Medium and large bearing transfer device
Through the coordination of designing guide rails and material pushing components, automatic flip and feeding of medium and large bearings is achieved, solving the problem of large area in the packaging process of medium and large bearings, and improving the degree of automation.
Patent Information
- Application Number
- CN202422280168.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-18
AI Technical Summary
During the packaging process of medium and large bearings, how to transfer the atomized oil spray bearing directly from the material collection station to the next station while reducing the floor area.
A medium-to-large bearing transfer device is designed, including a guide rail, a support rail and a pushing component. The horizontal bearing is flipped to the vertical state through the guide rail, and the bearing is pushed to the discharge end of the support plate by using the support rail and the pushing component to realize the automatic feeding of the bearing.
It realizes feeding materials to the next station while atomizing and fuel-spraying medium and large bearings is collected, reducing the footprint and improving the degree of automation.
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Figure CN223149577U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of packaging bearings, in particular to a transfer device for medium and large-sized bearings. Background Art
[0002] When packaging medium and large-sized bearings, in addition to feeding the packaging tubes, it is also necessary to feed the medium and large-sized bearings, atomize and spray oil on the medium and large-sized bearings, and then transfer them to the packaging tubes. For some thin-walled bearings, there are two stations. One is the receiving station, and the feeding station is located on one side of the receiving station. The receiving station is used to collect the atomized and oil-sprayed bearings, and then the bearings are quantitatively pushed to the feeding station through the push rod assembly. The push rod assembly at the feeding station pushes them to the next station. However, due to the relatively large floor area of medium and large-sized bearings, if there are two stations, the packaging area of the entire medium and large-sized bearings will increase. Therefore, how to directly transfer them to the next station at the receiving station is a technical problem that needs to be solved urgently at present. Summary of the Utility Model
[0003] In order to overcome the above disadvantages, the purpose of the utility model is to provide a transfer device for medium and large-sized bearings that can feed the next station while receiving the atomized and oil-sprayed medium and large-sized bearings and reduce the floor area.
[0004] To achieve the above purpose, one of the technical solutions adopted by the utility model is: a transfer device for medium and large-sized bearings, comprising: a guiding track, the guiding track is connected to the discharge port of the horizontal atomized oil-spraying conveying line to turn the horizontal bearing to a vertical state; a supporting track, the supporting track is connected to the discharge end of the guiding track to support the bearing turned to a vertical state; a supporting plate, the guiding track and the supporting track are fixed on the supporting plate, and a V-shaped groove is arranged on the supporting plate, and the V-shaped groove is arranged along the length direction of the supporting plate; a pushing component, the pushing plate of the pushing component can move back and forth in the length direction of the supporting plate and the direction perpendicular to the supporting plate to push the bearing in the supporting track to the discharge end of the supporting plate.
[0005] Preferably, the guiding track comprises an integrally formed upper guiding part and a lower guiding part; the upper end of the upper guiding part is horizontally connected to the discharge port of the atomized oil-spraying conveying line, the middle part of the upper guiding part is an arc track, and the lower end of the upper guiding part is a vertical track; the track of the lower guiding part is in an inclined vertical shape, the higher part of the lower guiding part is communicated with the vertical track, and the lower part of the lower guiding part is communicated with the supporting track. To realize turning the bearing in a horizontal state to a vertical state.
[0006] Preferably, the outer side wall of the support rail has a pushing groove hole through which the push plate of the pushing assembly can pass, and the inner side wall of the support rail has a bearing through hole through which a vertically positioned bearing can pass.
[0007] Preferably, a strip-shaped groove is provided at one end of the support plate close to the support rail. The strip-shaped groove starts from one end face of the support plate and terminates at the middle of the support plate, and the strip-shaped groove allows the push plate of the pushing assembly to pass through. The provision of the strip-shaped groove provides a clearance for the movement of the push plate.
[0008] Preferably, the support plate includes a first support plate and a second support plate. The first support plate and the second support plate are arranged flush and connected to each other, and the strip-shaped grooves are distributed on the first support plate.
[0009] Preferably, the length of the first support plate is greater than the length of the second support plate. Two first sensors are provided on the side of the first support plate, one of the first sensors is close to the second support plate, and the other first sensor is far from the second support plate; a second sensor is provided on the second support plate.
[0010] Preferably, the pushing assembly includes: a linear module fixed on the support plate; a connecting frame, the linear module drives the connecting frame to move back and forth along the length direction of the support plate; a push plate slidably arranged on the connecting frame through a longitudinal guide rail; a lifting cylinder fixed on the connecting frame and driving the push plate to lift along the longitudinal guide rail.
[0011] The beneficial effects of the large-sized bearing transfer device in the present utility model are as follows:
[0012] Firstly, the horizontally transferred large-sized bearings are discharged from the discharge port of the atomized oil spraying conveying line, and are flipped to a vertical state through the guiding rail and supported and positioned by the support rail. After positioning, the pushing assembly pushes the vertically positioned large-sized bearings to the support plate until the large-sized bearings on the support plate completely cover the V-shaped groove. When the pushing assembly pushes again, the support plate is sequentially pushed to the next station; through the cooperative arrangement of the guiding rail, the support rail, the support plate and the pushing assembly, the receiving and feeding of large-sized bearings on the support plate can be realized, and while receiving the large-sized bearings that have undergone atomized oil spraying, feeding operation to the next station can also be carried out, reducing the floor area.
[0013] Secondly, the first support plate serves as a receiving plate, the second support plate serves as a feeding plate, the first sensor is used to detect whether the first support plate is full of materials, and the second sensor is used to detect whether the second support plate is full of materials, with a high degree of automation;
[0014] Thirdly, the length of the first support plate is greater than that of the second support plate, and the number of medium and large-sized bearings stored on the first support plate is greater than that on the second support plate. The extra number of medium and large-sized bearings on the first support plate can be used to supplement the number of medium and large-sized bearings on the second support plate to ensure that the number of medium and large-sized bearings transferred from the second support plate each time is consistent. Description of the Drawings
[0015] Figure 1 is a perspective view of this embodiment;
[0016] Figure 2 is a perspective view of the guiding track of this embodiment at a first angle;
[0017] Figure 3 is a perspective view of the guiding track of this embodiment at a second angle;
[0018] Figure 4 is a side view of the guiding track of this embodiment;
[0019] Figure 5 is a perspective view of the supporting track and the support plate of this embodiment at a first angle;
[0020] Figure 6 is a perspective view of the supporting track and the support plate of this embodiment at a second angle;
[0021] Figure 7 is a perspective view of the material pushing assembly of this embodiment at a first angle;
[0022] Figure 8 is a perspective view of the material pushing assembly of this embodiment at a second angle.
[0023] In the figure:
[0024] 10. Guiding track; 11. Upper guiding part; 11a. Arc track; 11b. Vertical track; 12. Lower guiding part;
[0025] 20. Supporting track; 21. Material pushing slot hole; 22. Bearing through hole;
[0026] 30. Support plate; 30a. First support plate; 30b. Second support plate; 31. V-shaped groove; 32. Strip-shaped groove; 33. First sensor mounting position; 34. Second sensor mounting position;
[0027] 40. Material pushing assembly; 41. Linear module; 42. Connecting frame; 43. Pushing plate; 44. Longitudinal guide rail; 45. Lifting cylinder;
[0028] 50. Atomized oil spraying conveying line;
[0029] 60. Medium and large-sized bearing. Detailed Implementation Manner
[0030] The following describes in detail the preferred embodiments of the present utility model in conjunction with the accompanying drawings, so that the advantages and features of the present utility model can be more easily understood by those skilled in the art, thereby making the protection scope of the present utility model more clearly defined.
[0031] Refer to Figure 1 As shown, this embodiment discloses a medium and large-sized bearing transfer device, including:
[0032] A guiding track 10, the guiding track 10 is connected to the discharge port of the horizontal atomized oil spraying conveying line 50, and is used to turn the horizontal bearing to a vertical state;
[0033] A supporting track 20, the supporting track 20 is connected to the discharge end of the guiding track 10, and is used to support the medium and large-sized bearing 60 turned to a vertical state;
[0034] A support plate 30, the guiding track 10 and the supporting track 20 are fixed on the support plate 30, and a V-shaped groove 31 is provided on the support plate 30, and the V-shaped groove 31 is arranged along the length direction of the support plate 30;
[0035] A pushing component 40, the pushing plate 43 of the pushing component 40 can move back and forth in the length direction of the support plate 30 and in the direction perpendicular to the support plate 30, and is used to push the bearing in the supporting track 20 towards the discharge end of the support plate 30.
[0036] As Figures 2 to 4 shown, the guiding track 10 of this embodiment includes an integrally formed upper guiding part 11 and a lower guiding part 12. The upper end of the upper guiding part 11 is horizontally connected to the discharge port of the atomized oil spraying conveying line 50. The middle part of the upper guiding part 11 is an arc track 11a, and the lower end of the upper guiding part 11 is a vertical track 11b; the track of the lower guiding part 12 is in an inclined vertical shape, the higher part of the lower guiding part 12 is communicated with the vertical track 11b, and the lower part of the lower guiding part 12 is communicated with the supporting track 20.
[0037] As Figure 5 、 Figure 6 shown, the outer side wall of the supporting track 20 has a pushing groove hole 21, the pushing groove hole 21 can allow the pushing plate 43 of the pushing component 40 to pass through, and the inner side wall of the supporting track 20 has a bearing through hole 22, and the bearing through hole 22 allows the medium and large-sized bearing 60 in a vertical state to pass through.
[0038] As Figure 5 、 Figure 6 shown, a strip-shaped groove 32 is provided at one end of the support plate 30 close to the supporting track 20. The strip-shaped groove 32 starts from one end face of the support plate 30 and ends at the middle of the support plate 30, and the strip-shaped groove 32 allows the pushing plate 43 of the pushing component 40 to pass through.
[0039] The support plate 30 of this embodiment includes a first support plate 30a and a second support plate 30b. The first support plate 30a and the second support plate 30b are arranged flush and connected. The strip-shaped grooves 32 are distributed on the first support plate 30a.
[0040] The length of the first support plate 30a is greater than that of the second support plate 30b. Two first sensors are arranged on the side of the first support plate 30a, and the two first sensors are respectively installed on two first sensor installation positions 33. The second sensor is installed on the second sensor installation position 34.
[0041] One of the first sensors is close to the second support plate 30b, and the other first sensor is far from the second support plate 30b; a second sensor is arranged on the second support plate 30b.
[0042] As Figure 7 、 Figure 8 shown, the material pushing assembly 40 includes: a linear module 41, the linear module 41 is fixed on the support plate 30; a connecting frame 42, the linear module 41 drives the connecting frame 42 to move back and forth along the length direction of the support plate 30; a pushing plate 43, the pushing plate 43 is slidably arranged on the connecting frame 42 through a longitudinal guide rail 44; a lifting cylinder 45, the lifting cylinder 45 is fixed on the connecting frame 42 and drives the pushing plate 43 to lift along the longitudinal guide rail 44.
[0043] The working principle of this embodiment is:
[0044] The medium and large-sized bearing 60 is horizontally transferred from the atomized oil spraying conveying line 50 until it is transferred to the discharge port of the atomized oil spraying conveying line 50. The originally horizontal medium and large-sized bearing 60 slides along the arc track 11a of the upper guiding part 11 to the vertical track 11b under the action of gravity, realizing the horizontal to vertical flip. Then, it is transferred to a lower position by the inclined lower guiding part 12 under the action of gravity until it is located in the support track 20. Then, the material pushing assembly 40 sequentially drives the medium and large-sized bearing 60 in the support track 20 to move along the V-shaped groove 31 of the support plate 30. When the first sensor on the first support plate 30a monitors that there is a medium and large-sized bearing 60 at its position, the pushing plate 43 can push it onto the second support plate 30b. Two first sensors are arranged on the first support plate 30a. When the second support plate 30b is out of stock (such as when one medium and large-sized bearing 60 is taken away from the second support plate 30b), a stock-out signal can be provided to the material pushing assembly 40, so that the material pushing assembly 40 can push another medium and large-sized bearing 60 onto the second support plate 30b.
[0045] The above embodiments are only for illustrating the technical concept and features of the present utility model, and the purpose is to enable those who are familiar with this technology to understand the content of the present utility model and implement it. It is not intended to limit the protection scope of the present utility model. Any equivalent changes or modifications made according to the spirit and essence of the present utility model should be covered within the protection scope of the present utility model.
Claims
1. A medium and large-sized bearing transfer device, characterized in that: Comprising: A guiding track (10), the guiding track (10) being connected to the discharge port of a horizontal atomizing oil injection conveying line (50) for turning a horizontal medium and large-sized bearing into a vertical state; A supporting track (20), the supporting track (20) being connected to the discharge end of the guiding track (10) for supporting the medium and large-sized bearing (60) turned into a vertical state; A supporting plate (30), the guiding track (10) and the supporting track (20) being fixed on the supporting plate (30), a V-shaped groove (31) being provided on the supporting plate (30), and the V-shaped groove (31) being arranged along the length direction of the supporting plate (30); A pushing component (40), the pushing plate (43) of the pushing component (40) being capable of moving back and forth in the length direction of the supporting plate (30) and in a direction perpendicular to the supporting plate (30) for pushing the medium and large-sized bearing in the supporting track (20) towards the discharge end of the supporting plate (30).
2. The medium and large-sized bearing transfer device according to claim 1, characterized in that: The guiding track (10) includes an integrally formed upper guiding portion (11) and a lower guiding portion (12); The upper end of the upper guiding portion (11) is horizontally connected to the discharge port of the atomizing oil injection conveying line (50), the middle of the upper guiding portion (11) is an arc track (11a), and the lower end of the upper guiding portion (11) is a vertical track (11b); The track of the lower guiding portion (12) is in an inclined vertical shape, the higher part of the lower guiding portion (12) is communicated with the vertical track (11b), and the lower part of the lower guiding portion (12) is communicated with the supporting track (20).
3. The medium and large-sized bearing transfer device according to claim 1, characterized in that: The outer side wall of the supporting track (20) has a pushing groove hole (21) through which the pushing plate (43) of the pushing component (40) can pass, and the inner side wall of the supporting track (20) has a medium and large-sized bearing through hole (22) through which the vertical medium and large-sized bearing (60) can pass.
4. The medium and large-sized bearing transfer device according to claim 1, wherein: One end of the supporting plate (30) close to the supporting track (20) is provided with a strip-shaped groove (32), the strip-shaped groove (32) starting from one end face of the supporting plate (30) and ending at the middle of the supporting plate (30), and the strip-shaped groove (32) allowing the pushing plate (43) of the pushing component (40) to pass through.
5. The medium and large-sized bearing transfer device according to claim 4, characterized in that: The supporting plate (30) includes a first supporting plate (30a) and a second supporting plate (30b), the first supporting plate (30a) and the second supporting plate (30b) being arranged flush and connected, and the strip-shaped groove (32) being distributed on the first supporting plate (30a).
6. The medium and large-sized bearing transfer device according to claim 5, characterized in that: The length of the first supporting plate (30a) is greater than the length of the second supporting plate (30b), two first sensors being arranged on the side of the first supporting plate (30a), one of the first sensors being close to the second supporting plate (30b) and the other first sensor being far from the second supporting plate (30b); A second sensor is arranged on the second supporting plate (30b).
7. The medium and large-sized bearing transfer device according to claim 1, characterized in that: The pushing component (40) includes: Linear module (41), the linear module (41) is fixed on the support plate (30); Connecting frame (42), the linear module (41) drives the connecting frame (42) to move back and forth along the length direction of the support plate (30); Pushing plate (43), the pushing plate (43) is slidably arranged on the connecting frame (42) through a longitudinal guide rail (44); Lifting cylinder (45), the lifting cylinder (45) is fixed on the connecting frame (42) and drives the pushing plate (43) to lift along the longitudinal guide rail (44).