A mould entry material distributor

By using the pressure rollers, push plate devices, and straightening wheel sets in the mold feeding and feeding machine to straighten the inner lining paper boxes and paper bundles, the problem of poor plastic box packaging effect caused by inconsistent inner lining paper boxes is solved, and the aesthetics and protective effect of the packaging are improved.

CN117508757BActive Publication Date: 2026-03-24郑州启明轩智能装备有限公司
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-20
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

In the existing technology, the shape of the inner cardboard box is not uniform before the paper-wrapped surface is transferred to the plastic box packaging, resulting in poor plastic box packaging effect, affecting aesthetics and insufficient protection.

Method used

Design a mold feeding and feeding machine, including a frame, a carrying mechanism, a conveying mechanism and a ring chain. Through the cooperation of the first pressure roller, the second pressure roller and the push plate, ensure that the inner lining cardboard box is flush with the paper bundle hanging surface, and use the straightening wheel set to straighten the inner lining cardboard box, thereby improving the flatness and aesthetics of the plastic box packaging.

Benefits of technology

This technology enables the straightening of the inner cardboard box and paper handle before plastic box packaging, improving the aesthetics and protective effect of the plastic box packaging, ensuring that the inner cardboard box and paper handle are flat, and avoiding problems such as the inner cardboard box warping or being irregular.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117508757B_ABST
    Figure CN117508757B_ABST
Patent Text Reader

Abstract

The application discloses a material feeding machine for a mould, which comprises a frame (1), a bearing mechanism (2) arranged at the middle part of the frame (1), a conveying mechanism (3) arranged at the front part of the bearing mechanism (2), two annular chains (4) respectively arranged at the left and right sides of the upper part of the frame (1), and a driving mechanism for driving the two annular chains (4) to synchronously rotate, wherein the conveying direction of the conveying mechanism (3) is perpendicular to the arrangement direction of the paper handle surfaces in the same group, and the first compression roller (5), the second compression roller (6) and the push plate (7) are connected between the two annular chains (4), the first compression roller (5), the second compression roller (6) and the push plate (7) are arranged at intervals along the length direction of the annular chain (4), and the side of the push plate (7) facing the second compression roller (6) is provided with a flush surface. The material feeding machine can regulate the multiple paper handle surfaces and the inner liner paper box arranged at the upper part of the paper handle surfaces before entering a plastic box packaging machine, and the plastic box packaging effect is good.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of food packaging machinery, in particular to a material feeding machine for a molding machine. BACKGROUND

[0002] At present, the packaging of dried noodles has been transferred from paper packaging to plastic packaging. The plastic packaging is formed by a plurality of paper-wrapped dried noodles. However, the overall shape of the plurality of paper-wrapped dried noodles is not flat due to the softness of the outer packaging. After the packaging, the outer surface of the plastic box is also not flat, which leads to the fact that the overall shape of the packaged plastic box dried noodles is not beautiful and is easy to deform. In addition, the packaged material cannot be well protected. Therefore, it is necessary to cover the plurality of paper-wrapped dried noodles with an inner liner paper box before plastic box packaging to protect the noodles from being broken or crushed during transportation and storage.

[0003] In the prior art, after the inner liner paper box is placed on the plurality of paper-wrapped dried noodles, and after the end surface of the plurality of paper-wrapped dried noodles is flattened, the shape of the inner liner paper box is not uniform and irregular relative to the plurality of paper-wrapped dried noodles below. This will lead to the fact that after entering the plastic box packaging machine, the packaging of the plastic box packaged dried noodles has large differences and the packaging effect is not good.

[0004] In summary, how to effectively solve the problem that the shape of the inner liner paper box 200 relative to the plurality of paper-wrapped dried noodles below is not uniform and irregular before the plurality of paper-wrapped dried noodles are plastic box packaged, which leads to the fact that the final plastic box packaging effect is not good, is a problem that technicians in the field urgently need to solve at present. SUMMARY

[0005] The purpose of the present application is to provide a material feeding machine for a molding machine, which can regularize the plurality of paper-wrapped dried noodles and the inner liner paper box placed thereon before entering the plastic box packaging machine, and the plastic box packaging effect is better.

[0006] To solve the above technical problems, the present application provides the following technical solutions:

[0007] A material feeding machine for a molding machine, comprising a rack, a bearing mechanism located in the middle of the rack, a conveying mechanism located in the front of the bearing mechanism, two circular chains respectively arranged on the left and right sides of the upper part of the rack, a driving mechanism for driving the two circular chains to rotate synchronously, the conveying direction of the conveying mechanism being perpendicular to the arrangement direction of each paper-wrapped dried noodle in the same group, a first compression roller, a second compression roller and a push plate being connected between the two circular chains, the first compression roller, the second compression roller and the push plate being arranged at intervals along the length direction of the circular chain, and the side of the push plate facing the second compression roller having a flush surface.

[0008] Optionally, the arrangement direction of the first compression roller, the second compression roller and the push plate is opposite to the rotation direction of the circular chain.

[0009] Optionally, the first compression roller, the second compression roller and the push plate arranged on the circular chain are provided in multiple groups.

[0010] Optionally, the connecting part is provided with a support plate on both sides, and the support plates on both sides are hingedly connected to both ends of the rotating rod, and the end of each of the first and second compression rollers is hingedly connected to the rotating rod.

[0011] Optionally, the support plate is further provided with an arc-shaped long hole of a set length, and the middle part of the rotating rod is connected with a limiting rod perpendicular to the rotating rod, and the end of the limiting rod is inserted into the arc-shaped long hole.

[0012] Optionally, the bearing mechanism is further provided with an inner liner box shaping device, the inner liner box shaping device at least includes a pair of shaping wheel sets, each shaping wheel set contains a first shaping wheel and a second shaping wheel, the first shaping wheel and the second shaping wheel are symmetrically arranged on both sides of the bearing mechanism, the first shaping wheel and the second shaping wheel are rotationally connected to the bearing mechanism, the distance from the rotation center of the first shaping wheel and the second shaping wheel to each position on the circumferential surface thereof is variable, and a control mechanism drives the first shaping wheel and the second shaping wheel to rotate synchronously.

[0013] Optionally, the shaping wheel set is provided with two pairs of shaping wheel sets, the first pair of shaping wheel sets and the second pair of shaping wheel sets are arranged along the conveying direction of the group paper, and the maximum distance from the circumferential surface of the shaping wheel of the first pair of shaping wheel sets to the rotation center thereof is smaller than the maximum distance from the circumferential surface of the shaping wheel of the second pair of shaping wheel sets to the rotation center thereof.

[0014] Optionally, the control mechanism includes a first transmission shaft and a second transmission shaft connected to the lower part of the rack, two first bevel gears connected to the two ends of the first transmission shaft respectively, two third bevel gears arranged to mesh with the two first bevel gears respectively, two first drive shafts connected to the centers of the two third bevel gears respectively,

[0015] two second bevel gears connected to the two ends of the second transmission shaft respectively, two fourth bevel gears arranged to mesh with the two second bevel gears respectively, two second drive shafts connected to the centers of the two fourth bevel gears respectively,

[0016] the upper parts of the two first drive shafts are connected to the two first shaping wheels respectively in one-to-one correspondence, and the upper parts of the two second drive shafts are connected to the two second shaping wheels respectively in one-to-one correspondence.

[0017] Optionally, the first transmission shaft is further provided with a first transmission gear, the second transmission shaft is further provided with a second transmission gear, and the first transmission gear and the second transmission gear are in transmission connection.

[0018] Optionally, the first shaping wheel and the second shaping wheel include a rotating shaft and a fan-shaped hub connected to the rotating shaft.

[0019] The rotating shaft is provided with an arc-shaped mounting hole, and the connecting shaft of the fan-shaped hub is connected in the arc-shaped mounting hole.

[0020] The material of the fan-shaped hub is plastic.

[0021] The beneficial effect of the present application is that the mold entry material sorting machine comprises a rack, a bearing mechanism, a conveying mechanism, two circular chains, and a driving mechanism. The bearing mechanism is located in the middle of the rack, and is used to bear the group of paper bundle hanging surfaces conveyed by the conveying mechanism to the bearing mechanism. The conveying mechanism is located in the front of the bearing mechanism, and the conveying direction of the conveying mechanism is perpendicular to the arrangement direction of each paper bundle hanging surface in the same group. Optionally, the conveying mechanism is a transmission belt. One circular chain that rotates circularly is arranged on the left side and the right side of the upper part of the rack respectively, and the two circular chains are driven to rotate synchronously by the driving mechanism. A first compression roller, a second compression roller, and a push plate are connected between the two circular chains and are arranged at intervals along the length direction of the circular chains. The first compression roller and the second compression roller are used to gently press on the inner liner box on the upper part of the group of paper bundle hanging surfaces. The push plate has a flush surface that cooperates with the end surface of the group of paper bundle hanging surfaces to make the group of paper bundle hanging surfaces flush. The group of paper bundle hanging surfaces are pushed to slide on the bearing mechanism by the push plate, so that the end surface of the group of paper bundle hanging surfaces is flush, and at the same time, the inner liner box covered on the upper part of the group of paper bundle hanging surfaces is not pushed out of position. At the same time, the first compression roller and the second compression roller are cooperatively pressed on the group of paper bundle hanging surfaces, so that the inner liner box is flattened relative to the group of paper bundle hanging surfaces.

[0022] The present application provides a mold entry material sorting machine. The first compression roller and the second compression roller are cooperatively pressed on both ends of the group of paper bundle hanging surfaces, so that the inner liner box is flattened relative to the group of paper bundle hanging surfaces, and the inner liner box is prevented from being tilted up only by pressing one end of the group of paper bundle hanging surfaces, so that the upper surface of the inner liner box is overall flat relative to the group of paper bundle hanging surfaces, and the flatness and aesthetic appearance of the plastic box packaging hanging surface after plastic box packaging are improved. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0024] Figure 1 The front view structural schematic diagram of the mold entry material sorting machine provided in a specific embodiment of the present application;

[0025] Figure 2 The three-dimensional structural schematic diagram of the mold entry material sorting machine;

[0026] Figure 3It is the structure schematic diagram of the inner lining paper box;

[0027] Figure 4 It is the structure schematic diagram of the local part of the material feeding machine;

[0028] Figure 5 It is the structure schematic diagram of the local part of the material feeding machine;

[0029] Figure 6 It is the structure schematic diagram of the local part of the material feeding machine.

[0030] The marks in the drawings are as follows:

[0031] Frame 1, bearing mechanism 2, conveying mechanism 3, ring chain 4, first compression roller 5, second compression roller 6, push plate 7, rotating rod 81, support plate 82, arc-shaped long hole 821, connecting part 83, limiting rod 84, anti-rotation guide mechanism 85, control mechanism 101, first sizing wheel 102, second sizing wheel 103, first transmission shaft 1011, second transmission shaft 1012, first bevel gear 1013, third bevel gear 1014, first drive shaft 10141, second bevel gear 1015, fourth bevel gear 1016, second drive shaft 10161, first transmission gear 1017, second transmission gear 1018, rotating shaft 1021, fan-shaped wheel hub 1022, arc-shaped mounting hole 1023, inner lining paper box 200. DETAILED DESCRIPTION

[0032] The core of the present application is to provide a material feeding machine, which can size the paper handle and the inner lining paper box placed on the upper part of the paper handle before entering the plastic box packaging machine, and the plastic box packaging effect is better.

[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0034] Please refer to Figures 1 to 6 , Figure 1 It is the structure schematic diagram of the inner lining paper box; Figure 2 It is the structure schematic diagram of the inner lining paper box; Figure 3 It is the structure schematic diagram of the inner lining paper box; Figure 4 It is the structure schematic diagram of the inner lining paper box; Figure 5 It is the structure schematic diagram of the inner lining paper box; Figure 6 It is the structure schematic diagram of the inner lining paper box; It is the structure schematic diagram of the inner lining paper box;

[0035] In one specific embodiment, the provided material feeding machine comprises a frame 1, a bearing mechanism 2 located at the middle of the frame 1, a conveying mechanism 3 located at the front of the bearing mechanism 2, two circular chains 4 respectively arranged at the left and right sides of the upper part of the frame 1, a driving mechanism for driving the two circular chains 4 to rotate synchronously, the conveying direction of the conveying mechanism 3 is perpendicular to the arrangement direction of the paper bundle in the same group, a first compression roller 5, a second compression roller 6 and a push plate 7 are connected between the two circular chains 4, the first compression roller 5, the second compression roller 6 and the push plate 7 are arranged at intervals along the length direction of the circular chain 4, and the side of the push plate 7 facing the second compression roller 6 has a flush surface.

[0036] In the above structure, the material feeding machine comprises the frame 1, the bearing mechanism 2, the conveying mechanism 3, the two circular chains 4 and the driving mechanism. The bearing mechanism 2 is located at the middle of the frame 1, and is used for bearing the paper bundle conveyed by the conveying mechanism 3 to the bearing mechanism. The conveying mechanism 3 is located at the front of the bearing mechanism 2, and the conveying direction of the conveying mechanism 3 is perpendicular to the arrangement direction of the paper bundle in the same group. Optionally, the conveying mechanism 3 is a transmission belt. The frame 1 is provided with a circular chain 4 rotating circularly at each of the left and right sides of the upper part of the frame 1, and the two circular chains 4 are driven by the driving mechanism to rotate synchronously. The first compression roller 5, the second compression roller 6 and the push plate 7 are connected between the two circular chains 4, and the first compression roller 5, the second compression roller 6 and the push plate 7 are arranged at intervals along the length direction of the circular chain 4. The first compression roller 5 and the second compression roller 6 are used for gently pressing on the inner liner box 200 at the upper part of the paper bundle in the group. The push plate 7 has a flush surface for pushing the end surface of the paper bundle in the group to make the paper bundle in the group flush. The paper bundle in the group is pushed to slide on the bearing mechanism 2 by the push plate 7, so that the end surface of the paper bundle in the group is flush, and the inner liner box 200 covered on the upper part of the paper bundle in the group is not pushed to be deviated. At the same time, the first compression roller 5 and the second compression roller 6 are used for pressing on the paper bundle in the group, so that the inner liner box 200 is pressed flat relative to the paper bundle in the group.

[0037] The application provides a material feeding machine. The first compression roller 5 and the second compression roller 6 are used for pressing on both ends of the paper bundle in the group, so that the inner liner box 200 is pressed flat relative to the paper bundle in the group, and the inner liner box 200 is prevented from being lifted up only by pressing on one end of the paper bundle in the group, so that the upper surface of the inner liner box 200 is flat relative to the paper bundle in the group as a whole, and the flatness and beauty of the plastic box packaging hanging surface after the plastic box packaging are improved.

[0038] The above material feeding machine is only one preferred scheme, and is not limited to this. According to actual needs, targeted adjustment can be made on the basis to obtain different embodiments. The direction of the sequential arrangement of the first compression roller 5, the second compression roller 6 and the push plate 7 is opposite to the rotating direction of the circular chain 4.

[0039] In a specific embodiment, since the first pressing roller 5, the second pressing roller 6 and the push plate 7 are arranged in sequence in the direction opposite to the rotating direction of the endless chain 4, for example, the endless chain 4 rotates counterclockwise, the first pressing roller 5, the second pressing roller 6 and the push plate 7 are arranged clockwise on the endless chain 4, when the first pressing roller 5, the second pressing roller 6 and the push plate 7 gradually rotate from the upper part of the endless chain 4 to the lower part of the endless chain 4, the first pressing roller 5, the second pressing roller 6 and the push plate 7 sequentially contact the group paper hanging surface on the bearing mechanism 2, the first pressing roller 5 and the second pressing roller 6 press the inner liner paper box 200 first, and then the push plate 7 pushes the group paper hanging surface to make the end faces of the group paper hanging surface flush without pushing the inner liner paper box 200 covered on the upper part of the group paper hanging surface.

[0040] On the basis of the above-mentioned various specific embodiments, the first pressing roller 5, the second pressing roller 6 and the push plate 7 arranged on the endless chain 4 are provided as a whole with multiple groups.

[0041] In a specific embodiment, a set of first pressing roller 5, second pressing roller 6 and push plate 7 are arranged at a certain distance on the endless chain 4, and multiple sets of first pressing roller 5, second pressing roller 6 and push plate 7 are arranged on the endless chain 4 as a whole, and the multiple sets of first pressing roller 5, second pressing roller 6 and push plate 7 sequentially push and flatten the continuous group paper hanging surface and the inner liner paper box 200, thereby improving the efficiency of pushing and flattening the group paper hanging surface and the inner liner paper box 200.

[0042] On the basis of the above-mentioned various specific embodiments, the endless chain 4 is connected with a connecting part 83, both sides of the connecting part 83 are fixedly connected with support plates 82, and both sides of the support plates 82 are respectively hinged with both ends of a rotating rod 81, and the end of each of the first pressing roller 5 and the second pressing roller 6 is hinged on the rotating rod 81.

[0043] In a specific embodiment, the rotating rod 81 is hinged on the support plate 82, the support plate 82 is connected on the connecting part 83, the connecting part 83 is connected on the endless chain 4, and the rotating rod 81 can rotate around the support plate 82, so that the first pressing roller 5 and the second pressing roller 6 can be pressed on the inner liner paper box 200 by gravity.

[0044] The end of each of the first pressing roller 5 and the second pressing roller 6 is hinged on the rotating rod 81, and the first pressing roller 5 and the second pressing roller 6 can rotate relative to the rotating rod 81, and can rotate relative to the inner liner paper plate to reduce the friction between them.

[0045] Optionally, the rack 1 is provided with an anti-rotation guide mechanism 85 for positioning and guiding the connecting part 83 to prevent the connecting part 83 from rotating.

[0046] On the basis of the above-mentioned various specific embodiments, the support plate 82 is further provided with an arc-shaped long hole 821 of a certain length, the middle part of the rotating rod 81 is connected with a limiting rod 84 perpendicular to the rotating rod 81, and the end of the limiting rod 84 is inserted into the arc-shaped long hole 821.

[0047] In a specific embodiment, the support plate 82 is further provided with an arc-shaped long hole 821, and the middle part of the rotating rod 81 is connected with a limiting rod 84 perpendicular to the rotating rod 81, and a part of the limiting rod 84 is inserted into the arc-shaped long hole 821, so that when the first and second pressing rollers 5 and 6 press on the inner liner paper box 200, the rotating rod 81 is at an acute angle relative to the advancing direction of the group paper hanging surface, and the limiting rod 84 can continue to move upward relative to the connecting part 83 by a certain distance, so that the first and second pressing rollers 5 and 6 can continue to move upward by a certain distance after pressing on the inner liner paper box 200, avoiding the inner liner paper box 200 from being stuck, and enabling the first and second pressing rollers 5 and 6 to press on the inner liner paper box 200 by gravity.

[0048] Since the U-shaped inner liner paper box 200 is thrown onto the group paper hanging surface, the two side walls of the inner liner paper box 200 are not completely erected, and the whole inner liner paper box 200 will appear trapezoidal, or even flat. This will seriously affect the appearance of the plastic box packaging, or make the plastic box packaging process unable to proceed smoothly, so it is also necessary to automatically regulate the shape of the two side walls of the inner liner paper box 200 before the group paper hanging surface enters the plastic box packaging machine. Therefore, the carrying mechanism 2 can be provided with an inner liner paper box regulating device, and the inner liner paper box regulating device at least includes a pair of regulating wheel sets, each pair of regulating wheel sets includes a first regulating wheel 102 and a second regulating wheel 103, the first regulating wheel 102 and the second regulating wheel 103 are symmetrically arranged on both sides of the carrying mechanism 2, the first regulating wheel 102 and the second regulating wheel 103 are rotationally connected with the carrying mechanism 2, the distance from the rotation center of the first regulating wheel 102 and the second regulating wheel 103 to each position on the circumferential surface is variable, and the control mechanism 101 drives the first regulating wheel 102 and the second regulating wheel 103 to rotate synchronously.

[0049] When the inner liner box 200 on the group paper stick hanging face passes through the bearing mechanism 2, the outer periphery of the first sizing wheel 102 and the second sizing wheel 103 of each pair of sizing wheel groups is not in contact with the side of the inner liner box 200 at the beginning, allowing the group paper stick hanging face and the inner liner box 200 to pass smoothly between the first sizing wheel 102 and the second sizing wheel 103 of each pair of sizing wheel groups. As the first sizing wheel 102 and the second sizing wheel 103 rotate, when the group paper stick hanging face and the inner liner box 200 pass a certain distance between the first sizing wheel 102 and the second sizing wheel 103 of each pair of sizing wheel groups, part of the outer periphery of the first sizing wheel 102 and the second sizing wheel 103 begins to contact the side of the inner liner box 200 and gradually pushes the side of the inner liner box 200 inward, eventually making the side of the inner liner box 200 stand up. Then, as the first sizing wheel 102 and the second sizing wheel 103 continue to rotate, part of the outer periphery of the first sizing wheel 102 and the second sizing wheel 103 of each pair of sizing wheel groups gradually moves away from the side of the inner liner box 200. In this way, the first sizing wheel 102 and the second sizing wheel 103 of each pair of sizing wheel groups can both size the side of the inner liner box 200 and avoid affecting the passage of the group paper stick hanging face and the inner liner box 200. In addition, the rack 1 is provided with a control mechanism 101 that drives the first sizing wheel 102 and the second sizing wheel 103 of each pair of sizing wheel groups to rotate synchronously. The synchronous rotation of the first sizing wheel 102 and the second sizing wheel 103 of each pair of sizing wheel groups has a centering effect, which can make the inner liner box 200 and the paper stick hanging face inside it that have been sized by the first sizing wheel 102 and the second sizing wheel 103 of each pair of sizing wheel groups size synchronously towards the middle, achieving good sizing effect.

[0050] At the same time, the distance between the rotation center of the first sizing wheel 102 and the second sizing wheel 103 and different positions on the outer periphery of the sizing wheel changes, so that when the group paper stick hanging face and the inner liner box 200 thereon pass through the bearing device, part of the outer periphery of the first sizing wheel 102 and the second sizing wheel 103 will gradually push the side of the inner liner box 200 inward as they rotate, causing the side of the inner liner box 200 to gradually stand up.

[0051] Based on the above specific embodiments, the sizing wheel group is provided with two pairs of sizing wheel groups, the first pair of sizing wheel groups and the second pair of sizing wheel groups are arranged along the conveying direction of the group paper stick hanging face, and the maximum distance from the circumferential surface of the sizing wheel of the first pair of sizing wheel groups to the rotation center thereof is less than the maximum distance from the circumferential surface of the sizing wheel of the second pair of sizing wheel groups to the rotation center thereof.

[0052] In one specific embodiment, the sizing wheel group is provided with two pairs of sizing wheel groups, the first pair of sizing wheel groups and the second pair of sizing wheel groups are arranged along the conveying direction of the group paper stick hanging face, and each pair of sizing wheel groups includes a first sizing wheel 102 and a second sizing wheel 103.

[0053] The maximum distance from the circumferential surface of the first pair of sizing wheels to the center of rotation is less than the maximum distance from the circumferential surface of the second pair of sizing wheels to the center of rotation. In this way, when the two sides of the inner liner carton 200 are being sized, the two sizing wheels of the first pair of sizing wheel groups can first rotate the two sides of the inner liner carton 200 inward by a certain angle, so that the cross section of the inner liner carton 200 becomes trapezoidal, and the two sizing wheels of the second pair of sizing wheel groups can rotate the two sides of the inner liner carton 200 inward by a certain angle again, so that the cross section of the inner liner carton 200 becomes rectangular. In this way, the two sides of the inner liner carton 200 can be erected step by step, thereby solving the problem that the inner liner carton 200 passes through a pair of sizing wheel groups for a short time, and the sizing effect is not good when the side of the inner liner carton 200 is pushed into place in one step, i.e., the sizing wheel contacts one end of the side of the inner liner carton 200, and the other end is not in contact, which is not easy to push into place.

[0054] On the basis of the above-mentioned various embodiments, the control mechanism 101 comprises a first transmission shaft 1011 and a second transmission shaft 1012 connected to the lower part of the frame 1, two first bevel gears 1013 connected to the two ends of the first transmission shaft 1011 respectively, two third bevel gears 1014 arranged to mesh with the two first bevel gears 1013 respectively, two first drive shafts 10141 connected to the centers of the two third bevel gears 1014 respectively,

[0055] two second bevel gears 1015 connected to the two ends of the second transmission shaft 1012 respectively, two fourth bevel gears 1016 arranged to mesh with the two second bevel gears 1015 respectively, two second drive shafts 10161 connected to the centers of the two fourth bevel gears 1016 respectively,

[0056] The upper parts of the two first drive shafts 10141 are connected to the two first sizing wheels 102 respectively, and the upper parts of the two second drive shafts 10161 are connected to the two second sizing wheels 103 respectively.

[0057] In one embodiment, the control mechanism 101 comprises a first transmission shaft 1011 and a second transmission shaft 1012 connected to the lower part of the frame 1, the two ends of the first transmission shaft 1011 are each connected with a first bevel gear 1013, the two first bevel gears 1013 are connected with two third bevel gears 1014 at the lower part of two first drive shafts 10141 one by one, the upper part of the two first drive shafts 10141 is connected with two first regular wheels 102 one by one; the two ends of the second transmission shaft 1012 are each connected with a second bevel gear 1015, the two second bevel gears 1015 are connected with two fourth bevel gears 1016 at the lower part of two second drive shafts 10161 one by one, the upper part of the two second drive shafts 10161 is connected with a second regular wheel 103 one by one. Thus, the synchronous rotation of the two first regular wheels 102 and the synchronous rotation of the two second regular wheels 103 can be ensured.

[0058] On the basis of the above-mentioned embodiments, a first transmission gear 1017 is further arranged on the first transmission shaft 1011, and a second transmission gear 1018 is further arranged on the second transmission shaft 1012, and the first transmission gear 1017 and the second transmission gear 1018 are in transmission connection. Thus, the synchronous rotation of the two first regular wheels 102 and the synchronous rotation of the two second regular wheels 103 can be driven by one power, and the power mechanism is saved.

[0059] On the basis of the above-mentioned embodiments, the first regular wheel 102 and the second regular wheel 103 comprise a rotating shaft 1021 and a fan-shaped hub 1022 connected to the rotating shaft 1021.

[0060] The rotating shaft 1021 is provided with an arc-shaped mounting hole 1023, and the connecting shaft of the fan-shaped hub 1022 is connected in the arc-shaped mounting hole 1023.

[0061] The material of the fan-shaped hub 1022 is plastic.

[0062] In one embodiment, the first regular wheel 102 and the second regular wheel 103 comprise a rotating shaft 1021 and a fan-shaped hub 1022 connected to the rotating shaft 1021, and the structure of the rotating shaft 1021 and the fan-shaped hub 1022 facilitates the adjustment of the working angle. Thus, when the area of the rotating shaft 1021 without the fan-shaped hub 1022 rotates to the side of the inner liner carton 200, it does not contact the side of the inner liner carton 200, and the inner liner carton 200 can pass smoothly. Of course, the first regular wheel 102 and the second regular wheel 103 can also be arranged as an eccentric circle, which is simple in structure.

[0063] The rotating shaft 1021 is provided with an arc-shaped mounting hole 1023, so as to facilitate the adjustment of the mounting angle of the fan-shaped hub 1022, and then adjust the time when the outer circular surface of the fan-shaped hub 1022 contacts the side of the inner liner carton 200.

[0064] The material of the fan-shaped hub 1022 can be plastic, which is light in weight, small in driving force, and small in abrasion if the fan-shaped hub 1022 contacts with the bearing mechanism.

[0065] The various embodiments are described in the specification by way of progression, each building on the last to facilitate ease of understanding. The same reference numerals are used throughout the drawings and like structure are denoted with like reference numerals.

[0066] The above has carried on the detailed introduction to the material charging machine provided by the application. The principle and implementation mode of the application are described by applying specific examples in this paper. The above embodiment description is only used to help understand the method and core idea of the application. It should be pointed out that the ordinary skilled in the art can make some improvements and modifications to the application without departing from the principle of the application. These improvements and modifications also fall within the protection scope of the claims of the application. Therefore, the application will not be limited to the embodiments shown in this paper, but will be consistent with the widest range of principles and novel features disclosed in this paper.

Claims

1. A mold feeding and feeding machine, characterized in that, The assembly includes a frame (1), a support mechanism (2) located in the middle of the frame (1), a conveying mechanism (3) located in front of the support mechanism (2), two annular chains (4) respectively located on the left and right sides of the upper part of the frame (1), and a drive mechanism for driving the two annular chains (4) to rotate synchronously. The conveying direction of the conveying mechanism (3) is perpendicular to the arrangement direction of each paper bundle hanging surface in the same group. A first pressure roller (5), a second pressure roller (6), and a push plate (7) are connected between the two annular chains (4). The first pressure roller (5), the second pressure roller (6), and the push plate (7) are spaced apart along the length direction of the annular chains (4). The push plate (7) has a flat surface facing the second pressure roller (6). The first pressure roller (5), the second pressure roller (6), and the push plate (7) are arranged in the opposite direction to the rotation direction of the annular chain (4). The first pressure roller (5), the second pressure roller (6), and the push plate (7) arranged on the annular chain (4) are arranged in multiple sets. The annular chain (4) is connected to a connecting part (83). Support plates (82) are fixedly connected to both sides of the connecting part (83). The support plates (82) on both sides are respectively hinged to the two ends of the rotating rod (81). The ends of each of the first pressure roller (5) and the second pressure roller (6) are hinged. Connected to the rotating rod (81), the support plate (82) is also provided with an arc-shaped elongated hole (821) of a set length. A limiting rod (84) perpendicular to the rotating rod (81) is connected to the middle of the rotating rod (81). The end of the limiting rod (84) is inserted into the arc-shaped elongated hole (821). The bearing mechanism (2) is also provided with an inner lining box straightening device. The inner lining box straightening device includes at least one pair of straightening wheel sets. Each pair of straightening wheel sets includes a first straightening wheel (102) and a second straightening wheel (103). The first straightening wheel (102) and the second straightening wheel (103) are symmetrically arranged on both sides of the bearing mechanism (2). The first aligning wheel (102) and the second aligning wheel (103) are rotatably connected to the carrying mechanism (2). The distance between the rotation center of the first aligning wheel (102) and the second aligning wheel (103) and the position of its circumference varies. The control mechanism (101) drives the first aligning wheel (102) and the second aligning wheel (103) to rotate synchronously. The aligning wheel set is provided in two pairs. The first pair of aligning wheel sets and the second pair of aligning wheel sets are arranged along the conveying direction of the grouped paper bundle hanging surface. The maximum distance between the circumference of the aligning wheel of the first pair of aligning wheel sets and its rotation center is less than the maximum distance between the circumference of the aligning wheel of the second pair of aligning wheel sets and its rotation center.

2. The die feeding and feeding machine according to claim 1, characterized in that, The control mechanism (101) includes a first drive shaft (1011) and a second drive shaft (1012) connected to the lower part of the frame (1), two first bevel gears (1013) respectively connected to both ends of the first drive shaft (1011), two third bevel gears (1014) respectively meshing with the two first bevel gears (1013), and two first drive shafts (10141) whose lower parts are respectively connected to the centers of the two third bevel gears (1014). Two second bevel gears (1015) are respectively connected to both ends of the second transmission shaft (1012), two fourth bevel gears (1016) are respectively meshed with the two second bevel gears (1015), and two second drive shafts (10161) whose lower parts are respectively connected to the centers of the two fourth bevel gears (1016). The upper parts of the two first drive shafts (10141) are respectively connected to the two first aligning wheels (102), and the upper parts of the two second drive shafts (10161) are respectively connected to the two second aligning wheels (103).

3. The die feeding and feeding machine according to claim 2, characterized in that, The first drive shaft (1011) is also provided with a first drive gear (1017), and the second drive shaft (1012) is also provided with a second drive gear (1018). The first drive gear (1017) and the second drive gear (1018) are connected in a transmission manner.

4. The die feeding and feeding machine according to claim 1, characterized in that, The first aligning wheel (102) and the second aligning wheel (103) include a rotating shaft (1021) and a fan-shaped hub (1022) connected to the rotating shaft (1021). The rotating shaft (1021) is provided with an arc-shaped mounting hole (1023), and the connecting shaft of the fan-shaped hub (1022) is connected to the arc-shaped mounting hole (1023); The fan-shaped hub (1022) is made of plastic.

Citation Information

Patent Citations

  • Cloth stacking device for garment fabric production

    CN113247688A

  • Flattening device for mask production

    CN218707547U