Automatic arrangement type paper straw processing and feeding device

By designing an automatic arrangement paper straw processing and loading device, the clamping part, rotating part and sterilization components, combined with the second sterilization lamp, the problem of lack of sterilization treatment during the transportation of paper straws is solved, effective sterilization inside and outside the straws is achieved, and food safety is improved.

CN120191704AInactive Publication Date: 2025-06-24TONGLING WANRUN NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510444548.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2025-06-24
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Paper straws lack sterilization during the transportation and loading process, resulting in bacteria or microorganisms inside and outside the straws, affecting the safety of food contact utensils.

Method used

An automatic arrangement paper straw processing and loading device is designed, including a loading hopper, a conveying mechanism, a sterilization assembly and a driving assembly. By combining the clamping part and rotating part of the driving assembly, the sterilization assembly can realize the sterilization treatment inside and outside the paper straw, and internal sterilization is performed through the second sterilization lamp.

Benefits of technology

It realizes internal and external sterilization of paper straws during transportation, ensures the safety of straws, avoids the existence of bacteria or microorganisms, and improves food safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an automatic arrangement type paper straw processing and feeding device. The automatic arrangement type paper straw processing and feeding device comprises a shell; the charging hopper is installed on one side of the top of the shell, and a top groove is formed in the side, away from the charging hopper, of the shell. The conveying mechanism is arranged in the shell, and a plurality of material receiving frames which are uniformly distributed are arranged on the conveying mechanism; the conveying mechanism is used for driving the plurality of receiving frames to pass through the bottom port of the charging hopper in sequence; the sterilization assembly is arranged between the charging hopper and the top groove; the driving assemblies are arranged at the two ends of the material receiving frame, and each driving assembly is provided with a clamping part and a rotating part; and the lifting mechanism is arranged at the bottom of the material receiving frame. In the conveying process of the paper straws, the driving assembly can enable the second sterilization lamp to extend into the paper straws, sterilization treatment on the interiors and exteriors of the paper straws is achieved in cooperation with the sterilization assembly, the paper straws rotate during sterilization, uniform sterilization on the peripheries of the paper straws is facilitated, and the sterilization effect is guaranteed.
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Description

Technical Field

[0001] The present invention relates to the field of processing of paper straws, and particularly to a feeding device for processing and arranging paper straws automatically. Background Art

[0002] Paper straws are made of renewable paper, decompose much faster in the natural environment than plastic straws, and are also more recyclable than ordinary plastics. Unpolluted waste paper can be recycled into pulp, reducing waste of resources.

[0003] During the processing of paper straws, it is necessary to sort the paper straws so that the paper straws are conveyed to the processing position in an automatically arranged state, facilitating the processing equipment to pick up a single straw each time, such as for individual packaging of paper straws; while in the traditional straw feeding device, during the straw conveying process, there is a lack of a sterilization treatment design. The straws may have bacteria or microorganisms before being packaged, and their safety as food contact utensils cannot be guaranteed; especially at the inner wall of the straw, it may be difficult to perform sterilization treatment. Summary of the Invention

[0004] The present invention provides a feeding device for processing and arranging paper straws automatically to solve the technical problem of the lack of sterilization treatment during the feeding process of straw conveying.

[0005] The present invention solves the above technical problem through the following technical solutions:

[0006] The present invention provides a feeding device for processing and arranging paper straws automatically, including a housing; further including: a loading hopper for containing paper straws to be arranged and fed; the loading hopper is installed on one side of the top of the housing, and a top groove is provided on the side of the housing away from the loading hopper; a conveying mechanism disposed inside the housing, and a plurality of uniformly distributed receiving frames are provided on the conveying mechanism; the conveying mechanism is used to drive a plurality of receiving frames to pass through the bottom port of the loading hopper in sequence; a sterilization assembly disposed between the loading hopper and the top groove; a driving assembly disposed at both ends of the receiving frame, the driving assembly is provided with a clamping portion and a rotating portion; a lifting mechanism disposed at the bottom of the receiving frame.

[0007] In this technical solution, during the conveying process of the paper straws, the driving assembly can extend the second sterilization lamp into the paper straws, and cooperate with the sterilization assembly to achieve sterilization treatment of the inside and outside of the paper straws. And during sterilization, the paper straws rotate, facilitating uniform sterilization of all around the paper straws and ensuring the sterilization effect.

[0008] Preferably, the clamping part of the driving component includes a rotating seat rotatably mounted at the end of the material receiving frame; a first hole body is arranged in the middle of the rotating seat, a non-circular connecting shaft is connected to the first hole body in a clearance fit manner, a pressing head is fixedly connected to one end of the connecting shaft located in the material receiving frame, a first pressure receiving block is rotatably connected to the end of the connecting shaft away from the pressing head, a base is fixedly connected to the bottom of the first pressure receiving block, a guide hole is formed in the base, a guide post is connected to the guide hole in a clearance fit manner, and the guide post is fixedly connected to the outer wall of the end of the material receiving frame. A second spring is arranged between the base and the outer wall of the end of the material receiving frame.

[0009] Preferably, two symmetrically arranged extrusion components are fixedly installed below the sterilization component. The extrusion component includes a second strip body. A second inclined surface is arranged at one end of the second strip body away from the top groove. A first inclined surface adapted to the second inclined surface is arranged on one side of the first pressure receiving block.

[0010] In this technical solution, after the material receiving frame receives the paper straws, the material receiving frame conveys them to the sterilization component. The extrusion component provides extrusion drive for the clamping part to realize automatic clamping of both ends of the paper straws by the clamping part.

[0011] Preferably, the rotating part of the driving component includes a traveling wheel and a traveling strip. The traveling wheel is fixedly sleeved on the rotating seat, and the traveling strip is fixedly installed below the sterilization component.

[0012] In this technical solution, after the paper straws are clamped, the traveling wheel travels on the traveling strip, causing the traveling wheel to rotate on its own axis, and driving the paper straws to rotate on their own axes. By rotating on their own axes, it is convenient for the entire circumferential surface to be irradiated by sterilization light. And after entering the top groove, it disengages from the traveling strip and the extrusion component, automatically canceling the clamping and rotation drive of the paper straws, enabling the clamping, unclamping, rotation drive, and stop of the rotation drive of the paper straws to be automatically carried out without manual control and external control.

[0013] Preferably, a cylindrical second sterilization lamp is further arranged on the first pressure receiving block. Side strips are fixedly connected to both sides of the second sterilization lamp. A second hole body is formed in the first pressure receiving block. The second sterilization lamp and the side strips are connected to the second hole body in a clearance fit manner. Round holes are formed in the middle of the connecting shaft and the pressing head. The second sterilization lamp extends into the round holes. A second pressure receiving block is fixedly connected to the end of the second sterilization lamp away from the pressing head. The second pressure receiving block is elastically connected to the first pressure receiving block through a first spring.

[0014] Preferably, the extrusion component further includes a first strip body. A first inclined surface is arranged at one end of the first strip body away from the top groove, and the first inclined surface is located on the side of the second inclined surface away from the loading hopper. A fourth inclined surface is arranged on one side of the second pressure receiving block.

[0015] In this technical solution, after the paper straw is clamped, the paper straw continues to be conveyed. The first pressing block is driven by extrusion through the extrusion assembly, which can automatically extend the second sterilization lamp into the interior of the paper straw to perform sterilization treatment on the interior of the paper straw, ensuring that both the inside and outside can be sterilized. When it enters the top groove and separates from the extrusion assembly, the second sterilization lamp can be automatically withdrawn from the interior of the paper straw without manual operation or external control.

[0016] Preferably, two second conductive strips are provided on the second pressing block, and the second conductive strips are electrically connected to the second sterilization lamp. Two first conductive strips are provided on the first strip body.

[0017] In this technical solution, through the contact of the first conductive strip and the second conductive strip, power is supplied, enabling the second sterilization lamp to work only during the process of the receiving frame receiving materials and conveying them into the top groove, avoiding ineffective operation of the second sterilization lamp. Moreover, the on-off control of the above-mentioned sterilization can be achieved without manual control or an external control system.

[0018] Preferably, the lifting mechanism includes a vertical rod; the vertical rod passes through a through groove opened at the bottom of the receiving frame. The top end of the vertical rod is fixedly connected with a carrier seat. An embedding groove is provided in the receiving frame, and the carrier seat is embedded in the embedding groove. The bottom of the carrier seat is elastically connected to the bottom surface of the embedding groove through a third spring. A stopper is fixedly connected to the vertical rod, and the stopper contacts the bottom surface of the embedding groove.

[0019] Preferably, a third strip body is provided below the top groove. A fixing rod is fixedly connected to the bottom of the third strip body; the fixing rod is fixedly connected to the inner wall of the housing.

[0020] Preferably, a sixth inclined surface is provided at one end of the third strip body close to the loading hopper; a fifth inclined surface is provided on one side at the bottom end of the vertical rod.

[0021] In this technical solution, after the receiving frame carries the paper straw into the top groove, under the extrusion of the third strip body and the sixth inclined surface thereon, the lifting mechanism can be automatically driven to move the paper straw to the top of the receiving frame and separate from the third strip body. The lifting mechanism is reset through the third spring.

[0022] On the basis of conforming to common knowledge in the art, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of the present invention.

[0023] The positive and progressive effects of the present invention are as follows:

[0024] The automatic arrangement type paper straw processing and feeding device proposed above is provided with a loading hopper, a conveying mechanism and a plurality of receiving frames evenly distributed on the conveying mechanism. The conveying mechanism drives the plurality of receiving frames to pass through the bottom port of the loading hopper in sequence to receive the materials, so that the paper straws are arranged at equal intervals and input into the top slot position, thereby realizing automatic arrangement and facilitating the processing equipment at the top slot position to take the materials for processing. During transportation, each paper straw has a separate receiving frame to carry the materials, which plays a role of blocking and limiting. The paper straws are not easily displaced by external forces. Furthermore, a sterilization component and a driving component are provided. During the process of conveying the paper straws to the top slot, the outer surface of the paper straws is sterilized by the sterilization component. During sterilization, the driving component clamps the paper straws through the clamping part, and drives the clamped paper straws to rotate through the rotating part, so as to facilitate the sterilization of various parts of the outer wall of the paper straws, avoid dead corners of sterilization, and ensure the sterilization effect; further, a second sterilization lamp is provided, and when the paper straws are located in the receiving frame and are transported, the second sterilization lamp can automatically extend into the inside of the paper straws, and sterilize the inner walls of the paper straws, thereby further improving the sterilization effect and ensuring that both the inside and the outside can be sterilized; a lifting mechanism is also provided, and when the paper straws are transported to the top slot position, the lifting mechanism can automatically push the paper straws out of the receiving frame so that they are detached from the receiving frame, and external equipment will not be blocked or affected by the walls around the receiving frame when taking materials. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0026] Figure 2 It is a schematic diagram of the structure inside the shell of the present invention.

[0027] Figure 3 It is a structural schematic diagram of one side of the shell of the present invention.

[0028] Figure 4 It is a schematic structural diagram of the extrusion assembly and the material connection frame of the present invention.

[0029] Figure 5 It is a schematic structural diagram of the extrusion assembly, the material connection frame and the chain of the present invention.

[0030] Figure 6 For the present invention Figure 5 Schematic diagram of the structure with the A part in the middle enlarged.

[0031] Figure 7 It is a schematic structural diagram of the two ends and the bottom of the material connection frame of the present invention.

[0032] Figure 8 It is a schematic diagram of the structure inside the material connection frame of the present invention.

[0033] Figure 9 It is a schematic diagram of the cross-sectional structure of one end of the material connection frame of the present invention.

[0034] Figure 10 For the present invention Figure 9 is a schematic enlarged view of part B in the present invention.

[0035] Figure 11 is a schematic view of the structure inside the top of the housing of the present invention.

[0036] Figure 12 For the present invention Figure 11 is a schematic enlarged view of part C in the present invention.

[0037] Explanation of reference numerals in the drawings

[0038] 1. Housing; 101. Top groove; 102. Support frame; 2. Loading hopper; 201. Fixed frame; 3. Sterilization assembly; 301. Cover body; 302. First sterilization lamp; 4. Material receiving frame; 5. Motor; 6. Sprocket; 7. Chain; 8. Extrusion assembly; 801. First strip; 802. Second strip; 803. First inclined surface; 804. Second inclined surface; 805. First conductive strip; 806. Intermediate groove; 9. Walking strip; 10. Driving assembly; 1001. Pressing head; 1002. Connecting shaft; 1003. First pressed block; 10031. Third inclined surface; 1004. Second sterilization lamp; 10041. Side strip; 1005. First spring; 1006. Second pressed block; 10061. Fourth inclined surface; 1007. Second conductive strip; 1008. Walking wheel; 1009. Base; 1010. Second spring; 1011. Guide post; 1012. Round cover; 1013. Torus; 1014. Rotating seat; 11. Lifting mechanism; 1101. Vertical rod; 1102. Fifth inclined surface; 1103. Carrying seat; 1104. Third spring; 1105. Stopper; 12. Third strip; 1201. Fixed rod; 1202. Sixth inclined surface; 13. Paper straw. Detailed implementation manners

[0039] The present invention will be further described below by way of examples, but the present invention is not limited to the scope of the described examples.

[0040] As Figure 1-12 shown, an automatic arrangement type paper straw processing and feeding device includes a housing 1; a support frame 102 is fixedly installed at the bottom of the housing 1 for supporting and elevating; and further includes:

[0041] A loading hopper 2 for containing the paper straws 13 to be arranged and loaded. The loading hopper 2 is installed on one side of the top of the housing 1. A top groove 101 is provided on the side of the housing 1 away from the loading hopper 2. The loading hopper 2 is fixedly installed with a fixing frame 201, and the fixing frame 201 is fixedly connected to the cover body 301 of the sterilization component 3. A groove is opened at the top of the housing 1, and the bottom port of the loading hopper 2 is embedded in the groove. The bottom port of the loading hopper 2 discharges the paper straws 13 and enters the receiving frame 4.

[0042] A conveying mechanism is arranged inside the housing 1, and a number of evenly distributed receiving frames 4 are arranged on the conveying mechanism. The conveying mechanism is used to drive a number of receiving frames 4 to pass through the bottom port of the loading hopper 2 in sequence. The conveying mechanism includes four sprockets 6, all of the four sprockets 6 are rotatably installed inside the housing 1, and a chain 7 is meshed with the four sprockets 6. The chain 7 is fixedly connected to the receiving frame 4. A motor 5 is fixedly installed on the outer wall of the housing 1, and the output shaft end of the motor 5 is connected to one of the sprockets 6. One sprocket 6 is driven by the motor 5 to rotate, cooperating with the other sprockets 6, so that the chain 7 moves, and then the chain 7 drives the receiving frame 4 to move. The motor 5 is preferably a servo motor and a stepping motor.

[0043] A sterilization component 3 is arranged between the loading hopper 2 and the top groove 101.

[0044] A driving component 10 is arranged at both ends of the receiving frame 4. The driving component 10 is provided with a clamping part and a rotating part.

[0045] A lifting mechanism 11 is arranged at the bottom of the receiving frame 4.

[0046] In specific implementation, through the conveying of the conveying mechanism, a number of receiving frames 4 pass through the bottom port of the loading hopper 2 in sequence. After the receiving frame 4 moves to directly below the bottom port of the loading hopper 2, one paper straw 13 in the receiving frame 4 falls into the receiving frame 4 and then leaves. It can make all the receiving frames 4 passing through the loading hopper 2 have one paper straw 13, realizing the automatic arrangement of the paper straws 13. During the automatic arrangement state, it is conveyed, then passes through the sterilization component 3 for sterilization treatment, and then enters the top groove 101. And the external processing equipment is arranged at the top groove 101. The paper straws 13 are conveyed to the top groove 101 to provide feeding for the external processing equipment. The processing equipment grabs the paper straws 13 for processing.

[0047] It should be noted that the above-mentioned loading hopper 2 can adopt the structure in the existing patent "CN210102790U A paper straw blanking and combing device".

[0048] Such as Figure 2As shown, the sterilization component 3 includes a cover body 301. An opening is provided at the bottom of the cover body 301, and a plurality of first sterilization lamps 302 are equidistantly arranged inside the cover body 301. When the paper straw 13 passes through the sterilization component 3, ultraviolet light is provided by the plurality of first sterilization lamps 302 to achieve the sterilization treatment of the outer surface of the paper straw 13.

[0049] As Figure 6 , Figure 7 , Figure 9 and Figure 10 shown, as a specific technical solution, the clamping part of the driving component 10 includes a rotating seat 1014 rotatably mounted at the end of the receiving frame 4. A first hole body is provided in the middle of the rotating seat 1014. The first hole body is connected with a non-circular connecting shaft 1002 in a clearance fit manner. One end of the connecting shaft 1002 located inside the receiving frame 4 is fixedly connected with a pressing head 1001. One end of the connecting shaft 1002 away from the pressing head 1001 is rotatably connected with a first pressure receiving block 1003. A base 1009 is fixedly connected to the bottom of the first pressure receiving block 1003, and a guide hole is provided in the base 1009. The guide hole is connected with a guide post 1011 in a clearance fit manner, and the guide post 1011 is fixedly connected with the outer wall of the end of the receiving frame 4. A second spring 1010 is provided between the base 1009 and the outer wall of the end of the receiving frame 4.

[0050] A clamping part is provided at each end of each receiving frame 4, and the clamping parts at both ends are symmetrically arranged. The two clamping parts are used to clamp both ends of the paper straw 13 loaded into the receiving frame 4.

[0051] As Figure 10 shown, as a specific technical solution, a circular ring body 1013 is fixedly connected to one end of the connecting shaft 1002 connected to the first pressure receiving block 1003. A circular cover 1012 is fixedly installed on the first pressure receiving block 1003. The circular ring body 1013 is connected to the inside of the circular cover 1012 in a clearance fit manner. The rotational connection between the connecting shaft 1002 and the first pressure receiving block 1003 is achieved through the circular ring body 1013 and the circular cover 1012.

[0052] As Figure 2 , Figure 4 and Figure 5 shown, as a specific technical solution, two symmetrically arranged extrusion components 8 are fixedly installed below the sterilization component 3. The extrusion component 8 includes a second strip body 802. A second inclined surface 804 is provided at one end of the second strip body 802 away from the top groove 101. A first inclined surface 803 adapted to the second inclined surface 804 is provided on one side of the first pressure receiving block 1003.

[0053] As Figure 4 , Figure 5 and Figure 7As shown, as a specific technical solution, the rotating part of the driving component 10 includes a walking wheel 1008 and a walking strip 9. The walking wheel 1008 is fixedly sleeved on a rotating seat 1014, and the walking strip 9 is fixedly installed below the sterilization component 3.

[0054] After the paper straws 13 are loaded into the material receiving frame 4 and during the process of conveying them to the sterilization component 3, as Figure 4-6 shown, the first pressing block 1003 approaches the second strip body 802 until the third inclined surface 10031 fits with the second inclined surface 804. Then, the first pressing block 1003 continues to move, and the second inclined surface 804 provides extrusion for the third inclined surface 10031 until they are separated, that is, after the first pressing block 1003 passes by the second inclined surface 804; during the above process, the first pressing block 1003 is pushed by extrusion, causing the first pressing block 1003, the connecting shaft 1002, and the pressing head 1001 to move together, so that the pressing head 1001 presses on both ends of the paper straws 13 in the material receiving frame 4, realizing the clamping of the paper straws 13. At the same time, when the first pressing block 1003 moves, the base 1009 at its bottom moves together, and the movement is guided by the guide hole and the guide post 1011, and the second spring 1010 is compressed; through the guiding and limiting, the first pressing block 1003 will not rotate together with the connecting shaft 1002.

[0055] After the paper straws 13 are loaded into the material receiving frame 4 and during the process of conveying them to the sterilization component 3, the walking wheel 1008 on the rotating seat 1014 moves to the walking strip 9, and the walking wheel 1008 walks on the walking strip 9. Through the frictional force, the rotational drive is realized, so that the rotating seat 1014 drives the connecting shaft 1002 and the pressing head 1001 to rotate together. After the pressing head 1001 clamps the paper straws 13, the clamped paper straws 13 also rotate together. Through the rotation effect, the outer walls of the paper straws 13 can be sterilized all around, ensuring the sterilization effect. The sterilization component 3 is located above, and through the rotational drive, it can avoid the phenomenon that the bottom of the paper straws 13 cannot be sterilized.

[0056] It should be noted that a retaining seat is provided between the base 1009 and the outer wall of the end of the material receiving frame 4, and the retaining seat is fixed on the guide post 1011. After the pressing head 1001 clamps the paper straws 13, the base 1009 contacts the retaining seat and is blocked; thereafter, the second pressing block 1006 is extruded, and the pressing head 1001, the first pressing block 1003, and the connecting shaft 1002 will not continue to move.

[0057] Among them, the pressing head 1001 can be made of rubber or silica gel materials.

[0058] As Figure 6-10As shown in the figure, as a specific technical solution, a tubular second sterilizing lamp 1004 is further provided on the first pressing block 1003. Side strips 10041 are fixedly connected to both sides of the second sterilizing lamp 1004. The first pressing block 1003 is provided with a second hole body. The second sterilizing lamp 1004 and the side strips 10041 are connected to the second hole body in a clearance fit manner. Round holes are provided in the middle of the connecting shaft 1002 and the pressing head 1001. The second sterilizing lamp 1004 extends into the round hole. A second pressing block 1006 is fixedly connected to one end of the second sterilizing lamp 1004 away from the pressing head 1001. The second pressing block 1006 is elastically connected to the first pressing block 1003 through a first spring 1005.

[0059] As Figure 4-5 shown in the figure, as a specific technical solution, the extrusion assembly 8 further includes a first strip body 801. A first inclined surface 803 is provided at one end of the first strip body 801 away from the top groove 101, and the first inclined surface 803 is located on the side of the second inclined surface 804 away from the loading hopper 2. A fourth inclined surface 10061 is provided on one side of the second pressing block 1006.

[0060] As Figure 5-6 shown in the figure, as a specific technical solution, two second conductive strips 1007 are provided on the second pressing block 1006, and the second conductive strips 1007 are electrically connected to the second sterilizing lamp 1004. Two first conductive strips 805 are provided on the first strip body 801.

[0061] Among them, the number of the second strip bodies 802 is two, and a gap 806 is formed between the two second strip bodies 802. Through the arrangement of the gap 806, the movement of the second sterilizing lamp 1004, the first spring 1005, and the second pressing block 1006 is prevented from being blocked.

[0062] As Figure 5-6 shown in the figure, after the first pressing block 1003 passes through the second inclined surface 804 and completes the clamping of the paper straw 13; when it continues to move, the second pressing block 1006 approaches the first strip body 801 until the second conductive strip 1007 laid on the fourth inclined surface 10061 contacts the first conductive strip 805 laid on the first inclined surface 803 (the first conductive strip 805 is externally connected to a power source). After contact, the second sterilizing lamp 1004 is powered on; then continue to move. After the second conductive strip 1007 passes through the first conductive strip 805 at the position of the first inclined surface 803, the second conductive strip 1007 moves to the first conductive strip 805 at other positions on the first strip body 801; in the above process, through the inclined surface structure, extrusion is realized, so that the first pressing block 1003 and the second sterilizing lamp 1004 move together, and at the same time, the first spring 1005 is compressed. The second sterilizing lamp 1004 extends into the paper straw 13, and ultraviolet sterilization irradiation is performed on the inside of the paper straw 13 through the second sterilizing lamp 1004.

[0063] The diameter of the round hole in the middle of the connecting shaft 1002 and the pressing head 1001 is larger than the sum of the diameter of the second germicidal lamp 1004 and the width of the side strip 10041, so that when the connecting shaft 1002 and the pressing head 1001 rotate, they will not be affected by the side strip 10041 and there will be no friction.

[0064] When the second germicidal lamp 1004 extends into the paper straw 13, the second germicidal lamps 1004 of the two driving components 10 in a single material receiving frame 4 are just butted, so that the inner walls of all parts in the length direction of the paper straw 13 can be irradiated by sterilization.

[0065] In summary, through the setting of the driving component 10, the inner and outer surfaces of the paper straw 13 can be sterilized under the condition of rotation.

[0066] After the material receiving frame 4 passes through the sterilization component 3, it enters the top groove 101. The driving component 10 is separated from the pressing component 8. Through the elastic force of the first spring 1005 and the second spring 1010, the pressing head 1001 and the second germicidal lamp 1004 are reset. The second germicidal lamp 1004 leaves the paper straw 13, and the pressing head 1001 does not clamp the paper straw 13.

[0067] As Figure 8-9 shown, as a specific technical solution, the lifting mechanism 11 includes a vertical rod 1101; the vertical rod 1101 penetrates through a through groove opened at the bottom of the material receiving frame 4. The top end of the vertical rod 1101 is fixedly connected with a carrier seat 1103. An embedding groove is arranged in the material receiving frame 4. The carrier seat 1103 is embedded in the embedding groove. The bottom of the carrier seat 1103 is elastically connected with the bottom surface of the embedding groove through a third spring 1104. A stop block 1105 is fixedly connected to the vertical rod 1101, and the stop block 1105 is in contact with the bottom surface of the embedding groove.

[0068] As Figure 11-12 shown, as a specific technical solution, a third strip body 12 is arranged below the top groove 101. The bottom of the third strip body 12 is fixedly connected with a fixing rod 1201; the fixing rod 1201 is fixedly connected with the inner wall of the housing 1.

[0069] One end of the third strip body 12 close to the loading hopper 2 is provided with a sixth inclined surface 1202; one side of the bottom end of the vertical rod 1101 is provided with a fifth inclined surface 1102.

[0070] After the material receiving frame 4 carries the paper straw 13 into the top groove 101, as Figure 11-12As shown, the material receiving frame 4 continues to move, and the fifth inclined surface 1102 of the vertical rod 1101 fits with the sixth inclined surface 1202 until the vertical rod 1101 moves to the top surface of the third body 12. Through the extrusion of the inclined surface, the vertical rod 1101 drives the carrier 1103 to move upward, and the carrier 1103 pushes the paper straw 13 out of the material receiving frame 4, making the paper straw 13 above the material receiving frame 4, which is convenient for external processing equipment to clamp the paper straw 13. During the clamping process, the paper straw 13 is not blocked by the surrounding walls of the material receiving frame 4; at the same time, during the above process, the third spring 1104 is stretched.

[0071] Among them, the top of the carrier 1103 is arc-shaped for embedding the paper straw 13, and the length of the carrier 1103 is less than the length of the paper straw 13, so that there is no blockage below the end of the paper straw 13, which is convenient for external equipment to clamp.

[0072] After the paper straw 13 is taken out for processing and then the material receiving frame 4 passes through the third body 12, the vertical rod 1101 loses the blockage of the third body 12, and through the elastic force of the third spring 1104, the carrier 1103 returns to its original position and returns to the material receiving frame 4.

[0073] In summary, when the paper straw 13 enters the material receiving frame 4, the clamping, unclamping, rotation drive, loss of rotation drive, and being lifted and the reset of the lifting mechanism of the paper straw 13 do not require an additional power source, control, and manual operation.

[0074] The present invention is not limited to the above embodiments. No matter what changes are made in its shape or structure, they all fall within the protection scope of the present invention. The protection scope of the present invention is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present invention, but these changes and modifications all fall within the protection scope of the present invention.

Claims

1. An automatic arrangement type paper straw processing and feeding device, comprising a housing (1); characterized in that: Also includes: A loading hopper (2), the loading hopper (2) being used to hold paper straws (13) to be arranged and loaded; the loading hopper (2) is mounted on one side of the top of the shell (1), and a top groove (101) is provided on a side of the shell (1) away from the loading hopper (2); A conveying mechanism, the conveying mechanism is arranged inside the housing (1), and a plurality of evenly distributed material receiving frames (4) are arranged on the conveying mechanism; the conveying mechanism is used to drive the plurality of material receiving frames (4) to pass through the bottom port of the charging hopper (2) in sequence; A sterilization component (3), wherein the sterilization component (3) is arranged between the charging hopper (2) and the top tank (101); A driving assembly (10), wherein the driving assembly (10) is arranged at two ends of the material receiving frame (4), and the driving assembly (10) is provided with a clamping portion and a rotating portion; A lifting mechanism (11), wherein the lifting mechanism (11) is arranged at the bottom of the material receiving frame (4).

2. The automatic arrangement type paper straw processing and feeding device according to claim 1, characterized in that: The clamping portion of the driving assembly (10) comprises a rotating seat (1014) rotatably mounted to the end of the material receiving frame (4); a first hole body is provided in the middle of the rotating seat (1014), and a non-circular connecting shaft (1002) is connected to the first hole body in a clearance fit; one end of the connecting shaft (1002) located in the material receiving frame (4) is fixedly connected to a pressure head (1001); one end of the connecting shaft (1002) away from the pressure head (1001) is rotatably connected to a first pressure block (1003); a base (1009) is fixedly connected to the bottom of the first pressure block (1003), and a guide hole is provided on the base (1009); a guide column (1011) is connected to the guide hole in a clearance fit, and the guide column (1011) is fixedly connected to the outer wall of the end of the material receiving frame (4); a second spring (1010) is provided between the base (1009) and the outer wall of the end of the material receiving frame (4).

3. The automatic arrangement type paper straw processing and feeding device as claimed in claim 2, characterized in that: Two symmetrically arranged extrusion assemblies (8) are fixedly installed below the sterilization assembly (3), and the extrusion assembly (8) includes a second strip body (802), and a second inclined surface (804) is arranged at one end of the second strip body (802) away from the top groove (101), and a first inclined surface (803) adapted to the second inclined surface (804) is arranged on one side of the first pressure block (1003).

4. The automatic arrangement type paper straw processing and feeding device as claimed in claim 2, characterized in that: The rotating part of the driving component (10) includes a running wheel (1008) and a running bar (9), wherein the running wheel (1008) is fixedly sleeved on a rotating seat (1014), and the running bar (9) is fixedly installed below the sterilization component (3).

5. The automatic arrangement type paper straw processing and feeding device as claimed in claim 3, characterized in that: A second cylindrical germicidal lamp (1004) is also provided on the first pressure-bearing block (1003), and side strips (10041) are fixedly connected to both sides of the second germicidal lamp (1004). The first pressure-bearing block (1003) is provided with a second hole body, and the second germicidal lamp (1004) and the side strips (10041) are loosely connected to the second hole body. A circular hole is provided in the middle of the connecting shaft (1002) and the pressure head (1001), and the second germicidal lamp (1004) extends into the circular hole. A second pressure-bearing block (1006) is fixedly connected to the end of the second germicidal lamp (1004) away from the pressure head (1001), and the second pressure-bearing block (1006) is elastically connected to the first pressure-bearing block (1003) via a first spring (1005).

6. The automatic arrangement type paper straw processing and feeding device as claimed in claim 5, characterized in that: The extrusion assembly (8) further comprises a first strip body (801), wherein a first inclined surface (803) is provided at one end of the first strip body (801) away from the top groove (101), and the first inclined surface (803) is located on the side of the second inclined surface (804) away from the charging hopper (2); and a fourth inclined surface (10061) is provided on one side of the second pressure block (1006).

7. The automatic arrangement type paper straw processing and feeding device as claimed in claim 6, characterized in that: Two second conductive strips (1007) are arranged on the second pressure-bearing block (1006), and the second conductive strips (1007) are electrically connected to the second germicidal lamp (1004), and two first conductive strips (805) are arranged on the first strip body (801).

8. The automatic arrangement type paper straw processing and feeding device as claimed in claim 1, characterized in that: The lifting mechanism (11) comprises a vertical rod (1101); the vertical rod (1101) passes through a through slot provided at the bottom of a material receiving frame (4); a carrier (1103) is fixedly connected to the top of the vertical rod (1101); an embedding slot is provided in the material receiving frame (4); the carrier (1103) is embedded in the embedding slot; the bottom of the carrier (1103) is elastically connected to the bottom surface of the embedding slot via a third spring (1104); a stopper (1105) is fixedly connected to the vertical rod (1101), and the stopper (1105) contacts the bottom surface of the embedding slot.

9. The automatic arrangement type paper straw processing and feeding device as claimed in claim 8, characterized in that: A third body (12) is provided below the top groove (101), and a fixing rod (1201) is fixedly connected to the bottom of the third body (12); the fixing rod (1201) is fixedly connected to the inner wall of the shell (1).

10. The automatic arrangement type paper straw processing and feeding device according to claim 9, characterized in that: A sixth inclined surface (1202) is provided at one end of the third body (12) close to the charging hopper (2); and a fifth inclined surface (1102) is provided at one side of the bottom end of the vertical rod (1101).

Citation Information

Patent Citations

  • Paper straw discharging and carding device

    CN210102790U