A network filter automatic winding rubber shell feeding mechanism
By designing an automatic feeding mechanism for the casing of network filters, the automatic sorting and orientation adjustment of the casings are achieved using magnetic adjustment components and a transverse sliding feeding trolley. This solves the problem of low efficiency in casing orientation adjustment in existing technologies and improves the processing efficiency and quality of filters.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CHONGQING MINCHENG TECH CO LTD
- Filing Date
- 2025-09-15
- Publication Date
- 2026-07-24
AI Technical Summary
In the existing filter housing manufacturing process, it is impossible to effectively sort and adjust the orientation of the housing, resulting in reduced processing efficiency.
An automatic feeding mechanism for plastic shells around the base of a network filter was designed, including a station conveyor belt, a transfer and adjustment component, a magnetic adjustment component, and a transverse sliding feeding carriage. Through the cooperation of the magnetic adjustment component and the transverse sliding feeding carriage, the automatic sorting and orientation adjustment of the plastic shells are realized, ensuring that the plastic shells with the metal base facing upward are accurately delivered to the processing position.
The processing efficiency of filter housings has been improved. Automatic sorting and repositioning ensure the correct orientation of the housings, thereby enhancing both processing efficiency and quality.
Smart Images

Figure CN121107051B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of housing feeding technology, specifically to an automatic feeding mechanism for the foot-wrapped plastic housing of a network filter. Background Technology
[0002] A filter is a basic microwave electronic device, consisting of a filtering circuit composed of capacitors, inductors, and resistors. Filters primarily come in planar microstrip form and cavity filter forms. Filters can effectively filter out specific frequencies or frequencies outside of a power supply line, resulting in a power signal of a specific frequency, or eliminating a power signal of a specific frequency. During filter processing, the rubber housing needs to be transported to the processing station. Existing feeding technologies include a semi-automatic assembly equipment for wiper motor housings and reducer housings as described in CN201811577078.4. This invention discloses a semi-automatic assembly equipment for wiper motor housings and reducer housings, including a machine frame A and three workstations. The motor housing preparation station includes a motor housing material transfer mechanism B, an elastic retaining ring a feeding mechanism C, a motor housing clamping mechanism D, a motor housing material gripping mechanism E, an oil-impregnated bearing feeding mechanism F, and a brush holder ring workstation mechanism G. The reducer housing press-fit bearing workstation includes a bushing feeding mechanism H, a reducer housing pressing mechanism I, a reducer housing material gripping mechanism J, a 608 bearing feeding mechanism K, a 608 bearing transfer mechanism L, a reducer housing material transfer mechanism M, and an elastic retaining ring b feeding mechanism N. This invention integrates three workstations into one unit, which can be operated by one person, reducing labor intensity and effectively preventing errors. While ensuring assembly efficiency, it also ensures assembly quality through the detection of various sensors, bringing us one step closer to the realization of high-efficiency automation of wiper motor assembly lines.
[0003] In the specific implementation of the above technical solution, since the bottom of the network filter housing is equipped with a fixed metal base, the housing base needs to be facing downwards during housing processing to facilitate the internal processing of the filter feet. However, current filter housing processing cannot sort and align the housing during transportation, resulting in reduced processing efficiency. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides an automatic feeding mechanism for the casing of network filters around their feet, thus solving the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solution: an automatic feeding mechanism for the foot casing of a network filter, comprising a station conveyor belt and a transfer and adjustment component, wherein a station conveyor belt side plate is provided at the outer end of the station conveyor belt, a transfer and adjustment component bracket is fixedly installed at the outer end of the station conveyor belt side plate, and the transfer and adjustment component is fixedly installed at the upper end of the transfer and adjustment component bracket.
[0006] A plastic shell transport turntable bracket is fixedly installed on the outside of the transfer and adjustment component bracket. A plastic shell transport turntable base is fixedly installed on the upper end of the plastic shell transport turntable bracket. A turntable base discharge port is opened on the outer end of the plastic shell transport turntable base.
[0007] Preferably, the plastic shell transport turntable is rotatably mounted in the middle of the plastic shell transport turntable base, and a plurality of turntable transport stations are integrally provided on the upper end of the plastic shell transport turntable, with station spacing plates integrally provided between the turntable transport stations.
[0008] Preferably, a transport and feeding connecting seat is fixedly installed at the lower end of the side plate of the workstation conveyor belt, a transport and feeding conveyor belt bottom plate is fixedly installed on the side of the transport and feeding connecting seat, and a transport and feeding conveyor belt is provided inside the transport and feeding conveyor belt bottom plate.
[0009] A feeding hopper is fixedly installed at the top of the bottom plate of the conveyor belt, and a feeding hopper support is provided at the lower end of the feeding hopper.
[0010] Preferably, the transfer and adjustment assembly includes: an adjustment assembly cover plate, an adjustment assembly back plate, a magnetic adjustment component, a conveying transverse slide, and a transverse sliding feeding trolley;
[0011] The rear end of the upper cover of the adjustment component is integrated with an adjustment component back plate, the adjustment component back plate is fixedly installed on the transfer adjustment component bracket, and a magnetic adjustment component is integrated on the side of the upper cover of the adjustment component.
[0012] The inner surface of the back plate of the adjustment component is fixedly provided with a transverse conveying slide, and a transverse sliding feeding trolley is provided in the transverse conveying slide.
[0013] Preferably, the upper end of the conveying transverse slide is provided with a transverse slide connecting channel, and a transfer drive electric rail is provided at the upper end of the conveying transverse slide and above the transverse slide connecting channel.
[0014] Preferably, the magnetic adjustment component includes: an adjustment module upper seat, a lifting cylinder, a lifting connecting shaft, a plastic shell sorting fork plate, a plastic shell sorting fork strip, and an adjustment unloading cylinder;
[0015] The upper seat of the adjustment module is integrated and installed on the side of the upper cover plate of the adjustment component. A lifting cylinder is fixedly installed on one side of the upper seat of the adjustment module. A lifting connecting shaft is fixedly connected to the output end of the lifting cylinder. A plastic shell sorting fork plate is fixedly installed at the lower end of the lifting connecting shaft.
[0016] The front end of the plastic shell sorting fork plate is integrally provided with several plastic shell sorting fork strips.
[0017] Preferably, a sorting fork magnetic block is fixedly installed at the lower end of the plastic shell sorting fork, a magnetic mounting strip is fixedly installed on the lower surface of the plastic shell sorting fork plate, and a sorting magnetic strip is fixedly installed inside the magnetic mounting strip.
[0018] Preferably, the lower end of the upper seat of the adjustment module is fixedly installed with an adjustment and feeding cylinder, the lower end of the output end of the adjustment and feeding cylinder is fixedly installed with a feeding connecting piece, the lower end of the feeding connecting piece is integrally provided with a feeding push fork plate, and the front end of the feeding push fork plate is provided with a plurality of feeding push fork strips.
[0019] The feeding push fork and the plastic shell sorting fork are arranged alternately.
[0020] Preferably, the transverse sliding feeding trolley includes: a feeding trolley shell, a trolley shell slide rail connecting seat, a trolley shell inner back platform, a push rod cylinder, and a turntable feeding push platform;
[0021] The upper end of the feeding car body is integrally provided with a car body slide rail connecting seat, which is connected to the transfer drive electric rail through the transverse slide rail connecting channel. The inner end of the feeding car body is integrally provided with a car body inner back platform, and a push rod cylinder is provided in the car body inner back platform.
[0022] A rotary feeding pusher is fixedly installed on the output end of the pusher cylinder.
[0023] Preferably, a feeding carriage housing fixing slide rail is inserted inside the feeding carriage housing. The feeding carriage housing fixing slide rail is fixedly installed on the inner wall of the back plate of the adjustment component. A pressure roller mounting plate is integrally provided at the lower rear end of the feeding carriage housing fixing slide rail. A pressure roller shaft is rotatably installed inside the pressure roller mounting plate. A connecting pressure roller is provided on the pressure roller shaft. A connecting feeding inclined panel is integrally provided at the lower end of the feeding carriage housing fixing slide rail.
[0024] This invention provides an automatic feeding mechanism for the casing of a network filter. It has the following advantages:
[0025] (1) The present invention transports the filter shells fed in the feeding hopper from the conveyor belt to the work station conveyor belt. Then, the shells scattered on the work station conveyor belt are adjusted by the transfer adjustment component on the transfer adjustment component bracket. The shells are then pushed laterally to the turntable transport station on the shell transport turntable for subsequent foot processing. Compared with the existing feeding technology, the shells can be sorted and adjusted before feeding, which improves the processing efficiency.
[0026] (2) The present invention uses the magnetic adjustment component at the lower end of the upper cover plate of the adjustment component to adjust the position of the plastic shells transported on the station conveyor belt. The lower end of the plastic shell sorting fork plate is magnetically attracted by the sorting magnetic strip. The plastic shells with the metal base facing upward are attracted more tightly by the sorting magnetic strip and the sorting fork strip magnetic block. Then, the adjustment and unloading cylinder is activated to drive the unloading push fork plate. The unloading push fork strip at the front end and the plastic shell sorting fork strip at the lower end are intersected. The plastic shells with the metal base facing downward are pushed down directly because they are not attracted tightly enough. The plastic shells with the metal base facing upward will first detach from the sorting fork strip magnetic block and fall back onto the station conveyor belt after being flipped by the sorting magnetic strip. In this way, the sorting and adjustment can be completed, and the plastic shells can be quickly adjusted to the correct direction, thus improving the processing efficiency.
[0027] (3) The present invention uses the connecting pressure roller at the lower end of the fixed slide rail of the feeding car body in the transverse sliding feeding car to press out the concave surface of the lower station conveyor belt, so that one side of the bottom of the plastic shell is separated from the surface of the station conveyor belt, thereby enabling the plastic shell to be scooped up by the connecting feeding inclined panel, improving the transfer feeding efficiency. Then, the feeding car body is transported to the edge of the station conveyor belt by the transfer drive electric rail driving the car body slide rail connecting seat. Then, the push rod cylinder is activated to push the front end to transport the plastic shell to the turntable transport station. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0029] Figure 2 This is a structural schematic diagram from another perspective of the present invention;
[0030] Figure 3 This is a schematic diagram of the transfer and adjustment component in this invention;
[0031] Figure 4 This is a schematic diagram of the transfer and adjustment component from another perspective in this invention;
[0032] Figure 5 This is a schematic diagram of the magnetic adjustment component in this invention;
[0033] Figure 6 This is a schematic diagram of the magnetic adjustment component from another perspective in this invention;
[0034] Figure 7 This is a schematic diagram of the transverse sliding feeding cart in this invention;
[0035] Figure 8 This is a structural schematic diagram of the transverse sliding feeder in this invention from another perspective.
[0036] The components include: 1. Side plate of the workstation conveyor belt; 2. Workstation conveyor belt; 3. Transfer and adjustment component bracket; 4. Transfer and adjustment component; 401. Adjustment component top cover; 402. Adjustment component back plate; 403. Magnetic adjustment component; 4031. Adjustment module upper seat; 4032. Lifting cylinder; 4033. Lifting connecting shaft; 4034. Plastic shell sorting fork plate; 4035. Magnetic mounting strip; 4036. Sorting magnetic strip; 4037. Plastic shell sorting fork strip; 4038. Sorting fork strip magnetic block; 4039. Adjustment and unloading cylinder; 40310. Unloading connecting piece; 40311. Unloading push fork plate; 40312. Unloading push fork strip; 404. Transfer drive rail; 405. Conveying transverse slide; 406. Transverse sliding conveyor. Material cart; 4061, feeding cart shell; 4062, cart shell slide rail connecting seat; 4063, feeding cart shell fixed slide rail; 4064, pressure roller shaft; 4065, connecting pressure roller; 4066, connecting feeding inclined panel; 4067, pressure roller mounting plate; 4068, inner back platform of the cart shell; 4069, push rod cylinder; 40610, turntable feeding push table; 407, transverse slide connecting channel; 5, plastic shell transport turntable bracket; 6, transport feeding connecting seat; 7, plastic shell transport turntable base; 8, transport feeding conveyor belt base plate; 9, transport feeding conveyor belt; 10, feeding funnel bracket; 11, feeding funnel; 12, turntable base discharge port; 13, plastic shell transport turntable; 14, turntable transport station; 15, station interval sealing plate. Detailed Implementation
[0037] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0038] like Figure 1 , Figure 2As shown, this embodiment of the invention provides an automatic feed mechanism for network filter housings, including a station conveyor belt 2 and a transfer and adjustment component 4. A station conveyor belt side plate 1 is provided at the outer end of the station conveyor belt 2. A transfer and adjustment component bracket 3 is fixedly installed at the outer end of the station conveyor belt side plate 1. The transfer and adjustment component 4 is fixedly installed on the upper end of the transfer and adjustment component bracket 3. A housing transport turntable bracket 5 is fixedly installed on the outer side of the transfer and adjustment component bracket 3. A housing transport turntable base 7 is fixedly installed on the upper end of the housing transport turntable bracket 5. A turntable base discharge port 12 is opened at the outer end of the housing transport turntable base 7. A plastic-shell transport turntable 13 is rotatably mounted in the center of the transport turntable base 7. Several turntable transport stations 14 are integrally set on the upper end of the plastic-shell transport turntable 13. Station interval sealing plates 15 are integrally set between the turntable transport stations 14. A transport loading connecting seat 6 is fixedly installed at the lower end of the station conveyor belt side plate 1. A transport loading conveyor belt bottom plate 8 is fixedly installed on the side of the transport loading connecting seat 6. A transport loading conveyor belt 9 is set inside the transport loading conveyor belt bottom plate 8. A loading funnel 11 is fixedly installed at the top of the transport loading conveyor belt bottom plate 8. A loading funnel support 10 is set at the lower end of the loading funnel 11.
[0039] In the above technical solution, the filter shells fed through the feeding hopper 11 are transported from the conveyor belt 9 to the station conveyor belt 2. Then, the shells scattered on the station conveyor belt 2 are adjusted by the transfer and adjustment component 4 on the transfer and adjustment component bracket 3. The shells are then pushed laterally to the turntable transport station 14 on the shell transport turntable 13 for subsequent foot processing. Compared with the existing feeding technology, the shells can be sorted and adjusted before feeding, which improves the processing efficiency.
[0040] like Figure 1 , Figures 3 to 4 As shown, the transfer and adjustment assembly 4 includes: an adjustment assembly upper cover plate 401, an adjustment assembly back plate 402, a magnetic adjustment component 403, a conveying transverse slide 405, and a transverse sliding feeder 406; the adjustment assembly back plate 402 is integrally provided at the rear end of the adjustment assembly upper cover plate 401, and the adjustment assembly back plate 402 is fixedly installed on the transfer and adjustment assembly bracket 3; the magnetic adjustment component 403 is integrally provided on the side of the adjustment assembly upper cover plate 401; the conveying transverse slide 405 is fixedly provided on the inner surface of the adjustment assembly back plate 402, the transverse sliding feeder 406 is provided in the conveying transverse slide 405, the upper end of the conveying transverse slide 405 is provided with a transverse slide connecting channel 407, and a transfer drive rail 404 is provided at the upper end of the conveying transverse slide 405 and above the transverse slide connecting channel 407.
[0041] like Figure 3 , Figure 5 , Figure 6As shown, the magnetic adjustment component 403 includes: an adjustment module upper seat 4031, a lifting cylinder 4032, a lifting connecting shaft 4033, a plastic shell sorting fork plate 4034, plastic shell sorting fork strips 4037, and an adjustment and unloading cylinder 4039; the adjustment module upper seat 4031 is integrated on the side of the upper cover plate 401 of the adjustment component, the lifting cylinder 4032 is fixedly installed on one side of the adjustment module upper seat 4031, the lifting connecting shaft 4033 is fixedly connected to the output end of the lifting cylinder 4032, and the plastic shell sorting fork plate 4034 is fixedly installed at the lower end of the lifting connecting shaft 4033; the front end of the plastic shell sorting fork plate 4034 is integrated with several plastic shell sorting fork strips 4037, and the plastic shell... A sorting fork bar magnetic block 4038 is fixedly installed at the lower end of the sorting fork bar 4037. A magnetic mounting strip 4035 is fixedly installed on the lower surface of the plastic shell sorting fork plate 4034. A sorting magnetic strip 4036 is fixedly installed inside the magnetic mounting strip 4035. An adjustment and feeding cylinder 4039 is fixedly installed at the lower end of the upper seat 4031 of the adjustment module. A feeding connecting piece 40310 is fixedly installed at the lower end of the output end of the adjustment and feeding cylinder 4039. A feeding push fork plate 40311 is integrally provided at the lower end of the feeding connecting piece 40310. A plurality of feeding push fork bars 40312 are provided at the front end of the feeding push fork plate 40311. The feeding push fork bars 40312 are staggered with the plastic shell sorting fork bar 4037.
[0042] In the above technical solution, the plastic shells transported on the station conveyor belt 2 are adjusted by the magnetic adjustment component 403 at the lower end of the upper cover plate 401 of the adjustment component. The lower plastic shells are magnetically attracted by the sorting magnetic strip 4036 at the lower end of the plastic shell sorting fork plate 4034. The plastic shells with the metal base facing upward are attracted tightly by the sorting magnetic strip 4036 and the sorting fork magnetic block 4038. Then, the adjustment and unloading cylinder 4039 is activated to drive the unloading push fork. Plate 40311, through the front unloading push fork 40312 and the lower intersecting plastic shell sorting fork 4037, pushes down plastic shells with the metal base facing down because they are not attracted tightly enough, while plastic shells with the metal base facing up will first detach from the sorting fork magnetic block 4038, and then fall back onto the station conveyor belt 2 after being flipped by the sorting magnetic strip 4036. This can complete the sorting and positioning, and can quickly adjust the direction of the plastic shells, improving processing efficiency.
[0043] like Figure 4 , Figure 7 , Figure 8As shown, the transverse sliding feeding trolley 406 includes: a feeding trolley shell 4061, a shell slide rail connecting seat 4062, a shell inner back platform 4068, a push rod cylinder 4069, and a turntable feeding pusher 40610; the upper end of the feeding trolley shell 4061 is integrally provided with the shell slide rail connecting seat 4062, which passes through the transverse slide rail connecting channel 407 and is connected to the transfer drive electric rail 404; the inner end of the feeding trolley shell 4061 is integrally provided with the shell inner back platform 4068, and the push rod cylinder 4069 is provided inside the shell inner back platform 4068; the push rod cylinder 4069... A turntable feeding pusher 40610 is fixedly installed on the output end. A feeding carriage housing fixing slide rail 4063 is inserted inside the feeding carriage housing 4061. The feeding carriage housing fixing slide rail 4063 is fixedly installed on the inner wall of the adjustment component back plate 402. A pressure roller mounting plate 4067 is integrally provided at the lower rear end of the feeding carriage housing fixing slide rail 4063. A pressure roller shaft 4064 is rotatably installed inside the pressure roller mounting plate 4067. A connecting pressure roller 4065 is provided on the pressure roller shaft 4064. A connecting feeding inclined plate 4066 is integrally provided at the lower end of the feeding carriage housing fixing slide rail 4063.
[0044] In the above technical solution, the connecting pressure roller 4065 at the lower end of the feeding car body fixed slide rail 4063 in the transverse sliding feeding car 406 presses a depression into the surface of the lower station conveyor belt 2, so that one side of the bottom of the plastic shell is separated from the surface of the station conveyor belt 2. Thus, the plastic shell can be scooped up by the connecting loading inclined panel 4066, improving the transfer loading efficiency. Then, the feeding car body 4061 is transported to the edge of the station conveyor belt 2 by the car body slide rail connecting seat 4062 driven by the transfer drive electric rail 404. Then, the push rod cylinder 4069 is activated to push the front end 40610 to transport the plastic shell to the turntable transport station 14.
[0045] Working principle:
[0046] The present invention transports filter shells fed into the feeding hopper 11 from the transport feeding conveyor belt 9 to the station conveyor belt 2. Then, the transfer and adjustment component 4 on the transfer and adjustment component bracket 3 adjusts the shells scattered on the station conveyor belt 2. The shells are then pushed laterally to the turntable transport station 14 on the shell transport turntable 13 for subsequent foot wrapping processing. Compared with the existing feeding technology, the shells can be sorted and adjusted before feeding, which improves the processing efficiency.
[0047] The adjustment mechanism uses a magnetic adjustment component 403 at the lower end of the upper cover plate 401 of the adjustment assembly to adjust the position of the plastic shells transported on the conveyor belt 2. The sorting magnetic strip 4036 at the lower end of the plastic shell sorting fork plate 4034 magnetically attracts the lower plastic shells. Plastic shells with their metal bases facing upwards are more tightly attracted by the sorting magnetic strip 4036 and the magnetic block 4038 of the sorting fork plate. Then, the adjustment and unloading cylinder 4039 is activated to drive the unloading push fork plate 40. 311. By using the front-end unloading push fork 40312 and the lower-end interlaced plastic shell sorting fork 4037, the plastic shells with the metal base facing down will be pushed down directly because they are not attracted tightly enough, while those with the metal base facing up will first detach from the sorting fork magnetic block 4038, and then fall back onto the station conveyor belt 2 after being flipped by the sorting magnetic strip 4036. This can complete the sorting and positioning, quickly adjust the direction of the plastic shells, and improve processing efficiency.
[0048] Specifically, by using the connecting pressure roller 4065 at the lower end of the fixed slide rail 4063 of the feeding car body in the transverse sliding feeding car 406, the surface of the lower station conveyor belt 2 is pressed into a depression, causing one side of the bottom of the plastic shell to detach from the surface of the station conveyor belt 2. This allows the plastic shell to be scooped up by the connecting loading inclined panel 4066, improving the transfer loading efficiency. Subsequently, the feeding car body 4061 is transported to the edge of the station conveyor belt 2 by the car body slide rail connecting seat 4062 driven by the transfer drive electric rail 404. Then, the push rod cylinder 4069 is activated to push the front end 40610, transporting the plastic shell to the turntable transport station 14.
[0049] Obviously, the above embodiments of the present invention are merely examples for clearly illustrating the present invention, and are not intended to limit the implementation of the present invention. For those skilled in the art, other variations or modifications can be made based on the above description. It is impossible to exhaustively list all the implementation methods here. All obvious variations or modifications derived from the technical solutions of the present invention are still within the protection scope of the present invention.
Claims
1. An automatic feeding mechanism for the casing of a network filter, comprising a station conveyor belt (2) and a transfer and adjustment assembly (4), characterized in that, The workstation conveyor belt (2) is provided with a workstation conveyor belt side plate (1) at its outer end. A transfer adjustment component bracket (3) is fixedly installed at the outer end of the workstation conveyor belt side plate (1). The transfer adjustment component (4) is fixedly installed on the upper end of the transfer adjustment component bracket (3). A plastic shell transport turntable bracket (5) is fixedly installed on the outside of the transfer and adjustment component bracket (3). A plastic shell transport turntable base (7) is fixedly installed on the upper end of the plastic shell transport turntable bracket (5). A turntable base discharge port (12) is opened on the outer end of the plastic shell transport turntable base (7). The transfer and adjustment assembly (4) includes: an adjustment assembly cover plate (401), an adjustment assembly back plate (402), a magnetic adjustment component (403), a conveying transverse slide (405), and a transverse sliding feeder (406). The rear end of the upper cover plate (401) of the adjustment component is integrated with the back plate (402) of the adjustment component. The back plate (402) of the adjustment component is fixedly installed on the transfer adjustment component bracket (3). The side of the upper cover plate (401) of the adjustment component is integrated with the magnetic adjustment component (403). The inner surface of the back plate (402) of the adjustment component is fixedly provided with a transverse conveying slide (405), and a transverse sliding feeding cart (406) is provided in the transverse conveying slide (405). The magnetic adjustment component (403) includes: adjustment module upper seat (4031), lifting cylinder (4032), lifting connecting shaft (4033), plastic shell sorting fork plate (4034), plastic shell sorting fork strip (4037), and adjustment unloading cylinder (4039). The upper seat (4031) of the adjustment module is integrated on the side of the upper cover plate (401) of the adjustment component. A lifting cylinder (4032) is fixedly installed on one side of the upper seat (4031). A lifting connecting shaft (4033) is fixedly connected to the output end of the lifting cylinder (4032). A plastic shell sorting fork plate (4034) is fixedly installed at the lower end of the lifting connecting shaft (4033). The front end of the plastic shell sorting fork plate (4034) is integrally provided with several plastic shell sorting fork bars (4037). A sorting fork magnetic block (4038) is fixedly installed at the lower end of the plastic shell sorting fork bar (4037), a magnetic mounting strip (4035) is fixedly installed on the lower surface of the plastic shell sorting fork plate (4034), and a sorting magnetic strip (4036) is fixedly installed inside the magnetic mounting strip (4035). The lower end of the upper seat (4031) of the adjustment module is fixedly installed with an adjustment and feeding cylinder (4039). The lower end of the output end of the adjustment and feeding cylinder (4039) is fixedly installed with a feeding connecting piece (40310). The lower end of the feeding connecting piece (40310) is integrally provided with a feeding push fork plate (40311). The front end of the feeding push fork plate (40311) is provided with a plurality of feeding push fork strips (40312). The feeding push fork (40312) and the plastic shell sorting fork (4037) are arranged alternately.
2. The automatic feed mechanism for the foot casing of a network filter according to claim 1, characterized in that, The plastic shell transport turntable base (7) is rotatably mounted with a plastic shell transport turntable (13) in the middle. Several turntable transport stations (14) are integrated on the upper end of the plastic shell transport turntable (13). Station spacing plates (15) are integrated between the turntable transport stations (14).
3. The automatic feed mechanism for the foot casing of a network filter according to claim 2, characterized in that, The lower end of the side plate (1) of the workstation conveyor belt is fixedly installed with a transport loading connection seat (6), and the side of the transport loading connection seat (6) is fixedly installed with a transport loading conveyor belt bottom plate (8). The transport loading conveyor belt bottom plate (8) is provided with a transport loading conveyor belt (9). The top of the bottom plate (8) of the conveyor belt is fixedly installed with a feeding funnel (11), and the bottom of the feeding funnel (11) is provided with a feeding funnel support (10).
4. The automatic feed mechanism for the foot casing of a network filter according to claim 3, characterized in that, The upper end of the transverse conveyor slide (405) is provided with a transverse slide connecting channel (407), and a transfer drive rail (404) is provided at the upper end of the transverse conveyor slide (405) and above the transverse slide connecting channel (407).
5. The automatic feed mechanism for the foot casing of a network filter according to claim 4, characterized in that, The transverse sliding feeding trolley (406) includes: a feeding trolley shell (4061), a shell slide rail connecting seat (4062), a shell inner back platform (4068), a push rod cylinder (4069), and a turntable feeding pusher (40610). The upper end of the feeding car body (4061) is integrally provided with a car body slide rail connecting seat (4062), the car body slide rail connecting seat (4062) passes through the transverse slide rail connecting channel (407) and is connected to the transfer drive electric rail (404). The inner end of the feeding car body (4061) is integrally provided with a car body inner back platform (4068), and a push rod cylinder (4069) is provided inside the car body inner back platform (4068). A rotary feed pusher (40610) is fixedly installed on the output end of the pusher cylinder (4069).
6. The automatic feed mechanism for the foot casing of a network filter according to claim 5, characterized in that, The feeding carriage shell (4061) is internally fitted with a feeding carriage shell fixing slide rail (4063), which is fixedly installed on the inner wall of the adjustment component back plate (402). The feeding carriage shell fixing slide rail (4063) is integrated with a pressure roller mounting plate (4067) at its lower rear end. The pressure roller mounting plate (4067) is rotatably installed with a pressure roller shaft (4064). A connecting pressure roller (4065) is provided on the pressure roller shaft (4064). The lower end of the feeding carriage shell fixing slide rail (4063) is integrated with a connecting feeding inclined plate (4066).
Citation Information
Patent Citations
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