Extension device, expandable output device and shared fascia gun cabinet
By designing the flip plate and the material tray, and combining the drive components and the detection mechanism, the problems of jamming and insufficient capacity of the conveyor belt structure's output device are solved, achieving efficient output and low-cost operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-03-17
AI Technical Summary
The conveyor belt structure of existing vending machines is prone to slippage or jamming, resulting in low dispensing efficiency and small channel capacity, which increases production, operation and maintenance costs.
The design incorporates a flip plate and a material tray. The flip plate facilitates the discharge of materials through the material tray, and the flip plate is driven to rotate by a drive component. Combined with a counting and discharge detection mechanism, this ensures improved discharge efficiency and capacity.
It improves dispensing efficiency, reduces lag, lowers the production, operation and maintenance costs of vending machines, and reduces the number of restockings through its expandable design, thus increasing usability.
Smart Images

Figure CN224005528U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automatic vending equipment technology, and in particular to a dispensing device, an expandable dispensing device, and a shared fascia gun cabinet. Background Technology
[0002] A vending machine (VEM) is a machine that automatically dispenses goods based on the amount of money inserted. After a customer pays, the vending machine pushes out the product through a dispensing channel or a dispensing device.
[0003] In existing vending machines, each product lane corresponds to a dispensing mechanism. When the dispensing mechanism is a conveyor belt structure, it is located at the bottom of the product lane. The movement of the conveyor belt carries out the product at the bottom of the corresponding product lane for the customer to take. Because the products waiting to be dispensed are stacked vertically on the conveyor belt, the upper layer of goods exerts pressure on the lower layer. This makes the dispensing mechanism of the conveyor belt structure prone to slipping or getting stuck when dispensing products, resulting in low dispensing efficiency and preventing the reduction of vending machine production, operation, and maintenance costs. Utility Model Content
[0004] To address the aforementioned problems, this utility model proposes an ejector device, an expandable ejector device, and a shared fascia gun cabinet.
[0005] The technical solution adopted by this utility model is as follows:
[0006] This application provides an unloading device, including a shelf and an unloading mechanism, wherein the shelf has a storage channel and the storage channel has a material discharge port at the bottom;
[0007] The ejection mechanism includes a flip plate, which is disposed below the storage channel and rotatably mounted on the shelf. The flip plate is provided with at least one material tray, which is provided corresponding to the material discharge port.
[0008] When the material to be discharged in the storage channel falls through the discharge port, the material support trough is used to support the material to be discharged from the discharge port;
[0009] When the flip plate rotates, it lifts the item to be unloaded from the tray.
[0010] When the flip plate is not rotating, the items to be unloaded in the storage channel are stored in the storage channel due to the blocking effect of the flip plate.
[0011] This application provides a dispensing device by setting a flip plate and a material tray on the flip plate, so that the flip plate rotates and the material tray is used to dispense the item. Compared with a dispensing device with a conveyor belt structure, the dispensing device provided by this application has higher dispensing efficiency, is less prone to jamming during dispensing, and reduces the production, operation and maintenance costs of the vending machine.
[0012] Furthermore, the ejection mechanism also includes a rotating shaft and a drive assembly, wherein the flipping piece is rotatably mounted on the shelf via the rotating shaft, and the flipping piece is fixed on the rotating shaft;
[0013] The output shaft of the drive assembly is connected to the rotating shaft, and drives the rotating shaft to rotate, thereby driving the flip plate to rotate.
[0014] Furthermore, a first anti-slip surface is provided on the rotating shaft, and a second anti-slip surface is provided on the flipping plate. The first anti-slip surface and the second anti-slip surface cooperate to realize the transmission of the rotating shaft to the flipping plate, and to prevent the rotating shaft and the flipping plate from slipping relative to each other during rotation.
[0015] In actual use, the flip plate and the rotating shaft are connected by a key, or the flip plate and the rotating shaft can be integrally formed.
[0016] Furthermore, the two ends of the rotating shaft are respectively rotatably mounted on the two side walls of the shelf, and the flip plate is fixed in the middle of the rotating shaft;
[0017] The drive assembly is disposed inside the shelf, and the drive assembly includes a motor, a commutator, and a mounting bracket.
[0018] The mounting bracket is fixed on the shelf, the motor is fixed on the mounting bracket and arranged radially along the rotating shaft, and the commutator is connected to the rotating shaft and the output shaft of the motor respectively.
[0019] The drive components are located inside the shelf, which reduces the space occupied by the shelf.
[0020] Furthermore, the reversing component is a worm gear assembly that cooperates with each other, and the drive assembly also includes a reduction gear set, which is disposed between the worm gear assembly and the output shaft of the motor.
[0021] Furthermore, the worm gear is fixed on the rotating shaft, the worm is fixed on the reduction gear set, and the reduction gear set is fixed on the output shaft of the motor.
[0022] Furthermore, it also includes a counting detection mechanism, which includes a lever, a touch switch, and a control board;
[0023] The control board is fixed on the shelf, and the touch switch is electrically connected to the control board and fixed on the shelf.
[0024] The paddle is fixed on the rotating shaft. When the flip plate rotates with the rotating shaft to lift out an object to be dispensed, the paddle also rotates with the rotating shaft and makes contact with the touch switch. At the same time, the touch switch transmits an electrical signal to the control board to realize one count.
[0025] Furthermore, the control panel is fixed to the outside of the shelf, the rotating shaft extends out of the shelf, and the lever is fixed to the end of the rotating shaft located on the outside of the shelf.
[0026] Furthermore, the pivot has a third anti-slip surface and the paddle has a fourth anti-slip surface. The third and fourth anti-slip surfaces cooperate to realize the transmission of the pivot to the paddle and to prevent the pivot and the paddle from slipping relative to each other during rotation.
[0027] Furthermore, the shelf has at least one partition that divides the storage channel into multiple aisles, and each aisle is connected at the material discharge port.
[0028] The flip plate is provided with at least two circumferentially distributed grooves for supporting objects, and the groove openings face away from the rotating shaft.
[0029] The object to be discharged is a rotating structure;
[0030] The shelf also has a discharge port that communicates with the discharge port, and the flipping plate lifts the object to be discharged from the discharge port.
[0031] Furthermore, the object to be dispensed is the massage head of a massage gun, which is housed inside a cylindrical or spherical packaging box.
[0032] Furthermore, the shelf has a partition that divides the storage channel into a first channel and a second channel; the flip plate is provided with two trays, namely the first tray and the second tray, which are designed to correspond to the first channel and the second channel, respectively. When the flip plate passes through the first tray and lifts the item to be discharged from the discharge port, it rotates along the rotating shaft with the flip plate, and the second tray continues to lift the next item to be discharged from the discharge port.
[0033] In existing vending machines, a single dispensing mechanism can only hold one set of items to be dispensed from a corresponding product lane. Furthermore, due to the limited capacity of these lanes, larger cabinets (with greater capacity) are needed when demand is high, or frequent restocking by staff is required. This results in low dispensing efficiency and prevents cost reduction in the production, operation, and maintenance of the vending machine. The dispensing device provided in this application allows a single dispensing mechanism to dispense items from multiple product lanes, increasing storage capacity and improving dispensing efficiency, thereby further reducing the production, operation, and maintenance costs of the vending machine.
[0034] Furthermore, the paddle has at least two contact portions that cooperate with the touch switch, and the two contact portions are respectively arranged corresponding to two trays.
[0035] Furthermore, the shelf also has a guide ramp that is inclined relative to the horizontal plane. The guide ramp is located below the material inlet and forms the bottom of the material outlet, and works with the flip plate to lift out the material to be discharged.
[0036] The discharge device also includes a roller body, which is rotatably disposed below the discharge port and on the side away from the discharge port. The roller body is used to prevent the material to be discharged from getting stuck.
[0037] Furthermore, the guide ramp has an opening that provides space for the flip plate to move, and the flip plate passes through the opening to lift out the object to be unloaded.
[0038] Furthermore, it also includes a discharge detection mechanism, which is used to detect whether there is any material to be discharged from the discharge port;
[0039] The shelf also has a replenishment inlet, which is used to store items to be shipped into the storage channel.
[0040] In actual use, it also includes a control system. The discharge detection mechanism and the counting detection mechanism are respectively connected to the control system by electrical signals. When the counting detection mechanism has a count value, but the discharge detection mechanism does not detect the material to be discharged from the discharge port, the control system judges that the material to be discharged is stuck and has not been discharged, and the control system can perform an alarm.
[0041] Furthermore, the discharge detection mechanism is located above the discharge port, and the discharge detection mechanism is a sensor switch;
[0042] Alternatively, the discharge detection mechanism can be located on the side of the discharge port, and the discharge detection mechanism can be an infrared sensor.
[0043] Furthermore, the shelf is also equipped with a replenishment door, which is rotatably mounted on the side wall of the shelf. The replenishment door is used to cooperate with the replenishment inlet of the dispensing device or the replenishment inlet of the first dispensing device. It is opened when replenishment is needed and closed and locked when replenishment is not needed.
[0044] Furthermore, the top of the shelf is provided with a through hole to prevent the replenishment door from interfering with the shelf when it is opened.
[0045] Furthermore, the shelf is also provided with a first mounting plate, which is used to fix the dispensing device to other parts.
[0046] This application also provides an expandable output device, including a first output device, a second output device, and a connector, wherein the first output device is one of the above-mentioned output devices;
[0047] The second dispensing device is one of the dispensing devices described above;
[0048] The first dispensing device is also equipped with a replenishment outlet on its shelf, which is located on the side away from the replenishment inlet;
[0049] The two ends of the connector are respectively connected to the replenishment outlet of the first dispensing device and the replenishment inlet of the second dispensing device. The replenishment outlet of the first dispensing device is lower than the replenishment inlet of the first dispensing device, and the replenishment inlet of the second dispensing device is lower than the replenishment outlet of the first dispensing device.
[0050] When the storage channel of the first discharge device is full of items to be discharged, the items to be discharged that are put in from the replenishment inlet of the first discharge device will pass through the replenishment outlet of the first discharge device, the connector, and the replenishment inlet of the second discharge device and enter the storage channel of the second discharge device in sequence.
[0051] Furthermore, the connecting body has a connecting channel through which the object to be discharged enters the second discharge device.
[0052] Furthermore, the first dispensing device also has a second mounting plate, which is located on the side away from the first mounting plate. The second dispensing device is fixed to the second mounting plate of the first dispensing device via the first mounting plate of the second dispensing device.
[0053] In actual use, by setting a connecting body between the first and second dispensing devices, when the storage channel of the first dispensing device is full, the goods to be dispensed can continue to be stored into the storage channel of the second dispensing device. This reduces the number of replenishments during use and increases the flexibility of the dispensing devices.
[0054] This application also provides a shared fascia gun cabinet, including the cabinet and the dispensing device;
[0055] The output device is installed inside the cabinet, and the output device is one of the output devices described above or one of the expandable output devices described above.
[0056] Furthermore, the cabinet is provided with an opening corresponding to the replenishment inlet of the dispensing device or the replenishment outlet of the first dispensing device.
[0057] In actual use, the output device or the first output device is fixed to the inner wall of the cabinet via the first mounting plate.
[0058] The beneficial effects of this utility model are:
[0059] (1) The dispensing device provided in this application sets a flip plate and a material tray on the flip plate, so that the flip plate rotates and the material tray is used to dispense the items to be dispensed. At the same time, one dispensing mechanism can dispense items to be dispensed from multiple channels. While increasing the storage capacity, the dispensing efficiency is also improved. Compared with the dispensing device with a conveyor belt structure, the dispensing device provided in this application has a higher dispensing efficiency and is less prone to jamming during dispensing. The production, operation and maintenance costs of the vending machine are reduced.
[0060] (2) The expandable dispensing device provided in this application provides a connecting body between the first dispensing device and the second dispensing device. When the storage channel of the first dispensing device is full, the items to be dispensed can continue to be stored in the storage channel of the second dispensing device. For popular styles during the sales process, the number of restocking times can be reduced, thereby increasing the flexibility of the dispensing device. Attached Figure Description
[0061] Figure 1 This is a schematic diagram of the shaft side structure of the discharging device according to an embodiment of the present invention;
[0062] Figure 2 yes Figure 1 A magnified view of the structure of part A;
[0063] Figure 3 This is a schematic diagram of the axial structure of the flip plate according to an embodiment of the present invention;
[0064] Figure 4 This is a schematic diagram of the drive assembly mounted on the shaft side of an embodiment of the present invention;
[0065] Figure 5 This is an axonometric structural diagram of the shelf according to an embodiment of the present invention;
[0066] Figure 6 This is a schematic diagram of the axial structure of the expandable outlet device according to an embodiment of the present invention;
[0067] Figure 7 yes Figure 6 A magnified view of the structure of part B;
[0068] Figure 8 yes Figure 6 A magnified view of the local structure of C;
[0069] Figure 9 This is a top view of the expandable output device according to an embodiment of the present invention;
[0070] Figure 10 yes Figure 9 A schematic diagram of the cross-sectional structure of AA.
[0071] The labels for the attached figures are as follows:
[0072] 10. Shelf; 110. Storage aisle; 111. First aisle; 112. Second aisle; 120. Material drop port; 130. Partition; 140. Material discharge port; 150. Guide ramp; 151. Opening; 160. Replenishment inlet; 170. Replenishment door; 180. Through hole; 190. First mounting plate; 20. Push-out mechanism; 210. Tilting plate; 211. Storage tray; 2111. First tray; 2112. Second tray; 212. Second anti-slip surface; 2 20. Rotating shaft; 221. First anti-slip surface; 222. Third anti-slip surface; 230. Drive assembly; 231. Motor; 232. Mounting bracket; 30. Counting and detection mechanism; 310. Paddle; 311. Contact part; 320. Touch switch; 330. Control board; 40. Roller body; 50. Discharge detection mechanism; 100. First discharge device; 101. Replenishment outlet; 102. Second mounting plate; 200. Second discharge device; 300. Connecting body. Detailed Implementation
[0073] The present invention will now be described in detail with reference to the accompanying drawings.
[0074] like Figures 1-10 As shown, this application provides an ejection device, including a shelf 10 and an ejection mechanism 20. The shelf 10 has a storage channel 110, and the storage channel 110 has a discharge port 120 at the bottom.
[0075] The ejection mechanism 20 includes a flip plate 210, which is disposed below the storage channel 110 and rotatably mounted on the shelf 10. The flip plate 210 is provided with at least one material tray 211, which is correspondingly provided with the material discharge port 120.
[0076] When the items to be discharged in the storage channel 110 fall through the discharge port 120, the material support trough 211 is used to support the items to be discharged from the discharge port 120.
[0077] When the flip plate 210 rotates, it lifts the item to be unloaded from the tray 211.
[0078] When the tilting plate 210 is not rotating, the items to be unloaded in the storage channel 110 are stored in the storage channel 110 under the blocking effect of the tilting plate 210.
[0079] This application provides a rotating plate 210 with a tray 211 on it, which allows the rotating plate 210 to rotate and the items to be dispensed through the tray 211. Compared with a conveyor belt structure dispensing device, the dispensing device provided by this application has higher dispensing efficiency, is less prone to jamming during dispensing, and reduces the production, operation and maintenance costs of the vending machine.
[0080] In this embodiment, the ejection mechanism 20 also includes a rotating shaft 220 and a drive assembly 230. The flip plate 210 is rotatably mounted on the shelf 10 via the rotating shaft 220, and the flip plate 210 is fixed on the rotating shaft 220.
[0081] The output shaft of the drive assembly 230 is connected to the rotating shaft 220, and drives the rotating shaft 220 to rotate, thereby driving the flip plate 210 to rotate.
[0082] In this embodiment, a first anti-slip surface 221 is provided on the rotating shaft 220, and a second anti-slip surface 212 is provided on the flip plate 210. The first anti-slip surface 221 and the second anti-slip surface 212 cooperate to realize the transmission of the rotating shaft 220 to the flip plate 210, and to prevent the rotating shaft 220 and the flip plate 210 from slipping relative to each other during rotation.
[0083] In actual use, the flip piece 210 and the rotating shaft 220 are connected by a key, or the flip piece 210 and the rotating shaft 220 can be integrally formed.
[0084] In this embodiment, the two ends of the rotating shaft 220 are respectively rotatably mounted on the two side walls of the shelf 10, and the flip piece 210 is fixed in the middle of the rotating shaft 220;
[0085] The drive assembly 230 is located inside the shelf 10, and the drive assembly 230 includes a motor 231, a commutator and a mounting bracket 232.
[0086] Mounting bracket 232 is fixed on shelf 10, motor 231 is fixed on mounting bracket 232 and arranged radially along rotating shaft 220, and reversing component is connected to the output shaft of rotating shaft 220 and motor 231 respectively.
[0087] The drive assembly 230 is located inside the shelf 10, which can reduce the space occupied by the shelf 10.
[0088] In this embodiment, the reversing component is a worm gear assembly that cooperates with each other, and the drive assembly 230 also includes a reduction gear set (not shown in the figure), which is disposed between the worm gear assembly and the output shaft of the motor 231.
[0089] In this embodiment, the worm gear is fixed on the rotating shaft 220, the worm is fixed on the reduction gear set, and the reduction gear set is fixed on the output shaft of the motor 231.
[0090] In this embodiment, a counting detection mechanism 30 is also included, which includes a paddle 310, a touch switch 320, and a control board 330.
[0091] The control board 330 is fixed on the shelf 10, and the touch switch 320 is electrically connected to the control board 330 and fixed on the shelf 10.
[0092] The paddle 310 is fixed on the rotating shaft 220. When the flip plate 210 rotates with the rotating shaft 220 to lift out an object to be dispensed, the paddle 310 also rotates with the rotating shaft 220 and makes a contact with the touch switch 320. At the same time, the touch switch 320 transmits an electrical signal to the control board 330 to realize a count.
[0093] In this embodiment, the control panel 330 is fixed to the outside of the shelf 10, the rotating shaft 220 extends out of the shelf 10, and the paddle 310 is fixed to the end of the rotating shaft 220 located on the outside of the shelf 10.
[0094] In this embodiment, the rotating shaft 220 has a third anti-slip surface 222, and the paddle 310 has a fourth anti-slip surface. The third anti-slip surface 222 and the fourth anti-slip surface (not shown in the figure) cooperate to realize the transmission of the rotating shaft 220 to the paddle 310, and to prevent the rotating shaft 220 and the paddle 310 from slipping relative to each other during rotation.
[0095] In this embodiment, the first anti-slip plane 221 and the third anti-slip plane 222 are coplanar.
[0096] In other embodiments, the counting and detection mechanism 30 can also be fixed inside the shelf 10 and located at the end of the flip plate 210 away from the drive assembly 230 (i.e., the control plate 330 and the paddle 310 are respectively fixed inside the shelf 10). This arrangement can reduce the space occupied by the shelf 10, and in conjunction with the drive assembly 230 being located inside the shelf 10, it facilitates the installation of multiple dispensing devices inside the shared fascia gun cabinet.
[0097] In this embodiment, the touch switch 320 is fixed on the control board 330.
[0098] In this embodiment, the shelf 10 has a partition 130, which divides the storage channel 110 into a first channel 111 and a second channel 112. The first channel 111 and the second channel 112 are connected at the material discharge port 120.
[0099] The flip plate 210 is provided with at least two circumferentially distributed support grooves 211, and the groove openings of the support grooves 211 face away from the rotating shaft 220.
[0100] The object to be discharged is a rotating body structure;
[0101] The shelf 10 also has a discharge port 140 connected to the material drop port 120. The discharge port 140 is located near the second cargo channel 112. The flip plate 210 lifts the object to be discharged from the discharge port 140.
[0102] In this embodiment, the object to be dispensed is the massage head of a massage gun, which is housed inside a cylindrical or spherical packaging box.
[0103] In this embodiment, the two material trays 211 are the first tray 2111 and the second tray 2112. The first tray 2111 and the second tray 2112 are designed to correspond to the first cargo channel 111 and the second cargo channel 112, respectively. When the flip plate 210 lifts the object to be discharged from the discharge port 120 through the first tray 2111, the second tray 2112 continues to lift the next object to be discharged from the discharge port 120 as the flip plate 210 rotates along the rotating shaft 220.
[0104] In existing vending machines, a single dispensing mechanism 20 can only hold one set of items to be dispensed from a corresponding product lane. Furthermore, due to the limited capacity of the product lanes, larger cabinets (with larger capacity) are needed when demand is high, or frequent restocking by staff is required. This results in low dispensing efficiency and prevents cost reduction in the production, operation, and maintenance of the vending machine. The dispensing device provided in this application allows a single dispensing mechanism 20 to dispense items from multiple product lanes, increasing storage capacity and improving dispensing efficiency, thereby further reducing the production, operation, and maintenance costs of the vending machine.
[0105] In this embodiment, the flip plate 210 is one, located in the middle of the rotating shaft 220. In actual use, the flip plate may also include two, with the two flip plates spaced apart.
[0106] In this embodiment, the paddle 310 has at least two contact portions 311 that cooperate with the touch switch 320, and the two contact portions 311 are respectively provided with two trays 211.
[0107] In this embodiment, the shelf 10 also has a guide ramp 150 that is inclined relative to the horizontal plane. The guide ramp 150 is located below the material drop port 120 and forms the bottom of the material outlet 140.
[0108] The discharge device also includes a roller body 40, which is rotatably disposed below the first material channel 111 (i.e., the material drop port 120) and on the side away from the discharge port 140. The roller body 40 is used to prevent the material to be discharged from the first material channel 111 from getting stuck.
[0109] In this embodiment, the guide plate 150 has an opening 151, which provides space for the flip plate 210 to move. The flip plate 210 passes through the opening 151 to lift out the object to be unloaded.
[0110] In this embodiment, a discharge detection mechanism 50 is also included, which is used to detect whether there is a material to be discharged from the discharge port 140.
[0111] A replenishment inlet 160 is also formed on the shelf 10. The replenishment inlet 160 is located on the side near the first cargo channel 111. The replenishment inlet 160 is used to store the items to be shipped into the storage channel 110.
[0112] In actual use, it also includes a control system. The discharge detection mechanism 50 and the counting detection mechanism 30 are respectively connected to the control system by electrical signals. When the counting detection mechanism 30 has a count value, but the discharge detection mechanism 50 does not detect the material to be discharged from the discharge port 140, the control system judges that the material to be discharged is stuck and has not been discharged, and the control system can perform an alarm.
[0113] In this embodiment, the discharge detection mechanism 50 is disposed above the discharge port 140, and the discharge detection mechanism 50 is a sensor switch;
[0114] Alternatively, the discharge detection mechanism 50 may be located on the side of the discharge port 140, and the discharge detection mechanism 50 may be an infrared sensing device.
[0115] In this embodiment, the shelf 10 is also provided with a replenishment door 170. The replenishment door 170 is rotatably mounted on the side wall of the shelf 10. The replenishment door 170 is used to cooperate with the replenishment inlet 160 of the dispensing device or the replenishment inlet 160 of the first dispensing device 100. It is opened when replenishment is needed and closed and locked when replenishment is not needed.
[0116] In this embodiment, a through hole 180 is provided on the top of the shelf 10 to prevent the replenishment door 170 from interfering with the shelf 10 when it is opened.
[0117] In this embodiment, a first mounting plate 190 is also provided on the shelf 10, which is used to fix the dispensing device to other parts.
[0118] like Figures 6-10 As shown, this application also provides an expandable output device, including a first output device 100, a second output device 200 and a connector 300, wherein the first output device 100 is one of the above-mentioned output devices;
[0119] The second dispensing device 200 is one of the dispensing devices described above;
[0120] The first dispensing device 100 is also provided with a replenishment outlet 101 on the shelf 10, which is located on the side away from the replenishment inlet 160.
[0121] The two ends of the connector 300 are respectively connected to the replenishment outlet 101 of the first dispensing device 100 and the replenishment inlet 160 of the second dispensing device 200. The replenishment outlet 101 of the first dispensing device 100 is lower than the replenishment inlet 160 of the first dispensing device 100, and the replenishment inlet 160 of the second dispensing device 200 is lower than the replenishment outlet 101 of the first dispensing device 100.
[0122] When the storage channel 110 of the first dispensing device 100 is full of items to be dispensed, the items to be dispensed that are put in from the replenishment inlet 160 of the first dispensing device 100 will pass through the replenishment outlet 101 of the first dispensing device 100, the connector 300, and the replenishment inlet 160 of the second dispensing device 200 and enter the storage channel 110 of the second dispensing device 200.
[0123] In this embodiment, the connector 300 has a connection channel, through which the object to be dispensed enters the second dispensing device 200.
[0124] In this embodiment, the first dispensing device 100 also has a second mounting plate 102, which is disposed on the side away from the first mounting plate 190. The second dispensing device 200 is fixed to the second mounting plate 102 of the first dispensing device 100 through the first mounting plate 190 of the second dispensing device 200.
[0125] In actual use, by setting a connecting body 300 between the first dispensing device 100 and the second dispensing device 200, when the storage channel 110 of the first dispensing device 100 is full, the items to be dispensed can continue to be stored in the storage channel 110 of the second dispensing device 200. This reduces the number of replenishments during use and increases the flexibility of the dispensing devices.
[0126] This application also provides a shared fascia gun cabinet, including the cabinet and the dispensing device;
[0127] The output device is installed inside the cabinet, and the output device is one of the output devices described above or one of the expandable output devices described above.
[0128] In this embodiment, the cabinet is provided with an opening corresponding to the replenishment inlet 160 of the dispensing device or the replenishment outlet 101 of the first dispensing device 100.
[0129] In actual use, the output device or the first output device is fixed to the inner wall of the cabinet via the first mounting plate 190. The above description is merely a preferred embodiment of this utility model and does not limit the scope of patent protection for this utility model. Any equivalent structural modifications made based on the description and drawings of this utility model, whether directly or indirectly applied to other related technical fields, are similarly included within the scope of protection of this utility model.
Claims
1. An outfeed device, characterized in that The shelf comprises a shelf and a pushing mechanism, the shelf has a storage channel inside, and the storage channel is formed with a discharging opening at the bottom; The pushing mechanism comprises a turnover piece, the turnover piece is arranged below the storage channel and is rotatably installed on the shelf, at least one object holding groove is arranged on the turnover piece, and the object holding groove is arranged correspondingly to the discharging opening; When the object to be discharged in the storage channel falls through the discharging opening, the object holding groove is used for holding the object to be discharged falling from the discharging opening; When the turnover piece rotates, the turnover piece holds out the object to be discharged on the object holding groove; When the turnover piece does not rotate, the object to be discharged in the storage channel is stored in the storage channel under the blocking action of the turnover piece; The pushing mechanism further comprises a rotating shaft and a driving assembly, the turnover piece is rotatably installed on the shelf through the rotating shaft, and the turnover piece is fixed on the rotating shaft; The output shaft of the driving assembly is connected with the rotating shaft, and the driving assembly drives the rotating shaft to rotate and further drives the turnover piece to rotate; The rotating shaft is rotatably installed on the two side walls of the shelf respectively, and the turnover piece is fixed on the middle part of the rotating shaft; The driving assembly is arranged inside the shelf, and the driving assembly comprises a motor, a reversing piece and a mounting rack; The mounting rack is fixed on the shelf, the motor is fixed on the mounting rack and arranged along the radial direction of the rotating shaft, and the reversing piece is connected with the rotating shaft and the output shaft of the motor respectively.
2. An outfeed device as claimed in claim 1, characterized in that The reversing piece is a worm and gear assembly matched with each other, and the driving assembly further comprises a speed reduction gear set arranged between the worm and gear assembly and the output shaft of the motor.
3. An outfeed device as claimed in claim 1, characterized in that Further comprising a counting detection mechanism, the counting detection mechanism comprises a dial piece, a touch switch and a control panel; The control panel is fixed on the shelf, the touch switch is electrically connected with the control panel and fixed on the shelf; The dial piece is fixed on the rotating shaft, when the turnover piece holds out an object to be discharged with the rotating shaft, the dial piece also rotates with the rotating shaft and contacts the touch switch once, and the touch switch transmits an electric signal to the control panel to realize counting once.
4. An outfeed device as claimed in claim 1, characterized in that The shelf has at least one partition plate, the partition plate divides the storage channel into a plurality of goods channels, and each goods channel is communicated at the discharging opening; The turnover piece is provided with at least two object holding grooves arranged uniformly in the circumferential direction, and the groove direction of the object holding groove is towards the side away from the rotating shaft; The object to be discharged is a rotary body structure; The shelf is further formed with a discharging opening communicated with the discharging opening, and the turnover piece holds out the object to be discharged from the discharging opening.
5. An outfeed device as claimed in claim 4, characterized in that The shelf further has a guide inclined plate arranged obliquely relative to the horizontal plane, the guide inclined plate is located below the discharging opening and forms the lower bottom of the discharging opening; The discharging device further comprises a roller body, the roller body is rotatably arranged below the discharging opening and away from the side of the discharging opening, and the roller body is used for preventing the object to be discharged from being stuck.
6. An outfeed device as claimed in claim 5, characterized in that Further comprising a discharging detection mechanism, the discharging detection mechanism is used for detecting whether there is an object to be discharged in the discharging opening; The shelf is further formed with a replenishment inlet, and the replenishment inlet is used for storing the object to be discharged into the storage channel.
7. A scalable machine outlet device, comprising: The first out-machine device is an out-machine device according to any one of claims 1-6; The second out-machine device is an out-machine device according to any one of claims 1-6; The first out-machine device is further provided with a replenishment outlet on the shelf, and the replenishment outlet is arranged on the side away from the replenishment inlet; The two ends of the connecting body are connected with the replenishment outlet of the first out-machine device and the replenishment inlet of the second out-machine device respectively, the replenishment outlet of the first out-machine device is lower than the replenishment inlet of the first out-machine device, and the replenishment inlet of the second out-machine device is lower than the replenishment outlet of the first out-machine device; When the storage channel of the first out-machine device is full of the to-be-out-machine objects, the to-be-out-machine objects continuously input from the replenishment inlet of the first out-machine device enter the storage channel of the second out-machine device through the replenishment outlet of the first out-machine device, the connecting body and the replenishment inlet of the second out-machine device in sequence.
8. A shared fascia gun cabinet, characterized by, The machine cabinet and the out-machine device are included; The out-machine device is arranged in the machine cabinet, and the out-machine device is an out-machine device according to any one of claims 1-6 or an expandable out-machine device according to claim 7.