Multi-functional double-sided labeling machine
By designing a combination of transmission and labeling mechanisms, the problem of existing multi-functional double-sided labeling machines being unable to quickly change and replenish labeling materials when labeling small batches has been solved, thus realizing the function of quickly changing and replenishing labeling materials and improving labeling efficiency.
Patent Information
- Application Number
- CN202410024981.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-08
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2044-01-08
AI Technical Summary
Existing multi-functional double-sided labeling machines cannot quickly change labels and replenish labeling materials when labeling small batches, resulting in low efficiency.
A multifunctional double-sided labeling machine was designed, which includes a transmission mechanism and a labeling mechanism. Through the combination of a limiting component, a conveying component, a fixing component, a flipping component, a positioning component, a guiding component, a pasting component and a material storage component, the machine achieves the functions of quickly changing labels and replenishing labeling materials.
It improves the efficiency of labeling small batches of objects, enabling quick changes in label types and replenishment of labeling materials, thus increasing labeling efficiency.
Smart Images

Figure CN117719766B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of labeling machines, in particular to a multifunctional double-sided labeling machine. BACKGROUND
[0002] Labeling machines are devices used to paste labels on the surfaces of objects such as bottles and boxes. Double-sided labeling machines can paste labels on two places on the surface of an object at the same time, so they can achieve the highest labeling efficiency for objects that require labels on two places.
[0003] Currently, Chinese invention with publication number CN114955149A relates to a customized double-sided labeling machine, which includes a protective frame, a workbench, a horizontal movement guide rail, a horizontal guide rail connecting plate assembly, a horizontal movement driving part, a labeling mechanism, a vertical movement guide rail, a vertical guide rail connecting plate, a vertical movement driving mechanism, and a workpiece clamping table. The labeling mechanism is set on the horizontal guide rail connecting plate assembly and can move along the horizontal movement guide rail under the action of the horizontal movement driving part. The workpiece clamping table is set on the vertical guide rail connecting plate and can move along the vertical movement guide rail under the action of the vertical movement driving mechanism. The labeling mechanism includes a feeding mechanism, a first label winding shaft, a label pressing assembly, a label covering assembly, and a cutting device. This customized double-sided labeling machine has high labeling precision, high efficiency, strong versatility, high automation, and is suitable for long strip-shaped products.
[0004] The existing multifunctional double-sided labeling machine has the following disadvantages when in use: it cannot quickly replace the labels after labeling a small batch, lacks a structure for quickly replacing labels, reduces the efficiency of labeling different types of small batch objects, and cannot quickly replenish labeling materials, reducing the labeling efficiency. SUMMARY
[0005] The present application aims to address the shortcomings of existing multifunctional double-sided labeling machines. The advantages of the present application include the ability to quickly replace labels after labeling a small batch, the presence of a structure for quickly replacing labels, improved efficiency of labeling different types of small batch objects, and the ability to quickly replenish labeling materials, thereby improving the efficiency of labeling.
[0006] The above technical purpose of the present application is realized by the following technical scheme: the multifunctional double-sided labeling machine comprises a transmission mechanism and a labeling mechanism, the labeling mechanism is movably connected to the inner side of the transmission mechanism, the transmission mechanism comprises a limiting assembly, a conveying assembly, a fixing assembly and a transmission assembly, the conveying assembly is movably connected to the front side of the limiting assembly, the fixing assembly is bolted to the bottom of the front side of the limiting assembly, and the transmission assembly is rotatably connected to the inner side of the fixing assembly; the labeling mechanism comprises a turnover assembly, a positioning assembly, a guide assembly, a sticking assembly and a storage assembly, the turnover assembly is movably connected to the surface of the transmission assembly, the positioning assembly is bolted to the inner side of the turnover assembly, the guide assembly is bolted to the top and the bottom of the positioning assembly, the sticking assembly is bolted to the front side of the top and the front side of the bottom of the guide assembly, and the storage assembly is bolted to the rear side of the top and the rear side of the bottom of the guide assembly.
[0007] By adopting the above technical scheme, the transmission mechanism can drive the object to be labeled to move, and can drive the labeling mechanism to turn over, the labeling mechanism can label the object to be labeled, can switch the type of labeling after turning over, and can quickly supplement the labeling as required.
[0008] The present application further provides that the limiting assembly comprises a supporting base, a fixed plate and a guide groove, the fixed plate is bolted to the top of the supporting base, and the guide groove is formed in the inner side of the fixed plate.
[0009] By adopting the above technical scheme, the limiting assembly is provided, the supporting base can support the fixing assembly and the fixed plate, the fixed plate can limit the conveying assembly, and the guide groove can facilitate the reciprocating movement of the conveying assembly.
[0010] The present application further provides that the conveying assembly comprises a limiting frame, a servo motor and a conveying belt, the conveying belt is movably connected to the inner side of the fixed plate, the limiting frame is movably connected to the surface of the front side of the conveying belt, the servo motor is bolted to the left side of the limiting frame, and the output end of the servo motor penetrates through the limiting frame and is bolted to the left side of the conveying belt.
[0011] By adopting the above technical scheme, the limiting frame can limit the servo motor and the conveying belt, the servo motor can drive the conveying belt to move reciprocally after being powered on and started, and the conveying belt can drive the object to be labeled to move when moving reciprocally.
[0012] The present application further provides that the fixing assembly comprises a limiting frame plate, a guide plate and a conveying groove, the limiting frame plate is bolted to the front side of the supporting base, the front side of the limiting frame plate is bolted to the rear side of the limiting frame, the guide plate is bolted to the two sides of the limiting frame plate, and the conveying groove is formed in the top of the guide plate.
[0013] By means of the above technical scheme, the limiting frame plate can limit the support base and the limiting frame, and can support the transmission assembly; the guide plate can reinforce the limiting frame plate; and the conveying groove can provide limiting for rotation of the turnover assembly.
[0014] The present application further provides that: the transmission assembly comprises a guide wheel, a transmission motor and a transmission gear; the guide wheel is rotationally connected to the inner side of the limiting frame plate; the transmission motor is bolted to the rear side of the limiting frame plate; and the transmission gear is bolted to the output end of the front side of the transmission motor.
[0015] By means of the above technical scheme, the transmission assembly is provided, the guide wheel can limit the rotation of the turnover assembly, the transmission motor can drive the transmission gear to rotate after being powered on and started, and the transmission gear can provide the power required for the turnover of the turnover assembly during rotation.
[0016] The present application further provides that: the turnover assembly comprises a turnover ring, a gear ring and a guide rail; the gear ring is meshingly connected to the top of the transmission gear; the turnover ring is bolted to the inner side of the gear ring; the guide rail is bolted to the inner side of the turnover ring; and the inner side of the guide rail is slidingly connected to the bottom of the guide wheel.
[0017] By means of the above technical scheme, the turnover assembly is provided, the gear ring can rotate the turnover ring along with the rotation of the transmission gear, the turnover ring can rotate by one hundred and eighty degrees, so that the positioning assembly can be turned over, and the guide rail can further increase the stability of the turnover ring during rotation.
[0018] The present application further provides that: the positioning assembly comprises a positioning plate, a connecting plate and a bearing plate; the positioning plate is bolted to the inner side of the turnover ring; the connecting plate is bolted to the front side of the positioning plate; and the bearing plate is bolted to the surface of the connecting plate.
[0019] By means of the above technical scheme, the positioning assembly is provided, the positioning plate can fix the pasting assembly and the connecting plate, the connecting plate can fix the guide assembly and the bearing plate, and the bearing plate can limit the storage assembly.
[0020] The present application further provides that: the guide assembly comprises a guide rotating rod, a conveying rotating rod and an anti-deviation plate; the guide rotating rod is rotationally connected to the front side of the top of the connecting plate; the conveying rotating rod is rotationally connected to the rear side of the top of the connecting plate; and the anti-deviation plate is rotationally connected to the top of the guide rotating rod and the top of the conveying rotating rod.
[0021] The technical scheme is adopted, the guide rotating rod can guide the label material to the sticking assembly, the conveying rotating rod can guide the label material conveyed by the storage assembly into the guide rotating rod, and the anti-deviation plate can prevent the label material from deviating from the guide rotating rod and the conveying rotating rod.
[0022] The technical scheme is adopted, the guide rotating rod can guide the label material to the sticking assembly, the conveying rotating rod can guide the label material conveyed by the storage assembly into the guide rotating rod, and the anti-deviation plate can prevent the label material from deviating from the guide rotating rod and the conveying rotating rod.
[0023] The technical scheme is adopted, the guide rotating rod can guide the label material to the sticking assembly, the conveying rotating rod can guide the label material conveyed by the storage assembly into the guide rotating rod, and the anti-deviation plate can prevent the label material from deviating from the guide rotating rod and the conveying rotating rod.
[0024] The technical scheme is adopted, the guide rotating rod can guide the label material to the sticking assembly, the conveying rotating rod can guide the label material conveyed by the storage assembly into the guide rotating rod, and the anti-deviation plate can prevent the label material from deviating from the guide rotating rod and the conveying rotating rod.
[0025] The technical scheme is adopted, the guide rotating rod can guide the label material to the sticking assembly, the conveying rotating rod can guide the label material conveyed by the storage assembly into the guide rotating rod, and the anti-deviation plate can prevent the label material from deviating from the guide rotating rod and the conveying rotating rod.
[0026] In summary, the present application has the following advantages:
[0027] 1. The transmission mechanism is provided, the limiting assembly can fix and limit the conveying assembly and the fixing assembly, the conveying assembly can drive the required label object to move after being powered on and started, the fixing assembly can limit the transmission assembly, the transmission assembly can drive the labeling mechanism to be active after being powered on and started, so that the labeling mechanism can be turned over, the labeling mechanism can be quickly replaced or supplemented with label materials.
[0028] 2、By setting the labeling mechanism, the turnover assembly can change its position with the transmission mechanism, so that the sticking assembly and the storage assembly can be turned over, which is convenient for replacing the label of the required object, or quickly replacing the storage assembly with insufficient label material, the positioning assembly can limit the guide assembly, the sticking assembly and the storage assembly, the guide assembly can guide the label material transported by the storage assembly, the sticking assembly can stick the label material on both sides of the object to be labeled, the storage assembly can store the label material and transport it to the sticking assembly, and at the same time, it can store at most two different label materials, or two identical label materials. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 It is the overall structure schematic diagram of the application;
[0030] Figure 2 It is the limiting assembly and the conveying assembly structure schematic diagram of the application;
[0031] Figure 3 It is the fixing assembly and the transmission assembly structure schematic diagram of the application;
[0032] Figure 4 It is the labeling mechanism structure schematic diagram of the application;
[0033] Figure 5 It is the turnover assembly structure schematic diagram of the application;
[0034] Figure 6 It is the positioning assembly and the guide assembly structure schematic diagram of the application;
[0035] Figure 7 It is the sticking assembly structure schematic diagram of the application;
[0036] Figure 8 It is the storage assembly structure schematic diagram of the application.
[0037] Label: 1, transmission mechanism; 101, limiting component; 1011, support base; 1012, fixed plate; 1013, guide groove; 102, conveying component; 1021, limiting frame; 1022, servo motor; 1023, conveying belt; 103, fixed component; 1031, limiting frame plate; 1032, guide plate; 1033, conveying groove; 104, transmission component; 1041, guide wheel; 1042, transmission motor; 1043, transmission gear; 2, labeling mechanism; 201, turnover component; 2011, turnover ring; 2012, gear ring; 2013, guide rail; 202, positioning component; 2021, positioning plate; 2022, connecting plate; 2023, bearing plate; 203, guide component; 2031, guide rotating rod; 2032, conveying rotating rod; 2033, anti-deviation plate; 204, pasting component; 2041, hydraulic rod; 2042, top labeling head; 2043, bottom labeling head; 205, storage component; 2051, mounting rotating rod; 2052, top storage plate; 2053, bottom storage plate. DETAILED DESCRIPTION
[0038] The application will be further described in detail below with reference to the drawings.
[0039] Example 1
[0040] Reference Figures 1-3 , multifunctional double-sided labeling machine, comprising a transmission mechanism 1, the transmission mechanism 1 comprising a limiting component 101, a conveying component 102, a fixed component 103 and a transmission component 104, the conveying component 102 being movably connected to the front side of the limiting component 101, the fixed component 103 being bolted to the bottom of the front side of the limiting component 101, and the transmission component 104 being rotatably connected to the inner side of the fixed component 103, by setting the transmission mechanism 1, the limiting component 101 can fix and limit the conveying component 102 and the fixed component 103, the conveying component 102 can move the required labeling object after being powered on and started, the fixed component 103 can limit the transmission component 104, and the transmission component 104 can drive the labeling mechanism 2 after being powered on and started, so that the labeling mechanism 2 can be turned over, facilitating quick replacement of labeling types or quick replenishment of labeling materials.
[0041] As shown in Figure 2 , the limiting component 101 comprises a support base 1011, a fixed plate 1012 and a guide groove 1013, the fixed plate 1012 being bolted to the top of the support base 1011, and the guide groove 1013 being formed in the inner side of the fixed plate 1012, by setting the limiting component 101, the support base 1011 can support the fixed component 103 and the fixed plate 1012, the fixed plate 1012 can limit the conveying component 102, and the guide groove 1013 can facilitate reciprocating movement of the conveying component 102.
[0042] As Figure 2 shown, the conveying assembly 102 includes a limiting frame 1021, a servo motor 1022 and a conveying belt 1023, the conveying belt 1023 is movably connected to the inner side of the fixed plate 1012, the limiting frame 1021 is movably connected to the surface of the front side of the conveying belt 1023, the servo motor 1022 is bolted to the left side of the limiting frame 1021, and the output end of the servo motor 1022 is bolted to the left side of the conveying belt 1023 through the limiting frame 1021. By arranging the conveying assembly 102, the limiting frame 1021 can limit the servo motor 1022 and the conveying belt 1023, and the servo motor 1022 can drive the conveying belt 1023 to reciprocate after being powered on and started. The conveying belt 1023 can drive the required labeling object to move when reciprocating.
[0043] As Figure 3 shown, the fixed assembly 103 includes a limiting frame plate 1031, a guide plate 1032 and a conveying groove 1033, the limiting frame plate 1031 is bolted to the front side of the support base 1011, the front side of the limiting frame plate 1031 is bolted to the rear side of the limiting frame 1021, the guide plate 1032 is bolted to both sides of the limiting frame plate 1031, and the conveying groove 1033 is provided on the top of the guide plate 1032. By arranging the fixed assembly 103, the limiting frame plate 1031 can limit the support base 1011 and the limiting frame 1021, and can support the transmission assembly 104, the guide plate 1032 can reinforce the limiting frame plate 1031, and the conveying groove 1033 can limit the rotation of the turnover assembly 201.
[0044] As Figure 3 shown, the transmission assembly 104 includes a guide wheel 1041, a transmission motor 1042 and a transmission gear 1043, the guide wheel 1041 is rotatably connected to the inner side of the limiting frame plate 1031, the transmission motor 1042 is bolted to the rear side of the limiting frame plate 1031, and the transmission gear 1043 is bolted to the output end of the front side of the transmission motor 1042. By arranging the transmission assembly 104, the guide wheel 1041 can limit the rotation of the turnover assembly 201, the transmission motor 1042 can drive the transmission gear 1043 to rotate after being powered on and started, and the transmission gear 1043 can provide the power required for the turnover of the turnover assembly 201 when rotating.
[0045] Brief description of the use process: first, the transmission mechanism 1 is powered on and started, then the object to be labeled is placed on the conveyor belt 1023, then the servo motor 1022 drives the conveyor belt 1023 to reciprocate, then the object to be labeled moves forward with the conveyor belt, and when passing through the labeling mechanism 2, the labeling mechanism 2 labels the object, when the labeling material needs to be replaced, the transmission motor 1042 rotates the transmission gear 1043, then the labeling mechanism 2 rotates one hundred and eighty degrees along the guide wheel 1041 with the transmission gear 1043, until the labeling mechanism 2 completes the turnover.
[0046] Embodiment 2:
[0047] Reference Figures 4-8 , multifunctional double-sided labeling machine, including labeling mechanism 2, labeling mechanism 2 is movably connected to the inner side of transmission mechanism 1, labeling mechanism 2 includes turnover assembly 201, positioning assembly 202, guide assembly 203, sticking assembly 204 and storage assembly 205, turnover assembly 201 is movably connected to the surface of transmission assembly 104, positioning assembly 202 is bolted to the inner side of turnover assembly 201, guide assembly 203 is bolted to the top and bottom of positioning assembly 202, sticking assembly 204 is bolted to the front side of the top and the front side of the bottom of guide assembly 203, storage assembly 205 is bolted to the rear side of the top and the rear side of the bottom of guide assembly 203, by setting labeling mechanism 2, turnover assembly 201 can change its position with transmission mechanism 1, so that sticking assembly 204 and storage assembly 205 can be turned over, making it convenient to replace the label of the object to be labeled, or quickly replace the storage assembly 205 with insufficient labeling material, positioning assembly 202 can limit the guide assembly 203, sticking assembly 204 and storage assembly 205, guide assembly 203 can guide the labeling material transported by storage assembly 205, sticking assembly 204 can stick the labeling material on both sides of the object to be labeled, and storage assembly 205 can store the labeling material and deliver it to sticking assembly 204, while it can store up to two different labeling materials, or two identical labeling materials.
[0048] As Figure 5As shown, the turnover assembly 201 includes a turnover ring 2011, a gear ring 2012 and a guide rail 2013, the gear ring 2012 is meshingly connected on the top of the transmission gear 1043, the turnover ring 2011 is bolted on the inner side of the gear ring 2012, the guide rail 2013 is bolted on the inner side of the turnover ring 2011, and the inner side of the guide rail 2013 is slidingly connected with the bottom of the guide wheel 1041. By arranging the turnover assembly 201, the gear ring 2012 can rotate the turnover ring 2011 with the rotation of the transmission gear 1043, and the turnover ring 2011 can rotate one hundred and eighty degrees, so that the positioning assembly 202 can be turned over, and the guide rail 2013 can further increase the stability of the turnover ring 2011 when rotating.
[0049] As shown in the Figure 6 positioning assembly 202 includes a positioning plate 2021, a connecting plate 2022 and a bearing plate 2023, the positioning plate 2021 is bolted on the inner side of the turnover ring 2011, the connecting plate 2022 is bolted on the front side of the positioning plate 2021, and the bearing plate 2023 is bolted on the surface of the connecting plate 2022. By arranging the positioning assembly 202, the positioning plate 2021 can fix the pasting assembly 204 and the connecting plate 2022, the connecting plate 2022 can fix the guide assembly 203 and the bearing plate 2023, and the bearing plate 2023 can limit the storage assembly 205.
[0050] As shown in the Figure 6 guide assembly 203 includes a guide rotating rod 2031, a conveying rotating rod 2032 and a deviation prevention plate 2033, the guide rotating rod 2031 is rotatably connected on the front side of the top of the connecting plate 2022, the conveying rotating rod 2032 is rotatably connected on the rear side of the top of the connecting plate 2022, and the deviation prevention plate 2033 is rotatably connected on the top of the guide rotating rod 2031 and the top of the conveying rotating rod 2032. By arranging the guide assembly 203, the guide rotating rod 2031 can guide the labeled material to the pasting assembly 204, the conveying rotating rod 2032 can guide the labeled material conveyed by the storage assembly 205 into the guide rotating rod 2031, and cooperate with the guide rotating rod 2031 to straighten the labeled material, and the deviation prevention plate 2033 can prevent the labeled material from accidentally deviating from the guide rotating rod 2031 and the conveying rotating rod 2032.
[0051] As shown in the Figure 7As shown, the adhesive application assembly 204 includes a hydraulic rod 2041, a top labeling head 2042, and a bottom labeling head 2043. The hydraulic rod 2041 is bolted to the inside of the positioning plate 2021, the top labeling head 2042 is bolted to the top of the output end of the hydraulic rod 2041, and the bottom labeling head 2043 is bolted to the bottom of the output end of the hydraulic rod 2041. By setting the adhesive application assembly 204, the hydraulic rod 2041 can move the top labeling head 2042 and the bottom labeling head 2043 toward the item to be labeled after being powered on and started. The top labeling head 2042 and the bottom labeling head 2043 can respectively stick the labeling material conveyed in the storage assembly 205 onto both sides of the item to be labeled.
[0052] like Figure 8 As shown, the storage assembly 205 includes a mounting rod 2051, a top storage plate 2052, and a bottom storage plate 2053. The mounting rod 2051 is snapped into the top and bottom of the support plate 2023, the top storage plate 2052 is snapped into the top of the mounting rod 2051, and the bottom storage plate 2053 is snapped into the bottom of the mounting rod 2051. By setting up the storage assembly 205, the mounting rod 2051 can facilitate the user to install the labeling material in the top storage plate 2052 and the bottom storage plate 2053. The top storage plate 2052 can store one type of labeling material, and the bottom storage plate 2053 can store another type of labeling material. Moreover, the same labeling material as the top storage plate 2052 can be stored according to the required requirements.
[0053] Brief description of the usage process: First, install the labeling material to be labeled in the top storage plate 2052 and the bottom storage plate 2053. Then, place the labeling material into the top labeling head 2042 and the bottom labeling head 2043 along the guide rod 2031 and the conveying rod 2032. Then, power on and start the labeling mechanism 2. When the surface of the object to be labeled comes into contact with the bottom labeling head 2043, the bottom labeling head 2043 will apply the label to the surface of the object. When the current type of item is labeled and the item needs to be changed, the flip ring 2011 will rotate 180 degrees in the transmission mechanism 1 along with the gear ring 2012. After that, the top labeling head will be used. The label head 2042 moves to the bottom label head 2043, and the top storage plate 2052 moves to the bottom storage plate 2053. The bottom storage plate 2053 is filled with the same labeling material as the top storage plate 2052. When the surface of the item comes into contact with the top label head 2042, the top label head 2042 will label the item. When the labeling material in the top storage plate 2052 is used up, the flip ring 2011 and the gear ring 2012 will rotate 180 degrees with the transmission mechanism 1. Then the bottom label head 2043 will continue to label the item until the labeling is completed.
[0054] The embodiments are only used to explain the present application, and are not used to limit the present application, and any modification without creative contribution made by the person skilled in the art according to the embodiments after reading the specification is protected by the patent law as long as it is within the scope of the claims of the present application.
Claims
1. Multifunctional double-sided labelling machine comprising a transmission mechanism (1) and a labelling mechanism (2), characterised in that: The labeling mechanism (2) is movably connected to the inner side of the transmission mechanism (1), the transmission mechanism (1) comprises a limiting assembly (101), a conveying assembly (102), a fixing assembly (103) and a transmission assembly (104), the conveying assembly (102) is movably connected to the front side of the limiting assembly (101), the fixing assembly (103) is bolted to the bottom of the front side of the limiting assembly (101), and the transmission assembly (104) is rotatably connected to the inner side of the fixing assembly (103); the labeling mechanism (2) comprises a turnover assembly (201), a positioning assembly (202), a guide assembly (203), a sticking assembly (204) and a storage assembly (205), the turnover assembly (201) is movably connected to the surface of the transmission assembly (104), the positioning assembly (202) is bolted to the inner side of the turnover assembly (201), the guide assembly (203) is bolted to the top and bottom of the positioning assembly (202), the sticking assembly (204) is bolted to the front side of the top and the front side of the bottom of the guide assembly (203), and the storage assembly (205) is bolted to the rear side of the top and the rear side of the bottom of the guide assembly (203); The limiting assembly (101) comprises a supporting base (1011), a fixed plate (1012) and a guide groove (1013), the fixed plate (1012) is bolted to the top of the supporting base (1011), and the guide groove (1013) is formed in the inner side of the fixed plate (1012); The conveying assembly (102) comprises a limiting frame (1021), a servo motor (1022) and a conveying belt (1023), the conveying belt (1023) is movably connected to the inner side of the fixed plate (1012), the limiting frame (1021) is movably connected to the surface of the front side of the conveying belt (1023), and the servo motor (1022) is bolted to the left side of the limiting frame (1021); and the output end of the servo motor (1022) penetrates through the limiting frame (1021) and is bolted to the left side of the conveying belt (1023); The fixing assembly (103) comprises a limiting frame plate (1031), a guide plate (1032) and a conveying groove (1033), the limiting frame plate (1031) is bolted to the front side of the supporting base (1011), the front side of the limiting frame plate (1031) is bolted to the rear side of the limiting frame (1021), the guide plate (1032) is bolted to the two sides of the limiting frame plate (1031), and the conveying groove (1033) is formed in the top of the guide plate (1032); The transmission assembly (104) comprises a guide wheel (1041), a transmission motor (1042) and a transmission gear (1043), the guide wheel (1041) is rotatably connected to the inner side of the limiting frame plate (1031), the transmission motor (1042) is bolted to the rear side of the limiting frame plate (1031), and the transmission gear (1043) is bolted to the output end of the front side of the transmission motor (1042). The turnover assembly (201) comprises a turnover ring (2011), a gear ring (2012) and a guide rail (2013), the gear ring (2012) is meshed and connected on the top of the transmission gear (1043), the turnover ring (2011) is bolted on the inner side of the gear ring (2012), the guide rail (2013) is bolted on the inner side of the turnover ring (2011), and the inner side of the guide rail (2013) is slidingly connected with the bottom of the guide wheel (1041); The positioning assembly (202) comprises a positioning plate (2021), a connecting plate (2022) and a bearing plate (2023), the positioning plate (2021) is bolted on the inner side of the turnover ring (2011), the connecting plate (2022) is bolted on the front side of the positioning plate (2021), and the bearing plate (2023) is bolted on the surface of the connecting plate (2022); The guide assembly (203) comprises a guide rotating rod (2031), a conveying rotating rod (2032) and an anti-deviation plate (2033), the guide rotating rod (2031) is rotationally connected on the front side of the top of the connecting plate (2022), the conveying rotating rod (2032) is rotationally connected on the rear side of the top of the connecting plate (2022), and the anti-deviation plate (2033) is rotationally connected on the top of the guide rotating rod (2031) and the top of the conveying rotating rod (2032), the sticking assembly (204) comprises a hydraulic rod (2041), a top sticking head (2042) and a bottom sticking head (2043), the hydraulic rod (2041) is bolted on the inner side of the positioning plate (2021), the top sticking head (2042) is bolted on the top of the output end of the hydraulic rod (2041), and the bottom sticking head (2043) is bolted on the bottom of the output end of the hydraulic rod (2041), the material storage assembly (205) comprises a mounting rotating rod (2051), a top material storage plate (2052) and a bottom material storage plate (2053), the mounting rotating rod (2051) is clamped on the top and the bottom of the bearing plate (2023), the top material storage plate (2052) is clamped on the top of the mounting rotating rod (2051), and the bottom material storage plate (2053) is clamped on the bottom of the mounting rotating rod (2051).
Citation Information
Patent Citations
Customized double-sided labeling machine
CN114955149A
Automatic labeling device for tank products
CN116374368A
Label labeling machine with doublesided labeling function
CN213620706U