Cotton bale bagging, sealing and welding device and bagging and sealing system
By designing a cotton bag sealing welding device including a sealing frame, a sealing assembly and a welding device, the problems of difficulty in realizing automatic sealing of existing equipment, difficulty in workers' operation and fire hazards are solved, and efficient and automated cotton bag sealing is achieved.
Patent Information
- Application Number
- CN202422274831.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-09-18
AI Technical Summary
The existing cotton bag sealing equipment has problems such as difficulty in realizing automatic sealing, difficulty in operating by workers, large fire hazards, and complex equipment structure.
A cotton bag-covered and welding device is designed, including a sealing frame, a left sealing assembly, a right sealing assembly, a lower sealing assembly, an upper sealing assembly and a primary welding device, and automatic sealing is achieved through collaborative movement and hot melt welding.
Efficient and automated cotton bag sealing is achieved, reducing manual operation difficulties, reducing fire hazards, and simplifying the equipment structure.
Smart Images

Figure CN222988525U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a welding device for sealing the cotton bale bag after the cotton bale is bagged, and also relates to a bagging and sealing system equipped with the welding device. Background Art
[0002] After the cotton bales are packed by the baling machine on the cotton processing production line, the cotton bales need to be bagged. There are mainly two types of cotton bale bags used, one is a cotton cloth bag, and the other is a plastic bag. The appearance of the plastic bag is mainly used to realize the automation of cotton bale bagging. However, the cotton cloth bag is a traditional and widely used bag. At the same time, in order to realize the automatic bagging of the cotton cloth bag, at present, some cotton cloth bags are provided with hot melt films at predetermined positions at the bag mouth to facilitate the picking up of the cotton cloth bags. However, the sealing of such cotton cloth bags still currently adopts the method of manual sewing for sealing. Generally speaking, considering that fewer and fewer workers can be invested in the cotton processing production line, the automation of the cotton processing production process line is an inevitable trend.
[0003] Although the plastic bag appears for automatic bagging, there is still a lack of automatic sealing equipment for plastic bags at present, and manual sealing is still the mainstream. It should be known that the cotton bale is relatively large (140×70×53, unit: cm), and its own weight (227±10 kg) is also relatively large. Sealing needs to be realized at the bag mouth of a 70×53 (unit: cm) cotton bale bag corresponding to the cotton bale. And at this time, the cotton bale is located on the bagging machine platform, and the width of the bagging machine platform is usually greater than 100 cm. It is relatively difficult for workers to sew the bag mouth on site by sewing.
[0004] At present, there is another sealing method for plastic bags after the cotton bales are bagged, that is, the bagged cotton bales are transported to the welding station. At the welding station, first, the workers stack the bag mouths of the plastic bags in a predetermined manner, and then the workers hold a heating device similar to an iron to iron the stacked bag mouths to melt and weld the stacked bag mouth parts. As mentioned above, for the cotton bale, it is usually transported in the production line with the large surface facing down to ensure the stability during transportation. The so-called large surface is the 140×70 (unit: cm) cotton bale surface, which is equivalent to the cotton bale lying horizontally. It is relatively difficult for workers to iron the bag mouth. At the same time, the heating device is generally continuously in the heating state. In order to avoid inducing a fire due to this, there are strict requirements for the storage position of the heating device on site, but non-standard operations still cannot be avoided. Especially now that young people are not willing to work on the front line, and most of the workers on site are relatively older, and lack of energy leads to the heating device not being turned off or placed inappropriately, and there may be some potential fire hazards due to this.
[0005] In some implementations, two cotton bale wrapper bags are substantially used to seal the bale. Specifically, one cotton bale wrapper bag is first put on the cotton bale from one end of the bale, and then another cotton bale wrapper bag is put on the cotton bale from the other end of the bale. The two cotton bale wrapper bags are relatively shorter than the traditional cotton bale wrapper bags. The two cotton bale wrapper bags overlap in the middle of the cotton bale. Finally, an automatic bundling device is used to bundle at the overlapping position in the middle to complete the sealing. This method completely overcomes the problems of inconvenient operation and low efficiency caused by manual sewing. However, if the first cotton bale wrapper bag is not fixed, it is very easy for the first cotton bale wrapper bag to come off when the second cotton bale wrapper bag is put on. Therefore, in order to ensure the position locking of the first cotton bale wrapper bag, it is necessary to tie a bundle around the mouth of the cotton bale wrapper bag after the first cotton bale wrapper bag is put on, and then the second cotton bale wrapper bag can be put on. During this process, the cotton bale needs to move back and forth multiple times at three workstations in two directions (the directions of the two bagging operations are different), resulting in low efficiency. At the same time, due to the existence of multiple workstations, the configured bagging and sealing system structure is too complex.
[0006] It should be known that after the cotton bale is put into the cotton bale wrapper bag, there will be a certain margin at the mouth of the cotton bale wrapper bag for sealing. In view of this, in a relatively newer technology, a pair of pneumatic fingers (a standard actuator, also known as a pneumatic gripper) are first used. When the cotton bale after bagging is pushed in place, one pneumatic finger on each side of the current cotton bale bag mouth clamps the bag mouth from the corresponding side and pulls it to both sides. At this time, the flexible bag mouth will be flattened and the upper and lower bag surfaces will be attached. Furthermore, a device with upper and lower clamping plates is provided to clamp the flattened bag mouth from above and below, and then a heater is used to weld the clamped bag mouth together. At this time, the bag mouth forms a sheet-like structure substantially parallel to the upper and lower bag surfaces, and then the bag mouth is folded down or up to fit the bag mouth surface, and then secondary welding is performed, so that the sheet-like structure is tightly welded to the bag surface of the cotton bale wrapper bag at this end. This method can achieve relatively comprehensive automatic sealing. However, it is relatively difficult to attach the upper and lower bag surfaces at the bag mouth by pulling, because the shapes of the upper and lower bag surfaces at the bag mouth are difficult to control in the pulling state, and the welding length is greater than the width of the bag mouth, resulting in a large amount of welding and difficult configuration of the welding equipment. At the same time, a relatively long bag corner will be generated after pulling, which not only has poor aesthetics but also affects the storage and transportation of the cotton bale. In addition, although the bag mouth can be tightened based on clamping, when the sheet-like structure is folded up or down, it is easy to wrinkle the bag surface on the folding direction side, resulting in difficult control of the welding area of the folded sheet-like structure and affecting the sealing quality. Summary of the Utility Model
[0007] The purpose of the present utility model is to provide a cotton bale wrapper bag sealing and welding device with relatively good sealing quality, and the present utility model also provides a bagging and sealing system equipped with the cotton bale wrapper bag sealing and welding device.
[0008] According to the first aspect of the embodiments of the present invention, a cotton bale bag sealing and welding device is provided, including:
[0009] A sealing frame having a platform for supporting the cotton bale after bagging, and the platform has an upper and lower channel corresponding to the rear side of the currently placed cotton bale;
[0010] A left sealing assembly and a right sealing assembly located on the left and right sides of the platform to push and close the bag mouth from the left and right sides of the cotton bale bag, so that the left and right bag surfaces at the bag mouth are folded onto the rear end surface of the cotton bale;
[0011] A lower sealing assembly located below the platform, and the lower sealing component of the lower sealing assembly penetrates upward from the upper and lower channels to push and close the lower bag surface at the bag mouth upward to the rear end surface of the cotton bale;
[0012] An upper sealing assembly located above the platform to push and close the upper bag surface at the bag mouth downward to the rear end surface of the cotton bale; and
[0013] A primary welding device having a primary welding component, a first driving device for driving the primary welding component to run in the front and rear directions of the cotton bale, and a second driving device for driving the primary welding component to transform between a first position and a second position; wherein the first position is the position where the primary welding component is located behind the rear bag surface of the cotton bale, and the second position is the position where it disengages from the traveling path of the cotton bale; when the primary welding device is in the first position, the primary welding component is for the folded overlapping area remaining after the folded bag surfaces of each sealing assembly are in place.
[0014] Optionally, the sealing components provided by the left sealing assembly and the right sealing assembly are sealing plates, the sealing plates are symmetric structures up and down, and one end opposite between the corresponding two sealing plates is a tapered leading part.
[0015] Optionally, the top of the tapered leading part is an arc head.
[0016] Optionally, the component for pushing the sealing plate to move in the left and right directions is a linear driving mechanism or a linear driving component.
[0017] Optionally, the linear driving mechanism is selected from a synchronous belt mechanism, a transmission chain mechanism, a lead screw and nut mechanism or a rack and pinion mechanism;
[0018] The linear driving component is selected from a cylinder, a hydraulic cylinder, a linear motor or an electric push rod.
[0019] Optionally, the frame of the linear driving mechanism or the seat part of the linear driving component is hinged to the corresponding side of the sealing frame through a rotating shaft perpendicular to the platform;
[0020] Provide a swing drive device for driving the swing of the rack or seat part, so as to swing the corresponding linear drive mechanism or linear drive part out of the bale pushing path.
[0021] Optionally, the swing drive device is a swing cylinder, a swing motor, a rack and pinion mechanism or a triangular mechanism.
[0022] Optionally, alignment frames are provided on both sides of the bale conveying path, so as to guide the pushed bales to the middle in the left - right direction of the platform.
[0023] Optionally, the alignment frame includes a guiding plate on the bale inlet side and a main guiding plate connected to the guiding plate;
[0024] A conical inlet is defined between the guiding plates corresponding to the left and right sides;
[0025] The two main guiding plates corresponding to the left and right sides are parallel to each other.
[0026] Optionally, a reinforcing plate is provided on the back side of the guiding plate;
[0027] This back side is the side opposite to the working surface of the guiding plate.
[0028] Optionally, the upper and lower plate edges of the guiding plate have flanges turned up towards the back side.
[0029] Optionally, the left sealing assembly and the right sealing assembly are installed on the alignment frame.
[0030] Optionally, the primary welding device is installed on the upper sealing assembly.
[0031] Optionally, the upper sealing assembly is provided with a bag - lifting device, which is used to lift the upper surface of the bag mouth of the bale sleeve bag before the left, right and lower sealing assemblies are in place.
[0032] Optionally, the lower part of the upper sealing plate equipped on the upper sealing assembly is a U - shaped plate body or a sealing plate body with a rectangular opening;
[0033] Correspondingly, the primary welding assembly is located at the U - shaped opening or the rectangular opening to weld the position determined by the folded overlapping area through the U - shaped opening or the rectangular opening.
[0034] Optionally, it further includes a secondary welding device located on the sealing machine frame to perform secondary welding on the folded overlapping area after the corresponding sealing assembly is reset; the secondary welding device includes:
[0035] A secondary welding assembly;
[0036] A third drive device to drive the secondary welding component in the secondary welding assembly to run in the front - back direction of the bale;
[0037] A fourth driving device is configured to drive the secondary welding assembly to switch between a third position and a fourth position. When the secondary welding assembly is in the third position, the secondary welding component is aligned with the folded overlapping area. When the secondary welding assembly is in the fourth position, the secondary welding assembly disengages from the cotton bale running path.
[0038] Optionally, the welding area of the secondary welding component is greater than or equal to the welding area of the primary welding component.
[0039] If they are equal, the position of the secondary welding is offset from the position of the primary welding.
[0040] If it is greater, the position of the secondary welding is offset from the position of the primary welding or covers the position of the primary welding.
[0041] Optionally, a limiting device for pressing the folded bag surface or blocking the folded bag surface when the third driving device retracts is provided on the secondary support of the secondary welding device.
[0042] Optionally, the secondary welding plate of the secondary welding component has multiple pieces, and there are spacing gaps between the multiple pieces.
[0043] The limiting device is a fixed rod arranged on the running path before and after the spacing gap.
[0044] Optionally, the secondary welding device is located on the front side of the sealing machine frame, and the primary welding device is located on the rear side of the sealing machine frame.
[0045] According to the second aspect of the embodiments of the present invention, a bag covering and sealing system is provided, which is equipped with the cotton bale bag covering and sealing and welding device described in the first aspect of the embodiments of the present invention.
[0046] It should be known that whether it is a cotton cloth bag or a plastic bag, after covering the cotton bale, a part of the bag body will be left to meet the sealing of the cotton bale bag. For the cotton cloth bag, the cotton cloth bag with a hot melt film at the bag mouth is applicable to the embodiments of the present invention to adapt to hot melt welding. Since the length of the remaining bag mouth part is not long, when it is moved to the welding platform after covering the bag, due to the tension of the bag mouth part itself and the supporting effect of the cotton bale, the left and right side bag surfaces at the bag mouth are basically in an open state, the lower bag surface is basically attached to the platform, and there will be partial collapse of the upper bag surface, especially for the cotton cloth bag, and the plastic bag has less phenomenon of bag surface collapse.
[0047] Furthermore, the cotton bale bag mouth sealing and welding device according to the embodiment of the present utility model includes a left sealing assembly and a right sealing assembly, which move synchronously approximately. At the bag mouth, they push the left bag surface and the right bag surface inward and toward each other from the left and right sides until they fit against the rear end face of the cotton bale. At this time, affected by the folding of the left and right bag surfaces, even without the assistance of other devices, the phenomenon of the upper bag surface sagging will be weakened. At this time, the upper bag surface can be folded, or the lower bag surface can be folded first, and then the upper bag surface can be folded. Finally, the four bag surfaces at the bag mouth are folded inward onto the rear end face of the cotton bale. Under the condition of being pressed by the four sealing assemblies, the folded state is maintained well, and at this time, a folded overlapping area will be generated, that is, there is a partial overlap of the four bag surfaces. Based on the concept of the present utility model, when all the sealing assemblies are pressed on the rear end face of the cotton bale, a part of the folded overlapping area that is not pressed should be reserved for a welding operation, so that at least the reserved part of the folded overlapping area forms a hot melt welded body. Based on the foregoing description, through the coordinated cooperation of one sealing assembly in each of the four directions, the four bag surfaces at the bag mouth can be better folded onto the rear end face of the cotton bale, and then hot melt welding can be performed. The overall quality is controllable, and it is not easy to cause sealing defects or failures due to this. And because such folding methods can better fold the bag surfaces of the bag mouth onto the rear end face of the bread, the appearance quality is better, and there are no remaining bag corners, which is more suitable for storage and transportation. BRIEF DESCRIPTION OF THE DRAWINGS
[0048] Figure 1 It is a schematic structural diagram of the cotton bale bag mouth sealing and welding device in an embodiment.
[0049] Figure 2 It is a schematic structural diagram of the lower sealing assembly in an embodiment.
[0050] Figure 3 It is a schematic structural diagram of the lower sealing plate in an embodiment.
[0051] Figure 4 It is an exploded view of the cotton bale bag mouth sealing and welding device in an embodiment.
[0052] Figure 5 It is a schematic structural diagram of the right alignment frame in an embodiment.
[0053] Figure 6 It is a schematic structural diagram of the right sealing assembly in an embodiment.
[0054] Figure 7 It is a schematic structural diagram of the left sealing assembly in an embodiment.
[0055] Figure 8 It is a schematic structural diagram of the lifting assembly equipped with the primary welding assembly in an embodiment.
[0056] Figure 9 It is a schematic structural diagram of the primary welding assembly in an embodiment.
[0057] Figure 10 Schematic diagram of the secondary welding assembly structure in an embodiment.
[0058] Figure 11 Schematic diagram of the secondary heating welding plate module structure in an embodiment.
[0059] In the figure: 1. Lower sealing assembly, 2. Left sealing assembly, 3. Right alignment frame, 4. Primary welding component, 5. Upper sealing assembly, 6. Frame body, 7. Left sealing assembly, 8. Left alignment frame, 9. Secondary welding assembly.
[0060] 11. First seat plate, 12. First lifting cylinder, 13. First lifting guide rail, 14. Lower sealing plate, 15. Lower relief opening, 16. First fixing hole, 17. U-shaped opening, 15. Lower relief opening, 18. First connecting seat.
[0061] 21. Right sealing plate, 22. Right push rod, 23. Right sealing cylinder, 24. Right flap, 25. Right crank arm, 26. Right turning cylinder, 27. Second long hole, 28. Right fixing plate.
[0062] 31. Right inlet plate, 32. First reinforcement plate, 33. Flange, 34. Right main guide plate, 35. Second reinforcement plate, 36. First long hole, 37. Second connecting seat.
[0063] 41. Primary welding cylinder, 42. Primary mounting seat, 43. Primary welding slider, 44. Primary welding guide rail, 45. Primary welding component, 46. Primary pressing plate.
[0064] 51. Upper sealing plate, 52. Second seat plate, 53. Second lifting cylinder, 54. Second lifting guide rail, 55. Second lifting slider.
[0065] 71. Left turning cylinder, 72. Left fixing plate, 73. Left sealing cylinder, 74. Left crank arm, 75. Left shaft seat, 76. Left shaft, 77. Left push rod, 78. Left sealing plate.
[0066] 91. Lower frame body, 92. Guide rod, 93. Linear shaft extractor, 94. Secondary welding cylinder, 95. Secondary welding bracket, 96. Third lifting guide rail, 97. Third lifting cylinder, 98. Anti-retreat rod, 99. Secondary heating welding plate module.
[0067] 451. Anti-collision rubber pad, 452. Top edge suction cup, 453. Suction cup seat, 454. Sub-bracket, 455. Main bracket, 456. Primary heat insulation mounting seat, 457. Primary heating welding plate block.
[0068] 991. Module frame plate, 992. Connecting rod, 993. Connecting aluminum plate, 994. Mica heat insulation plate, 995. Heat insulation plate, 996. Heating and welding plate, 997. Spacing seam. Specific embodiments
[0069] It should be known that in the technical field of cotton bale covering, there are definite front, back, left and right directions. Generally speaking, the conveying direction of the cotton bale is the front-back direction of the cotton bale covering and sealing device. Figure 1 In it, when the secondary welding assembly 9 is welded, the guiding direction of the guide rod 92 configured, and this guiding direction is the front-back direction.
[0070] Furthermore, generally in the mechanical field, the front-back direction is also called the longitudinal direction, the long direction or the head-tail direction. And it should be known that based on this reference system, for example, the direction in which the cotton bale advances is the forward direction, and vice versa is the backward direction. Therefore, in the standard cotton bale in this field, the length × width × height is usually expressed as 140×70×53, unit: cm. In the covering and sealing system, in order to ensure the stability of conveying, for the two surfaces of the cotton bale defined by 140×70, one is the bottom surface, which is used to contact the conveying platform, roller path, etc. of the cotton bale covering and sealing system, and the other is the top surface. And the two surfaces defined by 140×53 are the two side surfaces of the cotton bale, corresponding to the left and right sides of the covering and sealing system. The remaining two surfaces are defined by 70×53, constituting the front end surface and the rear end surface of the cotton bale.
[0071] Since during covering, the bag mouth of the cotton bale covering bag sealed at the bottom is backward, the cotton bale covering bag is usually first put on a generally tubular covering device. When the cotton bale passes through the covering device, it is smoothly put into the cotton bale covering bag. At this time, the head of the cotton bale enters the cotton bale covering bag and usually contacts the bottom of the sealed cotton bale covering bag. At this time, it should be known that when the cotton bale is put in, there will still be a section of the bag body left at the rear of the cotton bale covering bag to meet the basic requirements of sealing.
[0072] After covering, it can be sealed in place, or the covered cotton bale can be conveyed to a given platform for sealing. As mentioned above, there are mainly two types of cotton bale covering bags suitable for hot melt (welding) automatic sealing at present. One is a plastic covering bag, and the other is a cotton cloth covering bag with hot melt adhesive at the bag mouth. With the development of technology, there will be more and more cotton bale covering bags suitable for hot melt automatic sealing. It can be seen from this that the plastic covering bag itself belongs to a hot melt type covering bag, and for the cotton cloth covering bag, it needs to have hot melt adhesive at its bag mouth, generally such as a glue-impregnated bag mouth or a partial glue-impregnated or glue-coated structure, but all are suitable for using hot melt welding equipment for sealing operations.
[0073] In addition, for the convenience of explanation, the reference plane is determined based on the cotton bale support table, such as the platform installed or provided by the sealing machine frame that can support the cotton bale during the tuyere. The direction perpendicular to the front-to-back direction in the reference plane is called the left-right direction. The left-to-right direction is often called the lateral direction in some applications. In addition, the left-to-right direction is also called the transverse direction or the width direction. In the embodiment of the present utility model, the reference plane is a virtual concept, which is only used to illustrate the plane determined by the front, back, left and right, rather than the specific surface of a certain component. Although the platform of the cotton bale is usually used as the design basis in this field, and although the support height of the cotton bale may change slightly when it circulates in each station, the reference plane determined based on the front, back, left and right does not affect the correct understanding of those skilled in the art.
[0074] Generally, the direction perpendicular to the reference plane is also called the height direction. The height direction does not indicate the direction of the plumb bob. In the mechanical field, relative concepts are more often used to indicate height, especially when corresponding to up and down.
[0075] It should be noted that the cotton bale bagging and sealing welding device is usually a process equipment of the bagging and sealing system. It should be known that in the field of machinery, the relevant components on the process equipment do not necessarily have a connection relationship only within the set of process equipment. Such relevant components can also be installed on any adjacent rack on the line, or adjacent process equipment, and conveying equipment used for the flow of workpieces between adjacent process equipment. Therefore, in the embodiments of the present utility model, the focus is on describing the positional relationship, and less on the connection relationship. This is because technical personnel in this field can purposefully select the connection relationship based on the positional relationship. In other words, the positional relationship is a more certain content, and the connection relationship is more of an optional content, and under the condition that the positional relationship is clear, most of them can be determined without creative labor.
[0076] Relatively speaking, the packaging process equipment is often the end process setting of the package sealing system. Although in some embodiments, there may also be coding equipment, the overall main process steps have been completed.
[0077] In the embodiment of the utility model, the cotton bag used in the cotton bag sealing and welding device is a bag with a bag opening like an ordinary bag body. The cotton bag usually has upper and lower bag surfaces, left and right bag surfaces and bottom bag surface. It is made into a rectangular tube structure during production. In the storage and transportation state, the left and right bag surfaces of the cotton bag are folded in the middle to form a sheet. After the cotton bag is put into it, the left and right bag surfaces are stretched open, and the bag opening is shown as the lower bag surface basically fitting with the bag platform (hereinafter referred to as the platform). The left and right bag surfaces are roughly presented in the form of vertical walls due to the support of the cotton bag. The upper bag surface is affected by gravity, and the edge collapse phenomenon often occurs in the middle, especially the cotton bag. Although the bag opening is made by other methods such as laminating and dipping, so that the bag opening has a certain rigidity, the upper bag surface of the cotton bag often collapses relatively obviously.
[0078] Relatively speaking, at the bag opening, the folding conditions of the left and right bag surfaces and the lower bag surface are relatively good, while the folding condition of the upper bag surface is relatively poor. Therefore, in a preferred embodiment, the left and right bag surfaces and the lower bag surface can be folded first. Among the three bag surfaces, the left and right bag surfaces can be folded synchronously, and the lower bag surface can be folded subsequently. Especially for plastic sleeve bags, the folding lines during storage and transportation are usually the upper and lower symmetric center lines on the side of the plastic sleeve bag, which is more conducive to symmetric folding of the left and right sides by means of this center line. This symmetry particularly includes up-down symmetry.
[0079] In Figure 1 and Figure 2 The platform for holding the cotton bale is not shown in the illustrated structure, but it should be understood that in the embodiments of the present invention, the description focuses on the sealing part, and the conventional structures in this field such as the platform will not be elaborated further.
[0080] Figure 1 and Figure 4 The frame 6 shown in [reference] is a beam frame structure, generally made of a welded section steel body. As the sealing machine frame, the other components of the cotton bale sleeve bag sealing and welding device are mainly installed on the frame 6 as the installation body. However, as mentioned above, since the sleeve bag sealing system is usually designed as a whole, it is a general design method in this field to install the components on one process equipment on other process equipment, mainly depending on factors such as the overall structural compactness and assembly interference.
[0081] The frame 6 can be equipped with a platform for holding the cotton bale after sleeving. This platform can be a sliding plate type platform, a roller platform, or a conveyor belt platform for example. If a sliding plate type platform is used, a pusher device needs to be provided separately to push the cotton bale, while if a roller platform is used, the cotton bale can move forward directly through the rollers.
[0082] To meet the actuation of the lower sealing assembly 1, the platform has upper and lower channels corresponding to the rear side of the currently positioned cotton bale, so that the folding working components of the lower sealing assembly 1 can lift through these upper and lower channels. And as mentioned above for the roller platform, there is often a certain gap between adjacent rollers. In other words, the gap between the rollers can form the upper and lower channels under the condition of meeting the requirement for the up and down passage of this working component of the lower sealing assembly 1.
[0083] For the convenience of description, the left sealing assembly 7, the right sealing assembly 2, the lower sealing assembly 1, and the upper sealing assembly 5 are collectively referred to as the sealing assembly. Among them, the left sealing assembly 7 and the right sealing assembly 2 are arranged symmetrically on both sides of the platform in some embodiments. Here, the symmetry is about the left and right middle plane of the platform. The main consideration for arranging the left sealing assembly 7 and the right sealing assembly 2 symmetrically is the situation where the left sealing assembly 7 and the right sealing assembly 2 synchronously fold the corresponding side bag surfaces at the bag opening.
[0084] Furthermore, in some embodiments, the left sealing assembly 7 and the right sealing assembly 2 are inserted successively. When folding the corresponding side bag surfaces successively, the left sealing assembly 7 and the right sealing assembly 2 can be different. Generally, the working component that is inserted first is relatively larger.
[0085] The left sealing assembly 7 and the right sealing assembly 2 push the bag mouth together from the left and right sides of the cotton bale bag mouth, so that the left and right bag surfaces at the bag mouth are folded to the rear end face of the cotton bale. At this time, the left sealing assembly 7 and the right sealing assembly 2 stop running and maintain the state of the left and right bag surfaces at the folded bag mouth.
[0086] The lower sealing assembly 1 is located below the platform. The lower sealing component of the lower sealing assembly 1 passes upward through the upper and lower channels to push the lower bag surface at the bag mouth upward from the lower side of the cotton bale bag mouth to the rear end face of the cotton bale. At this time, the lower sealing assembly 1 also stops running and maintains the state of the lower bag surface at the current folded bag mouth.
[0087] It should be noted that if the left sealing assembly 7 and the right sealing assembly 2 are in place in advance, the lower bag surface at the bag mouth folded upward by the lower sealing assembly 1 may press on the sealing components of the left sealing assembly 7 and the right sealing assembly 2. The above content about folding the lower bag surface at the bag mouth to the rear end face of the cotton bale is only used to describe this folded state, and does not indicate the existence of a joint relationship between the bag surface at the folded bag mouth and the rear bag surface of the cotton bale.
[0088] Similarly, if the lower bag surface at the bag mouth is folded first and then the left and right bag surfaces at the bag mouth are folded, there will also be a problem of successive folding. As a result, the bag surface folded later often presses on the bag surface folded first. This overlapping of the bag surfaces formed by folding is exactly what the present invention expects to produce and is also achievable by the remaining bag section at the bag mouth according to the principle of the present invention. At this time, the folded bag surface is generally parallel to the rear end face of the cotton bale, but it does not indicate a joint.
[0089] Regarding the upper sealing assembly 5, it is located above the platform to push the upper bag surface at the bag mouth downward from the upper side of the cotton bale bag mouth to the rear end face of the cotton bale. As described above, considering that when sealing, it is necessary to require that the bag surface length of the remaining bag mouth part after the cotton bale is wrapped meets the sealing requirements. At this time, it will inevitably cause an overlapping area of the upper and lower bag surfaces and the left and right bag surfaces at the bag mouth. At the same time, it should be known that just like folding a piece of paper, when folding the paper, it is not necessary for the part used for folding the paper to completely cover half of the paper. Similarly, for the overlapping area, the sealing assembly does not need to completely cover it, but can leave an area where other components can act. This area can be called the welding selection area, that is, a predetermined area can be selected in this welding selection area for hot melt welding.
[0090] It should be noted that the overlap here refers to the overlapping part between the bag surfaces. At the same time, it should be noted that the overlap does not mean that a certain bag surface at the bag opening must overlap with the remaining bag surfaces. Simply for the connection and sealing, for example, if there are connection relationships due to welding between the left bag surface and the upper and lower bag surfaces at the bag opening, and the same applies to the right bag surface. At this time, even if there is no direct connection relationship between the left bag surface and the right bag surface, the reliability requirements can be met by means of the connection for sealing with the upper and lower bag surfaces.
[0091] Provide a primary welding device, which has a primary welding assembly 4, a first driving device for driving the primary welding assembly 4 to run in the front-back direction of the cotton bale, and a second driving device for driving the primary welding assembly 4 to transform between a first position and a second position; the primary welding assembly 4 has two degrees of freedom accordingly, so as to realize the movement of the welding assembly 4 by means of the first driving device and the second driving device.
[0092] Wherein the first position is the position where the primary welding assembly 4 is located at the rear side of the rear bag surface of the cotton bale, and the second position is the position to disengage from the traveling path of the cotton bale, that is, to avoid the normal transportation of the cotton bale, or to avoid movement interference. In principle, the primary welding assembly 4 only needs to get out of the transportation path of the cotton bale, which is the first thing to ensure. For other design influencing factors, those skilled in the art can adjust according to the overall design requirements.
[0093] Furthermore, when the primary welding device is in the first position (used to represent the state), the primary welding assembly 4 welds the remaining folded overlap area after the folded bag surfaces of each sealing assembly are in place. Here, the remaining can be understood as the part of the folded overlap area that is not covered by, for example, the right sealing plate 2, the left sealing plate 78, the lower sealing plate 14, and the upper sealing plate 51. Furthermore, when the primary welding device is in the first position, under the drive of the first driving device, the primary welding assembly 4 can weld the remaining folded overlap area.
[0094] As described above, if the primary welding can meet the sealing requirements, the secondary welding may not be necessary. Just as described above, the right sealing plate 2, the left sealing plate 78, the lower sealing plate 14, and the upper sealing plate 51 will cover a large area during the primary welding, and the covered areas include part of the folded overlap area. The primary welding may be in a specific, for example Figure 2Under the condition that the lower relief opening 15 of the lower sealing plate 14 shown in the figure, the shape and area of the remaining folded overlapping area can fully meet the sealing requirements, and at this time, secondary welding does not have to be carried out. However, more often, limited by the shapes of the respective sealing plates and the requirements for folding the bag surface, the remaining folded overlapping area is not well-positioned on the one hand and not large enough in area on the other hand, resulting in the fact that the primary welding is not sufficient to meet the sealing requirements. Therefore, in a preferred embodiment, the primary welding is more similar to spot welding in the field of welding technology, that is, an initial connection is first generated by spot welding, and then, for example, full welding is carried out, so that the overall weld seam meets the design requirements.
[0095] In view of this, secondary welding can be a better choice. Therefore, in a preferred embodiment, a secondary welding device is provided to improve the overall sealing quality. Also as described above, since the primary welding is similar to spot welding in some embodiments, an initial connection is formed at the bag opening. At this time, each sealing assembly does not have to maintain the state of pressing the corresponding bag surface. After each sealing assembly is reset, the bag surface at the sealing position is fully exposed, and thus the corresponding folded overlapping area will also be fully exposed, making the secondary welding device have better and comprehensive welding conditions.
[0096] Next, the mechanism for realizing the concept of the present invention will be described based on the welding conditions. First, in the embodiments of the present invention, there are many choices for the folding sequence of the respective bag surfaces at the bag opening. However, in a preferred embodiment, there can be a better choice for the folding sequence of the respective bag surfaces at the bag opening. In this better choice, the left and right bag surfaces at the bag opening are folded synchronously as the first step, then the lower bag surface at the bag opening is folded, and finally the upper bag surface at the bag opening is folded.
[0097] To ensure that the sealed shape after folding is relatively regular and provide better conditions for subsequent folding, the sealing components provided by the left sealing assembly 7 and the right sealing assembly 2 are sealing plates, such as Figure 6 the right sealing plate 21 shown in the figure and Figure 7 the left sealing plate 78 shown in the figure. Collectively, they are called sealing plates. For the sake of distinction, the left sealing plate 78 and the right sealing plate 21 can be collectively called side sealing plates. In a preferred embodiment, the side sealing plates are symmetrically structured up and down, and the opposite ends between the left sealing plate 78 and the right sealing plate 21 are tapered leading parts. When in the sealed state, the sealing plates are substantially parallel to the rear end face of the cotton bale, and thus a pushing-forward and pressing-backward effect will be generated. That is, for example, for the left sealing plate 78, its right edge first engages with the left bag surface at the bag opening. During the process of the left sealing plate 78 moving to the right, the left bag surface at the bag opening is pushed to the right and pressed down.
[0098] The same is true for the right sealing plate 21.
[0099] Specifically, as shown in Figure 6As shown, in the working state, the left end of the right sealing plate 21 is a conical leading part. When it moves from right to left, the conical leading part first presses the middle of the right bag surface near the rear end surface of the cotton bale at the bag mouth with its leftmost end. When the right sealing plate 21 moves further to the left, an indentation similar to the shape of the leading part will be generated on the right bag surface, causing a part of the right bag surface at the bag mouth to form a wedge-shaped part that folds to the rear end surface of the cotton bale. Except for the leading part, the right sealing plate 21 can be understood as a rectangular plate, and the vertical dimension of this rectangular plate can be approximately the same as the height of the rear end surface of the cotton bale, or slightly smaller. Thus, during the leftward movement of the right sealing plate 21, part of the right bag surface folds with the upper bag surface, and part of the right bag surface folds with the lower bag surface, so that overlapping trapezoidal waist edges are formed on both the upper bag surface and the lower end surface at the bag mouth.
[0100] The same applies to the left sealing plate 78.
[0101] Furthermore, from Figure 6 the illustrated structure, it can be seen that the right sealing plate 21 with a leading part is generally in an isosceles triangle structure. Furthermore, in order to avoid scratching the bag surface by the leading part, the top of the leading part is rounded, thus forming an arc head. This arc head can be a circular arc head or other types of arc heads.
[0102] The basic movement form of the corresponding side sealing plate is linear motion. Therefore, a linear drive mechanism can be used to drive the side sealing plate, or a linear drive component can be used to drive the side sealing plate.
[0103] Compared with the linear drive component, the linear drive mechanism only lacks a power machine. For example, synchronous belt mechanisms, transmission chain mechanisms, lead screw mechanisms or rack and pinion mechanisms all need to be equipped with another power machine, such as an electric motor, etc., to drive the rotation of the driving pulley in the synchronous belt mechanism. Then, by means of the connection between the synchronous belt and the side sealing plate, and in cooperation with the guide rail pair, the linear drive of the side sealing plate is realized.
[0104] In view of the above, all the linear drive mechanisms are common linear drive mechanisms in the mechanical field, and how they achieve linear drive also belongs to the general knowledge in the mechanical field, so it will not be elaborated here.
[0105] Since the drive form is relatively simple, especially the drive of the side sealing plate belongs to a relatively lightly loaded drive, therefore, directly selecting a linear drive component is a better choice, especially a cylinder is a better choice, such as Figure 6 the right sealing cylinder 23 used to drive the right sealing plate 21, and Figure 7 the left sealing cylinder 73 used to drive the left sealing plate 78. The cylinder has a typical advantage, that is, it is pollution-free and has a fast response speed.
[0106] Relatively speaking, such as a hydraulic cylinder, the hydraulic cylinder is suitable for heavy load and stable operation applications. The defect is that it is easy to cause pollution due to leakage and the response speed is relatively slow.
[0107] For other linear drive components such as linear motors and electric push rods and their configuration methods, they all belong to the general knowledge in the art and will not be elaborated here.
[0108] In addition, in the embodiments of the present utility model, there are multiple components using linear drive. The above descriptions about linear drive can all be referred to and applied, and the remaining components for realizing linear motion will not be repeatedly described.
[0109] From Figure 4 it can be seen that for the left sealing assembly 7 and the right sealing assembly 2, since there are moving components in the left - right direction, and the driven component in the moving components in the left - right direction is the side sealing plate. Under this condition, when the cotton bale after wrapping is fed to the platform, the side sealing plate needs to completely give way to the path of cotton bale conveying. If the left sealing assembly 7 and the right sealing assembly 2 are completely stored by moving left and right, it will cause the left sealing assembly 7 and the right sealing assembly 2 to occupy a large lateral space after resetting. Therefore, in the preferred embodiment, the left sealing assembly 7 and the right sealing assembly 2 are swung to both sides of the sealing frame by a swinging method, so as to reduce the occupation of the lateral space of the sealing frame.
[0110] Furthermore, taking the frame of the linear drive mechanism or the seat part of the linear drive component as the swing frame, the swing frame is hinged to the corresponding side of the sealing frame through a rotating shaft perpendicular to the platform. Based on the swing of the swing frame, a horizontally placed linear drive mechanism and a component driven by the linear drive mechanism, such as the right sealing plate 21, can be swung to the longitudinal position, so as to make full use of the useless longitudinal space while giving way to the lateral space.
[0111] Correspondingly, a swing drive device for driving the swing of the frame or the seat part is provided to swing the corresponding linear drive mechanism or linear drive component out of the cotton bale pushing path. And as mentioned above, swinging out is just a general option, and swinging to the longitudinal position is a relatively better further option.
[0112] Correspondingly, the swing drive device is a swing cylinder, a swing motor, a rack - and - pinion mechanism or a triangular mechanism. In the Figure 6 and Figure 7 illustrated structure, a triangular mechanism driven by a tipping cylinder is adopted. For example, for the storage of the left sealing plate 78 as shown in Figure 7 , in the figure, the left sealing cylinder 73 that drives the left sealing plate 78 to move linearly is installed on the left shaft seat 75 provided on the left fixing plate 72 through the left shaft 76. The axis of the left shaft 76 is perpendicular to the platform and belongs to a vertical shaft in more applications.
[0113] Furthermore, a left turning arm 74 is mounted on the left shaft 76. The left turning arm 74 is perpendicular to the left shaft 76, and the two are fixedly connected. A left turning cylinder 71 is provided. The seat end of the left turning cylinder 71 is hinged on the left fixing plate 72, and the push rod of the left turning cylinder 71 is hinged to the end of the left turning arm 74, thus forming a triangular mechanism to realize the swing of the left sealing cylinder 73 for the storage of the left sealing assembly 7.
[0114] Regarding swing, there are many swing mechanisms and swing components in the mechanical field. Common swing components include swing cylinders and swing motors. Common mechanisms that can output swing also include, for example, the rack and pinion mechanism. The movement of the gear meshing with the rack can be driven by the linear movement of the rack to realize the swing of the gear.
[0115] Regarding the mechanisms, components and configuration methods for realizing swing in the mechanical field, they all belong to the general knowledge in the mechanical field and will not be elaborated here.
[0116] The above method for storing the left sealing assembly 7 is equally applicable to the right sealing assembly 2 and will not be elaborated here.
[0117] In order to improve the quality of sealing, in some embodiments, alignment frames are provided on both sides of the cotton bale conveying path on the platform to guide the pushed cotton bales to the middle in the left - right direction of the platform. The alignment frame includes a left alignment frame 8 and a right alignment frame 3, and the two can be symmetrical about the left - right middle plane of the platform to guide the cotton bales to the middle position in the left - right direction.
[0118] Take Figure 5 the illustrated right alignment frame 3 as an example to illustrate the structure of the alignment frame. As can be seen in the figure, the main body of the right alignment frame 3 has a right guiding plate 31 and a right main guiding plate 34. In some embodiments, the two are an integral structure and can be formed by bending a steel plate. The right main guiding plate 34 is parallel to the left and right sides of the cotton bale in the ideal in - place state, and the corresponding left main guiding plate is parallel to the right main guiding plate 34.
[0119] Furthermore, the right guiding plate 31 extends outward relative to the right main guiding plate 34, thus cooperating with the corresponding left guiding plate to form a conical guiding inlet. Obviously, the right guiding plate 31 is located at the rear end of the right main guiding plate 34.
[0120] When the cotton bale in a poor position in the left - right direction is conveyed to the left - right alignment frame, the current cotton bale will contact the guiding plate on the side where it is skewed and be guided to correct the deviation, and finally be guided into the space between the two main guiding plates.
[0121] In the front - rear direction, the alignment frame does not need to be too long. Its overall length of not less than 20 cm can basically meet the deviation - correction requirements. Usually, a length of 25 cm - 32 cm has a relatively good deviation - correction effect. An overly long alignment frame will occupy a large space and is not necessary.
[0122] It should be known that the self-weight of a standard cotton bale is 227 ± 10 kg. Since rectification often requires a relatively large reaction force, the guiding plate should have good rigidity, so that Figure 5 In the illustrated structure, a first reinforcing plate 32 is provided on the back side of the right guiding plate 31.
[0123] As a further option, for example, the right guiding plate 31 and the right main guiding plate 34 are both provided with flanges 33 on the upper and lower edges as a whole, and the flanges 33 can further strengthen the rigidity of the entire right alignment frame 8.
[0124] Regarding the back side, it should be known that the working surface of the guiding plate is its inner plate surface, which is also the surface where the two guiding plates face each other. Then the back side generally refers to the surface opposite to the working surface, which is the surface where the two guiding plates face away from each other.
[0125] In Figure 1 As can be seen from the illustrated structure, the left sealing assembly 7 is installed on the left alignment frame 8, and the right sealing assembly 2 is installed on the right alignment frame 8, which can effectively solve the problem of position interference.
[0126] As mentioned above, for example, in the case of a cotton cloth sleeve bag with film coating on the bag mouth and bag surface, the bag surface after film coating also has a certain rigidity. Therefore, when folding the upper bag surface at the bag mouth, for example, the upper sealing plate 51 of the upper sealing assembly 5 does not have to be a completely solid plate, but can be a frame-shaped plate or a U-shaped plate, that is, it has relatively good conditions suitable for installing the first welding device. Specifically, under the pressing of the upper sealing plate 51, for example, the folding overlapping area exposed by the U-shaped plate can be welded by the first welding device.
[0127] Correspondingly, the frame plate can be understood as a rectangular ring plate, and the provided rectangular opening can also be used as the welding channel for the first welding device.
[0128] Correspondingly, the U-shaped opening of the U-shaped plate or the rectangular opening of the rectangular plate can locate the corresponding first welding position of the folding overlapping area after folding the upper bag surface at the bag mouth. Therefore, when the first welding device is installed on the upper sealing assembly 5 at the same time, the whole is more compact, and the accuracy of the first welding is easier to achieve.
[0129] Installing the first welding device on the upper sealing assembly 5 can realize the synchronous lifting of the first welding device and the upper sealing assembly 5, the operation is more convenient, and the alignment of the first welding device is accurate and easier to ensure.
[0130] In the foregoing, the description of the forms of each bag surface at the bag mouth is also involved. In order to improve the quality of sealing, the upper sealing assembly 5 is provided with a bag lifting device, which is used to lift the upper bag surface of the cotton bale sleeve bag mouth before the left sealing assembly 7, the right sealing assembly 2 and the lower sealing assembly 1 are in place, so as to avoid the upper bag surface from collapsing or having a collapsed edge, which may cause it to be folded prematurely and affect the formation of the final folded and overlapped form.
[0131] Regarding the bag lifting device configured for the sealing assembly 5, it is obvious that the upper bag surface can be released after the other three sealing assemblies are in place. From this, it can also be seen that the upper bag surface at the bag mouth is the last bag surface to be folded in the preferred embodiment.
[0132] Regarding the bag lifting method of the bag lifting device, for a plastic sleeve bag, it can be achieved by using the method of sucking and lifting with a suction cup. From this, it can also be seen that if the suction cup is installed on the upper sealing assembly 5, the upper sealing assembly 5 needs to make two reciprocating motions during one sealing operation, one is for the sealing itself, and the other is for the bag lifting action.
[0133] Regarding the suction cup, such as Figure 9 the top edge suction cup 452 shown in [reference], here the "top edge" refers to the part of the upper bag surface near the bag mouth edge at the bag mouth.
[0134] For a cotton cloth sleeve bag, due to the air permeability of the cotton cloth, a suction cup cannot be used to pick it up. However, as mentioned before, in order to meet the requirement of automatic sealing, such cotton cloth sleeve bags usually form a hot melt film at the bag mouth by methods such as film laminating or dipping in glue, and the suction cup can pick up the hot melt film.
[0135] In some embodiments, an electric gripper can also be used as the bag lifting device.
[0136] Regarding the secondary welding, a secondary welding device independent of the primary welding device is provided, such as Figure 1 and Figure 4 the secondary welding assembly 9 shown in [reference]. It has been described before that the secondary welding assembly 9 needs to perform secondary welding after each sealing assembly is reset.
[0137] Furthermore, the secondary welding device includes:
[0138] the secondary welding assembly 9;
[0139] a third driving device to drive the secondary welding component in the secondary welding assembly 9 to run in the front-back direction of the cotton bale;
[0140] a fourth driving device to drive the conversion of the secondary welding assembly 9 between the third position and the fourth position. When the secondary welding assembly is in the third position, the secondary welding component is aligned with the folded and overlapped area; when the secondary welding assembly is in the fourth position, the secondary welding assembly disengages from the running path of the cotton bale.
[0141] Since the secondary welding method is similar to the primary welding method, it will not be elaborated here.
[0142] Regarding the secondary welding assembly in the secondary welding assembly 9, the welding area of the secondary welding assembly is greater than or equal to the welding area of the primary welding assembly 45, so as to ensure relatively high sealing reliability after secondary welding.
[0143] Since the primary welding has formed a welded body locally, in principle, the secondary welding does not need to repeat the welding of this welded body. Therefore, if the welding area of the secondary welding assembly is equal to the welding area of the primary welding assembly 45, the position of the secondary welding is misaligned with the position of the primary welding, thus forming two welding points, which can basically ensure the reliability of the welded seal.
[0144] If the welding area of the secondary welding is larger than that of the primary welding, the position of the secondary welding can be misaligned with the position of the primary welding, or it can directly cover the position of the primary welding. Both methods can basically ensure the reliability of the welded seal.
[0145] As mentioned above, the primary welding can be like spot welding, so the requirement for the coverage range of the primary welding is not very large. The secondary welding requires meeting the final sealing quality. Therefore, simply speaking of the secondary welding itself, in the preferred embodiment, it should have a relatively large welding area, so that the respective bag mouth surfaces corresponding to the seal are fully connected.
[0146] Due to the use of hot melt welding, the part of the secondary welding assembly in contact with, for example, the bag mouth surface of the plastic sleeve bag will generate adhesion. In order to avoid the damage to the sealed part caused by this adhesion, a limiting device for pressing the folded bag surface or blocking the folded bag surface when the third driving device retracts is provided on the secondary bracket equipped with the secondary welding device.
[0147] In addition, considering the problem of heat penetration in hot melt, when performing hot melt welding, the secondary welding assembly often needs to reciprocate several times to achieve reliable welding. Under this condition, the device for limiting the folded bag surface is more necessary.
[0148] See the attached Figure 10 In the figure, it can be seen that the transverse length scale of the secondary heating welding plate module 99 included in the secondary welding assembly is much larger than that of the primary heating welding plate block 457 equipped for the primary welding. And whether it is the secondary heating welding plate module 99 or the primary heating welding plate block 457, their heating surfaces are in an array structure of block bodies. Under the condition of relatively low energy consumption, a relatively large welding coverage area is still obtained, thus having a better sealing effect.
[0149] Among them, the individual of the secondary heating welding plate module 99 is relatively large. The secondary welding plate of the corresponding secondary welding assembly is divided into multiple pieces, and there are spacing gaps 997 between the multiple pieces.
[0150] Furthermore, the limiting device is a fixed rod arranged on the running paths before and after the spacing seam 997, such as Figure 10 the anti-retreat rod 98 shown in the figure. Since the anti-retreat rod 98 is statically arranged relative to the secondary heating and welding plate module 99, when the secondary heating and welding plate module 99 retreats, the adhered bag surface will touch the anti-retreat rod 98 and be torn off.
[0151] The purpose of performing several weldings is to ensure heat penetration under the condition that the overall power of the secondary heating and welding plate module 99 is relatively large, for example, without causing melting due to local overheating. More precisely, it belongs to softening and bonding. The bonding mechanism of, for example, plastic sleeve bags alone also belongs to the general knowledge in this field and will not be elaborated here.
[0152] To avoid interference with each other, as Figure 1 shown in the figure, the secondary welding device is located on the front side of the frame body 6, while the primary welding device is located on the rear side of the sealing machine frame. At this time, for adaptation, before secondary welding, the cotton bale needs to be pushed forward a given distance relative to the position of the primary welding.
[0153] In view of the relatively detailed description of each component of the cotton bale sleeve bag sealing and welding device in the structure illustrated in the accompanying drawings of the specification, it will not be elaborated one by one here. It should be noted that the structure illustrated in the accompanying drawings of the specification is for "illustration" rather than comprehensive coverage. Combining the content described in this specification, simple substitutions made by those skilled in the art should still fall within the protection scope of the present invention.
[0154] Regarding the welding method using the aforementioned cotton bale sleeve bag sealing and welding device, it has been described above. The following briefly describes the basic steps of the welding method:
[0155] 1) The cotton bale after bagging is conveyed to the first position of the platform;
[0156] 2) The left sealing assembly 7 and the right sealing assembly 2 act synchronously to push the left and right bag surfaces of the opened cotton bale sleeve bag mouth towards each other and close them to the rear end face of the cotton bale;
[0157] 3) The lower sealing assembly 1 pushes the lower bag surface of the cotton bale sleeve bag mouth upwards to close it to the rear end face of the cotton bale;
[0158] 4) The upper sealing assembly 5 pushes the upper bag surface of the cotton bale sleeve bag mouth downwards to close it to the rear end face of the cotton bale;
[0159] 5) Perform a primary welding on the exposed parts of the overlapping area of each bag surface on the rear end face of the cotton bale relative to each sealing assembly;
[0160] 6) Each sealing assembly resets.
[0161] During the first welding, multiple contact hot melt welding is adopted, with an interval of 1 - 5 s between adjacent welds.
[0162] After each sealing assembly is reset, secondary welding is performed on the folded and overlapped area. If the secondary welding is performed in situ, the cotton bale does not need to be moved; while if the position needs to be adjusted to adapt to the position of the secondary welding device, the cotton bale needs to be first sent to the second position for secondary welding. Correspondingly, the second position is adapted to the position of the secondary welding device.
[0163] The secondary welding is stagger-welded with respect to the first welding or the secondary welding covers the first welding;
[0164] When the secondary welding covers the first welding, the area of the secondary welding is 2 - 4 times the area of the first welding.
Claims
1. A cotton bag sealing welding device, characterized in that: include: A sealing frame having a platform for holding the cotton bale after wrapping, the platform having upper and lower channels corresponding to the rear side of the cotton bale currently in place; The left sealing assembly and the right sealing assembly are located on the left and right sides of the platform, so as to push the bag opening from the left and right sides of the bag opening toward each other, so that the left and right bag surfaces at the bag opening are folded onto the rear end surface of the cotton bale; The lower sealing assembly is located below the platform, and the lower sealing component of the lower sealing assembly passes upward from the upper and lower channels to push the lower bag surface at the bag opening upward from the lower side of the bag opening to the rear end surface of the cotton bale; The upper sealing assembly is located above the platform to push the upper bag surface at the bag opening downward from the upper side of the bag opening to the rear end surface of the cotton bale; as well as A primary welding device comprises a primary welding component, a first driving device for driving the primary welding component to move in the front-rear direction of a cotton bale, and a second driving device for driving the primary welding component to switch between a first position and a second position; wherein the first position is a position where the primary welding component is located at the rear side of the rear bag surface of the cotton bale, and the second position is a position that is detached from the travel path of the cotton bale; when the primary welding device is in the first position, the primary welding component is located at the folded and overlapped area remaining after the bag surfaces of each sealing assembly are folded in place.
2. The cotton bag sealing welding device according to claim 1, characterized in that: The sealing components provided by the left sealing assembly and the right sealing assembly are sealing plates, which are symmetrical in structure, and the opposite ends of the two sealing plates are tapered guide parts.
3. The cotton bag sealing welding device according to claim 2, characterized in that: The top end of the conical leading portion is an arc-shaped head.
4. The cotton bag sealing welding device according to claim 2 or 3, characterized in that: The component that pushes the sealing plate to move in the left-right direction is a linear drive mechanism or a linear drive component.
5. The cotton bag sealing welding device according to claim 4, characterized in that: The linear drive mechanism is selected from a synchronous belt mechanism, a transmission chain mechanism, a screw nut mechanism or a rack and pinion mechanism; The linear drive component is selected from a cylinder, a hydraulic cylinder, a linear motor or an electric push rod.
6. The cotton bag sealing welding device according to claim 4, characterized in that: The frame of the linear drive mechanism or the seat of the linear drive component is hinged to the corresponding side of the sealing frame through a rotating shaft perpendicular to the platform; A swing drive device is provided for driving the frame or the seat to swing, so as to swing the corresponding linear drive mechanism or the linear drive component out of the cotton bale pushing path.
7. The cotton bag sealing welding device according to claim 6, characterized in that: The swing driving device is a swing cylinder, a swing motor, a gear rack mechanism or a triangle mechanism.
8. The cotton bag sealing welding device according to claim 1, characterized in that: Straightening racks are provided on both sides of the cotton bale conveying path to guide the pushed cotton bales to the middle of the left and right directions of the platform.
9. The cotton bag sealing welding device according to claim 8, characterized in that: The straightening frame includes an inlet plate at the cotton bale inlet side and a main guide plate connected to the inlet plate; A conical introduction port is defined between the corresponding introduction plates on the left and right sides; The two main conductive plates corresponding to the left and right sides are parallel to each other.
10. The cotton bag sealing welding device according to claim 9, characterized in that: A reinforcing plate is provided on the back side of the introduction plate; The back side is the side opposite to the working surface of the introduction plate.
11. The cotton bag sealing welding device according to claim 10, characterized in that: The upper and lower plate edges of the introduction plate have flanges turned up toward the back side.
12. The cotton bag sealing welding device according to any one of claims 8 to 11, characterized in that: The left sealing assembly and the right sealing assembly are installed on the straightening frame.
13. The cotton bag sealing welding device according to claim 1, characterized in that: The primary welding device is installed on the upper sealing assembly.
14. The cotton bag sealing welding device according to claim 1 or 13, characterized in that: The upper sealing assembly is provided with a bag lifting device, which is used to lift the upper bag surface of the bag opening of the cotton bale before the left and right sealing assemblies and the lower sealing assembly are in place.
15. The cotton bag sealing welding device according to claim 13, characterized in that: The lower part of the sealing plate equipped with the upper sealing assembly is a U-shaped plate body or a sealing plate body with a rectangular opening; Correspondingly, the primary welding assembly is located at the U-shaped opening or the rectangular opening to weld the folded overlap area at a position determined by the U-shaped opening or the rectangular opening.
16. The cotton bag sealing welding device according to claim 1, characterized in that: It also includes a secondary welding device located on the sealing frame to perform secondary welding on the folded overlapping area after the corresponding sealing assembly is reset; the secondary welding device includes: Secondary welding assembly; A third driving device is used to drive the secondary welding components in the secondary welding assembly to move in the front-rear direction of the cotton bale; The fourth driving device is used to drive the secondary welding assembly to switch between the third position and the fourth position, wherein when the secondary welding assembly is in the third position, the secondary welding component is aligned with the folded overlapping area; when the secondary welding assembly is in the fourth position, the secondary welding assembly is disengaged from the cotton bale running path.
17. The cotton bag sealing welding device according to claim 16, characterized in that: The welding area of the secondary welded assembly is greater than or equal to the welding area of the primary welded assembly; If they are equal, the position of the secondary welding is misaligned with the position of the primary welding; If it is greater, the position of the secondary welding is misaligned with the position of the primary welding or covers the position of the primary welding.
18. The cotton bag sealing welding device according to claim 16 or 17, characterized in that: The secondary bracket of the secondary welding device is provided with a limiting device for pressing the folded bag surface or blocking the folded bag surface when the third driving device retreats.
19. The cotton bag sealing welding device according to claim 18, characterized in that: The secondary welding assembly has a plurality of secondary welding plates, with interval seams between the plates; The limiting device is a fixed rod arranged in the running path before and after the spacing gap.
20. The cotton bag sealing welding device according to claim 16, characterized in that: The secondary welding device is located at the front side of the sealing machine frame, and the primary welding device is located at the rear side of the sealing machine frame.
21. A packaging system, characterized in that: Equipped with a cotton bale bag sealing welding device as described in any one of claims 1 to 20.