are respectively arranged corresponding to two material discharge positions, and there are two propulsion cylinders (321), which are respectively connected to drive the two push rods (322).
8. The conductive fitting pushing mechanism for a filter according to claim 1, characterized in that: The loading mechanism (4) comprises a loading seat (41), a plurality of positioning columns (41a) are provided on the loading seat (41) for inserting the filter housing (a), the bottom of the loading seat (41) is connected to a rotating cylinder (43) via a rotating seat (42), a rotating limit block (42a) is provided on the rotating seat (42), and two stoppers (44) are provided on one side of the rotating seat (42) for cooperating with the rotating limit block (42a).
9. The conductive fitting pushing mechanism for a filter according to claim 8, characterized in that: The loading seat (41) is positioned by a push rod (45). Two symmetrically arranged positioning openings (41b) are provided on the loading seat (41). The push rod (45) is driven by a lifting cylinder (46) to be inserted into the positioning openings (41b) for positioning.