Clamping plate type ultrasonic sealing and cutting integrated mechanism
The clamp-type ultrasonic sealing and cutting integrated mechanism solves the problems of poor sealing and adhesion of single-layer films by combining eccentric rotation and high-frequency vibration of ultrasonic welding head with cylinder-driven sealing knife, thus achieving a highly efficient sealing and cutting effect.
Patent Information
- Application Number
- CN202520690886.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-14
AI Technical Summary
Traditional heat sealing methods cannot effectively seal single-layer films, such as non-woven fabrics and PE films, which can easily lead to poor sealing and adhesion problems.
The integrated ultrasonic sealing and cutting mechanism with clamps is adopted. The eccentric rotating shaft drives the clamping seat to move. The ultrasonic welding head generates high-frequency mechanical vibration and, together with the cylinder, pushes the sealing knife to achieve local heating and uniform pressure distribution. The pressure is adjusted with a spring to complete the sealing and cutting operation.
It enables uniform heat sealing and cutting of single-layer films, solving problems such as poor sealing and adhesion, and ensuring sealing and cutting quality.
Smart Images

Figure CN223949535U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of seal cutting and specifically relates to a clamping plate type ultrasonic seal cutting integrated mechanism. BACKGROUND
[0002] Sealing refers to sealing operation perpendicular to the conveying direction of the packaging material when the packaging equipment processes the packaging material, and the transverse edges of the packaging material are fused or bonded with each other through heating or other methods, so that the packaging contents are enclosed in a certain space to form a complete packaging unit.
[0003] The traditional heat sealing form is external heating and internal heat sealing. The heat sealing is suitable for multi-layer composite films, and the melting point of the outer layer is higher than that of the inner layer. For single-layer films (such as non-woven fabrics, PE films, etc.), there is no temperature difference between the inner and outer layers, and good heat sealing cannot be achieved, which easily leads to poor sealing and adhesion problems. UTILITY MODEL CONTENT
[0004] Therefore, the utility model provides a clamping plate type ultrasonic seal cutting integrated mechanism, which aims at solving the problems in the prior art.
[0005] To achieve the above purpose, the utility model realizes the following technical scheme: a clamping plate type ultrasonic seal cutting integrated mechanism, comprising:
[0006] A fixed plate is provided with two first rotating shafts parallel thereto, and the two first rotating shafts rotate in opposite directions under the driving of a driving assembly;
[0007] Two second rotating shafts are eccentrically fixed at the first ends of the two first rotating shafts, and a first clamping plate seat and a second clamping plate seat are fixed on the two second rotating shafts, respectively;
[0008] An ultrasonic transducer is fixed on the first clamping plate seat, and an ultrasonic welding head is fixed on the ultrasonic transducer;
[0009] A cylinder is fixed on the second clamping plate seat, and a mounting seat is fixed at the piston rod end of the cylinder, a seal cutting assembly is arranged on the mounting seat, and the seal cutting assembly is arranged opposite to the ultrasonic welding head.
[0010] Further improvement of the utility model lies in that the seal cutting assembly is a first sealing knife, and the first sealing knife is fixed on the mounting seat.
[0011] Further improvement of the utility model lies in that a first groove is arranged on the side of the mounting seat facing the ultrasonic welding head, a second groove is arranged on the side of the ultrasonic welding head facing the mounting seat, the first groove and the second groove are arranged opposite to each other, the seal cutting assembly comprises a second sealing knife, the second sealing knife is slidably arranged in the first groove, and a spring is fixed between the side of the second sealing knife away from the ultrasonic welding head and one end of the first groove.
[0012] The further improvement of the utility model lies in that the driving assembly comprises:
[0013] The first driving source is fixed with the first synchronous wheel;
[0014] Two second synchronous wheels are respectively fixed at the second ends of the two first rotating shafts;
[0015] The first end of the synchronous belt is meshed with the first synchronous wheel, the second end is meshed with one of the second synchronous wheels, and the outer surface of the lower half of the synchronous belt is meshed with the other second synchronous wheel.
[0016] The further improvement of the utility model lies in that the synchronous belt between the two second synchronous wheels is internally rotatably provided with a tension pulley, and the tension pulley is meshed with the inner surface of the lower half of the synchronous belt.
[0017] The further improvement of the utility model lies in that the driving assembly further comprises:
[0018] Two third rotating shafts are respectively arranged on the fixed plates below the two first rotating shafts and are respectively parallel to the two third rotating shafts, the two first rotating shafts drive the two third rotating shafts through the connecting assembly to rotate synchronously with the two first rotating shafts;
[0019] Two fourth rotating shafts are respectively fixed eccentrically at the first ends of the two third rotating shafts, and the two fourth rotating shafts are respectively fixedly connected with the first clamping plate seat and the second clamping plate seat.
[0020] The further improvement of the utility model lies in that the connecting assembly comprises:
[0021] Two first gears are respectively fixed at the second ends of the two first rotating shafts;
[0022] Two second gears are respectively fixed at the second ends of the two third rotating shafts;
[0023] Two third gears are respectively rotatably arranged on the fixed plates, and the third gears are respectively meshed with the corresponding first gears and second gears.
[0024] The further improvement of the utility model lies in that the first driving source is a motor.
[0025] The further improvement of the utility model lies in that the first sealing knife is connected with the mounting seat through bolts.
[0026] Due to the adoption of the above technical scheme, the utility model has the following technical progress:
[0027] The utility model provides a kind of clamping plate type ultrasonic wave seal cuts integrated mechanism, two first rotary shafts are driven to rotate in opposite directions under the driving of driving assembly, and the first clamping plate seat and second clamping plate seat are moved by the eccentricity of two second rotary shafts.The design can make ultrasonic welding head and first seal knife more stable and accurate when working, and can more evenly transmit pressure to the material to be sealed.Furthermore, the ultrasonic transducer converts electrical energy into high-frequency mechanical vibration and transmits it to the ultrasonic welding head, so that the welding head can generate local high temperature during sealing, and the pressure applied by the first seal knife driven by the cylinder, which can not only make the material better fusion, but also ensure that the pressure is more evenly distributed in the heat-sealing area, compared with the prior art, which can effectively solve the problem of poor sealing and sticking.
[0028] The utility model provides a kind of clamping plate type ultrasonic wave seal cuts integrated mechanism, driving assembly starts work, drives two first rotary shafts to rotate in opposite directions, and the rotation of first rotary shaft will drive second rotary shaft to do eccentric motion, and then make first clamping plate seat and second clamping plate seat fixed on second rotary shaft also move, so that ultrasonic welding head and second seal knife gradually approach the material to be packaged, in the process of first clamping plate seat movement, ultrasonic transducer fixed thereon starts work, converts electrical energy into high-frequency mechanical vibration, and transmits it to the material to be packaged through ultrasonic welding head, so that the molecules of the material to be packaged generate intense friction, thereby achieving the effect of local heating and softening, while the ultrasonic welding head processes the packaging material, the piston rod of the cylinder starts to extend under the action of the control system, drives the mounting seat and second seal knife in mounting seat first groove to move, and the second seal knife approaches the direction of ultrasonic welding head under the pushing of the cylinder, when the second seal knife contacts the packaging material, the spring starts to work.If the packaging material is thick or has high hardness, the spring will be further compressed under the pressure of second seal knife, so that second seal knife can exert greater pressure to ensure that the packaging material can be cut off smoothly;if the packaging material is thin or soft, the spring will be appropriately stretched to reduce the pressure of second seal knife on the packaging material to prevent excessive extrusion or damage to the packaging material.Under the buffering and fine adjustment of the spring, second seal knife cooperates with ultrasonic welding head to complete the sealing and cutting operation of the packaging material, compared with the prior art, which can effectively solve the problem of poor sealing and sticking. BRIEF DESCRIPTION OF DRAWINGS
[0029] In order to more clearly illustrate the technical solutions in the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description, and obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating creative labor.
[0030] Figure 1The utility model discloses an integral structure schematic diagram of the seal cutting integrated mechanism.
[0031] Figure 2 The utility model discloses a drive assembly schematic diagram of the seal cutting integrated mechanism.
[0032] Figure 3 The utility model discloses a fourth rotation axis schematic diagram of the seal cutting integrated mechanism.
[0033] Figure 4 The utility model discloses a first seal cutter schematic diagram of the seal cutting integrated mechanism.
[0034] Figure 5 The utility model discloses a first seal edge schematic diagram of the seal cutting integrated mechanism using the first seal cutter to seal and cut out the product.
[0035] Figure 6 The utility model discloses a second seal cutter integral structure schematic diagram of the seal cutting integrated mechanism.
[0036] Figure 7 The utility model discloses a second seal cutter schematic diagram of the seal cutting integrated mechanism.
[0037] Figure 8 The utility model discloses a second seal edge schematic diagram of the seal cutting integrated mechanism using the second seal cutter to seal and cut out the product.
[0038] Mark explanation:
[0039] 10-fixed plate, 11-first rotation axis, 12-second rotation axis, 13-first clamping plate seat, 131-ultrasonic transducer, 132-ultrasonic welding head, 14-second clamping plate seat, 141-cylinder, 142-mounting seat, 143-first seal cutter, 144-second seal cutter, 145-first seal edge, 146-second seal edge, 15-first recess, 16-spring, 17-second recess, 20-drive assembly, 21-first drive source, 211-first synchronous wheel, 22-second synchronous wheel, 23-synchronous belt, 24-tension pulley, 25-third rotation axis, 26-fourth rotation axis, 30-connecting assembly, 31-first gear, 32-second gear, 33-third gear. Specific implementation
[0040] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, specific details, such as particular system structures, techniques and the like, are given in the following description to give a thorough understanding of the embodiments of the utility model, but the skilled in the art should understand that the utility model can also be implemented in other embodiments without the specific details. In other cases, detailed descriptions of well-known systems, devices, circuits and methods are omitted to avoid unnecessary details that hinder the description of the utility model.
[0041] The utility model discloses a clamping plate type ultrasonic wave sealing and cutting integrated mechanism mainly includes the following parts or components: Figure 1 The utility model discloses a clamping plate type ultrasonic wave sealing and cutting integrated mechanism mainly includes the following parts or components: Figure 8 It can be known that a clamping plate type ultrasonic wave sealing and cutting integrated mechanism mainly includes the following parts or components: a fixed plate 10, a second rotating shaft 12, an ultrasonic wave transducer 131 and a gas cylinder 141.
[0042] In embodiment 1, two first rotating shafts 11 are arranged in parallel on the fixed plate 10, and the two first rotating shafts 11 rotate in opposite directions under the drive of the drive assembly 20; the first ends of two second rotating shafts 12 are eccentrically fixed on the first ends of the two first rotating shafts 11, and the two second rotating shafts 12 are respectively fixed with a first clamping plate seat 13 and a second clamping plate seat 14; the ultrasonic wave transducer 131 is fixed on the first clamping plate seat 13, and the ultrasonic wave transducer 131 is fixed with an ultrasonic wave welding head 132; the gas cylinder 141 is fixed on the second clamping plate seat 14, and the piston rod end of the gas cylinder 141 is fixed with a mounting seat 142, the mounting seat 142 is provided with a sealing and cutting assembly, and the sealing and cutting assembly is arranged opposite to the ultrasonic wave welding head 132. The sealing and cutting assembly is a first sealing cutter 143, and the first sealing cutter 143 is fixed on the mounting seat 142.
[0043] The two first rotating shafts 11 rotate in opposite directions under the drive of the drive assembly 20, and the two second rotating shafts 12 fixed by eccentricity drive the first clamping plate seat 13 and the second clamping plate seat 14 to move. This design can make the movement of the ultrasonic wave welding head 132 and the first sealing cutter 143 more stable and accurate when working, and can more uniformly transmit the pressure to the material to be sealed. Moreover, the ultrasonic wave transducer 131 converts electrical energy into high-frequency mechanical vibration and transmits it to the ultrasonic wave welding head 132, so that the welding head can generate local high temperature when sealing, and the pressure applied by the gas cylinder 141 pushing the first sealing cutter 143 can not only make the material better fused, but also ensure that the pressure is more uniformly distributed in the heat sealing area, which can effectively solve the problems of poor sealing and adhesion.
[0044] Specifically, the first sealing cutter 143 is connected with the mounting seat 142 through bolts.
[0045] Specifically, the first sealing edge 145 of the product sealed and cut by the sealing and cutting assembly is 0.3mm-1mm, so the first sealing edge 145 of the product sealed and cut by the sealing and cutting assembly is extremely small.
[0046] In the embodiment 2, two first rotating shafts 11 are arranged in parallel on the fixed plate 10, and the two first rotating shafts 11 rotate in opposite directions under the driving of the driving assembly 20; the first ends of two second rotating shafts 12 are eccentrically fixed to the first ends of the two first rotating shafts 11 respectively, and the first clamping plate seat 13 and the second clamping plate seat 14 are fixed to the two second rotating shafts 12 respectively; the ultrasonic transducer 131 is fixed to the first clamping plate seat 13, and the ultrasonic welding head 132 is fixed to the ultrasonic transducer 131; the air cylinder 141 is fixed to the second clamping plate seat 14, and the piston rod end of the air cylinder 141 is fixed with the mounting seat 142, the sealing and cutting assembly is arranged on the mounting seat 142, and the sealing and cutting assembly is arranged opposite to the ultrasonic welding head 132. The side of the mounting seat 142 facing the ultrasonic welding head 132 is provided with the first recess 15, the side of the ultrasonic welding head 132 facing the mounting seat 142 is provided with the second recess 17, the first recess 15 and the second recess 17 are arranged opposite to each other, and the sealing and cutting assembly comprises the second sealing knife 144 which is slidably arranged in the first recess 15, and the spring 16 is fixed between the side of the second sealing knife 144 away from the ultrasonic welding head 132 and one end of the first recess 15.
[0047] The driving assembly 20 starts to work, drives the two first rotating shafts 11 to rotate in opposite directions, the rotation of the first rotating shaft 11 drives the second rotating shaft 12 to make eccentric motion, and then the first clamping plate seat 13 and the second clamping plate seat 14 fixed on the second rotating shaft 12 also move, so that the ultrasonic welding head 132 and the second sealing knife 144 gradually approach the material to be packaged. In the process of movement of the first clamping plate seat 13, the ultrasonic transducer 131 fixed thereon starts to work, converts electrical energy into high-frequency mechanical vibration, and transmits it to the material to be packaged through the ultrasonic welding head 132, so that the molecules of the material to be packaged produce intense friction, thereby achieving the effect of local heating and softening. At the same time that the ultrasonic welding head 132 processes the packaging material, the piston rod of the air cylinder 141 starts to extend under the action of the control system, drives the mounting seat 142 and the second sealing knife 144 in the first recess 15 of the mounting seat 142 to move, and the side of the mounting seat 142 facing the ultrasonic welding head 132 cooperates with the ultrasonic welding head 132 to perform the second edge sealing 146 of the product, and the upper end and the lower end of the ultrasonic welding head 132 are flush with the upper end and the lower end of the side of the mounting seat 142 facing the ultrasonic welding head 132. At the same time, the second sealing knife 144 is pushed by the air cylinder 141 and approaches the ultrasonic welding head 132. When the second sealing knife 144 contacts the packaging material, the spring 16 starts to work. If the packaging material is thick or has high hardness, the spring 16 will be further compressed under the pressure of the second sealing knife 144, so that the second sealing knife 144 can exert greater pressure to ensure that the packaging material can be cut off smoothly; if the packaging material is thin or soft, the spring 16 will be stretched appropriately to reduce the pressure of the second sealing knife 144 on the packaging material, preventing excessive extrusion or damage to the packaging material. Under the buffering and fine adjustment of the spring 16, the second sealing knife 144 cooperates with the ultrasonic welding head 132 to complete the sealing and cutting operation of the packaging material, which can effectively solve the problems of poor sealing and adhesion.
[0048] Specifically, the second edge sealing 146 of the product sealed and cut by the sealing and cutting assembly is 0.5mm-3mm. Therefore, the second edge sealing 146 of the product sealed and cut by the sealing and cutting assembly has an edge.
[0049] Among them, the side of the first sealing knife 143 or the second sealing knife 144 facing the ultrasonic welding head 132 is shaped as high in the middle and low on both sides. During the sealing and cutting operation, the first sealing knife 143 or the second sealing knife 144 needs to complete both sealing and cutting. The higher middle can bear higher pressure to some extent to share the overall pressure, so that the periphery of the first sealing knife 143 or the second sealing knife 144 can focus more on the cutting action on the basis of ensuring sealing, reducing the problems of incoherent cutting or incomplete sealing caused by uneven pressure, and realizing more accurate sealing and cutting integrated operation.
[0050] As an embodiment, the sealing and cutting assembly is combined with the drawings of the specification Figure 1 , the drawings of the specification Figure 2 , the drawings of the specificationFigure 5 It can be known that the driving assembly 20 comprises a first driving source 21, a first synchronous wheel 211 fixedly arranged on the first driving source 21, two second synchronous wheels 22 respectively fixedly arranged on second ends of the two first rotating shafts 11, and a synchronous belt 23, a first end of which is in meshing connection with the first synchronous wheel 211, and a second end of which is in meshing connection with one of the two second synchronous wheels 22, and an outer surface of a lower half of the synchronous belt 23 is in meshing connection with the other second synchronous wheel 22.
[0051] The first driving source 21 drives the first synchronous wheel 211 to rotate synchronously, and under the driving of the first synchronous wheel 211, the synchronous belt 23 moves along a predetermined track. Due to the special connection mode of the synchronous belt 23 with the two second synchronous wheels 22, the synchronous belt 23 transmits power to the two second synchronous wheels 22 in the moving process. At this time, the two second synchronous wheels 22 rotate in opposite directions, and the two first rotating shafts 11 are driven by the two second synchronous wheels 22 to rotate in opposite directions.
[0052] Specifically, the first driving source 21 is a motor.
[0053] Specifically, a tension pulley 24 is rotatably arranged in the synchronous belt 23 between the two second synchronous wheels 22, and the tension pulley 24 is in meshing connection with an inner surface of the lower half of the synchronous belt 23.
[0054] In the embodiment, the accompanying drawings are combined with the description to further illustrate the present application. Figure 2 to the accompanying drawings Figure 3 It can be known that the driving assembly 20 further comprises two third rotating shafts 25, which are arranged on the fixed plate 10 below the two first rotating shafts 11 respectively and are parallel to the two third rotating shafts 25 respectively, the two first rotating shafts 11 drive the two third rotating shafts 25 to rotate synchronously with the two first rotating shafts 11 through a connecting assembly 30, first ends of two fourth rotating shafts 26 are eccentrically fixedly arranged on first ends of the two third rotating shafts 25 respectively, and the two fourth rotating shafts 26 are fixedly connected with the first clamping plate seat 13 and the second clamping plate seat 14 respectively. The connecting assembly 30 comprises two first gears 31 fixedly arranged on second ends of the two first rotating shafts 11 respectively, two second gears 32 fixedly arranged on second ends of the two third rotating shafts 25 respectively, and two third gears 33 rotatably arranged on the fixed plate 10, the third gears 33 are in meshing connection with the corresponding first gears 31 and second gears 32 respectively.
[0055] When the first driving source 21 starts, the first synchronous wheel 211 is driven to rotate, and then the two first rotating shafts 11 start to rotate, the first gear 31 on the first rotating shaft 11 rotates. Since the first gear 31 is engaged with the third gear 33, the rotation of the first gear 31 drives the third gear 33 to rotate. Because the third gear 33 is engaged with the second gear 32 at the same time, the rotation of the third gear 33 drives the second gear 32 to rotate, and the second gear 32 is fixedly arranged on the third rotating shaft 25, so that the synchronous rotation of the two third rotating shafts 25 and the two first rotating shafts 11 is realized. The gear engagement transmission mode ensures the stability and accuracy of power transmission, and can ensure that the rotation speed and direction of the two third rotating shafts 25 are highly consistent with the first rotating shaft 11. With the rotation of the third rotating shaft 25, the fourth rotating shaft 26 connected with the third rotating shaft 25 eccentrically moves in a unique trajectory. The movement trajectory of the second rotating shaft 12 corresponding to the fourth rotating shaft 26 is consistent, and since the fourth rotating shaft 26 is also connected with the first clamping plate seat 13 and the second clamping plate seat 14, the movement will drive the first clamping plate seat 13 and the second clamping plate seat 14 to move correspondingly together with the second rotating shaft 12.
[0056] It should be noted that in this patent application, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes elements inherent to the process, method, article or equipment, and does not exclude other identical elements in the process, method, article or equipment without further limitation.
[0057] The above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application, and should be included in the protection scope of the present application.
Claims
1. A clamp-type ultrasonic sealing and cutting integrated mechanism, characterized in that, The utility model relates to a kind of clamping plate type ultrasonic wave sealing and cutting integrated mechanism, including: Fixed plate, two first rotating shafts are arranged in parallel on it, two first rotating shafts are driven under the drive of drive assembly and carry out opposite direction rotation; Two second rotating shafts, first end is respectively eccentric and fixed in the first end of two first rotating shafts, first clamping plate seat and second clamping plate seat are respectively fixed on two second rotating shafts; Ultrasonic transducer, fixed on the first clamping plate seat, ultrasonic welding head is fixed on the ultrasonic transducer; Cylinder, fixed on the second clamping plate seat, its piston rod end is fixed with mounting seat, sealing and cutting assembly is arranged on the mounting seat, and sealing and cutting assembly is oppositely arranged with the ultrasonic welding head.
2. The clamping plate type ultrasonic wave sealing and cutting integrated mechanism according to claim 1, wherein: The sealing and cutting assembly is a first sealing knife, and the first sealing knife is fixed on the mounting seat.
3. The clamping plate type ultrasonic wave sealing and cutting integrated mechanism according to claim 1, wherein: The side of the mounting seat towards the ultrasonic welding head is provided with a first groove, the side of the ultrasonic welding head towards the mounting seat is provided with a second groove, the first groove and the second groove are oppositely arranged, the sealing and cutting assembly includes a second sealing knife, the second sealing knife is slidably arranged in the first groove, and a spring is fixed between the side of the second sealing knife away from the ultrasonic welding head and one end of the first groove.
4. The clamping plate type ultrasonic wave sealing and cutting integrated mechanism according to claim 1, wherein: The drive assembly includes: A first drive source, a first synchronous wheel is fixed on the first drive source; Two second synchronous wheels, respectively fixed on the second ends of the two first rotating shafts; A synchronous belt, the first end of the synchronous belt is meshingly connected with the first synchronous wheel, the second end of the synchronous belt is meshingly connected with one of the second synchronous wheels, and the outer surface of the lower half of the synchronous belt is meshingly connected with the other second synchronous wheel.
5. The clamping plate type ultrasonic wave sealing and cutting integrated mechanism according to claim 4, wherein: A tension pulley is rotatably arranged in the synchronous belt between the two second synchronous wheels, and the tension pulley is meshingly connected with the inner surface of the lower half of the synchronous belt.
6. The clamping plate type ultrasonic wave sealing and cutting integrated mechanism according to claim 4, wherein: The drive assembly further includes: Two third rotating shafts, respectively arranged on the fixed plate below the two first rotating shafts and parallel to the two third rotating shafts, the two first rotating shafts drive the two third rotating shafts to rotate synchronously with the two first rotating shafts through a connecting assembly; Two fourth rotating shafts, first end is respectively eccentric and fixed in the first end of the two third rotating shafts, and the two fourth rotating shafts are fixedly connected with the first clamping plate seat and the second clamping plate seat.
7. The clamping plate type ultrasonic wave sealing and cutting integrated mechanism according to claim 6, wherein: The connecting assembly includes: Two first gears, respectively fixed on the second ends of the two first rotating shafts; Two second gears, respectively fixed on the second ends of the two third rotating shafts; Two third gears, respectively rotatably arranged on the fixed plate, and the third gears are meshingly connected with the corresponding first gears and second gears.
8. The clamping plate type ultrasonic wave sealing and cutting integrated mechanism according to claim 4, wherein: The first drive source is a motor.
9. The integrated sealing and cutting mechanism of claim 2, wherein the first sealing blade is connected to the mounting base by a bolt.