Strapping apparatus and method
By designing a strapping production device, a mechanized bending mechanism is used to automatically bend the strapping, solving the problem of low strapping bending efficiency in existing technologies and realizing a highly efficient strapping production process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHANGHAI BAOSTEEL METALLURGICAL CONSTRUCTION CORP
- Filing Date
- 2024-12-12
- Publication Date
- 2026-06-12
AI Technical Summary
The existing strapping bending operation is inefficient, requiring manual bending, which leads to inconvenience and low efficiency.
A strapping manufacturing device was designed, including a base, a first support platform, a locking component, a first bending mechanism, and a second bending mechanism, which automatically bends strapping in a mechanized manner, avoiding manual operation.
It improves the efficiency of strapping bending, reduces manual operation, and lowers labor intensity and costs.
Smart Images

Figure CN122186501A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of packaging equipment, and in particular to a strapping making device and a strapping making method. Background Technology
[0002] Currently, cold-rolled coil packaging operates in three modes: offline, semi-automatic, and automatic. Offline and semi-automatic operations require manual removal of predetermined lengths of strapping from the strapping reel for cutting and bending. The cut and bent strapping is then used to bundle the coils.
[0003] When bundling straps, locking buckles need to be installed beforehand. During packaging, these buckles can easily detach from the straps. To prevent this, the straps need to be bent manually. Manually bending the straps is inefficient. Therefore, existing methods for bending straps suffer from low work efficiency. Summary of the Invention
[0004] The purpose of this application is to provide a strapping fabrication device that improves bending efficiency, comprising a base, a first support platform, a locking component, a first bending mechanism, and a second bending mechanism. The first support platform is disposed on the base and is used to hold a buckle and strapping, wherein the buckle is sleeved on the strapping. The locking component is disposed on the base and is used to clamp the buckle onto the first support platform.
[0005] The first bending mechanism is movably connected to the base and the first support platform. The first bending mechanism is used to bend one end of the strap. The second bending mechanism is movably connected to the base and the first support platform. The second bending mechanism is used to bend the other end of the strap. The first support platform is located between the first bending mechanism and the second bending mechanism.
[0006] Optionally, the locking component includes a support frame and a shift fork. The support frame is disposed on the base, and the shift fork is connected to the support frame. The shift fork is used to clamp the latch onto the first support platform.
[0007] Optionally, the first bending mechanism includes a first telescopic component and a first movable block, the first telescopic component and the first movable block are pivotally connected, the first telescopic component and the base are pivotally connected, and the first movable block and the first support platform are pivotally connected.
[0008] Optionally, the first support platform includes a first groove for accommodating the buckle, and the first movable block includes a second groove for accommodating the strap. When the first groove accommodates the buckle and the second groove is in the position of accommodating the strap, the inner bottom surface of the buckle and the bottom surface of the second groove are coplanar.
[0009] Optionally, the second bending mechanism includes a second telescopic component and a second movable block, the second telescopic component and the second movable block are pivotally connected, the second telescopic component and the base are pivotally connected, and the second movable block and the first support platform are pivotally connected.
[0010] Optionally, the first support platform includes a first groove for accommodating the buckle, and the second movable block includes a third groove for accommodating the strap. When the first groove accommodates the buckle and the third groove is in the position of accommodating the strap, the inner bottom surface of the buckle and the bottom surface of the third groove are coplanar.
[0011] Optionally, the strapping device further includes a conveying device disposed on the base, the conveying device being used to convey the strapping to the first support platform.
[0012] Optionally, the strapping making device further includes a cutting device disposed on the base, located between the conveying device and the first support platform, and the cutting device is used to cut the strapping.
[0013] Optionally, the strapping device further includes a supply device disposed on the base and connected to the first support platform. The supply device is used to supply the buckle to the first support platform.
[0014] This application also provides a method for making straps, which uses the strap-making apparatus and includes:
[0015] Place the latch on the first support platform;
[0016] The strap is threaded through the buckle on the first support platform;
[0017] The locking device clamps the latch to the first support platform; and
[0018] The first bending mechanism and the second bending mechanism bend the two ends of the strapping, respectively.
[0019] The beneficial effects of this application are as follows: It comprises a base, a first support platform, a locking component, a first bending mechanism, and a second bending mechanism. The first support platform is disposed on the base and is used to hold the buckle and the strap, wherein the buckle is sleeved on the strap. The locking component is disposed on the base and is used to clamp the buckle onto the first support platform. The first bending mechanism is movably connected to the base and the first support platform, and is used to bend one end of the strap.
[0020] The second bending mechanism is movably connected to the base and the first support platform. The second bending mechanism is used to bend the other end of the strapping, and the first support platform is located between the first and second bending mechanisms. Since the strapping can be bent through the first and second bending mechanisms, there is no need to manually bend the strapping, thus improving the efficiency of strapping bending.
[0021] The above description is only an overview of the technical solution of this application. In order to better understand the technical means of this application and to implement it in accordance with the contents of the specification, the following describes the application in detail with reference to the preferred embodiments and accompanying drawings. Attached Figure Description
[0022] Figure 1 This is a perspective view of the strapping device in the first embodiment of this application (excluding the material distribution rack and the material storage rack);
[0023] Figure 2 This is a partial enlarged perspective view of the strap-making device in the first embodiment of this application (excluding the fork, strap, and latch placed on the first support platform);
[0024] Figure 3 In the first embodiment of this application, Figure 1 A magnified view from direction A;
[0025] Figure 4 This is a perspective view of the strapping device in the first embodiment of this application (including a material distribution rack and a material storage rack);
[0026] Figure 5 This is a front view of the strap with a locking buckle bent in the first embodiment of this application (the strap is cut off).
[0027] In the attached figures, the following labels are used:
[0028] 100 bases
[0029] 101 First Support Platform
[0030] 10100 First Groove
[0031] 102 Locking components
[0032] 1020 support frame
[0033] 1021 Shift Fork
[0034] 103 First bending mechanism
[0035] 1030 First telescopic component
[0036] 1031 First active block
[0037] 10310 Second Groove
[0038] 104 Second bending mechanism
[0039] 1040 Second telescopic component
[0040] 1041 Second Active Block
[0041] 10410 Third Groove
[0042] 105 Lock
[0043] 106 straps
[0044] 107 Second Support Platform
[0045] 108 Conveying Device
[0046] 1080 housing
[0047] 1081 Pressure Roller
[0048] 1082 guide groove
[0049] 1083 Control Pedal
[0050] 109 Cutting device
[0051] 1090 cutting knife
[0052] 110 Supply Unit
[0053] 1100 Vibrating Disc
[0054] 1101 Slide
[0055] 111 Material Distribution Rack
[0056] 1110 Strapping Reel
[0057] 112 Storage rack Detailed Implementation
[0058] The following specific embodiments illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification.
[0059] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present application will now be described in detail with reference to the accompanying drawings and embodiments. To enable those skilled in the art to better understand the solutions of this application, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of this application.
[0060] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or device that includes a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to these processes, methods, products, or devices.
[0061] It should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0062] For ease of explanation, a rectangular coordinate system O-XYZ is established in some of the attached figures, with the X-axis parallel to the width direction of the base 100, the Y-axis parallel to the length direction of the base 100, and the Z-axis parallel to the height direction of the base 100. The positive directions of the X-axis, Y-axis, and Z-axis remain the same in all the attached figures with coordinate systems.
[0063] First Embodiment
[0064] like Figure 1 As shown, this embodiment provides a strapping manufacturing device, including a base 100, a first support platform 101, a locking component 102, a first bending mechanism 103, and a second bending mechanism 104. The first support platform 101 is disposed on the base 100 and is used to hold a buckle 105 and a strap 106, wherein the buckle 105 is fitted onto the strap 106. The locking component 102 is disposed on the base 100 and is used to clamp the buckle 105 onto the first support platform 101.
[0065] like Figure 1 As shown, the first bending mechanism 103 is movably connected to the base 100 and the first support platform 101. The first bending mechanism 103 is used to bend one end of the strap 106. The second bending mechanism 104 is movably connected to the base 100 and the first support platform 101. The second bending mechanism 104 is used to bend the other end of the strap 106. The first support platform 101 is located between the first bending mechanism 103 and the second bending mechanism 104.
[0066] Since the strap 106 can be bent by the first bending mechanism 103 and the second bending mechanism 104, there is no need to bend the strap 106 manually, thus improving the bending efficiency of the strap 106.
[0067] like Figure 1 As shown, the base 100 can be rectangular in shape. The first support platform 101 can be T-shaped. The bottom end of the first support platform 101 can be fixed to the top end of the base 100 by screwing or welding. The bottom end of the locking component 102 can be fixed to the top surface of the base 100 by welding, screwing, or riveting. The locking component 102 can clamp the latch 105 onto the top surface of the first support platform 101 by pressing. The bottom end of the first bending mechanism 103 can be movably connected to the top surface of the base 100 by pivoting.
[0068] like Figure 1 As shown, the top right end of the first bending mechanism 103 can be pivotally connected to the left end of the first support platform 101. The bottom end of the second bending mechanism 104 can be pivotally connected to the top surface of the base 100. The top left end of the second bending mechanism 104 can be pivotally connected to the right end of the first support platform 101. The base 100 can be made of steel or aluminum alloy. For the specific configuration of the first bending mechanism 103 and the second bending mechanism 104, please refer to the subsequent description of the embodiment. The first bending mechanism 103 and the second bending mechanism 104 can be hydraulic, pneumatic, or electric bending mechanisms. The central axis of each pivot can be parallel to the X-axis.
[0069] Please also refer to Figure 1 and Figure 2A second support platform 107 can be provided on the right side of the first support platform 101. The first support platform 101 and the second support platform 107 are positioned apart. The distance between the first support platform 101 and the second support platform 107 is greater than or equal to the length of the second movable block 1041. The second movable block 1041 can rotate between the first support platform 101 and the second support platform 107. The bottom surface of the first groove 10100 can be coplanar with the top surface of the second support platform 107. The bottom surface of the first groove 10100 and each guide groove 1082 (see guide groove 1082 for reference) Figure 3 The bottom surface of ) can be coplanar and parallel to the XOY plane.
[0070] Please also refer to Figure 1 and Figure 2 The bending of the strap 106 restricts the sliding of the buckle 105 along the strap 106, preventing the buckle 105 from falling off. The bent strap 106 with the buckle 105 attached can be used for bundling packages. For example, the end of the strap 106 furthest from the buckle 105 can be inserted into the buckle 105, and then the buckle 105 can be locked using a packing machine.
[0071] Please also refer to Figure 1 and Figure 3 Optionally, the locking component 102 includes a support frame 1020 and a fork 1021. The support frame 1020 is disposed on the base 100, and the fork 1021 is connected to the support frame 1020. The fork 1021 is used to clamp the latch 105 onto the first support platform 101. The fork 1021 and the latch 105 are in point contact. Using the fork 1021 to clamp the latch 105 onto the first support platform 101 can prevent excessive pressure on the latch 105, thereby preventing the latch 105 from deforming too much and becoming unusable for bundling packages.
[0072] like Figure 3 As shown, the bottom end of the support frame 1020 can be connected to the top end of the base 100 by welding or screwing. The support frame 1020 can be L-shaped overall, and the shift fork 1021 can be connected to the support frame 1020 by a cylinder, hydraulic cylinder, or electric cylinder. The vertical part of the support frame 1020 can be inverted U-shaped to allow the strap 106 to pass through and to prevent the support frame 1020 from obstructing the bending of the strap 106. For example, the top end of the shift fork 1021 can be connected to the piston rod of the cylinder by welding or screwing. The cylinder can be fixed to the right side of the top end of the support frame 1020.
[0073] like Figure 3As shown, the central axis of the cylinder piston rod can be parallel to the Z-axis. The cylinder piston rod can drive the shift fork 1021 to move up and down along a direction parallel to the Z-axis. The shift fork 1021 can include four legs, which can respectively abut against the four corners of the latch 105 to clamp the latch 105 onto the first support platform 101. The shift fork 1021 can be located directly above the first support platform 101. The shift fork 1021 and the first support platform 101 are spaced apart. The latch 105 can be formed by bending a rectangular thin iron sheet, and the whole is triangular prism in shape.
[0074] Please also refer to Figure 1 and Figure 3 Optionally, the first bending mechanism 103 includes a first telescopic component 1030 and a first movable block 1031. The first telescopic component 1030 and the first movable block 1031 are pivotally connected, the first telescopic component 1030 is pivotally connected to the base 100, and the first movable block 1031 is pivotally connected to the first support platform 101. With this configuration, the larger area of the first movable block 1031 can be used to contact the strap 106, allowing the strap 106 to be bent smoothly without easily twisting.
[0075] like Figure 3 As shown, the first telescopic component 1030 can be a pneumatic cylinder, a hydraulic cylinder, or an electric cylinder. The first movable block 1031 can be cuboid in shape. The top end of the telescopic rod of the first telescopic component 1030 (for example, the telescopic rod of the first telescopic component 1030 can be the piston rod of a pneumatic or hydraulic cylinder) can be pivotally connected to the left end of the first movable block 1031. The bottom end of the first telescopic component 1030 can be pivotally connected to the top end of the base 100. The right end of the first movable block 1031 can be pivotally connected to the left end of the first support platform 101. The telescopic direction of the first telescopic component 1030 can be as follows: Figure 3 As shown by the solid arrow on the right side of the first telescopic component 1030.
[0076] Please also refer to Figure 1 and Figure 2 Optionally, the first support platform 101 includes a first groove 10100 for accommodating the buckle 105, and the first movable block 1031 includes a second groove 10310 for accommodating the strap 106. When the first groove 10100 accommodates the buckle 105 and the second groove 10310 is positioned to accommodate the strap 106, the inner bottom surface of the buckle 105 and the bottom surface of the second groove 10310 are coplanar. This arrangement allows the strap 106 to pass unobstructed into the buckle 105 located in the first groove 10100.
[0077] Please also refer to Figure 1 and Figure 2The first groove 10100 can be a square groove that runs from left to right. The width of the first groove 10100 can be approximately the same as the width of the outer side of the latch 105, thus ensuring that the first groove 10100 can accommodate only one latch 105 at a time. The second groove 10310 can also be a square groove that runs from left to right. The width of the inner side of the latch 105, the width of the strap 106, and the width of the second groove 10310 can all be the same.
[0078] Please also refer to Figure 1 and Figure 2 The depth of the second groove 10310 is approximately the same as the thickness of the strap 106. The second groove 10310 can be in a horizontal position when accommodating the strap 106. When in the position of accommodating the strap 106, the front and rear sides of the second groove 10310 can be coplanar with the front and rear sides of the first groove 10100, and the bottom surface of the second groove 10310 is coplanar with the bottom surface of the first groove 10100.
[0079] Please also refer to Figure 1 and Figure 2 Optionally, the second bending mechanism 104 includes a second telescopic component 1040 and a second movable block 1041, which are pivotally connected. The second telescopic component 1040 is pivotally connected to the base 100, and the second movable block 1041 is pivotally connected to the first support platform 101. This configuration allows for independent control of the first movable block 1031 and the second movable block 1041, facilitating the achievement of different bending angles at both ends of the strap 106. Simultaneously, the larger contact area of the second movable block 1041 with the strap 106 ensures that the strap 106 is bent smoothly and is less prone to twisting.
[0080] like Figure 2 As shown, the second telescopic component 1040 can be a pneumatic cylinder, a hydraulic cylinder, or an electric cylinder. The second movable block 1041 can be cuboid in shape. The top end of the telescopic rod of the second telescopic component 1040 (for example, the telescopic rod of the second telescopic component 1040 can be the piston rod of a pneumatic or hydraulic cylinder) can be pivotally connected to the right end of the second movable block 1041. The bottom end of the second telescopic component 1040 can be pivotally connected to the top end of the base 100. The left end of the second movable block 1041 can be pivotally connected to the right end of the first support platform 101. The materials of the first movable block 1031 and the second movable block 1041 can be steel or aluminum alloy. The telescopic direction of the second telescopic component 1040 can be as follows: Figure 3 As shown by the solid arrow on the right side of the second telescopic component 1040.
[0081] Please also refer to Figure 1 and Figure 2Optionally, the first support platform 101 includes a first groove 10100 for accommodating the latch 105, and the second movable block 1041 includes a third groove 10410 for accommodating the strap 106. When the first groove 10100 accommodates the latch 105 and the third groove 10410 is positioned to accommodate the strap 106, the inner bottom surface of the latch 105 and the bottom surface of the third groove 10410 are coplanar. This arrangement allows the strap 106 to pass through the latch 105 located in the first groove 10100 without obstruction.
[0082] like Figure 2 As shown, the third groove 10410 can be a square groove that extends from left to right. The width of the inner side of the latch 105, the width of the strap 106, and the width of the third groove 10410 can be the same. The depth of the third groove 10410 and the thickness of the strap 106 are approximately the same. The third groove 10410 can be in a horizontal position when accommodating the strap 106. When accommodating the strap 106, the front and rear sides of the third groove 10410 can be coplanar with the front and rear sides of the first groove 10100, and the bottom surface of the third groove 10410 can be coplanar with the bottom surface of the first groove 10100. When accommodating the strap 106, the bottom surfaces of the second groove 10310 and the third groove 10410 can be coplanar.
[0083] like Figure 1 As shown, optionally, the strapping device also includes a conveying device 108, which is disposed on the base 100 and is used to convey the strapping 106 to the first support platform 101. Using the conveying device 108, manual supply of the strapping 106 can be avoided, improving the supply efficiency of the strapping 106 and reducing the labor intensity of the operators.
[0084] Please also refer to Figure 1 and Figure 3 The conveying device 108 can be located at the left end of the support frame 1020 and spaced apart from the support frame 1020. The conveying device 108 may include a housing 1080, multiple sets of pressure rollers 1081, and two guide grooves 1082. The housing 1080 and each set of pressure rollers 1081 are rotatably connected. The housing 1080 is fixed to the upper surface of the base 100. Each guide groove 1082 can be fixed to the right end of the housing 1080. Each set of pressure rollers 1081 includes an upper pressure roller 1081 and a lower pressure roller 1081, and the strapping 106 is clamped between the upper pressure roller 1081 and the lower pressure roller 1081. When the pressure rollers 1081 rotate, they can convey the strapping 106 to the direction of the first support platform 101.
[0085] Please also refer to Figure 2 and Figure 3The width between the inner sides of the two guide grooves 1082 and the width of the strap 106 can be the same. The cross-section of the guide groove 1082 can be rectangular. The length directions of the two guide grooves 1082 can be parallel to each other. The inner sides of the two guide grooves 1082 can be coplanar with the front and rear sides of the second groove 10310 and the third groove 10410, respectively. The inner bottom surfaces of the two guide grooves 1082 can be coplanar with the bottom surface of the first groove 10100 so that the strap 106 output from the guide groove 1082 can be aligned with the first groove 10100.
[0086] like Figure 1 As shown, the conveying device 108 may include a control pedal 1083. After the strapping 106 reaches a predetermined length, stepping on the control pedal 1083 can stop the conveying device 108 from conveying the strapping 106.
[0087] Please also refer to Figure 1 and Figure 3 Optionally, the strapping device also includes a cutting device 109, which is disposed on the base 100 and located between the conveying device 108 and the first support platform 101. The cutting device 109 is used to cut the strapping 106. Using the cutting device 109 can avoid manual cutting of the strapping 106, improve the cutting efficiency of the strapping 106, and reduce the labor intensity of the operators.
[0088] Please also refer to Figure 1 and Figure 3 The cutting device 109 may include a support frame 1020 and a cutter 1090. The cutter 1090 may be cuboid in shape, with a blade at its bottom. The width of the cutter 1090 is greater than the width of the strap 106. The cutter 1090 may be connected to the support frame 1020 via a pneumatic cylinder, hydraulic cylinder, or electric cylinder. When the cutter 1090 is in its initial position, the left end of the strap 106 will not interfere with the cutter 1090 when bent. For example, the top end of the cutter 1090 may be connected to the screw of the electric cylinder by welding or screwing. The electric cylinder may be fixed to the top left side of the support frame 1020.
[0089] Please also refer to Figure 1 and Figure 3 The central axis of the electric cylinder screw can be parallel to the Z-axis. The electric cylinder screw can push the cutter 1090 to move up and down in a direction parallel to the Z-axis. The cutter 1090 and the shift fork 1021 share the support frame 1020, which can save the materials required to manufacture the cutting device 109 and the locking component 102, reduce manufacturing costs, and make the structure of the cutting device 109 and the locking component 102 more compact.
[0090] like Figure 1As shown, optionally, the strapping device also includes a supply device 110, which is disposed on the base 100 and connected to the first support platform 101. The supply device 110 is used to supply the buckles 105 to the first support platform 101. Using the supply device 110, manual placement of the buckles 105 to the first support platform 101 can be avoided, thus improving the placement efficiency of the buckles 105.
[0091] Please also refer to Figure 1 and Figure 4 The supply device 110 may include a vibratory feeder 1100 and a slide rail 1101. The vibratory feeder 1100 is provided with a plurality of latches 105. The two ends of the slide rail 1101 are respectively connected to the vibratory feeder 1100 and the first support platform 101. The vibratory feeder 1100 may be cylindrical, and the latches 105 may be stored inside the vibratory feeder 1100.
[0092] Please also refer to Figure 1 , Figure 2 and Figure 4 The bottom of the vibratory feeder 1100 can be connected to the top surface of the bracket and the base 100. The latch 105, vibrated out of the vibratory feeder 1100, can slide along the slide rail 1101 into the first groove 10100. The top end of the slide rail 1101 can be connected to the vibratory feeder 1100 by welding or snap-fitting. The bottom end of the slide rail 1101 can be connected to the rear top of the first support platform 101 by welding or snap-fitting. The height of the vibratory feeder 1100 is higher than the height of the first support platform 101 so that the latch 105 can slide along the slide rail 1101 into the first groove 10100 by its own weight.
[0093] Second Embodiment
[0094] This embodiment provides a method for manufacturing straps, which uses the strap manufacturing apparatus of the first embodiment, including:
[0095] Place the latch 105 on the first support platform 101;
[0096] The strap 106 is threaded through the buckle 105 on the first support platform 101;
[0097] The locking component 102 is used to clamp the latch 105 onto the first support platform 101; and
[0098] The first bending mechanism 103 and the second bending mechanism 104 bend the two ends of the strap 106 respectively.
[0099] Please also refer to Figures 1 to 4Since the strap 106 can be bent by the first bending mechanism 103 and the second bending mechanism 104, there is no need to bend the strap 106 manually, which improves the bending efficiency of the strap 106. Placing the buckle 105 on the first support platform 101 includes having the supply device 110 supply the buckle 105 to the first support platform 101, for example, allowing the buckle 105 to slide along the slide 1101 of the supply device 110 into the first groove 10100 of the first support platform 101.
[0100] Please also refer to Figures 1 to 4 The process of allowing the strap 106 to pass through the first support platform 101 via the locking buckle 105 includes using a conveying device 108 to convey the strap 106 through the locking buckle 105. After the locking member 102 clamps the locking buckle 105 onto the first support platform 101 and before the first bending mechanism 103 and the second bending mechanism 104 bend both ends of the strap 106 respectively, the process may include having a cutting device 109 cut the strap 106.
[0101] Please also refer to Figures 1 to 4 After the first bending mechanism 103 and the second bending mechanism 104 bend the two ends of the strap 106 respectively, the process may also include restoring the first movable block 1031 and the second movable block 1041 to the horizontal position, and then restarting the second movable block 1041 to lift the strap 106 so that the strap 106 falls into the storage rack 112 along the second support platform 107.
[0102] Please also refer to Figures 1 to 4 The strapping device may further include a sorting rack 111 and a storage rack 112. The sorting rack 111 may be located at the left end of the conveyor 108. Multiple strapping reels 1110 may be installed in the sorting rack 111, and the strapping 106 may be rolled up and stored in the strapping reels 1110. The storage rack 112 may be a mobile trolley. The storage rack 112 may be located at the right end of the second support frame 1020 and spaced apart from the base 100. The strapping 106, after being bent, can fall into the storage rack 112.
[0103] Please also refer to Figures 1 to 4 In the initial state, the first movable block 1031 and the second movable block 1041 are in a horizontal position. The vibrating plate 1100 is activated to release a latch 105 into the first groove 10100. Then, the conveying device 108 is activated to convey a strap 106 of a predetermined length from left to right (i.e., along the positive direction parallel to the Y-axis; the direction of movement of the strap 106 is indicated by line arrows in the various figures) through the guide groove 1082, the support frame 1020, the second groove 10310, the first groove 10100, the third groove 10410, and the second support platform 107.
[0104] Please also refer to Figures 1 to 4Then, the fork 1021 is activated to clamp the latch 105 onto the first support platform 101, and the cutting device 109 is activated to cut the strap 106. Next, the first bending mechanism 103 and the second bending mechanism 104 are activated, causing the first movable block 1031 to bend the left end of the strap 106 and the second movable block 1041 to bend the right end of the strap 106. Then, the fork 1021, the first movable block 1031, and the second movable block 1041 are returned to their initial positions. The second bending mechanism 104 is then restarted, causing the second movable block 1041 to rotate, lifting the bent strap 106 and allowing it to slide into the storage rack 112. The strap 106, fitted with the latch 105 and bent, can then... Figure 5 As shown.
[0105] The strapping device and strapping method provided in the embodiments of this application have been described in detail above. For those skilled in the art, based on the ideas of the embodiments of this application, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of this application. All equivalent modifications or changes made based on the spirit and technical concept of this application should still be covered by the claims of this application.
Claims
1. A strapping manufacturing device, characterized in that, include: Base; A first support platform is disposed on the base, and the first support platform is used to place a buckle and a strap, wherein the buckle is sleeved on the strap; A locking component is disposed on the base, the locking component being used to clamp the latch onto the first support platform; A first bending mechanism is movably connected to the base, and the first bending mechanism is movably connected to the first support platform. The first bending mechanism is used to bend one end of the strap. The second bending mechanism is movably connected to the base and the first support platform. The second bending mechanism is used to bend the other end of the strap, and the first support platform is located between the first bending mechanism and the second bending mechanism.
2. The strapping manufacturing device according to claim 1, characterized in that, The locking component includes a support frame and a shift fork. The support frame is disposed on the base, and the shift fork is connected to the support frame. The shift fork is used to clamp the lock onto the first support platform.
3. The strapping manufacturing device according to claim 1, characterized in that, The first bending mechanism includes a first telescopic component and a first movable block. The first telescopic component and the first movable block are pivotally connected. The first telescopic component is pivotally connected to the base. The first movable block is pivotally connected to the first support platform.
4. The strapping manufacturing device according to claim 3, characterized in that, The first support platform includes a first groove for accommodating the buckle, and the first movable block includes a second groove for accommodating the strap. When the first groove accommodates the buckle and the second groove is in the position of accommodating the strap, the inner bottom surface of the buckle and the bottom surface of the second groove are coplanar.
5. The strapping manufacturing device according to claim 1, characterized in that, The second bending mechanism includes a second telescopic component and a second movable block, the second telescopic component and the second movable block are pivotally connected, the second telescopic component and the base are pivotally connected, and the second movable block and the first support platform are pivotally connected.
6. The strapping manufacturing device according to claim 5, characterized in that, The first support platform includes a first groove for accommodating the buckle, and the second movable block includes a third groove for accommodating the strap. When the first groove accommodates the buckle and the third groove is in the position of accommodating the strap, the inner bottom surface of the buckle and the bottom surface of the third groove are coplanar.
7. The strapping manufacturing device according to claim 1, characterized in that, It also includes a conveying device disposed on the base, the conveying device being used to convey the strapping to the first support platform.
8. The strapping manufacturing apparatus according to claim 7, characterized in that, It also includes a cutting device disposed on the base, the cutting device being located between the conveying device and the first support platform, the cutting device being used to cut the strapping.
9. The strapping manufacturing apparatus according to claim 8, characterized in that, It also includes a supply device disposed on the base and connected to the first support platform. The supply device is used to supply the latch to the first support platform.
10. A method for manufacturing strapping, comprising using the strapping manufacturing apparatus according to any one of claims 1-8, characterized in that, include: Place the latch on the first support platform; The strap is threaded through the buckle on the first support platform; The locking device clamps the latch to the first support platform; and The first bending mechanism and the second bending mechanism bend the two ends of the strapping, respectively.