An automated hand lifting device
By automating the conveying, folding, and cutting mechanisms of paper handles, the problem of manual operation in paper handle production has been solved, enabling continuous production of folding handles, improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202210324188.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-29
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2042-03-29
AI Technical Summary
In the existing technology, the production process of paper handles relies on manual operation, which makes it difficult to achieve continuous production and folding control, resulting in low production efficiency.
An automated lifting device is used, including a conveying mechanism, a folding mechanism, and a cutting mechanism. The lifting handle is folded along its length by a top pressing part, and the material belt pressing mechanism and the cutting mechanism are used to form a combination between the lifting handle and the fixed plate, so as to achieve continuous production of folded lifting handles.
The automated production of paper handles has been achieved, reducing manual intervention, improving production efficiency and folding effect, and lowering production costs.
Smart Images

Figure CN114633520B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of handle manufacturing technology, specifically to an automated handle. Background Technology
[0002] Nowadays, paper handles are used in cardboard boxes because they have advantages such as high strength, heavy lifting capacity, safety and reliability, superior physical properties compared to plastic handles, and environmental friendliness. When used on the box body, they are low-cost, convenient for bulk transportation, and because the handles can be folded, the entire box surface remains flat and free of indentations or damage during stacking.
[0003] The structure of paper handles is similar to that of the Chinese invention "Paper Handle" with patent number 201420306523.4. "The top and bottom ends of the handle strap (3) are respectively bonded to the upper layer paper (1) and the lower layer paper (2), the upper layer paper (1) and the lower layer paper (2) are bonded to each other, the upper layer paper (1) has a groove (4) in the middle that matches the handle strap (3), and the handle strap (3) is exposed in the groove (4)". When carrying or storing this paper handle, "the handle strap (3) needs to be folded in a Z-shape".
[0004] Currently, the production methods for this type of handle are as follows: the upper layer of paper, the handle strip, and the lower layer of paper are glued together manually, and then the handle strip is folded by manually operating a special stamping mechanism; or the upper layer of paper, the handle strip, and the lower layer of paper are glued together using a special automated handle production equipment, and then the handle strip is folded by manually operating a special stamping mechanism. Due to the difficulty in structural design and the difficulty in controlling the folding of the handle strip, there is currently no equipment that can continuously produce handles similar to the above. Summary of the Invention
[0005] To overcome the shortcomings mentioned above, the present invention aims to provide a technical solution that can solve the above problems.
[0006] To achieve the above objectives, the present invention provides the following technical solution: an automated handle, comprising a conveying mechanism, a folding mechanism, and a cutting mechanism. The conveying mechanism is used to convey a material belt, causing the material belt to pass sequentially through the folding mechanism and the cutting mechanism. The material belt includes a handle belt composed of multiple continuous handle segments, and a fixing plate belt composed of multiple continuous fixing plates. The two ends of the handle belt are fixed to the fixing plates, and the middle of the handle belt is raised upwards. The folding mechanism includes a pressing part, which is used to press the raised part of the handle belt sequentially from one side of the handle belt along its length to the other side of the handle belt as the material belt passes, so as to fold each segment of the handle belt along its length. The cutting mechanism is used to cut the material belt into segments as the material belt passes, forming a handle that combines the handle belt with the fixing plate.
[0007] As a further aspect of the present invention: the fixing plate includes an upper plate and a lower plate that are bonded together. A handle groove is vertically inserted through the middle of the upper plate. The two ends of the handle strap are fixed between the upper plate and the lower plate. The middle of the handle strap passes through the handle groove from the bottom upward to form a bulge. The automatic lifting device also includes a material belt pressing mechanism, which is located on the movement path of the material belt. The material belt passes through the material belt pressing mechanism first and then through the cutting mechanism. The material belt pressing mechanism includes a support plate and a pair of parallel upper plate pressing wheels on the support plate. The upper plate pressing wheels are rotatably arranged, and a passage space corresponding to the width of the handle strap is formed between the pair of upper plate pressing wheels. The fixing plate passes between the support plate and the upper plate pressing wheels. The upper plate pressing wheels cooperate with the support plate to press the upper plate onto the lower plate. The fixing plate passes through a crease mechanism before reaching the cutting mechanism, or passes through the material belt pressing mechanism first and then through the crease mechanism.
[0008] As a further aspect of the present invention: after the handle strap is creased, the handle strap is folded and stored in the handle groove.
[0009] As a further aspect of the present invention: the fixing plate includes a lower plate, and the two ends of the handle strap are fixed to the top surface of the lower plate; an upper plate material strip composed of multiple continuous upper plates is provided, and a handle groove is vertically passed through the middle of the upper plate; the conveying mechanism is also used to convey the upper plate material strip; the automatic lifting device also includes a material strip pressing mechanism, and the material strip merges with the upper plate material strip at the material strip pressing mechanism after passing through the folding mechanism and before passing through the cutting mechanism; the material strip pressing mechanism includes a support plate and a pair of parallel upper plate pressing wheels located on the support plate, the upper plate pressing wheels are rotatably arranged, and a passage space corresponding to the width of the handle strap is formed between the pair of upper plate pressing wheels; at least the top surface of the lower plate or the bottom surface of the upper plate has adhesive; the upper plate and the lower plate pass through the support plate and the upper plate pressing wheels simultaneously, the upper plate is located on the lower plate, and the upper plate pressing wheels cooperate with the support plate to press the upper plate tightly against the lower plate.
[0010] As a further embodiment of the present invention: after the upper plate is pressed tightly against the lower plate, the handle strap is folded and stored in the handle groove.
[0011] As a further aspect of the present invention: after the upper plate is pressed and adhered to the lower plate, the handle strap has a portion folded between the upper plate and the lower plate, the upper plate and the lower plate together clamp the portion, and the portion can be pulled out from between the upper plate and the lower plate.
[0012] As a further aspect of the present invention: the middle part of the handle strap is raised upward and forms a raised height h based on the top surface of the fixing plate; the minimum pressing width s between the pressing surface of the pressing part and the top surface of the fixing plate is less than the raised height h.
[0013] As a further aspect of the present invention, the crease mechanism further includes a support member, which supports the fixing plate when the top pressing part presses down on the raised part of the handle strap.
[0014] As a further aspect of the present invention: the crease mechanism further includes a lateral pressing member and a moving device; the lateral pressing member is used to laterally press the other side of the raised portion of the handle strap when the pressing part presses one side of the raised portion of the handle strap or before pressing; the moving device is used to move the lateral pressing member; when the pressing part presses the raised portion of the handle strap or before pressing, the moving device has a first working state of moving the lateral pressing member to laterally press the raised portion of the handle strap; after the lateral pressing member has completed laterally pressing the raised portion of the handle strap, the moving device also has a second working state of moving the lateral pressing member to move the lateral pressing member away from the handle strap.
[0015] As a further aspect of the present invention: the moving device includes a first rotating shaft, a second rotating shaft, and a connecting rod that are parallel to each other. Both the first and second rotating shafts are rotatably mounted. One end of the connecting rod is rotatably connected to a first eccentric point on the first rotating shaft, and the other end of the connecting rod is rotatably connected to a second eccentric point on the second rotating shaft. The lateral pressing member is fixed to a third eccentric point on the second rotating shaft. When the first rotating shaft rotates, the first rotating shaft drives the second rotating shaft and the lateral pressing member on the second rotating shaft to perform a reciprocating pendulum motion through the connecting rod.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: the automated lifting machine can continuously produce handles with folding handle straps. The production process is mainly completed by the automated lifting machine, reducing manual intervention and making handle production more convenient. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of the present invention;
[0018] Figure 2 This is another structural schematic diagram of the present invention;
[0019] Figure 3 This is a schematic diagram of the crease mechanism in this invention;
[0020] Figure 4 This is a schematic diagram of the material strip pressing mechanism in this invention;
[0021] Figure 5 This is a schematic diagram of the handle structure in this invention;
[0022] Figure 6 This is another structural schematic diagram of the handle in this invention;
[0023] Figure 7 This is another structural schematic diagram of the handle in this invention;
[0024] Figure 8 This is a schematic diagram illustrating the working principle of the handle strap when it is folded in this invention;
[0025] Figure 9 yes Figure 8 Enlarged schematic diagram of a local structure at point A;
[0026] The reference numerals and names in the figure are as follows:
[0027] Conveying mechanism-1, folding mechanism-2, cutting mechanism-3, strip pressing mechanism-4, frame-5, feeding mechanism-6, handle strap bonding mechanism-7, handle groove forming mechanism-8.
[0028] Handle strap - 10, fixing plate - 20, upper plate - 30, lower plate - 40, handle groove - 50.
[0029] Top pressing part-201, top pressing surface-202, support component-203, lateral top pressing component-204, moving device-205, limiting plate-206, pressure roller-207.
[0030] Support plate-401, upper plate clamping roller-402,
[0031] Fixed support plate-2031, guide roller-2032,
[0032] First pivot - 2051, second pivot - 2052, connecting rod - 2053. Detailed Implementation
[0033] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0034] The conveying mechanism 1, folding mechanism 2, cutting mechanism 3, and material belt pressing mechanism 4 of this automatic lifting machine can all be installed on the frame 5 or other supports.
[0035] In this automated lifting machine, when components need to rotate, they can be driven by a single drive unit, or by a single drive unit or multiple drive units connected together on a combined shaft. These drive units can be external or integrated into the automated lifting machine, and each has a corresponding controller and control program. The drive unit is commonly a motor, which will not be described in detail here.
[0036] This automatic handle handpiece is suitable for continuous crease and cutting operations on continuous handle semi-finished material strips or continuous handle finished material strips (hereinafter referred to as material strips for ease of description). The material strip includes a handle material strip composed of multiple continuous handle strips 10, and a fixing plate material strip composed of multiple continuous fixing plates 20. The two ends of the handle strip 10 are fixed to the fixing plates 20, and the middle of the handle strip is raised upward.
[0037] Please see Figure 1-9 An automated handle assembly includes a conveying mechanism 1, a folding mechanism 2, and a cutting mechanism 3. The conveying mechanism 1 transports the material belt, allowing it to pass sequentially through the folding mechanism 2 and the cutting mechanism 3. The folding mechanism 2 includes a pressing part 201, which presses against the raised portion of the handle belt 10 sequentially from one side of its length direction to the other side as the material belt passes through, folding each segment of the handle belt 10 along its length. The cutting mechanism 3 cuts the material belt into segments as it passes through, forming handles that are combined with a fixing plate 20. This automated handle assembly can continuously produce handles with folded handles. The production process is mainly completed by this automated handle assembly, reducing manual intervention and making handle production more convenient.
[0038] The top pressing surface 202 on the top pressing part 201, which is used to cooperate with the handle strap 10, is arranged parallel to or inclined relative to the top surface of the fixed plate 20.
[0039] The handle strap 10 has an upward bulge in the middle, forming a bulge height h based on the top surface of the fixing plate 20; the minimum pressing width s between the pressing surface 202 of the pressing part 201 and the top surface of the fixing plate 20 is less than the bulge height h. Even when the pressing part 201 is not powered, or when the pressing part 201 is fixed, the handle strap 10 passing through the pressing part 201 is still subject to pressing by the pressing surface 202, eliminating the need for a drive assembly to drive the pressing part 201, effectively saving production costs.
[0040] When set in parallel, the pressure surface 202 applies pressure to the handle strap 10 for a longer time. When set at an angle, the pressure surface 202 can also be used as a guide, allowing the handle strap 10 to follow the pressure surface 202 to reach the part of the pressure section 201 corresponding to the minimum distance S from the fixing plate 20, making the indentation process smoother. Users can choose different settings according to their needs. When set in parallel, an angled guide surface can be added to the pressure section to make it easier for the handle strap to reach the pressure surface.
[0041] Preferably, the two wings of the embossed surface 201 have downwardly extending limiting plates 206, and the passage width formed by the gap between the two limiting plates 206 is greater than the width of the handle strap 10. More preferably, the passage width formed by the gap between the two limiting plates 206 is close to the width of the handle strap. By limiting the direction of folding of the raised portion of the handle strap 10 by the two limiting plates 206, it is easier to control the crease effect.
[0042] Preferably, the crease mechanism 2 may include at least one pair of vertically arranged pressing rollers 207. After passing the top pressing part 201, the fixing plate 20 and the handle strap 10 pass between the vertically arranged pressing rollers 207. The pressing rollers 207 are used to press the handle strap 10 onto the fixing plate 20, so that the crease forming effect of the folded part of the handle strap 10 is better and more durable.
[0043] Furthermore, the crease mechanism 2 includes a support member 203, which supports the fixing plate 20 when the pressing part 201 presses down on the raised part of the handle strap 10. This ensures that when the pressing surface 202 presses down on the handle strap 10, the fixing plate 20 and the handle strap 10 will not move downwards away from the pressing part 201, effectively guaranteeing high-quality completion of the crease operation. The support member 203 can be a fixed support plate 2031 and / or a rotatable guide roller 2032 and / or a movable conveyor belt. Users can choose the above-mentioned configuration or similar configurations according to their needs, all of which have good support effects. Among these, the guide roller, conveyor belt, and other relatively movable components, while providing good support, can also be used to assist in moving the fixing plate, thus improving practicality.
[0044] Furthermore, the crease mechanism also includes a lateral pressing member 204 and a moving device 205. The lateral pressing member 204 is used to press the other side of the raised portion of the handle strap 10 when the pressing part 201 presses one side of the raised portion of the handle strap 10, or before pressing, causing the handle strap 10 to crease. The lateral pressing member 204 has various structures and can be pointed or... Figure 3The rod-shaped components shown all have good pressing effect. The moving device 205 is used to move the lateral pressing member 204; when or before the pressing part 201 presses the raised part of the handle strap 10, the moving device 205 has a first working state of moving the lateral pressing member 204 to press the raised part of the handle strap 10; after the lateral pressing member 204 has finished pressing the raised part of the handle strap 10, the moving device 205 also has a second working state of moving the lateral pressing member 204 away from the handle strap 10. By moving the lateral pressing member 204 to press the raised part of the handle strap 10 laterally through the moving device 205, when the raised part of the handle strap 10 is pressed by the pressing part 201, the raised part of the handle strap 10 will fold towards the part pressed laterally by the lateral pressing member 204, thereby controlling the position of the crease.
[0045] When the crease mechanism 2 is equipped with a limiting plate 206, a lateral pressing member 204 and a moving device 205, it can control the folding direction of the raised part of the handle strap 10 and the position of the crease during folding, resulting in excellent overall crease effect and crease quality.
[0046] Preferably, the moving device 205 includes a first rotating shaft 2051, a second rotating shaft 2052, and a connecting rod 2053 that are parallel to each other. Both the first rotating shaft 2051 and the second rotating shaft 2052 are rotatably mounted. One end of the connecting rod 2053 is rotatably connected to the first eccentric point of the first rotating shaft 2051, and the other end of the connecting rod 2053 is rotatably connected to the second eccentric point of the second rotating shaft 2052. The lateral pressing member 204 is fixed to the third eccentric point of the second rotating shaft 2052. When the first rotating shaft 2051 rotates, the first rotating shaft 2051 drives the second rotating shaft 2052 and the lateral pressing member 204 on the second rotating shaft 2052 to perform a reciprocating pendulum motion through the connecting rod 2053. The overall design is reasonable and the control is convenient.
[0047] In this embodiment, the fixing plate 20 includes an upper plate 30 and a lower plate 40 that are bonded together. A handle groove 50 is vertically passed through the middle of the upper plate 30. The two ends of the handle strap 10 are fixed between the upper plate 30 and the lower plate 40. The middle of the handle strap 10 passes through the handle groove 50 from the bottom of the handle groove 50 to form a bulge.
[0048] The automatic lifting device also includes a material belt pressing mechanism 4, which is located on the material belt's movement path. The material belt passes through the material belt pressing mechanism 4 before passing through the cutting mechanism 3. The material belt pressing mechanism 4 includes a support plate 401 and a pair of parallel upper plate pressing wheels 402 located on the support plate 401. The upper plate pressing wheels 402 are rotatably arranged, and a passage space corresponding to the width of the handle belt 10 is formed between the pair of upper plate pressing wheels 402. A fixing plate 20 passes between the support plate 401 and the upper plate pressing wheels 402. The upper plate pressing wheels 402 cooperate with the support plate 401 to press the upper plate 30 onto the lower plate 40. Before reaching the cutting mechanism 3, the fixing plate 20 either passes through the folding mechanism 2 before passing through the material belt pressing mechanism 4, or it passes through the material belt pressing mechanism 4 before passing through the folding mechanism 2. The upper plate 30 and the lower plate 40 are pressed together by the material belt pressing mechanism 4, so that the two are more tightly bonded.
[0049] Preferably, after the handle strap 10 is folded, the handle strap 10 is folded and stored in the handle groove 50, which is convenient for transportation and aesthetically pleasing. In contrast, it is only necessary to set the top pressing part 201 closer to the upper plate 30 and / or set the same pair of pressing rollers 207 closer to each other.
[0050] In this embodiment, the fixing plate 20 includes a lower plate 40, and the two ends of the handle strap 10 are fixed to the top surface of the lower plate 40. An upper plate material strip composed of multiple continuous upper plates 30 is provided, and a handle groove 50 is vertically inserted through the middle of the upper plate 30. The conveying mechanism 1 is also used to convey the upper plate material strip.
[0051] The automatic lifting device also includes a strip pressing mechanism 4. After passing through the folding mechanism 2 and before passing through the cutting mechanism 3, the strip merges with the upper plate strip at the strip pressing mechanism 4.
[0052] The material belt pressing mechanism 4 includes a support plate 401 and a pair of parallel upper plate pressing wheels 402 located on the support plate 401. The upper plate pressing wheels 402 are rotatably arranged, and a passage space corresponding to the width of the handle belt 10 is formed between the pair of upper plate pressing wheels 402. At least the top surface of the lower plate 40 or the bottom surface of the upper plate 30 has adhesive. The upper plate 30 and the lower plate 40 pass simultaneously between the support plate 401 and the upper plate pressing wheels 402. The upper plate 30 is located on the lower plate 40, and the upper plate pressing wheels 402 cooperate with the support plate 401 to press the upper plate 30 tightly against the lower plate 40.
[0053] When the crease mechanism 2 is used to press the handle strap 10, the pressing part 201 can be set closer to the lower plate 40, so that the pressing force on the handle strap 10 is greater and the pressing effect is better.
[0054] When the adhesive for bonding the lower layer 40 and the upper layer 30 needs to be applied to the top surface of the lower layer 40, this automatic lifting handpiece can also be equipped with an adhesive application mechanism. After the lower layer 40 passes through the crease mechanism 2 and before it is bonded to the upper layer 30, it passes through the adhesive application mechanism and is then glued by the adhesive application mechanism to avoid the crease mechanism 2 being soiled by applying adhesive before passing through the crease mechanism 2.
[0055] Preferably, after the upper plate 30 is pressed tightly against the lower plate 40, the handle strap 10 is folded and stored in the handle groove 50, which is convenient for transportation and aesthetically pleasing.
[0056] Preferably, after the upper plate 30 is pressed tightly against the lower plate 40, the handle strap 10 is partially folded between the upper plate 30 and the lower plate 40. The upper plate 30 and the lower plate 40 together clamp this part, and this part can be pulled out from between the upper plate 30 and the lower plate 40, which is convenient for transportation and storage, and is also aesthetically pleasing. Correspondingly, it is only necessary to adjust the pressing position of the lateral pressing block 204 on the raised part of the handle strap 10.
[0057] The raised part of the handle with strap 10, when folded, resembles a "Z" shape:
[0058] When the two ends of the handle strap 10 are fixed to the lower plate 30, the distance between the two ends of the handle strap 10 is x; the inner arc length of the raised part of the handle strap 10 is y; where, after the handle strap is fixed to the lower plate, x and y are specific values that are defined.
[0059] The length direction of the upper plate 30, lower plate 40, and handle 10 is set to the left and right direction. The pressing part 201 first presses from the left side of the raised part of the handle 10, and the lateral pressing block 204 presses on the right side of the raised part of the handle 10 to create a crease. The pressing position of the lateral pressing block 204 on the raised part of the handle 10 is set as point r, and the distance of point r relative to the end of the handle 10 is p, where p represents the inner arc length of the raised part of the handle 10 corresponding to point r.
[0060] When the folded part of the handle strap 10 is located at the extreme edge between the upper plate 30 and the lower plate 40, the inner arc length of the unfolded part of the raised part of the handle strap 10 corresponding to x is set to q, where q > x; and the inner arc length of the folded part of the raised part of the handle strap 10 is 2p.
[0061] That is, q + 2p = y, and since q > x, it also has 2p < yx;
[0062] Therefore, if the handle strap 10 needs to be partially folded between the upper plate 30 and the lower plate 40, it is only necessary to control the pressing position of the lateral pressing member 204 on the raised part of the handle strap 10, that is, to ensure that p < (yx) / 2; that is, assuming x is 8cm and y is 10cm, it is necessary to ensure that p is less than 1cm.
[0063] In other embodiments, to improve the automation level of this automated lifting machine, it may also include a feeding mechanism 6, a handle strap bonding mechanism 7, and a handle groove forming mechanism 8. The feeding mechanism provides the automated lifting machine with upper layer material strips, lower layer material strips, and handle strap material strips; the handle strap bonding mechanism, after applying adhesive to the lower layer material strip, fixes the handle strap to the lower layer material strip and forms a bulge in the middle of the handle strap on the lower layer material strip; the handle groove forming mechanism performs pressure cutting or roll cutting on the upper layer material strip to remove the corresponding portion of the handle groove.
[0064] In other embodiments, to improve the automation level of this automated lifting machine, it may also include a feeding mechanism 6, a handle strap bonding mechanism 7, and a handle groove forming mechanism 8. The feeding mechanism provides the automated lifting machine with upper layer material strips, lower layer material strips, and handle strap material strips; the handle groove forming mechanism performs pressure cutting or roll cutting on the upper layer material strip to remove the corresponding portion of the handle groove; the handle strap bonding mechanism, after applying adhesive to the upper layer material strip or handle strap, fixes the handle strap to the upper layer material strip, and forms a raised portion after the handle strap is fixed to the upper layer material strip.
[0065] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An automated cell phone lifting device, comprising: The folding mechanism comprises a conveying mechanism, a creasing mechanism and a cutting mechanism, The conveying mechanism is used for conveying the material belt so that the material belt passes through the creasing mechanism and the cutting mechanism in turn; The material belt comprises a handle belt material belt composed of a plurality of continuous handle belt segments, and a fixing plate material belt composed of a plurality of continuous fixing plate segments, both ends of the handle belt being fixed on the fixing plate, and the middle part of the handle belt being upwardly raised; The creasing mechanism comprises a pressing part, which is used for sequentially pressing the raised part of the handle belt from one side of the length direction of the handle belt to the other side of the length direction of the handle belt when the material belt passes through, so as to fold each handle belt segment in the length direction; The cutting mechanism is used for cutting the material belt when the material belt passes through, so as to form a handle combined with the fixing plate; The creasing mechanism further comprises a side pressing part and a moving device; The side pressing part is used for side pressing the other side of the raised part of the handle belt when or before the pressing part presses one side of the raised part of the handle belt; The moving device is used for moving the side pressing part, and has a first working state of moving the side pressing part to side press the raised part of the handle belt when or before the pressing part presses the raised part of the handle belt, and has a second working state of moving the side pressing part away from the handle belt after the side pressing part side presses the raised part of the handle belt; The moving device comprises first and second rotation shafts and a connecting rod, the first and second rotation shafts are rotatably arranged, one end of the connecting rod is rotatably connected to a first eccentric point of the first rotation shaft, the other end of the connecting rod is rotatably connected to a second eccentric point of the second rotation shaft, and the side pressing part is fixed to a third eccentric point of the second rotation shaft; When the first rotation shaft rotates, the first rotation shaft drives the second rotation shaft and the side pressing part on the second rotation shaft to perform reciprocating pendulum motion through the connecting rod; The middle part of the handle belt is upwardly raised and has a raised height h based on the top surface of the fixing plate; and the minimum pressing width s of the pressing surface of the pressing part and the top surface of the fixing plate is less than the raised height h; The creasing mechanism further comprises a supporting part, which is used for supporting the fixing plate when the pressing part presses the raised part of the handle belt.
2. The automated cell phone according to claim 1, wherein, The fixing plate comprises an upper layer plate and a lower layer plate which are bonded to each other, the middle part of the upper layer plate vertically penetrates a handle slot, both ends of the handle belt are fixed between the upper layer plate and the lower layer plate, and the middle part of the handle belt passes through the handle slot upwardly from the bottom of the handle slot to form the raised part; The automatic handle phone further comprises a material belt pressing mechanism, the material belt pressing mechanism is located on the moving path of the material belt, and the material belt passes through the material belt pressing mechanism before passing through the cutting mechanism; The material belt pressing mechanism comprises a supporting plate and a pair of upper layer plate pressing wheels which are arranged in parallel on the supporting plate, the upper layer plate pressing wheels are rotatably arranged, and the pair of upper layer plate pressing wheels form a passing space corresponding to the width of the handle belt; The fixing plate passes between the supporting plate and the upper layer plate pressing wheels, and the upper layer plate pressing wheels cooperate with the supporting plate to press the upper layer plate on the lower layer plate; The fixing plate passes through the creasing mechanism before reaching the cutting mechanism, passes through the material belt pressing mechanism before reaching the creasing mechanism, or passes through the material belt pressing mechanism before reaching the creasing mechanism.
3. The automated cell phone according to claim 2, wherein, The handle strap is folded and stored in the handle slot after being creased.
4. The automated cell phone according to claim 1, wherein, The fixing plate comprises a lower layer plate, and two ends of the handle strap are fixed on the top surface of the lower layer plate; The upper layer plate material belt is configured by a plurality of continuous upper layer plates, a handle slot is vertically arranged in the middle of the upper layer plate, and the conveying mechanism is further used for conveying the upper layer plate material belt; The automatic handle machine further comprises a material belt pressing mechanism, the material belt is combined with the upper layer plate material belt at the material belt pressing mechanism after passing through the creasing mechanism and before passing through the cutting mechanism; The material belt pressing mechanism comprises a supporting plate and a pair of upper layer plate pressing wheels arranged in parallel on the supporting plate, the upper layer plate pressing wheels are rotatably arranged, and a passing space corresponding to the width of the handle strap is formed between the upper layer plate pressing wheels; At least the top surface of the lower layer plate or the bottom surface of the upper layer plate is provided with glue; the upper layer plate and the lower layer plate pass through between the supporting plate and the upper layer plate pressing wheels at the same time, the upper layer plate is located on the lower layer plate, and the upper layer plate pressing wheels cooperate with the supporting plate to press and fit the upper layer plate on the lower layer plate.
5. The automated cell phone according to claim 4, wherein, After the upper layer plate is pressed and fitted on the lower layer plate, the handle strap is folded and stored in the handle slot.
6. The automated cell phone lifting device of claim 4, wherein, After the upper layer plate is pressed and fitted on the lower layer plate, the handle strap is partially folded between the upper layer plate and the lower layer plate, the upper layer plate and the lower layer plate jointly clamp the part, and the part can be taken out from between the upper layer plate and the lower layer plate by pulling out.
Citation Information
Patent Citations
Paper handle
CN203903045U
Automatic hand lifting machine
CN217047713U
Carrying handle for cartons and device for manufacturing it and method of operating the device
DE3440958A1