Bag delivery machine
By designing an inclined conveyor channel in the bagging machine and using a support guide plate to support the material, the problem of low cutting yield caused by material swaying was solved, and the material was able to slide smoothly and the cutting accuracy was improved.
Patent Information
- Application Number
- CN202520665094.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-09
AI Technical Summary
Existing bagging machines suffer from low cutting yield due to the tendency of materials to sway during material cutting.
Design a bagging machine that uses a support guide plate, a first clamping roller, a cutting mechanism and a discharge chute to form an inclined conveying channel, and supports the material through the support guide plate to reduce swaying and improve cutting accuracy.
It effectively reduces the resistance to material sliding, ensuring smooth and easy material sliding and improving the cutting yield.
Smart Images

Figure CN223949581U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of packing equipment especially relates to a throw packing machine. BACKGROUND
[0002] In the baking food packaging process, it is generally required to put deoxidizing agent and other materials into packaging bags or packaging boxes, or in the packaging process of instant noodles and other foods, it is required to put seasoning packets and other materials into packaging bags or packaging boxes in turn, or in the packaging process of household items and other articles, it is required to put desiccants and other materials into packaging bags or packaging boxes, and the deoxidizing agent, desiccants, seasoning packets or some small toys, snacks and other materials are in a bag-in-bag state before being put in, and the bag-in-bag small packets need to be cut into single small packets and then the single small packets are put in turn. The cut part of the existing throw packing machine is usually vertically conveyed without support, and the bag-in-bag small packets are very easy to swing, which seriously affects the cutting accuracy. SUMMARY
[0003] The utility model aims at providing a throw packing machine to solve the problem of low cutting yield caused by easy swinging of materials on the existing throw packing machine.
[0004] In order to achieve the above-mentioned purpose, the utility model provides a throw packing machine, which comprises a base, a traction mechanism, a cutting mechanism, a discharge chute and a control screen, the traction mechanism, the cutting mechanism, the discharge chute and the control screen are all installed on the base, the traction mechanism comprises a first pinch roller and a first traction roller, the first traction roller is located above the first pinch roller, a support guide plate is arranged between the first traction roller and the first pinch roller, the support guide plate, the first pinch roller, the cutting mechanism and the discharge chute are sequentially arranged and form a conveying channel with an inclined structure, and the control screen is arranged above the first traction roller.
[0005] Preferably, the included angle between the conveying channel and the horizontal direction is greater than or equal to 40 degrees and less than or equal to 60 degrees.
[0006] Preferably, one end of the support guide plate extends to the first traction roller without contacting the first traction roller, and the other end of the support guide plate extends to the first pinch roller without contacting the first pinch roller.
[0007] Preferably, it further comprises a feeding material roll, the feeding material roll is installed on the base through a first adapter plate and the discharge direction of the feeding material roll is horizontal.
[0008] Preferably, the traction mechanism further comprises a second pinch roller, a second traction roller and a buffer roller, the second pinch roller is arranged above the first traction roller and on one side of the upper part of the base, the control panel is arranged on the other side of the upper part of the base, the second pinch roller is horizontally arranged and forms a vertically downward conveying gap, the second traction roller is arranged side by side with the first traction roller and outside the first traction roller, the second traction roller is installed on the base through a second adapter plate, and the material on the feeding roll is transmitted to the cutting mechanism through the second pinch roller, the second traction roller, the buffer roller, the first traction roller, the support guide plate and the first pinch roller for cutting.
[0009] Preferably, the support guide plate further comprises a first photoelectric sensor, a second photoelectric sensor and a photoelectric sensing plate, the first photoelectric sensor is arranged above the second photoelectric sensor, and the second photoelectric sensor and the first photoelectric sensor are both arranged on the lower side of the support guide plate, the first photoelectric sensor has a first sensing notch, the second photoelectric sensor has a second sensing notch, the photoelectric sensing plate has a first end and a second end opposite to the first end, the first end of the photoelectric sensing plate is connected to one end of a connecting plate, the other end of the connecting plate is connected to the buffer roller, the middle part of the connecting plate is further connected to the base rotating shaft, and the second end of the photoelectric sensing plate is located in the first sensing notch when the buffer roller descends to the lowest point, and the second end of the photoelectric sensing plate is located in the second sensing notch when the buffer roller rises to the highest point.
[0010] Preferably, at least two mounting holes are arranged on the connecting plate, a waist-shaped groove is formed along the length direction of the photoelectric sensing plate, and the mounting holes are bolted with the waist-shaped groove.
[0011] Preferably, a limiting protrusion is further arranged on the lower side of the connecting plate, the limiting protrusion abuts against the connecting plate when the buffer roller descends to limit the position of the lowest point of the buffer roller.
[0012] Preferably, the support guide plate comprises a first guide plate and a second guide plate arranged oppositely, the first guide plate and the second guide plate are arranged at intervals, and the first guide plate and the second guide plate are both in the shape of a U-shaped long groove to form a material guiding channel in the first guide plate and the second guide plate.
[0013] Preferably, a first gap is arranged between the first guide plate and the second guide plate, the bag feeding machine further comprises a detection assembly arranged corresponding to the first gap, the detection assembly is connected to a moving assembly, and the moving assembly is arranged on the upper side of the support guide plate to adjust the position of the detection assembly.
[0014] Compared with the prior art, the utility model discloses a support guide plate, first clamp and send the gyro wheel, cutting mechanism and discharge chute are set gradually and form the conveying channel of inclined structure, material slip is very smooth and smooth, effectively reduce the slip resistance and the structure is very compact, in addition, the setting of support guide plate can support material, effectively reduce the swing of material, effectively guarantee the accuracy of cutting, has improved the yield of cutting. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the structure diagram of another angle of the bag throwing machine of the utility model embodiment.
[0016] Figure 2 It is the structure diagram of another angle of the bag throwing machine of the utility model embodiment. Figure 1 It is the enlarged view of place A in the middle.
[0017] Figure 3 It is the structure diagram of another angle of the bag throwing machine of the utility model embodiment. Figure 1 It is the enlarged view of place B in the middle.
[0018] Figure 4 It is the structure diagram of another angle of the bag throwing machine of the utility model embodiment.
[0019] Figure 5 It is the structure diagram of the first guide plate in the utility model embodiment.
[0020] Figure 6 It is the internal structure diagram of cutting mechanism in the utility model embodiment.
[0021] Figure 7 It is the structure diagram of another angle of the bag throwing machine of the utility model embodiment. Figure 6 It is the enlarged view of place C in the middle.
[0022] Figure 8 It is the internal structure diagram of the machine base after removing the back panel of the bag throwing machine of the utility model embodiment.
[0023] BRIEF DESCRIPTION OF DRAWINGS
[0024] 1. Feeding roll; 2. Guiding assembly; 3. Second clamping roller; 4. Second traction roller; 5. Buffer roller; 6. First traction roller; 7. Support guide plate; 71. First guide plate; 72. Second guide plate; 8. First clamping roller; 81. First driver; 9. Cutting mechanism; 91. Cutting blade; 92. Guide block; 93. Second driver; 10. Discharge chute; 101. First chute section; 102. Second chute section; 11. Control panel; 12. First photoelectric sensor 13. Second photoelectric sensor; 14. Photoelectric sensor plate; 141. Waist-shaped groove; 15. Connecting plate; 16. Rotating shaft; 17. Limiting protrusion; 18. Detection component; 181. Transmitter; 182. Receiver; 183. U-shaped plate; 19. Moving component; 191. Fixing block; 192. Screw; 193. Sliding block; 20. Base; 201. Front panel; 202. Back panel; 21. First adapter plate; 30. Bracket; 100. Material. Detailed Implementation
[0025] To explain in detail the technical content, structural features, and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.
[0026] like Figures 1 to 8 As shown, this utility model embodiment provides a bagging machine, including a base 20, a traction mechanism, a cutting mechanism 9, a discharge chute 10, and a control panel 11. The traction mechanism, the cutting mechanism 9, the discharge chute 10, and the control panel 11 are all mounted on the base 20. The traction mechanism includes a first clamping roller 8 and a first traction roller 6. The first traction roller 6 is located above the first clamping roller 8. A support guide plate 7 is provided between the first traction roller 6 and the first clamping roller 8. The support guide plate 7, the first clamping roller 8, the cutting mechanism 9, and the discharge chute 10 are arranged sequentially to form an inclined conveying channel. The control panel 11 is located above the first traction roller 6. Specifically, the base 20 has a box-like structure and a front panel 201 for mounting the traction mechanism, cutting mechanism 9, discharge chute 10, and control panel 11. The base 20 also has a rear panel 202 for switching the base 20 on and off. The base 20 also contains control components to control the bag-feeding machine. The base 20 can be mounted on a bracket 30 to be adjusted to the required height. The first clamping roller 8 has a second conveying gap. The cutting mechanism 9 has a cutting blade 91, which is perpendicular to the conveying channel and located below the conveying channel to cut materials 100 such as small bags from below the conveying channel. Specifically, for example... Figures 6 to 8 As shown, the cutting blade 91 slides upward along the guide block 92 under the drive of the second driver 93 to cut the material 100, as... Figure 1 as well as Figure 8As shown, the first pinch roller 8 rotates and clamps the material 100 under the drive of the first driver 81, the first driver 81 and the second driver 93 can be servo motors, control is more accurate, the support guide plate 7 in the embodiment of the utility model is obliquely arranged, the first pinch roller 8 is also obliquely arranged to make the second conveying gap be obliquely arranged, the discharge chute 10 comprises a first chute section 101 and a second chute section 102, the inclination angle of the first chute section 101 is same or similar to the inclination angle of the support guide plate 7 and the second conveying gap to make the cut material 100 very smoothly slide from the discharge chute 10, the second chute section 102 is a transition section, for conveying to the subsequent small bag material 100 delivery position to put the material 100 into the packaging bag or packaging box.
[0027] The embodiment of the utility model discloses a support guide plate 7, a first pinch roller 8, a cutting mechanism 9 and a discharge chute 10 are sequentially arranged and form a conveying channel with an inclined structure, the material 100 slides very smoothly, effectively reduces the sliding resistance and the structure is very compact, in addition, the support guide plate 7 can support the material 100, effectively reduces the swing of the material 100, effectively guarantees the accuracy of cutting, improves the yield of cutting.
[0028] In the embodiment of the utility model, the included angle between the conveying channel and the horizontal direction is greater than or equal to 40 degrees and less than or equal to 60 degrees.
[0029] In the embodiment of the utility model, as shown in Figure 1 One end of the support guide plate 7 extends to the first traction roller 6 and does not contact the first traction roller 6, the other end of the support guide plate 7 extends to the first pinch roller 8 and does not contact the first pinch roller 8.
[0030] Further, as shown in Figure 1 And Figures 4 to 5 The support guide plate 7 comprises a first guide plate 71 and a second guide plate 72 arranged oppositely, the first guide plate 71 and the second guide plate 72 are arranged at intervals and both the first guide plate 71 and the second guide plate 72 are U-shaped long slot-shaped to form a material guide channel in the first guide plate 71 and the second guide plate 72, specifically, the first guide plate 71 and the second guide plate 72 are U-shaped long slot-shaped, thereby the upper part, the lower part, the left side and the right side of the material 100 can be limited, effectively prevent the material 100 from shaking greatly, and the design is ingenious.
[0031] In the embodiment of the utility model, as shown in Figure 1 AndFigures 3 to 5 As shown in the figure, the first guide plate 71 and the second guide plate 72 have a first gap therebetween, and the bag feeding machine further comprises a detection assembly 18 arranged correspondingly to the first gap, the detection assembly 18 being connected to a moving assembly 19 arranged on the upper side of the support guide plate 7 for adjusting the position of the detection assembly 18. Specifically, the detection assembly 18 comprises a transmitter 181 and a receiver 182 opposite to the transmitter 181, the moving assembly 19 comprises two fixed blocks 191 and a screw rod 192 penetrating through the two fixed blocks 191, the screw rod 192 being provided with a sliding block 193, the sliding block 193 being connected to a U-shaped plate 183, the support guide plate 7 penetrating through the U-shaped plate 183 and the transmitter 181 being connected to the upper portion of the U-shaped plate 183, and the receiver 182 being connected to the lower portion of the U-shaped plate 183 for detecting the material 100, when it is necessary to adjust the position of the detection assembly 18, the detection assembly 18 can be adjusted to a suitable position by rotating the screw rod 192 to move, thereby facilitating the installation of the bag feeding machine and avoiding interference.
[0032] In the embodiment of the utility model, as shown in the figure, Figure 1 And Figure 8 As shown in the figure, the bag feeding machine further comprises a feeding roll 1, the feeding roll 1 being installed on the machine base 20 through a first adapter plate 21 and the discharging direction of the feeding roll 1 being horizontal. Specifically, the feeding roll 1 is connected to the machine base 20 through the first adapter plate 21 so that the feeding roll 1 is located outside the front panel 201 and the discharging direction is horizontal, the structure is more compact, does not occupy much height space and does not occupy the installation space of the front panel 201, and the design is ingenious. Of course, in some other specific embodiments, the discharging direction of the feeding roll 1 can also be other directions, which is specifically designed according to actual needs.
[0033] Further, as shown in the figure, Figure 1 The traction mechanism further comprises a second pinch roller 3, a second traction roller 4 and a buffer roller 5, the second pinch roller 3 being arranged directly above the first traction roller 6 and located on one side of the upper portion of the machine base 20, the control screen 11 being located on the other side of the upper portion of the machine base 20, the second pinch roller 3 being arranged horizontally and forming a first conveying gap vertically downward, the second traction roller 4 being arranged side by side with the first traction roller 6 and located outside the first traction roller 6, the second traction roller 4 being installed on the machine base 20 through a second adapter plate, and the material 100 on the feeding roll 1 being transmitted to the cutting mechanism 9 through the second pinch roller 3, the second traction roller 4, the buffer roller 5, the first traction roller 6, the support guide plate 7 and the first pinch roller 8 for cutting. Specifically, the upper portion of the second pinch roller 3 is further provided with a guide assembly 2, the guide assembly 2 converting the horizontal material 100 guided out of the feeding roll 1 into vertical material 100 to enter the second pinch roller 3.
[0034] In the embodiment of the utility model, as shown in the figure,Figures 1 to 2 As shown, the bag feeding machine further comprises a first photoelectric sensor 12, a second photoelectric sensor 13 and a photoelectric sensing plate 14, the first photoelectric sensor 12 is located above the second photoelectric sensor 13 and both the first photoelectric sensor 12 and the second photoelectric sensor 13 are located below the supporting guide plate 7, the first photoelectric sensor 12 has a first sensing notch, the second photoelectric sensor 13 has a second sensing notch, the photoelectric sensing plate 14 has a first end and a second end opposite to the first end, the first end of the photoelectric sensing plate 14 is connected to one end of a connecting plate 15, the other end of the connecting plate 15 is connected with the buffer roller 5, the middle part of the connecting plate 15 is further connected with a rotating shaft of a machine base 20, the second end of the photoelectric sensing plate 14 is located in the first sensing notch when the buffer roller 5 drops to the lowest point and the second end of the photoelectric sensing plate 14 is located in the second sensing notch when the buffer roller 5 rises to the highest point, specifically, the connecting plate 15 and the machine base 20 are connected through a rotating shaft 16, the second end of the photoelectric sensing plate 14 is located in the first sensing notch when the buffer roller 5 drops to the lowest point and the second end of the photoelectric sensing plate 14 is located in the second sensing notch when the buffer roller 5 rises to the highest point, so that a signal can be sent to the controller to stop feeding when the buffer roller 5 drops to the lowest point and start feeding when the buffer roller 5 rises to the highest point. Of course, in some other specific embodiments, the bag feeding machine can also detect the positions of the highest point and the lowest point of the buffer roller 5 through other types of sensors, for example, a photoelectric switch of a light barrier type, which can be selected according to actual needs.
[0035] Further, at least two mounting holes are arranged on the connecting plate 15, and a waist-shaped groove 141 is arranged on the photoelectric sensing plate 14 along the length direction of the photoelectric sensing plate 14, and the mounting holes are bolted with the waist-shaped groove 141. Specifically, the position of the photoelectric sensing plate 14 can be adjusted according to needs through the waist-shaped groove 141, which is designed ingeniously.
[0036] In the embodiment of the utility model, as shown in the figure, Figure 2 As shown, the lower side of the connecting plate 15 is further provided with a limiting protrusion 17, the limiting protrusion 17 abuts against the connecting plate 15 when the buffer roller 5 drops to limit the position of the lowest point of the buffer roller 5, specifically, the limiting protrusion 17 is in a smooth columnar shape, and the limiting effect is good.
[0037] The above disclosed is only a preferred embodiment of the utility model, of course, cannot with this to limit the utility model right scope, therefore the equivalent change made in the utility model application patent scope, still belongs to the utility model covered range.
Claims
1. A chip-dispensing machine, characterized in that, The machine base, traction mechanism, cutting mechanism, discharge chute and control panel are installed on the machine base, the traction mechanism includes a first pinch roller and a first traction roller, the first traction roller is above the first pinch roller, a support guide plate is arranged between the first traction roller and the first pinch roller, the support guide plate, the first pinch roller, the cutting mechanism and the discharge chute are sequentially arranged and form a conveying channel with an inclined structure, and the control panel is above the first traction roller.
2. The chip-poker machine of claim 1 wherein, The angle between the conveying channel and the horizontal direction is greater than or equal to 40 degrees and less than or equal to 60 degrees.
3. The chip-poker machine of claim 1 wherein, One end of the support guide plate extends to the first traction roller and does not contact the first traction roller, and the other end of the support guide plate extends to the first pinch roller and does not contact the first pinch roller.
4. The chip-poker machine of claim 1 wherein, The feeding roll is installed on the machine base by a first adapter plate, and the feeding direction of the feeding roll is horizontal.
5. The chip-poker machine of claim 4 wherein, The traction mechanism further includes a second pinch roller, a second traction roller and a buffer roller, the second pinch roller is arranged directly above the first traction roller and on one side of the upper part of the machine base, the control panel is on the other side of the upper part of the machine base, the second pinch roller is horizontally arranged and forms a vertically downward conveying gap, the second traction roller is arranged side by side with the first traction roller and outside the first traction roller, the second traction roller is installed on the machine base by a second adapter plate, and the material on the feeding roll is transmitted to the cutting mechanism through the second pinch roller, the second traction roller, the buffer roller, the first traction roller, the support guide plate and the first pinch roller.
6. The chip-poker machine of claim 5, wherein, The first photoelectric sensor is above the second photoelectric sensor, and the second photoelectric sensor and the first photoelectric sensor are on the lower side of the support guide plate, the first photoelectric sensor has a first sensing notch, the second photoelectric sensor has a second sensing notch, the photoelectric sensing plate has a first end and a second end opposite to the first end, the first end of the photoelectric sensing plate is connected to one end of a connecting plate, the other end of the connecting plate is connected to the buffer roller, the middle part of the connecting plate is further connected to the machine base shaft, the second end of the photoelectric sensing plate is in the first sensing notch when the buffer roller drops to the lowest point, and the second end of the photoelectric sensing plate is in the second sensing notch when the buffer roller rises to the highest point.
7. The chip-poker machine of claim 6 wherein, At least two mounting holes are arranged on the connecting plate, a waist-shaped slot is formed in the length direction of the photoelectric sensing plate, and the mounting holes and the waist-shaped slot are bolted.
8. The chip-poker machine of claim 6 wherein, The lower side of the connecting plate is further provided with a limiting protrusion, which abuts against the connecting plate when the buffer roller drops to limit the position of the lowest point of the buffer roller.
9. The chip-poker machine of claim 1 wherein, The support guide plate comprises oppositely arranged first and second guide plates, which are spaced apart and each has a U-shaped long slot to form a material guiding channel.
10. The chip-poker machine of claim 9, wherein, The first and second guide plates have a first gap therebetween, and the casting machine further comprises a detection assembly arranged corresponding to the first gap, which is connected to a moving assembly arranged on the upper side of the support guide plate to adjust the position of the detection assembly.