Storage bin of bearing hose packaging barrel
By designing an inclined bottom and rotating body structure in the bearing hose packaging barrel storage silo and combining it with motor drive, the problem of long bearing hose packaging barrels being easily blocked in the storage silo is solved, achieving the effect of easy discharge and non-blocking.
Patent Information
- Application Number
- CN202422731130.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-08
AI Technical Summary
In the prior art, long bearing hose packaging barrels are easily clogged in the storage bin, making it difficult to discharge the material smoothly.
A storage silo for bearing hose packaging barrels is designed. The bottom of the silo is inclined, and a rotating body and a baffle are provided. There is a storage trough on the rotating body. The bearing hose packaging barrel falls along the inclined surface to the storage trough under the action of gravity. The rotating body rotates to transfer it to the drop trough, and is limited by the baffle. Combined with the motor-driven rotating body, smooth discharge is achieved.
The problem that long bearing hose packaging barrels are easily blocked in the storage bin is solved, and the effect of easy discharge and non-blocking is achieved.
Smart Images

Figure CN223396737U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of bearing packaging barrel storage, in particular to a bearing hose packaging barrel storage bin. Background Art
[0002] After the hose packaging barrel of the bearing is filled with material, it is grabbed by a robot and stored in the storage bin. The bearings in the storage bin are then loaded one by one to other stations; or the packaging barrel without bearings is loaded to the bearing loading station. The current loading method uses a loading mechanism. For example, the utility model patent with the authorization announcement date of 2023.11.21 and the authorization announcement number CN220055554U discloses a bottle loading mechanism for bearing packaging, including a material box, the front side of the material box is open and covered with a box cover, a discharge hole is opened at the lower right of the rear wall of the material box, and a strip groove corresponding to the discharge hole is provided on the bottom wall of the material box. A material dividing structure is installed on the material box, and the material dividing structure is located on the side of the discharge hole. The bottom of the material box is provided with a combing structure. In this patent, the material dividing effect is achieved by the material dividing structure, and the combing structure is used to shake the bottles in the material box. This structure is suitable for short bearing packaging barrels. For relatively long bearing hose packaging barrels, it is easy to get clogged and difficult to discharge. Utility Model Content
[0003] In order to overcome the above shortcomings, the purpose of the present invention is to provide a bearing hose packaging barrel storage silo that is suitable for long bearing hose packaging barrels, is easy to discharge, and is not prone to clogging.
[0004] In order to achieve the above purpose, one of the technical solutions adopted by the present invention is: a bearing hose packaging barrel storage silo, including a silo body, the width direction of the silo body is the X-axis direction, and the X-axis direction of the silo body can only easily accommodate a bearing hose packaging barrel body of one length, the bottom of the silo body is inclined, and a discharge port is provided at the lowest point of the bottom of the silo body, and downwardly extending baffles are provided on both sides of the X-axis below the discharge port, and a rotating body is provided at the discharge port, and the two ends of the rotating body are rotatably connected to the two side surfaces of the silo body in the X-axis direction, the rotating body is located between the two baffles, and the circumference of the rotating body is provided with multiple storage troughs evenly spaced and arranged along the Y-axis direction, each of the storage troughs can only accommodate one bearing hose packaging barrel, and a blanking seat is provided below the two baffles, and the upper end surface of the blanking seat is provided with a blanking trough in the Y-axis direction, and the blanking trough can only accommodate one bearing hose packaging barrel, and through the rotation of the rotating body, any storage trough can be rotated to the top of the blanking trough.
[0005] The beneficial effect of the bearing hose packaging barrel storage silo of the present invention is that the bearing hose packaging barrels stored in the silo body of the present application fall along the inclined surface into the storage trough of the rotating body at the discharge port due to the action of gravity. Through the rotation of the rotating body and the limitation of the baffle, the upper storage trough can rotate the bearing hose packaging barrel located therein to the blanking trough of the blanking seat below. Through the cooperation of the rotating body and the baffle, the problem that long bearing hose packaging barrels are difficult to discharge and easy to be blocked is solved. The bearing hose packaging barrel storage silo can be suitable for the discharge of long bearing hose packaging barrels, and has the advantages of easy discharge and not easy to be blocked.
[0006] Preferably, the bottom of the blanking chute is provided with a material-selecting hole in the Y-axis direction. The bearing hose packaging barrel dropped into the blanking chute can be passed through the material-selecting hole by a material-selecting rod, and then the bearing hose packaging barrel in the blanking chute is moved to the next station.
[0007] Preferably, two inclined plates of different heights are provided at the bottom of the silo on both sides of the rotating body. Both inclined plates are inclined in the X-axis direction. The end of each inclined plate close to the rotating body is lower than the end away from the rotating body. The highest ends of the two inclined plates are close to the two inner side walls of the silo in the X-axis direction. The lowest ends of the two inclined plates can be connected to storage troughs of different heights. Through the rotation of the rotating body, the bearing hose packaging barrel in the silo can slide along the inclined plates to any one of the storage troughs. The inclined plates of different heights can supply materials from both sides of the rotating body to the storage troughs on the rotating body, ensuring as much as possible that a bearing hose packaging barrel is stored in the storage trough that rotates to the top, thereby reducing the possibility of idling of the rotating body. Close means that the distance between the inner side wall of the silo is much smaller than the diameter of a bearing hose packaging barrel, ensuring that the bearing hose packaging barrel can slide along the inclined plates toward the rotating body.
[0008] Preferably, the inner side of at least one of the baffles is an arc-shaped structure matching the circumference of the rotating body, so as to better fit the outer circumference of the rotating body and prevent the storage trough from leaking from the gap between the rotating body and the baffle after rotating from the top to the side.
[0009] Preferably, the device further comprises a motor, a driving wheel, a synchronous belt, and a driven wheel. The motor is fixed below the storage body, the driving wheel is fixed to the end of the motor's output shaft, the driven wheel is fixed to one end of the rotating body, and the synchronous belt is sleeved over the driving wheel and the driven wheel and meshes with them. The rotation of the rotating body is driven by the motor, which in turn drives the rotating body to rotate via the driving wheel, the synchronous belt, and the driven wheel.
[0010] Preferably, the rotating body comprises multiple bent plates, two side plates, and a rotating shaft. Each bent plate is shaped like a material storage trough. The multiple bent plates are arranged to form a cylindrical body. Each pair of adjacent bent plates is secured to the side plates at both ends by bolts. The rotating shaft passes through and is secured to the two side plates. Both ends of the rotating shaft are provided with bearings for rotational connection with the hopper body. The rotating body is composed of multiple bent plates and secured by the two side plates, making it easy to form.
[0011] Preferably, the width of the opening of the storage trough is greater than the width of the bottom of the storage trough, so that the bearing hose packaging barrel can easily fall into the storage trough. More preferably, the side cross-section of the storage trough is trapezoidal.
[0012] Preferably, the side cross-section of the chute is semicircular, and outwardly expanding guiding slopes are provided on both sides of the chute opening, so that the bearing hose packaging barrel can easily fall into the chute. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a perspective view of this embodiment;
[0014] Figure 2 is a side view of this embodiment;
[0015] Figure 3 for Figure 2 Cross-sectional view of AA;
[0016] Figure 4 for Figure 3 Stereoscopic image of
[0017] Figure 5 It is a partially exploded perspective view of the cooperation between the rotating body and the motor in this embodiment.
[0018] In the figure: 1. Bin body; 2. Discharge port; 3. Baffle; 4. Rotating body; 4a. Bending plate; 4b. Side plate; 4c. Rotating shaft; 4d. Bearing; 5. Storage trough; 6. Blanking seat; 7. Blanking trough; 8. Diverting hole; 9. Inclined plate; 10. Motor; 11. Driving wheel; 12. Synchronous belt; 13. Driven wheel; 14. Guide slope. DETAILED DESCRIPTION
[0019] The preferred embodiments of the present invention are described in detail below in conjunction with the accompanying drawings so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby making a clearer and more precise definition of the protection scope of the present invention.
[0020] See Figure 1-Figure 5As shown, this embodiment discloses a bearing hose packaging barrel storage silo, including a silo body 1, the width direction of the silo body 1 is the X-axis direction, the X-axis direction of the silo body 1 can only easily accommodate a bearing hose packaging barrel of one length, the bottom of the silo body 1 is inclined, and a discharge port 2 is provided at the lowest point of the bottom of the silo body 1, and downwardly extending baffles 3 are provided on both sides of the X-axis below the discharge port 2, and a rotating body 4 is provided at the discharge port 2, and the two ends of the rotating body 4 are rotatably connected to the two side surfaces of the silo body 1 in the X-axis direction, the rotating body 4 is located between the two baffles 3, and the circumference of the rotating body 4 is provided with a plurality of storage troughs 5 evenly spaced and arranged along the Y-axis direction. Each storage trough 5 can only accommodate one bearing hose packaging barrel. The width of the storage trough 5 opening is greater than the width of the storage trough 5 bottom. More preferably, the storage trough has a trapezoidal side section. A blanking seat 6 is provided below the two baffles 3. The upper end surface of the blanking seat 6 is provided with a blanking trough 7 in the Y-axis direction. The blanking trough 7 has a semicircular side section. The notch of the blanking trough 7 is provided with outwardly expanding guide slopes 14 on both sides. The blanking trough 7 can only accommodate one bearing hose packaging barrel. Through the rotation of the rotating body 4, any storage trough 5 can be rotated to the top of the blanking trough 7. The bottom of the blanking trough 7 of this embodiment is provided with a Y-axis direction tapping hole 8. The bearing hose packaging barrel that falls into the blanking trough can be moved to the next station by passing the tapping rod through the tapping hole.
[0021] The bottom of the silo 1 is tilted and is formed by two tilted plates 9 of different heights. The bottom of the silo 1 is horizontal when viewed from the outside. Specifically, two tilted plates 9 of different heights are provided at the bottom of the silo 1 on both sides of the rotating body 4. The two tilted plates 9 are tilted in the X-axis direction. The end of each tilted plate 9 close to the rotating body 4 is lower than the end away from the rotating body 4. The highest ends of the two tilted plates 9 are close to the two inner side walls of the silo 1 in the X-axis direction. The closeness in this embodiment means infinitely close to the inner side wall of the silo 1 but not contacting it. At least the distance between the highest end of the tilted plate 9 and the inner side wall of the silo 1 is less than the diameter of a bearing hose packaging barrel. In this way, the bearing hose packaging barrel can slide toward the rotating body 4 along the tilted plates 9, and the lowest ends of the two tilted plates 9 can be connected with storage troughs 5 of different heights. More specifically, the lowest ends of the two tilted plates 9 are docked with the positions of two adjacent storage troughs 5. Through the rotation of the rotating body 4, the bearing hose packaging barrel in the silo 1 can slide along the tilted plates 9 to any one of the storage troughs 5. The inclined plates 9 of different heights can feed materials from both sides of the rotating body 4 to the storage trough 5 on the rotating body 4, ensuring as much as possible that a bearing hose packaging barrel is stored in the storage trough 5 rotated to the top, thereby reducing the possibility of the rotating body 4 idling.
[0022] In this embodiment, the inner side of a baffle 3 has an arc surface structure that matches the circumference of the rotating body 4. The baffle 3 with the arc surface structure is arranged in the rotation direction of the rotating body 4. Taking the clockwise rotation of the rotating body 4 as an example, the baffle 3 is located on the left and right sides of the rotating body 4. The baffle 3 located on the left has an arc surface structure, which can ensure that the bearing hose packaging barrel rotated into the storage trough 5 below falls into the drop trough 7, thereby preventing the bearing hose packaging barrel in the storage trough 5 below from rotating back into the warehouse body 1 as the rotating body 4 rotates.
[0023] The rotating body 4 in this embodiment is driven by a motor 10 and specifically includes a motor 10, a driving pulley 11, a synchronous belt 12, and a driven pulley 13. The motor 10 is fixed below the chamber 1, the driving pulley 11 is fixed to the end of the motor 10's output shaft, and the driven pulley 13 is fixed to one end of the rotating body 4. The synchronous belt 12 is mounted on and meshes with the driving pulley 11 and the driven pulley 13. The rotation of the rotating body 4 is driven by the motor, which drives the rotating body 4 through the driving pulley 11, the synchronous belt 12, and the driven pulley 13.
[0024] The rotating body 4 in this embodiment comprises multiple bent plates 4a, two side plates 4b, and a rotating shaft 4c. Each bent plate 4a is shaped like a material storage trough 5. The multiple bent plates 4a are arranged to form a cylindrical body. Each pair of adjacent bent plates 4a is secured to the side plates 4b at both ends by bolts. The rotating shaft 4c passes through the two side plates 4b and is secured thereto. Bearings 4d are provided at each end of the rotating shaft 4c for rotational connection with the hopper body 1. The rotating body 4 is constructed from multiple bent plates 4a and secured by the two side plates 4b, making it easy to form.
[0025] The bearing hose packaging barrel is transferred to the warehouse body 1 by the robot. Due to the action of gravity, the bearing hose packaging barrel falls along the inclined surfaces of two high and low inclined plates 9 into the storage trough 5 of the rotating body 4 of the discharge port 2. Through the rotation of the rotating body 4 and the limitation of the baffle 3, the upper storage trough 5 can rotate the bearing hose packaging barrel located therein to the bottom and fall into the blanking trough 7 of the blanking seat 6 below. The bearing hose packaging barrel in the blanking trough 7 is then transferred to the next workstation along the blanking hole by the tapping assembly.
[0026] The above implementation methods are only for illustrating the technical concept and features of the utility model. Its purpose is to enable people familiar with this technology to understand the content of the utility model and implement it. It cannot be used to limit the scope of protection of the utility model. Any equivalent changes or modifications made according to the spirit of the utility model should be included in the scope of protection of the utility model.
Claims
1. A bearing hose packaging barrel storage silo, comprising a silo body (1), wherein the width direction of the silo body (1) is the X-axis direction, the X-axis direction of the silo body (1) can only easily accommodate a bearing hose packaging barrel body of one length, the bottom of the silo body (1) is inclined, and a discharge port (2) is provided at the lowest point of the bottom of the silo body (1), characterized in that: Baffles (3) extending downward are provided on both sides of the X-axis below the discharge port (2); a rotating body (4) is provided at the discharge port (2); the two ends of the rotating body (4) are rotatably connected to the two side surfaces of the bin body (1) in the X-axis direction; the rotating body (4) is located between the two baffles (3); a plurality of storage troughs (5) evenly spaced and arranged along the Y-axis are provided on the circumference of the rotating body (4); each storage trough (5) can only accommodate one bearing hose packaging barrel; a blanking seat (6) is provided below the two baffles (3); a blanking trough (7) in the Y-axis direction is provided on the upper end surface of the blanking seat (6); the blanking trough (7) can only accommodate one bearing hose packaging barrel; and any storage trough (5) can be rotated to the top of the blanking trough (7) by the rotation of the rotating body (4).
2. The bearing hose packaging barrel storage silo according to claim 1, characterized in that: The bottom of the blanking chute (7) is provided with a material-discharging hole (8) in the Y-axis direction.
3. The bearing hose packaging barrel storage silo according to claim 1, characterized in that: Two inclined plates (9) of different heights are provided at the bottom of the silo (1) on both sides of the rotating body (4). Both inclined plates (9) are inclined in the X-axis direction. The end of each inclined plate (9) close to the rotating body (4) is lower than the end away from the rotating body (4). The highest ends of the two inclined plates (9) are close to the two inner side walls of the silo (1) in the X-axis direction. The lowest ends of the two inclined plates (9) can be connected to storage troughs (5) of different heights. Through the rotation of the rotating body (4), the bearing hose packaging barrel in the silo (1) can slide along the inclined plates (9) to any one of the storage troughs (5).
4. The bearing hose packaging barrel storage silo according to claim 1, characterized in that: The inner side of at least one of the baffles (3) is in a curved surface structure that matches the circumference of the rotating body (4).
5. The bearing hose packaging barrel storage silo according to claim 1, characterized in that: The invention also comprises a motor (10), a driving wheel (11), a synchronous belt (12), and a driven wheel (13), wherein the motor (10) is fixed below the warehouse body (1), the driving wheel (11) is fixed to the end of the output shaft of the motor (10), the driven wheel (13) is fixed to one end of the rotating body (4), and the synchronous belt (12) is sleeved on the driving wheel (11) and the driven wheel (13) and meshed with them.
6. The bearing hose packaging barrel storage silo according to claim 1, characterized in that: The rotating body (4) comprises a plurality of bent plates (4a), two side plates (4b), and a rotating shaft (4c). Each bent plate (4a) is in the shape of a material storage trough (5). The plurality of bent plates (4a) are arranged to form a cylinder. Each two adjacent bent plates (4a) are fixed by the side plates (4b) at both ends through bolts. The rotating shaft (4c) passes through the two side plates (4b) and is fixed to the two side plates (4b). The two ends of the rotating shaft (4c) are provided with bearings (4d) that are rotatably connected to the warehouse body (1).
7. The bearing hose packaging barrel storage silo according to claim 6, characterized in that: The width of the opening of the material storage trough (5) is greater than the width of the bottom of the material storage trough (5).
8. The bearing hose packaging barrel storage silo according to claim 7, characterized in that: The side section of the material storage trough is trapezoidal.
9. The bearing hose packaging barrel storage silo according to claim 1, characterized in that: The side cross-section of the blanking trough (7) is semicircular, and outwardly expanding guiding inclined surfaces (14) are provided on both sides of the notch of the blanking trough (7).