CN221218000U - Melt blowing machine - Google Patents

Melt blowing machine Download PDF

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Publication number
CN221218000U
CN221218000U CN202322662230.1U CN202322662230U CN221218000U CN 221218000 U CN221218000 U CN 221218000U CN 202322662230 U CN202322662230 U CN 202322662230U CN 221218000 U CN221218000 U CN 221218000U
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Prior art keywords
cloth
machine
frame
rotating
groove
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Application number
CN202322662230.1U
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Chinese (zh)
Inventor
张槐迪
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Wenzhou Changhao Material Technology Co ltd
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Wenzhou Changhao Material Technology Co ltd
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Priority to CN202322662230.1U priority Critical patent/CN221218000U/en
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Abstract

The utility model provides a melt-blown machine, includes the frame, set up feed cylinder, guide roll, feed roll and batching machine on the frame, set up cloth supporting component between batching machine and the feed roll, through setting up cloth supporting component, in this design, still go on the frame to the cloth cooling device that cools down, the cooling device cools down to the cloth on the cloth supporting component, cooling device is the air-cooler among the prior art, so not repeated here, can support the cloth that needs to melt-blow, prevent that the cloth overlength leads to the part between batching machine and the feed roll is unsettled in the middle of, thereby influence the transport of cloth, and cloth supporting component can carry out altitude mixture control, when cloth length overlength, adjust cloth supporting component, thereby prolong the transport distance of cloth, for the cloth extension cooling time after melt-blow, ensure to carry to be in dry state to the cloth on the batching machine, rotatable shower nozzle on the melt-blown device then can be even melt-blown the work to the cloth surface.

Description

Melt blowing machine
Technical Field
The utility model relates to the technical field of non-woven fabric production equipment, in particular to a melt blowing machine.
Background
The non-woven fabric, also called non-woven fabric, is formed by directional or random fibers, is a new generation environment-friendly material, has the advantages of moisture resistance, ventilation, flexibility, light weight, no combustion supporting, easy decomposition, no toxicity and irritation, rich color, low price, recycling and the like, and is increasingly widely applied to production and life. At present, the non-woven fabric is mainly formed by a melt blowing method, and the melt blowing method is a spinning method for rapidly and highly stretching, solidifying and forming a freshly extruded high polymer melt by means of high-speed hot air flow. The phenomenon of uneven spraying can appear in the melt-blowing process of the existing melt-blowing machine, and the processed non-woven fabric needs to be cooled due to higher temperature in a molten state, so that the existing cooling mode has higher manufacturing cost and unsatisfactory radiating effect.
Disclosure of Invention
In view of this, the present utility model provides a melt blowing machine.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The utility model provides a melt-blown machine, includes the frame, set up the frame on the frame, set up the melt-blown device in the frame, set up mould cloth conveyor on the frame, mould cloth conveyor includes feed cylinder, guide roller, feed roller and cloth rewinder, set up cloth supporting component between cloth rewinder and the feed roller, cloth supporting component has cloth supporting end and swing joint end, the mobilizable setting of swing joint end is in the frame, just swing joint end drives cloth supporting end and carries out elevating movement, the melt-blown device includes shower nozzle and workbin, the rotatable setting of shower nozzle is on the workbin, just shower nozzle and workbin intercommunication.
Preferably, the cloth supporting component comprises a supporting plate and a supporting rod, the cloth supporting end is arranged on one side of the supporting plate, which is far away from the supporting rod, the two sides of the bottom of the supporting plate are symmetrically provided with movable ends, a rotary groove is arranged between the movable ends, corresponding rotary holes are formed in the groove walls on the two sides of the rotary groove, the supporting rod corresponds to the movable ends, the supporting rod stretches into the rotary groove to be rotationally connected with the movable ends, a connecting hole corresponding to the rotary holes is formed in one end of the supporting rod stretching into the rotary groove, a rotating shaft is arranged between the rotary hole and the connecting hole, the supporting rod is connected with the movable ends through the rotating shaft, and the movable connecting ends are arranged at one end of the supporting rod, which is far away from the movable ends.
Preferably, the machine base is provided with a sliding groove, the groove wall of the sliding groove is provided with a limiting hole, the movable connecting end stretches into the sliding groove to be in sliding connection with the machine base, the movable connecting end is provided with a positioning hole corresponding to the limiting hole, and a limiting pin is arranged between the positioning hole and the limiting hole.
Preferably, the feed box is arranged on the frame, a material guide pipe and a connecting frame are arranged between the feed box and the spray head, two ends of the material guide pipe are respectively communicated with the feed box and the spray head, one end of the connecting frame is connected with the feed box, a connecting groove is formed in the other end of the connecting frame, corresponding rotating connecting holes are formed in groove walls on two sides of the connecting groove, the spray head is provided with rotating ends corresponding to the rotating connecting holes, and the rotating ends extend into the rotating connecting holes to be connected with the connecting frame.
Preferably, a wear-resistant gasket is arranged between the rotating end and the wall of the rotating connecting hole, the wear-resistant gasket is sleeved on the rotating end, and two ends of the wear-resistant gasket are respectively connected with the rotating end and the wall of the rotating connecting hole.
Preferably, the cooling device is arranged on the machine base, the non-woven fabric is arranged on the cloth supporting assembly, and the cooling device cools the non-woven fabric on the cloth supporting assembly.
Preferably, the wear-resistant gasket is made of elastic rubber.
The utility model has the beneficial effects that: through setting up cloth supporting component, in this design, still have the heat sink to the cloth on the frame, the heat sink cools down to the cloth on the cloth supporting component, the heat sink is the air-cooler among the prior art, so not repeated here, can support the cloth that needs carry out the melt-blown, prevent that the cloth overlength and lead to the part between middle cloth rewinder and the feed roll unsettled, thereby influence the transportation of cloth, and cloth supporting component can highly regulated, when cloth length overlength, turn up cloth supporting component, thereby prolong the transportation distance of cloth, for the cloth extension cooling time after the melt-blown, ensure to carry to the cloth on the cloth rewinder and be in dry state, rotatable shower nozzle then can be even carry out the melt-blown work to the cloth surface on the melt-blown device.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic diagram of the structure of the present utility model;
Fig. 2 is a schematic diagram of the connection of the connecting frame and the spraying.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The utility model will be further described with reference to the drawings.
The utility model provides the following technical scheme:
As shown in fig. 1-2, the utility model discloses a melt blowing machine, which comprises a machine base 1, wherein a machine frame 2 is arranged on the machine base 1, a melt blowing device 3 is arranged on the machine frame 2, a die cloth conveying device 4 is arranged on the machine base 1, the die cloth conveying device 4 comprises a raw material cylinder 5, a material guide roller 6, a material feeding roller 7 and a cloth rolling machine 8, a cloth supporting component 9 is arranged between the cloth rolling machine 8 and the material feeding roller 7, the cloth supporting component 9 is provided with a cloth supporting end 10 and a movable connecting end 11, the movable connecting end 11 is movably arranged on the machine frame 2, the movable connecting end 11 drives the cloth supporting end 10 to perform lifting movement, the melt blowing device 3 comprises a spray head 12 and a material box 13, the spray head 12 is rotatably arranged on the material box, and the spray head 12 is communicated with the material box 13. Specifically, in this design, through setting up cloth supporting component 9, in this design, still the heat sink (not shown) that cools down to the cloth on the frame 1, the heat sink cools down to the cloth on the cloth supporting component 9, the heat sink is the air-cooler among the prior art, so not repeated here, can support the cloth that needs to melt-blow, prevent that the cloth overlength and lead to the part between middle cloth rewinder 8 and the feed roll 7 unsettled, thereby influence the transportation of cloth, and cloth supporting component 9 can carry out high regulation, when cloth length overlength, adjust up cloth supporting component 9, thereby prolong the conveying distance of cloth, lengthen the cooling time for the cloth after melting, ensure to carry to the cloth on the cloth rewinder 8 and be in dry state, rotatable shower nozzle 12 on the melt-blown device 3 then can be even carry out the melt-blow work to the cloth surface.
Further, the cloth supporting assembly 9 comprises a supporting plate 14 and a supporting rod 15, the cloth supporting end 10 is arranged on one side, far away from the supporting rod 15, of the supporting plate 14, two sides of the bottom of the supporting plate 14 are symmetrically provided with movable ends 16, a rotary groove (not shown in the figure) is formed between the movable ends 16, corresponding rotary holes 17 are formed in two side groove walls of the rotary groove, the supporting rod 15 corresponds to the movable ends 16 and is rotationally connected with the rotary groove and the movable ends 16, a connecting hole 18 corresponding to the rotary holes 17 is formed in one end, far from the rotary groove, of the supporting rod 15, a rotary shaft 19 is arranged between the rotary holes 17 and the connecting hole 18, the supporting rod 15 is connected with the movable ends 16 through the rotary shaft 19, and the movable connecting end 11 is arranged on one end, far away from the movable ends 16, of the supporting rod 15. Specifically, in this embodiment, by adopting the rotational connection between the support plate 14 and the support rod 15, when the height of the support plate 14 needs to be reduced or increased, the support rod 15 rotates around the rotation hole 17 on the movable end 16 by moving the bottom end of the support rod 15, so as to adjust the height of the support plate 14.
Further, the base 1 is provided with a chute 20, a wall of the chute 20 is provided with a limiting hole 21, the movable connecting end 11 extends into the chute 20 to be slidably connected with the base 1, the movable connecting end 11 is provided with a positioning hole 22 corresponding to the limiting hole 21, and a limiting pin 23 is arranged between the positioning hole 22 and the limiting hole 21. In this embodiment, by providing the chute 20 on the stand 1, a moving space is provided for the support rod 15, and the limiting hole 21 on the wall of the chute 20 can cooperate with the positioning hole 22 on the support rod 15 to limit the position of the support rod 15, so as to ensure the stability of the support plate 14 after the height adjustment.
Further, the feed box 13 is arranged on the frame 2, a material guiding pipe 24 and a connecting frame 25 are arranged between the feed box 13 and the spray head 12, two ends of the material guiding pipe 24 are respectively communicated with the feed box 13 and the spray head 12, one end of the connecting frame 25 is connected with the feed box 13, a connecting groove 26 is formed in the other end of the connecting frame 25, corresponding rotating connecting holes 27 are formed in groove walls on two sides of the connecting groove 26, the spray head 12 is provided with rotating ends 28 corresponding to the rotating connecting holes 27, and the rotating ends 28 extend into the rotating connecting holes 27 to be connected with the connecting frame 25. Further, a wear-resistant gasket 29 is arranged between the rotating end 28 and the hole wall of the rotating connecting hole 27, the wear-resistant gasket 29 is sleeved on the rotating end 28, two ends of the wear-resistant gasket 29 are respectively connected with the rotating end 28 and the hole wall of the rotating connecting hole 27, in the embodiment, the spray head 12 is connected with the connecting frame 25, the spray head 12 can be rotatably arranged in the connecting groove 26 of the connecting frame 25, the rotating function of the spray head 12 is realized, the wear-resistant gasket 29 is arranged between the rotating end 28 of the spray head 12 and the rotating connecting hole 27, interference fit can be realized, positioning after rotation is realized, and the phenomenon that the rotating end 28 is worn after long-term rotation is prevented.
Specifically, the wear-resistant gasket 29 is made of elastic rubber.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present utility model. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the utility model. Thus, the present utility model is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (7)

1. The melt blowing machine comprises a machine base, wherein a machine frame is arranged on the machine base, a melt blowing device is arranged on the machine frame, and a die cloth conveying device is arranged on the machine base, and is characterized in that: the die cloth conveying device comprises a raw material barrel, a material guide roller, a material feeding roller and a cloth rolling machine, wherein a cloth supporting component is arranged between the cloth rolling machine and the material feeding roller and is provided with a cloth supporting end and a movable connecting end, the movable connecting end is movably arranged on a frame, the movable connecting end drives the cloth supporting end to conduct lifting movement, the melt blowing device comprises a spray head and a material box, the spray head is rotatably arranged on the material box, and the spray head is communicated with the material box.
2. The melt blowing machine of claim 1, wherein: the cloth supporting assembly comprises a supporting plate and a supporting rod, wherein the cloth supporting end is arranged on one side of the supporting plate, far away from the supporting rod, the two sides of the bottom of the supporting plate are symmetrically provided with movable ends, a rotary groove is formed between the movable ends, corresponding rotary holes are formed in groove walls on two sides of the rotary groove, the supporting rod corresponds to the movable ends, the supporting rod stretches into the rotary groove to be rotationally connected with the movable ends, a connecting hole corresponding to the rotary holes is formed in one end of the supporting rod, which stretches into the rotary groove, a rotating shaft is arranged between the rotary hole and the connecting hole, the supporting rod is connected with the movable ends through the rotating shaft, and the movable connecting ends are arranged on one end of the supporting rod, far away from the movable ends.
3. The melt blowing machine of claim 2, wherein: the machine seat is provided with a sliding groove, the groove wall of the sliding groove is provided with a limiting hole, the movable connecting end stretches into the sliding groove to be connected with the machine seat in a sliding mode, the movable connecting end is provided with a positioning hole corresponding to the limiting hole, and a limiting pin is arranged between the positioning hole and the limiting hole.
4. The melt blowing machine of claim 1, wherein: the feed box is arranged on the frame, a material guide pipe and a connecting frame are arranged between the feed box and the spray head, two ends of the material guide pipe are respectively communicated with the feed box and the spray head, one end of the connecting frame is connected with the feed box, a connecting groove is formed in the other end of the connecting frame, corresponding rotating connecting holes are formed in groove walls on two sides of the connecting groove, the spray head is provided with a rotating end corresponding to the rotating connecting holes, and the rotating end stretches into the rotating connecting holes to be connected with the connecting frame.
5. The melt blowing machine of claim 4, wherein: and a wear-resistant gasket is arranged between the rotating end and the hole wall of the rotating connecting hole, the wear-resistant gasket is sleeved on the rotating end, and two ends of the wear-resistant gasket are respectively connected with the rotating end and the hole wall of the rotating connecting hole.
6. The melt blowing machine of claim 1, wherein: set up the heat sink on the frame, set up the non-woven fabrics on the cloth supporting component, the heat sink cools down the non-woven fabrics on the cloth supporting component.
7. The melt blowing machine of claim 5, wherein: the wear-resistant gasket is made of elastic rubber.
CN202322662230.1U 2023-09-28 2023-09-28 Melt blowing machine Active CN221218000U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322662230.1U CN221218000U (en) 2023-09-28 2023-09-28 Melt blowing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322662230.1U CN221218000U (en) 2023-09-28 2023-09-28 Melt blowing machine

Publications (1)

Publication Number Publication Date
CN221218000U true CN221218000U (en) 2024-06-25

Family

ID=91565602

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322662230.1U Active CN221218000U (en) 2023-09-28 2023-09-28 Melt blowing machine

Country Status (1)

Country Link
CN (1) CN221218000U (en)

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