A motorcycle oil sight glass six-push double-pressure ten-position integrated continuous pressing device
By integrating a rotating feed hopper and multiple components, the design solves the problem of low automation in motorcycle oil sight glass production, achieving an efficient and stable continuous pressing process, and improving product quality and production efficiency.
Patent Information
- Application Number
- CN202110225246.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-03-01
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2041-03-01
AI Technical Summary
The lack of automated gripping devices in the production of motorcycle oil sight glasses leads to unstable product quality, low overall efficiency, the need for multiple operators, high equipment investment costs, and the inability to achieve continuous automated production.
A continuous pressing device for motorcycle oil sight glasses with six pushers and two presses is designed. By optimizing the overall design of components such as the rotating feeding bucket, the limiting clamping device, the clamping device, and the pushing device, fourteen processes are integrated into one device to realize continuous automation of material conveying, holding, pushing, pressing, and unloading.
It improved product stability and pass rate, reduced operator requirements, lowered equipment investment costs, and enabled continuous automated production of motorcycle oil sight glasses.
Smart Images

Figure CN112775665B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of continuous pressing devices for motorcycle oil sight glasses with six pushers, two pressures, and ten positions, specifically to a continuous pressing device for motorcycle oil sight glasses with six pushers, two pressures, and ten positions. Background Technology
[0002] In the motorcycle manufacturing process, various types of oil sight glasses, such as large and small sight glasses, are used to visually observe the levels of brake fluid, coolant, or fluid in the manifold to ensure timely replenishment and proper overall motorcycle operation. As is well known, an oil sight glass consists of a recessed piece, a transparent insert, and a reinforcing ring. During manufacturing, the recessed piece is press-fitted into the transparent insert, and then the reinforcing ring is pressed and fitted into the bottom of the transparent insert, which contains the recessed piece. In actual production, motorcycle oil sight glasses require connecting multiple conveyor belts. Without an automatic material gripping device, personnel must manually assemble different components before placing them onto the loading platform of the pressure equipment. This results in poor product quality stability, inconsistent overall production of oil sight glasses, and a low product qualification rate. The overall efficiency of the motorcycle oil sight glass manufacturing process is low, requiring 3-5 people to operate, leading to a high demand for operators. Furthermore, multiple sets of supporting gripping, pushing, pressing, and sealing equipment are needed, resulting in high overall investment costs and preventing continuous automated production between these equipment units. To address these issues, our company, based on practical considerations, has independently developed and manufactured a six-push, double-press, ten-position integrated continuous pressing device for motorcycle oil sight glasses. Summary of the Invention
[0003] This invention provides a continuous pressing device for motorcycle oil sight glasses, consisting of a six-push, double-press, and ten-position integrated assembly. Through optimized design of the rotating feeding hopper, limiting clamping device, bottom push assembly, clamping assembly, pushing assembly, base support platform, rotating feeding hopper, pressing assembly, limiting clamping device, bottom push assembly, clamping assembly, pushing assembly, rotating feeding hopper, rotating clamping device, pressing assembly, limiting and pushing material discharge assembly, and inclined discharge hopper, the problems mentioned in the background art are solved. Furthermore, this invention integrates the fourteen processes of motorcycle oil sight glass pressing into a single device, resulting in good overall stability and consistency, a high product qualification rate, and continuous synchronous operation without deviation or misalignment during continuous production. It ensures that the conveying, holding, pushing, pressing, and discharging of materials, semi-finished products, and finished products can be continuously performed on the same device, making it suitable for widespread use in the continuous automated production of motorcycle oil sight glasses.
[0004] To achieve the above objectives, the technical solution adopted by the present invention is as follows:
[0005] A continuous pressing device for motorcycle oil sight glasses, comprising a rotating feeding hopper, a limiting clamping socket assembly, a bottom pushing assembly, a clamping assembly, a pushing assembly, a base support platform, a rotating feeding hopper second assembly, a pressing assembly, a limiting clamping socket assembly, two bottom pushing assemblies, two clamping assemblies, two pushing assemblies, a rotating feeding hopper third assembly, a three-push clamping assembly, two pressing assemblies, a limiting push discharge assembly, and a sloping discharge hopper. The limiting clamping socket assembly, the limiting clamping socket assembly, the clamping assembly, and the pushing assembly are all mounted on the base support platform. The rotating feeding hopper first assembly and the rotating feeding hopper third assembly are both located on one side of the base support platform. The positions of the rotating feeding hopper first assembly and the rotating feeding hopper third assembly are respectively on the base support platform. At both ends of one side of the support platform, the first and second bottom push assemblies are located below the entire support platform. The second clamping assembly and the second pushing assembly are located on the entire support platform. The third push clamping assembly is located on the entire support platform near the rotating feeding hopper device. The first pressing assembly and the second pressing assembly are located on the entire support platform. The fourth limiting push material discharge assembly and the second rotating feeding hopper device are located on the other side of the entire support platform. The rotating feeding hopper device and the fourth limiting push material discharge assembly are located at both ends of the other side of the entire support platform. A sloping material discharge hopper is provided below the outer side of the entire support platform. The rotating feeding hopper device transports the material in the rotating feeding hopper device to the limiting clamping hopper assembly through the material conveying channel. The first bottom push... The components are installed below the material limiting slot assembly. A bottom push assembly can push the material 1 on the material limiting slot assembly from bottom to top to the feeding position of a clamping assembly. The clamping assembly is located above the material limiting slot assembly. The clamping assembly is connected to a pushing assembly. The pushing assembly can push the material 1 clamped at the feeding position of the clamping assembly to below a pressing assembly. The rotating feeding bucket 2 device conveys material 2 to the material limiting slot 2 assembly through a conveying channel. The two bottom push assemblies are installed below the material limiting slot 2 assembly. The two bottom push assemblies can push the material 2 at the material limiting slot 2 assembly from bottom to top to the clamping position of the clamping assembly. The two pushing assemblies can push the material 2 clamped in the clamping assembly to the pressing assembly. Below, the first pressing component can press material one onto the upper inner side of material two. The second holding component can also hold material one and material two after pressing into the semi-finished product. The second pushing component can also push the semi-finished product held in the second holding component to the bottom of the second pressing component. The rotating feeding bucket three device conveys material three to the three pushing and holding component through the conveying channel. The three pushing and holding component can push material three to the bottom of the second pressing component. After being pushed into place, material three is located at the bottom surface of the semi-finished product. The second pressing component can press the bottom surface of the semi-finished product and material three together to form an oil mirror. The fourth limiting push and dropping component is set on the rear side of the second pressing component. The fourth limiting push and dropping component can push the oil mirror pressed below the second pressing component into the inclined dropping hopper.
[0006] Furthermore, the material limiting clamping device includes a limiting baffle, a clamping plate, and a sensor. The limiting baffle is fixedly installed on the outer side of the bottom of the entire base platform, and the clamping plate is installed on the entire base platform. The upper part of the limiting baffle is fitted onto the end of the material conveying channel in the rotating feeding barrel device. The clamping plate has a U-shaped material clamping hole groove on its side. The limiting baffle can block the material conveyed by the material conveying channel in the rotating feeding barrel device, ensuring that only one material enters the material clamping hole groove of the clamping plate at a time through the end of the material conveying channel in the rotating feeding barrel device. The sensor is installed on the outer side of the clamping plate and can sense whether there is material in the material clamping hole groove of the clamping plate.
[0007] The bottom push assembly has a bottom push cylinder and a bottom push loading column. The bottom push cylinder is vertically installed on the bracket at the bottom of the entire bottom support platform. The bottom push loading column is vertically installed on the top of the push rod of the bottom push cylinder. The entire bottom push assembly is located below the U-shaped material slot with a slot plate in the material limiting slot assembly. When the sensor detects that there is material in the material slot with the slot plate, the bottom push cylinder can vertically push the bottom push loading column upward, so that the material in the material slot rises upward on the top surface of the bottom push loading column and rises into place with the push of the bottom push cylinder.
[0008] The clamping assembly has a clamping cylinder and a clamping gripper plate. The clamping gripper plate is installed below the bottom of the clamping cylinder. There are two clamping gripper plates, and the front ends of the two clamping gripper plates have clamping notches. The clamping cylinder can drive the two clamping gripper plates so that the clamping notches at the front ends of the two clamping gripper plates can accurately and stably clamp the material on the top surface of the bottom push feeding column that has been pushed into place by a bottom push cylinder in the bottom push assembly.
[0009] The pushing assembly includes an upper top beam, a side down plate, a limiting bolt, a pushing cylinder, and a pushing plate. The bottom of the upper top beam is fixedly installed on the outer side of the entire bottom support platform. The upper part of the side down plate is fixedly installed on the upper top beam. The limiting bolt and the pushing cylinder are inserted into the side down plate. The pushing plate is installed at the end of the air push rod of the pushing cylinder. A clamping cylinder of a clamping assembly is fixedly installed on the pushing plate in the pushing assembly. The pushing cylinder in the pushing assembly can push the clamping assembly on the pushing plate to move as a whole, so that the material 1 clamped by the clamping gripper plate in the clamping assembly is moved to the upper part of the material 2 below the pressing assembly.
[0010] The base support platform has a dividing plate on top. The dividing plate is fixedly installed on the base support platform. The dividing plate can separate the area where the rotating feeding bucket device, the material limiting slot assembly, and the bottom push assembly are installed from the area where the material limiting slot assembly, the bottom push assembly, the holding assembly, and the moving assembly are installed.
[0011] Furthermore, the material limiting device has an L-shaped side support plate, a card slot platform, and a sensor. The bottom of the card slot platform is fixedly installed on the base support platform, and the side of the card slot platform is close to the dividing platform. The L-shaped side support plate is set on the dividing platform, and the sensor is installed on the L-shaped side support plate. The card slot platform has a platform surface and a material slot two hole groove. The material slot two hole groove on the card slot platform can separate the material two conveyed by the material conveying channel in the rotating feeding barrel two device, ensuring that only one material two enters the material slot two hole groove on the card slot platform at a time through the end of the material conveying channel in the rotating feeding barrel two device.
[0012] The two bottom push assembly includes two bottom push cylinders and a bottom push loading platform. The two bottom push cylinders are vertically installed on the support at the bottom of the entire bottom support platform. The bottom push loading platform is vertically installed on the top of the push rod of the two bottom push cylinders. The entire two bottom push assembly is located below the material slot with the slot plate in the material limiting two slot assembly. When the sensor detects that there is material two in the material slot with the slot plate, the two bottom push cylinders can vertically push the bottom push loading platform upward, so that the material two in the material slot rises upward on the top surface of the bottom push loading platform and rises into place with the push of the two bottom push cylinders.
[0013] The two-clamping assembly includes two clamping cylinders and a clamping plate. The clamping plate is installed on the horizontal longitudinal pushing plate of the two clamping cylinders. The clamping plate can clamp the material two on the top surface of the bottom pushing feeding column pushed upward by the two bottom pushing cylinders in the two bottom pushing assembly. The clamping plate can also clamp the semi-finished products of material one and material two after being pressed into place below the pressing assembly.
[0014] The two-push assembly includes two upper top beams, two side-down plates, two limit bolts, two push cylinders, and a sliding block. The bottom of the two upper top beams is fixedly installed on the outer side of the entire bottom support platform. The two side-down plates are fixedly installed on the two upper top beams. The two limit bolts and the two push cylinders are installed on the two side-down plates. One side of the sliding plate is installed at the end of the air push rod of the two push cylinders. The upper part of the sliding plate is clamped under the middle beam of the two upper top beams. The two clamping cylinders of the two clamping assemblies are fixedly installed under the sliding block in the two-push assembly. The push cylinder in the first push assembly can push the clamping assembly on the push plate to move as a whole, so that the material clamped by the clamping plate in the two clamping assemblies is moved to below the lower pressing assembly and located on the platform surface of the clamping plate in the limiting material clamping socket assembly.
[0015] Furthermore, the two-clamping assembly has two clamping positions on the clamping plate, namely clamping position one and clamping position two. Clamping position one can only clamp material two, and clamping position two can only clamp material one and the semi-finished product after material two is pressed.
[0016] The sum of the thickness of the material two held by the two holding components and the thickness of the plate with the card slot in the material limiting two card slot component is less than the thickness of the dividing plate on the entire bottom support table surface.
[0017] Furthermore, the tray plate with tray in the material limiting two-slot assembly and the segmented tray plate on the entire bottom tray surface can be combined into a tray platform with tray.
[0018] Furthermore, the three-push-and-lock assembly includes an L-shaped side platform, a limiting side contact plate, a locking cover plate, three-push-and-move cylinders, three sensors, and a small flat-push plate. The bottom of the L-shaped side platform is fixedly connected to the entire base support surface. The three-push-and-move cylinder is installed on one side of the L-shaped side platform. The limiting side contact plate covers the inner side of the area where the three-push-and-move cylinder is installed on the L-shaped side platform. The push rod of the three-push-and-move cylinder can pass through the side of the L-shaped side platform and the limiting side contact plate. The limiting side contact plate can prevent the push rod of the three-push-and-move cylinder from impacting the three-push-and-move cylinder or the L-shaped side platform when it moves back after being pushed out. The locking cover plate is installed on the outer side of the end of the material conveying channel in the rotating feeding barrel three-device. The three sensors are installed on the bottom outer side of the locking cover plate. The locking cover plate and the sensors... The third device ensures that only one material three is conveyed from the conveying channel of the rotating feeding bucket three device at a time and enters the hollow area inside the locking cover plate. The flat push plate is fixedly connected to the end of the push rod of the three-push cylinder. The flat push plate is installed in the hollow area inside the locking cover plate. The flat push plate has a flat push notch on its side. The flat push notch on the side of the flat push plate can push each material three in the hollow area inside the locking cover plate to the bottom of the material one and material two pressed semi-finished products held and pushed by the holding plate of the two-clamping assembly. At this time, the material one and material two pressed semi-finished products held and pushed by the holding plate of the two-clamping assembly and the material three pushed by the flat push plate of the three-push clamping assembly are all located below the two pressing assemblies.
[0019] Furthermore, the entire base support platform has a top plate and four columns above it. The four columns are fixedly installed on the entire base support platform, and the top plate is fixedly installed on the top of the four columns.
[0020] The pressing assembly includes a pressing cylinder, a guide column barrel, and a pressing column. The pressing cylinder is vertically and longitudinally installed on the top plate above the entire bottom support platform. The guide column barrel is installed below the top plate. The push rod of the pressing cylinder passes through the top plate and the guide column barrel. The pressing column is installed at the bottom end of the push rod of the pressing cylinder. The pressing assembly can clamp and press the material 1 that has been conveyed to the position below onto the upper inner side of the material 2.
[0021] The dual pressing assembly includes two pressing cylinders, a second guide column barrel, and a second pressing column. The two pressing cylinders are vertically and longitudinally installed on the top plate above the entire bottom support platform. The second guide column barrel is installed below the top plate. The push rod of the two pressing cylinders passes through the top plate and the second guide column barrel. The second pressing column is installed at the bottom end of the push rod of the two pressing cylinders. The dual pressing assembly can clamp the semi-finished product conveyed by the clamping plate in the dual clamping assembly and press it together with the material pushed by the flat pushing plate of the three pushing clamping assembly to form an oil mirror.
[0022] Furthermore, the four-limit push-drop assembly includes a rear upright plate, a four-limit push-drop cylinder, and an F-shaped limit push-drop plate. The rear upright plate is fixedly installed on the left rear side of the entire bottom support platform. The four-limit push-drop cylinder is installed on the rear upright plate, and the push rod of the four-limit push-drop cylinder is inserted through the rear upright plate. The F-shaped limit push-drop plate is installed at the end of the push rod of the four-limit push-drop cylinder. The front end of the F-shaped limit push-drop plate has an F-shaped notch slot. The clamping plate in the two-clamping assembly can clamp and convey the semi-finished product to the F-shaped notch slot of the F-shaped limit push-drop plate. The three-push clamping assembly can push the material three times to the area below the F-shaped notch slot at the front end of the F-shaped limit push-drop plate.
[0023] Furthermore, the rotating feeding hopper device one has a rotating feeding hopper one and a matching conveying channel, and the rotating feeding hopper one contains material one; the rotating feeding hopper device two has a rotating feeding hopper two and a matching conveying channel, and the rotating feeding hopper two contains material two; the rotating feeding hopper device three has a rotating feeding hopper three and a matching conveying channel, and the rotating feeding hopper three contains material three.
[0024] Furthermore, the inclined feeding hopper is generally shaped like a sloping bucket with a grooved edge. The inclined feeding hopper is installed on the bottom support platform. The upper inlet of the inclined feeding hopper is located on the outer side below the F-shaped limiting and pushing feeding plate in the four-limiting pushing feeding assembly. The height of the upper inlet of the inclined feeding hopper is lower than the bottom surface of the F-shaped limiting and pushing feeding plate.
[0025] Compared with existing technologies, the beneficial effects of the present invention are as follows:
[0026] By optimizing the overall design of the rotating feeding hopper device, the limiting clamping socket assembly, the bottom pushing assembly, the clamping assembly, the pushing assembly, the entire bottom support platform, the rotating feeding hopper device, the pressing assembly, the limiting clamping socket assembly, the bottom pushing assembly, the clamping assembly, the pushing assembly, the rotating feeding hopper device, the pushing and clamping assembly, the pressing assembly, the limiting and pushing material discharge assembly, and the inclined material discharge hopper, a continuous pressing device for motorcycle oil sight glasses with six pushes and two pressures in one unit has been manufactured. This invention solves the problems mentioned in the background section. This invention integrates the fourteen processes of motorcycle oil sight glass pressing into one device, achieving good overall stability and consistency, a high product qualification rate, and continuous synchronous operation without deviation or misalignment during continuous production. It ensures continuous conveying, holding, pushing, pressing, and discharging of materials, semi-finished products, and finished products, making it suitable for widespread use in the continuous automated production of motorcycle oil sight glasses. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the overall device of the present invention;
[0028] Figure 2This is a schematic diagram showing the combined connection of a rotating feeding hopper device, a limiting clamping socket assembly, a bottom pushing assembly, a clamping assembly, a pushing assembly, a pressing assembly, and the entire bottom support platform in the apparatus of the present invention.
[0029] Figure 3 This is a schematic diagram showing the combined connection of the rotating feeding hopper, the limiting material clamping socket assembly, the two bottom pushing assemblies, the two clamping assemblies, the two pushing assemblies, the one pressing down assembly, and the entire bottom support platform in the device of the present invention.
[0030] Figure 4 This is a schematic diagram showing the combined connection of the rotating feeding bucket three-device, three-push-card assembly, two-press-down assembly, four-limit-push-discharge assembly, inclined discharge hopper and the whole bottom support platform in the device of the present invention.
[0031] Figure 5 This is a schematic diagram showing the combined connection of the two-clamping assembly, the three-push-clamping assembly, the two-pressing assembly, the four-limit push-drop assembly, and the entire bottom support platform in the device of the present invention. Detailed Implementation
[0032] 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 invention.
[0033] The present invention will be further described in detail below with reference to embodiments and specific implementation methods.
[0034] See attached diagram: A continuous pressing device for motorcycle oil sight glasses with six pushers, two pressures, and ten integrated units, characterized by comprising a rotating feeding hopper device 1, a material limiting clamping socket assembly 16, a bottom push assembly 6, a clamping assembly 17, a pushing assembly 15, a base support platform 8, a rotating feeding hopper device 2, a lower pressing assembly 13, a material limiting second clamping socket assembly 19, two bottom push assemblies 5, two clamping assemblies 3, two pushing assemblies 14, a rotating feeding hopper device 3 10, a three-push clamping assembly 9, two lower pressing assemblies 12, a four-limiting push dropping assembly 4, and a sloping dropping hopper 7. The material limiting clamping socket assembly 16, the material limiting second clamping socket assembly 19, the clamping assembly 17, and the pushing assembly 15 are all mounted on the base support platform 8. The rotating feeding hopper device 1 and the rotating feeding hopper device 3 are both located on the base support platform 8. On one side of the base platform 8, the rotating feeding bucket device 1 and rotating feeding bucket device 3 are respectively located at both ends of one side of the base platform 8. The first bottom push assembly 6 and the second bottom push assembly 5 are both located below the base platform 8. The second holding assembly 3 and the second pushing assembly 14 are located on the base platform 8. The third push-lock assembly 9 is located on the base platform 8 near the rotating feeding bucket device 3 10. The first pressing assembly 13 and the second pressing assembly 12 are both located on the base platform 8. The fourth limiting push and discharge assembly 4 and the rotating feeding bucket device 2 are both located on the other side of the base platform 8. The rotating feeding bucket device 2 and the fourth limiting push and discharge assembly 4 are respectively located at both ends of the other side of the base platform 8. The outer side of the base platform 8 A sloping hopper 7 is provided below. The rotating feeding hopper device 1 conveys material 1 from the rotating feeding hopper device 1 to the limiting material clamping socket assembly 16 through the conveying channel. A bottom pushing assembly 6 is installed below the limiting material clamping socket assembly 16. The bottom pushing assembly 6 can push the material 1 on the limiting material clamping socket assembly 16 from bottom to top to the feeding position of a clamping assembly 17. The clamping assembly 17 is located above the limiting material clamping socket assembly 16. The clamping assembly 17 is connected to a pushing assembly 15. The pushing assembly 15 can push the material 1 clamped at the feeding position of the clamping assembly 17 to the bottom of a pressing assembly 13. The rotating feeding hopper device 2 conveys material 2 to the limiting material clamping socket assembly 19 through the conveying channel. The two bottom pushing assemblies 5 are installed below the limiting material clamping socket assembly 19. Below the material two clamping socket assembly 19, the second bottom push assembly 5 can push material two at the material two clamping socket assembly 19 from bottom to top to the clamping position of material two in the second clamping assembly 3. The second push-moving assembly 14 can push material two clamped in the second clamping assembly 3 to below the lower pressing assembly 13. The lower pressing assembly 13 can press material one on the upper inner side of material two. The second clamping assembly 3 can also clamp material one and material two after pressing the semi-finished product. The second push-moving assembly 14 can also push the semi-finished product clamped in the second clamping assembly 3 to below the second lower pressing assembly 12. The rotating feeding barrel three device 10 conveys material three to the three push clamping assembly 9 through the conveying channel. The three push clamping assembly 9 can push material three to below the second lower pressing assembly 12.After being pushed into place, material three is located at the bottom of the semi-finished product. The second pressing component 12 can press the bottom of the semi-finished product and material three together to form an oil mirror. The fourth limiting push discharging component 4 is located behind the second pressing component 12, and the fourth limiting push discharging component 4 can push the oil mirror pressed below the second pressing component 12 into the inclined discharge hopper.
[0035] Furthermore, the material limiting and jamming assembly 16 includes a limiting plate 1603, a jamming plate 1601, and a sensor 1602. The limiting plate 1603 is fixedly installed on the outer side of the bottom of the entire base support surface 8. The jamming plate 1601 is installed on the entire base support surface 8. The upper part of the limiting plate 1603 is fitted onto the end of the material conveying channel in the rotating feeding bucket device 1. The jamming plate 1601 has a U-shaped material slot on its side. The limiting plate 1603 can block the material conveyed by the material conveying channel in the rotating feeding bucket device 1, ensuring that only one material enters the material slot of the jamming plate 1601 through the end of the material conveying channel in the rotating feeding bucket device 1 at a time. The sensor 1602 is installed on the outer side of the jamming plate 1601 and can sense whether there is material in the material slot of the jamming plate 1602.
[0036] The bottom push assembly 6 has a bottom push cylinder 601 and a bottom push loading column. The bottom push cylinder 601 is vertically mounted on the bracket at the bottom of the entire bottom support platform 8. The bottom push loading column is vertically mounted on the top of the push rod of the bottom push cylinder 601. The bottom push assembly 6 is located below the U-shaped material slot with the slot plate 1601 in the material limiting slot assembly 16. When the sensor 1602 senses that there is material in the material slot with the slot plate 1601, the bottom push cylinder 601 can vertically push the bottom push loading column upward, so that the material in the material slot rises on the top surface of the bottom push loading column and rises to the position with the push of the bottom push cylinder 601.
[0037] The clamping assembly 17 has a clamping cylinder 1701 and a clamping gripper plate 1702. The clamping gripper plate 1702 is installed below the bottom of the clamping cylinder 1701. There are two clamping gripper plates 1702. The front ends of the two clamping gripper plates 1702 have clamping notches. The clamping cylinder 1701 can drive the two clamping gripper plates 1702 so that the clamping notches at the front ends of the two clamping gripper plates 1702 can accurately and stably clamp the material on the top surface of the bottom push feeding column that has been pushed into place by the bottom push cylinder 601 in the bottom push assembly 6.
[0038] The pushing assembly 15 includes an upper top beam, a side lower plate 1503, a limit bolt 1501, a pushing cylinder 1502, and a pushing plate. The bottom of the upper top beam is fixedly installed on the outer side of the entire bottom support platform 8. The upper part of the side lower plate 1503 is fixedly installed on the upper top beam. The limit bolt 1501 and the pushing cylinder 1502 are inserted into the side lower plate 1503. The pushing plate is installed at the end of the air push rod of the pushing cylinder 1502. A clamping cylinder 1701 of a clamping assembly 17 is fixedly installed on the pushing plate in the pushing assembly 15. The pushing cylinder 1502 in the pushing assembly 15 can push the clamping assembly 17 on the pushing plate to move as a whole, so that the material one clamped by the clamping gripper plate 1702 in the clamping assembly 17 is moved to the upper part of the material two below the pressing assembly 13.
[0039] The base support platform 8 has a dividing plate 18 on top. The dividing plate 18 is fixedly installed on the base support platform 8. The dividing plate 18 can separate the area where the rotating feeding bucket device 1, the material limiting clamping socket assembly 16, and the bottom pushing assembly 6 are installed from the area where the material limiting clamping socket assembly 19, the bottom pushing assembly 5, the clamping assembly 3, and the pushing assembly 14 are installed.
[0040] Furthermore, the material limiting two-hole assembly 19 has an L-shaped side support plate 1901, a clamping hole platform 1903, and a second sensor 1902. The bottom of the clamping hole platform 1903 is fixedly installed on the base support platform 8, and the side of the clamping hole platform 1903 is close to the dividing platform 18. The L-shaped side support plate 1901 is set on the dividing platform 18, and the second sensor 1902 is installed on the L-shaped side support plate 1901. The clamping hole platform 1903 has a platform surface and a material hole two-hole groove. The material hole two-hole groove on the clamping hole platform 1903 can separate the material two conveyed by the material conveying channel in the rotating feeding barrel two device 2, ensuring that only one material two enters the material hole two-hole groove on the clamping hole platform 1903 at a time through the end of the material conveying channel in the rotating feeding barrel two device 2.
[0041] The two bottom push assembly 5 includes two bottom push cylinders 501 and a bottom push loading column. The two bottom push cylinders 501 are vertically installed on the support at the bottom of the entire bottom support platform 8. The bottom push loading column is vertically installed on the top of the push rod of the two bottom push cylinders 501. The two bottom push assembly 5 is located below the material slot with the slot plate 1903 in the material limiting slot assembly 19. When the sensor 1902 senses that there is material 2 in the material slot with the slot plate 1901, the two bottom push cylinders 501 can vertically push the bottom push loading column upward, so that the material 2 in the material slot rises on the top surface of the bottom push loading column and rises into place with the push of the two bottom push cylinders 501.
[0042] The two-clamping assembly 3 has two-clamping cylinders 301 and a clamping plate 302. The clamping plate 302 is installed on the horizontal longitudinal pushing plate of the two-clamping cylinders 301. The clamping plate 302 can clamp the material two on the top surface of the bottom pushing feeding column pushed up by the two bottom pushing cylinders 501 in the two bottom pushing assembly 3. The clamping plate 302 can clamp the semi-finished products of material one and material two after being pressed under the pressing assembly 13.
[0043] The two-push assembly 14 includes two upper top beams, two side-down plates, two limit bolts 1402, two push cylinders 1401, and a sliding block. The bottom of the two upper top beams is fixedly installed on the outer side of the entire bottom support platform 8. The two side-down plates are fixedly installed on the two upper top beams. The two limit bolts 1402 and the two push cylinders 1401 are inserted into the two side-down plates. One side of the sliding plate is installed at the end of the air push rod of the two push cylinders 1401, and the upper part of the sliding plate is clamped onto... Below the middle beam of the upper top beam, the two-clamping cylinder 301 of the two-clamping assembly 3 is fixedly installed on the lower part of the sliding block in the two-push assembly 14. The push cylinder 1502 in the push assembly 15 can push the clamping assembly 17 on the push plate to move as a whole, so that the material two clamped by the clamping plate 302 in the two-clamping assembly 3 is moved to the lower pressing assembly 13 and located on the platform surface of the clamping plate 1903 in the material limiting two-clamping socket assembly 19.
[0044] Furthermore, the clamping plate 302 of the two clamping components 3 has two clamping positions, namely clamping position one and clamping position two. Clamping position one can only clamp material two, and clamping position two can only clamp material one and the semi-finished product after material two is pressed.
[0045] The sum of the thickness of the material two held by the two-clamping component 3 and the thickness of the clamping plate 1903 with clamping socket in the material limiting component 19 is less than the thickness of the dividing plate 18 on the entire bottom support surface 8.
[0046] Furthermore, the tray plate 1903 with tray in the material limiting two-slot assembly 19 and the segmented tray plate 18 on the whole bottom tray surface 8 can be combined into a tray platform with tray.
[0047] Furthermore, the three-push-lock assembly 9 includes an L-shaped side platform 904, a limiting side contact plate 906, a locking cover plate 901, a three-push-moving cylinder 903, a sensor 905, and a flat-push plate 902. The bottom of the L-shaped side platform 904 is fixedly connected to the entire base support surface 8. The three-push-moving cylinder 903 is installed on one side of the L-shaped side platform 904, and the limiting side contact plate 906 covers the area where the three-push-moving cylinder 903 is installed on the L-shaped side platform 904. Inside, the push rod of the three-push cylinder 903 can pass through the side of the L-shaped side plate 904 and the limiting side contact plate 906. The limiting side contact plate 906 can prevent the push rod of the three-push cylinder 903 from hitting the three-push cylinder 903 or the L-shaped side plate 904 when it moves back after being pushed out. The locking cover plate 901 is installed on the outside of the end of the material conveying channel in the rotating feeding barrel device 10. The sensor 905 is installed on the locking cover plate 901. On the bottom outer side, the locking cover plate 901 and sensor 3 905 ensure that only one material 3 conveyed from the material conveying channel of the rotating feeding barrel 3 device 10 enters the hollow area inside the locking cover plate 901 at a time. The flat push plate 902 is fixedly connected to the end of the push rod of the three-push cylinder 903. The flat push plate 902 is installed in the hollow area inside the locking cover plate 901. The side of the flat push plate 902 has a flat push notch. The flat push notch on the side of the flat push plate 902 can push each material 3 in the hollow area inside the locking cover plate 901 to below the material 1 and material 2 after pressing and pushing by the locking plate 302 in the two-clamping assembly 3. At this time, the material 1 and material 2 after pressing and pushing by the locking plate 302 in the two-clamping assembly 3 and the material 3 pushed by the flat push plate 902 in the three-push clamping assembly 9 are all located below the two pressing assemblies 12.
[0048] Furthermore, above the entire base support platform 8, there is a top platform plate 11 and four columns. The four columns are fixedly installed on the entire base support platform 8, and the top platform plate 11 is fixedly installed on the top of the four columns.
[0049] The pressing assembly 13 includes a pressing cylinder 1301, a guide column barrel 1, and a pressing column 1302. The pressing cylinder 1301 is vertically and longitudinally installed on the top plate 11 above the entire bottom support platform 8. The guide column barrel 1 is installed below the top plate 11. The push rod of the pressing cylinder 1301 is inserted into the top plate 11 and the guide column barrel 1. The pressing column 1302 is installed at the bottom end of the push rod of the pressing cylinder 1301. The pressing assembly 13 can clamp and press the material 1 that has been conveyed to the position below onto the upper inner side of the material 2.
[0050] The dual pressing assembly 12 includes dual pressing cylinders 1201, guide column barrel 2, and pressing column 2 1202. The dual pressing cylinders 1201 are vertically and longitudinally installed on the top plate 11 above the entire bottom support platform 8. The guide column barrel 2 is installed below the top plate 11. The push rod of the dual pressing cylinders 1201 is inserted into the top plate 11 and the guide column barrel 2. The pressing column 2 1202 is installed at the bottom end of the push rod of the dual pressing cylinders 1201. The dual pressing assembly 12 can clamp the semi-finished product conveyed by the clamping plate 302 in the dual clamping assembly 3, and press it together with the material pushed by the flat pushing plate 902 of the triple pushing and clamping assembly 9 to form an oil mirror.
[0051] Furthermore, the four-limit push-drop assembly 4 includes a rear upright plate 401, a four-limit push-drop cylinder 402, and an F-shaped limit push-drop plate 403. The rear upright plate 401 is fixedly installed on the left rear side of the entire bottom support platform 8. The four-limit push-drop cylinder 402 is installed on the rear upright plate 401, and the push rod of the four-limit push-drop cylinder 402 is inserted into the rear upright plate 401. The F-shaped limit push-drop plate 403 is installed at the end of the push rod of the four-limit push-drop cylinder 402. The front end of the F-shaped limit push-drop plate 403 has an F-shaped notch slot. The clamping plate 302 in the two-clamping assembly 3 clamps and can transport semi-finished products to the F-shaped notch slot of the F-shaped limit push-drop plate 403. The three-push clamping assembly 9 pushes the small push plate 902 to push the material to the area below the F-shaped notch slot at the front end of the F-shaped limit push-drop plate 403.
[0052] Furthermore, the rotating feeding hopper device 1 has a rotating feeding hopper 1 and a matching conveying channel, and the rotating feeding hopper 1 contains material 1. The rotating feeding hopper device 2 has a rotating feeding hopper 2 and a matching conveying channel, and the rotating feeding hopper 2 contains material 2. The rotating feeding hopper device 10 has a rotating feeding hopper 3 and a matching conveying channel, and the rotating feeding hopper 3 contains material 3.
[0053] Furthermore, the inclined feeding hopper 7 is generally shaped like a sloping bucket with a grooved edge. The inclined feeding hopper 7 is installed on the bottom support platform 8. The upper inlet of the inclined feeding hopper 7 is located on the outer side below the F-shaped limiting pushing feeding plate 403 in the four limiting pushing feeding assembly 4. The height of the upper inlet of the inclined feeding hopper 7 is lower than the bottom surface of the F-shaped limiting pushing feeding plate 403.
[0054] During use: First, add Material 1 (the recessed piece) into the rotating feeding barrel 1, add Material 2 (the transparent outer embedded body) into the rotating feeding barrel 2, and add Material 3 (the reinforcing ring) into the rotating feeding barrel 3. Then start the control cabinet system supporting the device of the present invention. The control cabinet system can control the overall stable operation of the device of the present invention. At this time, the control cabinet system commands the rotating feeding barrel 1 device 1, the rotating feeding barrel 2 device 2, and the rotating feeding barrel 3 device 10 to operate. Material 1 is conveyed through the feeding channel matching the rotating feeding barrel 1 to the material nest hole groove of the nest plate 1601 in the material limiting nest component 16. When the sensor 1602 senses that there is Material 1 at the material nest hole groove of the nest plate 1601, the sensor 1602 can transmit a signal to the control cabinet system. The control cabinet system commands the bottom pushing cylinder 601 in the first bottom pushing component 6 to work. The bottom pushing cylinder 601 can vertically and longitudinally push up the bottom pushing feeding column, making Material 1 at the material nest hole groove rise upward on the top surface of the bottom pushing feeding column and rise in place with the push of the bottom pushing cylinder 601. At the same time, the control cabinet system commands the clamping gripper plate 1702 in the first clamping component 17 to accurately and stably clamp Material 1 on the top surface of the bottom pushing feeding column that rises in place with the push of the bottom pushing cylinder 601 in the first bottom pushing component 6. The control cabinet system commands the pushing cylinder 1502 in the first pushing component 15 to push the entire first clamping component 17 on the pushing plate, moving the Material 1 clamped by the clamping gripper plate 1702 in the first clamping component 17 to the upper part of Material 2 below the pressing component 13.
[0055] The control cabinet system supporting the device of the present invention can command Material 2 conveyed through the feeding channel in the rotating feeding barrel 2 device 2 to the material nest two hole groove on the nest table plate 1903 in the material limiting two nest component 19. When the sensor 2 senses that there is Material 2 at the material nest two hole groove on the nest plate 1903, the second bottom pushing cylinder 501 can vertically and longitudinally push up the bottom pushing feeding table column, making Material 2 at the material nest two hole groove rise upward on the top surface of the bottom pushing feeding table column and rise in place with the push of the second bottom pushing cylinder 501. At the same time, the control cabinet system commands the second clamping cylinder part 301 in the second clamping component 3 to drive the clamping plate 302. The clamping plate 302 can clamp Material 2 on the top surface of the bottom pushing feeding table column that rises with the push of the second bottom pushing cylinder 501 in the second bottom pushing component 5. The control cabinet system commands the second pushing cylinder 1401 in the second pushing component 14 to push the sliding block, and the sliding block带动 the overall movement of the second clamping component 3, moving the Material 2 clamped by the clamping plate 302 in the second clamping component 3 to below the pressing component 13. The pushing cylinder 1502 in the first pushing component 15 pushes the Material 1 clamped by the first clamping component 17 on the pushing plate and places Material 1 on top of Material 2. Here, both Material 1 and Material are below the pressing component 13. The control cabinet system commands the pressing column 1302 in the pressing component 13 to press the Material 1 clamped and conveyed in place below the pressing component 13 onto the inner upper part of Material 2 to form a semi-finished product.
[0056] Subsequently, the control cabinet system commands the first clamping position of the clamping plate 302 in the second clamping component 3 to clamp the second material, the second clamping position of the clamping plate 302 in the second clamping component 3 to clamp the semi-finished product after the first material and the second material are press-fitted, and sends the semi-finished product clamped by the second clamping position of the clamping plate 302 in the second clamping component 3 under the second downward pressing component 12, and sends the second material clamped by the first clamping position of the clamping plate 302 in the second clamping component 3 under the first downward pressing component 13. The second material is located on the platform surface of the clamping platform plate 1903 in the second material limiting and clamping component 19;
[0057] The control cabinet system supporting the device of the present invention can command the third material conveyed by the material conveying channel in the rotating material feeding barrel three device 10 to the hollow area inside the clamping cover plate 901 in the third pushing and clamping component 9. When the sensor three 905 in the third pushing and clamping component 9 senses that there is the third material in the hollow area inside the clamping cover plate 901, the control cabinet system commands the third pushing cylinder 903 in the third pushing and clamping component 9 to push the flat pushing small plate 902. The side of the pushed flat pushing small plate 902 can push each third material in the hollow area inside the clamping cover plate 901 to under the semi-finished product after the first material and the second material clamped and pushed by the clamping plate 302 in the second clamping component 3 are press-fitted. At this time, both the semi-finished product and the third material are under the second downward pressing component 12. The control cabinet system commands the second downward pressing cylinder 1201 in the second downward pressing component 12 to push the downward pressing column two 1202 downward to press-fit the semi-finished product (the semi-finished product after the first material and the second material are press-fitted) and the third material located under the second downward pressing component 12 together into an oil lens; the oil lens as a whole here is located at the F-shaped notch slot hole of the F-shaped limiting and pushing and blanking plate 403 in the fourth limiting pushing and blanking component 4;
[0058] The control cabinet system commands the fourth limiting pushing and blanking cylinder 402 in the fourth limiting pushing and blanking component 4 to push the F-shaped limiting and pushing and blanking plate 403 to move outward. The F-shaped limiting and pushing and blanking plate 403带动 the oil lens after press-fitting at the F-shaped notch slot hole to move outward to the outside of the entire bottom support table surface 8 under the F-shaped limiting and pushing and blanking plate 403. The oil lens after press-fitting at the F-shaped notch slot hole falls into the feeding port at the upper part of the slope blanking hopper 7; the production and manufacturing of one oil lens finished product is completed, and the above-mentioned production process of the oil lens finished product is continuously cycled in the subsequent continuous production process.
[0059] This invention solves the problems of poor product quality stability, low overall consistency, and low product qualification rate in the original production of motorcycle oil sight glasses. These problems include the need to connect multiple conveyor belts without an automatic material grabbing device, requiring manual assembly of different components before placing them on the loading platform of the pressure equipment. Furthermore, this invention addresses the low overall efficiency of the original motorcycle oil sight glass manufacturing process, which required 3-5 people to operate, resulting in a large demand for operators. With this invention, one operator can manage 2-3 sets of automated production equipment, and the entire production process of motorcycle oil sight glasses is controlled by this invention. Once completed, operators only need to start or stop the device and load / unload the associated materials, saving 5-9 operators. Simultaneously, one device of this invention can replace multiple sets of supporting holding, pushing, pressing, and sealing equipment in the original motorcycle oil sight glass manufacturing process, resulting in low investment costs. The device of this invention offers high overall continuous automated production efficiency, solving the problem of high overall investment costs and the inability to achieve continuous automated production between different equipment in the original motorcycle oil sight glass manufacturing process, which required multiple sets of supporting holding, pushing, pressing, and sealing equipment.
[0060] This invention integrates the fourteen processes of motorcycle oil sight glass press-fitting production into one device, which is stable and consistent, with a high product qualification rate. During continuous production, the device remains aligned and synchronized without deviation, ensuring continuous conveying, holding, pushing, pressing, and unloading of materials, semi-finished products, and finished products. It is suitable for widespread use in the continuous automated production of motorcycle oil sight glasses.
[0061] The above description is only a preferred embodiment of the present invention. It should be noted that those skilled in the art can make several modifications and improvements without departing from the inventive concept of the present invention, and these all fall within the protection scope of the present invention.
Claims
1. A continuous press-fitting device for motorcycle oil sight glasses with six pushers, two pressures, and ten integrated positions, characterized in that... The system includes a rotating feeding hopper device, a material limiting clamping device, a bottom pushing device, a clamping device, a pushing device, a complete bottom support platform, a rotating feeding hopper device 2, a pressing device, a material limiting clamping device 2, a bottom pushing device 2, a clamping device 2, and a pushing device 2, a rotating feeding hopper device 3, a pushing and clamping device 3, a pressing device 2, a limiting and pushing discharge device 4, and a sloping discharge hopper. The material limiting clamping device 2, the clamping device 1, and the pushing device 1 are all mounted on the complete bottom support platform. The rotating feeding hopper device 1 and the rotating feeding hopper device 3 are both located on one side of the complete bottom support platform, with their positions at opposite ends of one side of the platform. The bottom pushing device 1 and the bottom pushing device 2 are also mounted on the platform. All components are located below the entire base platform. The two clamping components and the two pushing components are located on the entire base platform. The three pushing and clamping components are located on the entire base platform near the rotating feeding hopper device. The one pressing component and the two pressing components are both located on the entire base platform. The four limiting push material discharge component and the rotating feeding hopper device are both located on the other side of the entire base platform. The rotating feeding hopper device and the four limiting push material discharge components are respectively located at both ends of the other side of the entire base platform. A sloping material discharge hopper is provided below the outer side of the entire base platform. The rotating feeding hopper device transports the material in the rotating feeding hopper device to the limiting material clamping device through the material conveying channel. The one bottom pushing component is installed below the limiting material clamping device. A bottom-pushing assembly pushes material 1 from bottom to top on the limiting material clamping assembly to the feeding position of a clamping assembly. The clamping assembly is located above the limiting material clamping assembly. The clamping assembly is connected to a pushing assembly. The pushing assembly pushes the material 1 clamped at the feeding position of the clamping assembly to below a pressing assembly. The rotating feeding bucket 2 device conveys material 2 to the limiting material clamping assembly 2 through a conveying channel. The two bottom-pushing assemblies are installed below the limiting material clamping assembly 2. The two bottom-pushing assemblies push the material 2 at the limiting material clamping assembly 2 from bottom to top to the clamping position of the clamping assembly 2. The two pushing assemblies push the material 2 clamped in the clamping assembly 2 to below a pressing assembly 2. The pressing component can press material one onto the upper inner side of material two. The second clamping component can also clamp material one and material two after pressing into the semi-finished product. The second pushing component can also push the semi-finished product clamped in the second clamping component to the bottom of the second pressing component. The rotating feeding bucket three device conveys material three to the three pushing clamping component through the conveying channel. The three pushing clamping component can push material three to the bottom of the second pressing component. After being pushed into place, material three is located at the bottom surface of the semi-finished product. The second pressing component can press the bottom surface of the semi-finished product together with material three to form an oil mirror. The four-limit push dropping component is located on the rear side of the second pressing component. The four-limit push dropping component can push the oil mirror pressed below the second pressing component into the inclined dropping hopper. The material limiting clamping device consists of a limiting baffle, a clamping plate, and a sensor. The limiting baffle is fixedly installed on the outer side of the bottom of the entire base platform. The clamping plate is installed on the entire base platform. The upper part of the limiting baffle is fitted onto the end of the material conveying channel in the rotating feeding barrel device. The clamping plate has a U-shaped material clamping slot on its side. The limiting baffle can block the material conveyed by the material conveying channel in the rotating feeding barrel device, ensuring that only one material enters the material clamping slot of the clamping plate at a time through the end of the material conveying channel in the rotating feeding barrel device. The sensor is installed on the outer side of the clamping plate and can sense whether there is material in the material clamping slot of the clamping plate. The bottom push assembly has a bottom push cylinder and a bottom push loading column. The bottom push cylinder is vertically installed on the bracket at the bottom of the entire bottom support platform. The bottom push loading column is vertically installed on the top of the push rod of the bottom push cylinder. The entire bottom push assembly is located below the U-shaped material slot with a slot plate in the material limiting slot assembly. When the sensor detects that there is material in the material slot with the slot plate, the bottom push cylinder can vertically push the bottom push loading column upward, so that the material in the material slot rises upward on the top surface of the bottom push loading column and rises into place with the push of the bottom push cylinder. The clamping assembly includes a clamping cylinder and two clamping grippers. The clamping grippers are mounted below the bottom of the clamping cylinder. Each clamping gripper has a clamping notch at its front end. The holding cylinder can drive two clamping gripper plates, so that the clamping notches at the front end of the two clamping gripper plates can accurately and stably clamp the material on the top surface of the bottom push feeding column that has been pushed into place by a bottom push cylinder in a bottom push assembly. The pushing assembly includes an upper top beam, a side down plate, a limiting bolt, a pushing cylinder, and a pushing plate. The bottom of the upper top beam is fixedly installed on the outer side of the entire bottom support platform. The upper part of the side down plate is fixedly installed on the upper top beam. The limiting bolt and the pushing cylinder are inserted into the side down plate. The pushing plate is installed at the end of the air push rod of the pushing cylinder. A clamping cylinder of a clamping assembly is fixedly installed on the pushing plate in the pushing assembly. The pushing cylinder in the pushing assembly can push the clamping assembly on the pushing plate to move as a whole, so that the material 1 clamped by the clamping gripper plate in the clamping assembly is moved to the upper part of the material 2 below the pressing assembly. The entire bottom support platform has a dividing plate on top. The dividing plate is fixedly installed on the entire bottom support platform. The dividing plate can separate the area where the rotating feeding bucket device, the material limiting slot assembly, and the bottom push assembly are installed from the area where the material limiting slot assembly, the bottom push assembly, the holding assembly, and the pushing assembly are installed. The material limiting device has an L-shaped side support plate, a platform with a material clamping hole, and a second sensor. The bottom of the platform with the material clamping hole is fixedly installed on the base support platform. The side of the platform with the material clamping hole is close to the dividing platform. The L-shaped side support plate is set on the dividing platform. The second sensor is installed on the L-shaped side support plate. The platform with the material clamping hole has a platform surface and a material clamping hole slot. The material clamping hole slot on the platform with the material clamping hole can separate the material II conveyed by the material conveying channel in the rotating feeding barrel II device, ensuring that only one material II enters the material clamping hole slot on the platform with each material II through the end of the material conveying channel in the rotating feeding barrel II device. The dual-bottom-push assembly includes two bottom-push cylinders and a bottom-push loading platform. The two bottom-push cylinders are longitudinally and vertically installed on the entire bottom. On the support under the platform, the bottom pusher feeding column is vertically and longitudinally installed on the top of the push rod of the second bottom pusher cylinder. The entire second bottom pusher assembly is located below the material slot with the slot plate in the material limiting slot assembly. When the second sensor detects that there is material 2 in the material slot with the slot plate, the second bottom pusher cylinder can vertically and longitudinally push the bottom pusher feeding column upward, so that the material 2 in the material slot rises upward on the top surface of the bottom pusher feeding column and rises into place with the push of the second bottom pusher cylinder. The two-clamping assembly includes two clamping cylinders and a clamping plate. The clamping plate is installed on the horizontal longitudinal pushing plate of the two clamping cylinders. The clamping plate can clamp the material two on the top surface of the bottom pushing feeding column pushed upward by the two bottom pushing cylinders in the two bottom pushing assembly. The clamping plate can clamp the semi-finished products of material one and material two after being pressed under the pressing assembly. The two-push assembly includes two upper top beams, two side-down plates, two limit bolts, two push cylinders, and a sliding block. The bottom of the two upper top beams is fixedly installed on the outer side of the entire bottom support platform. The two side-down plates are fixedly installed on the two upper top beams. The two limit bolts and the two push cylinders are installed on the two side-down plates. One side of the sliding plate is installed at the end of the air push rod of the two push cylinders. The upper part of the sliding plate is clamped under the middle beam of the two upper top beams. The two clamping cylinders of the two clamping assemblies are fixedly installed under the sliding block in the two-push assembly. The push cylinder in the first push assembly can push the clamping assembly on the push plate to move as a whole, so that the material clamped by the clamping plate in the two clamping assemblies is moved to below the lower pressing assembly and located on the platform surface of the clamping plate in the limiting material clamping socket assembly.
2. The motorcycle oil sight glass six-push double-press ten-position integrated continuous pressing device according to claim 1, characterized in that... The two-clamping assembly has two clamping positions on the clamping plate, namely clamping position one and clamping position two. Clamping position one can only clamp material two, and clamping position two can only clamp material one and the semi-finished product after material two is pressed. The sum of the thickness of the material two held by the two holding components and the thickness of the plate with the card slot in the material limiting two card slot component is less than the thickness of the dividing plate on the entire bottom support table surface.
3. The motorcycle oil sight glass six-push double-pressure ten-position integrated continuous pressing device according to claim 2, characterized in that... The tray plate with the card slot in the material limiting two-card slot assembly and the segmented tray plate on the whole bottom tray surface can be combined into a tray plate with a card slot.
4. The motorcycle oil sight glass six-push double-pressure ten-position integrated continuous pressing device according to claim 1, characterized in that... The three-push-lock assembly includes an L-shaped side platform, a limiting side contact plate, a locking cover plate, three-push-moving cylinders, three sensors, and a small flat-push plate. The bottom of the L-shaped side platform is fixedly connected to the entire base support surface. The three-push-moving cylinder is installed on one side of the L-shaped side platform. The limiting side contact plate covers the inner side of the area where the three-push-moving cylinder is installed on the L-shaped side platform. The push rod of the three-push-moving cylinder can pass through the side of the L-shaped side platform and the limiting side contact plate. The limiting side contact plate can prevent the push rod of the three-push-moving cylinder from hitting the three-push-moving cylinder or the L-shaped side platform when it moves back after being pushed out. The locking cover plate is installed on the outer side of the end of the material conveying channel in the rotating feeding barrel three-device. The three sensors are installed on the bottom outer side of the locking cover plate. The locking cover plate and the three sensors... It can ensure that only one material three conveyed from the conveying channel of the rotating feeding bucket enters the hollow area inside the locking cover plate at a time. The flat push plate is fixedly connected to the end of the push rod of the three-push cylinder. The flat push plate is installed in the hollow area inside the locking cover plate. The flat push plate has a flat push notch on its side. The flat push notch on the side of the flat push plate can push each material three in the hollow area inside the locking cover plate to the bottom of the semi-finished products of material one and material two pressed by the holding plate of the two-clamping assembly. At this time, the semi-finished products of material one and material two pressed by the holding plate of the two-clamping assembly and the material three pushed by the flat push plate of the three-push clamping assembly are all located below the two pressing assemblies.
5. A continuous press-fitting device for motorcycle oil sight glasses with six pushers, two pressures, and ten integrated positions, as described in any one of claims 1 to 4, characterized in that... Above the entire base support platform are a top plate and four columns. The four columns are fixedly installed on the entire base support platform, and the top plate is fixedly installed on the top of the four columns. The pressing assembly includes a pressing cylinder, a guide column barrel, and a pressing column. The pressing cylinder is vertically and longitudinally installed on the top plate above the entire bottom support platform. The guide column barrel is installed below the top plate. The push rod of the pressing cylinder passes through the top plate and the guide column barrel. The pressing column is installed at the bottom end of the push rod of the pressing cylinder. The pressing assembly can clamp and press the material 1 that has been conveyed to the position below onto the upper inner side of the material 2. The dual pressing assembly includes two pressing cylinders, a second guide column barrel, and a second pressing column. The two pressing cylinders are vertically and longitudinally installed on the top plate above the entire bottom support platform. The second guide column barrel is installed below the top plate. The push rod of the two pressing cylinders passes through the top plate and the second guide column barrel. The second pressing column is installed at the bottom end of the push rod of the two pressing cylinders. The dual pressing assembly can clamp the semi-finished product conveyed by the clamping plate in the dual clamping assembly and press it together with the material pushed by the flat pushing plate of the three pushing clamping assembly to form an oil mirror.
6. The motorcycle oil sight glass six-push double-press ten-position integrated continuous pressing device according to claim 1, characterized in that... The four-limit push-drop assembly includes a rear upright plate, a four-limit push-drop cylinder, and an F-shaped limit push-drop plate. The rear upright plate is fixedly installed on the left rear side of the entire base support platform. The four-limit push-drop cylinder is installed on the rear upright plate, and the push rod of the four-limit push-drop cylinder is inserted through the rear upright plate. The F-shaped limit push-drop plate is installed at the end of the push rod of the four-limit push-drop cylinder. The front end of the F-shaped limit push-drop plate has an F-shaped notch slot. The two-clamping assembly has a clamping plate that can clamp and convey semi-finished products to the F-shaped notch slot of the F-shaped limit push-drop plate. The three-push clamping assembly has a flat-push small plate that can push the material to below the F-shaped notch slot at the front end of the F-shaped limit push-drop plate.
7. The motorcycle oil sight glass six-push double-press ten-position integrated continuous pressing device according to claim 1, characterized in that... The rotating feeding hopper device 1 has a rotating feeding hopper 1 and a matching conveying channel, and the rotating feeding hopper 1 contains material 1. The rotating feeding hopper device 2 has a rotating feeding hopper 2 and a matching conveying channel, and the rotating feeding hopper 2 contains material 2. The rotating feeding hopper device 3 has a rotating feeding hopper 3 and a matching conveying channel, and the rotating feeding hopper 3 contains material 3.
8. The motorcycle oil sight glass six-push double-press ten-position integrated continuous pressing device according to claim 1, characterized in that... The inclined feeding hopper is shaped like a sloping bucket with a grooved edge. It is installed on the bottom support platform. The upper inlet of the inclined feeding hopper is located on the outer side below the F-shaped limiting and pushing feeding plate in the four-limiting and pushing feeding assembly. The height of the upper inlet of the inclined feeding hopper is lower than the bottom surface of the F-shaped limiting and pushing feeding plate.
Citation Information
Patent Citations
Six-pushing and double-pressing ten-in-one continuous press-fitting device for motorcycle oil immersion lens
CN214444467U