CN218166800U - Magma mixing arrangement is used in napkin production - Google Patents

Magma mixing arrangement is used in napkin production Download PDF

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Publication number
CN218166800U
CN218166800U CN202222072183.0U CN202222072183U CN218166800U CN 218166800 U CN218166800 U CN 218166800U CN 202222072183 U CN202222072183 U CN 202222072183U CN 218166800 U CN218166800 U CN 218166800U
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mixing
stirring
barrel
cylinder
matched
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CN202222072183.0U
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陈鹏
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Henan Tingxin Packaging Technology Co ltd
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Henan Tingxin Packaging Technology Co ltd
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Abstract

The utility model provides a raw stock mixing device for producing napkin paper, which comprises a mixing barrel, a feed hopper, a support leg, a discharge pipe, a control valve, a stirring module and a filtering module; the filtering module comprises a vertical plate, first telescopic push rods, adjusting motors and a screening and filtering barrel, wherein the vertical plate is arranged at the bottom of the mixing barrel and positioned on the left side and the right side of the discharging pipe, the adjusting motors are respectively connected with output shafts of the two first telescopic push rods, and the screening and filtering barrel is arranged between output shafts of the two adjusting motors and matched with the discharging pipe. Through the utility model discloses a virgin stock mixing arrangement is used in napkin paper production not only can stir the hybrid processing to the virgin stock fast evenly, but also can conveniently carry out filtration processing to the virgin stock after the stirring is mixed through filtration to improve the quality of mixing paper pulp, can also in time conveniently clear up the impurity that filters out, thereby prolong filtration's filter effect.

Description

Magma mixing arrangement is used in napkin production
Technical Field
The utility model belongs to the technical field of napkin paper production, in particular to raw stock mixing arrangement is used in napkin paper production.
Background
As the napkin paper generally has wet and tough strength, is mainly used for daily hygiene of people's life and is one of indispensable paper types of people, in order to soften the napkin paper, the paper is usually wrinkled by a mechanical method, the softness of the napkin paper is increased, a lot of raw materials for manufacturing the napkin paper are used, the napkin paper usually contains natural pollution-free raw materials such as cotton pulp, wood pulp, bamboo pulp, straw pulp and the like, the napkin paper requires no toxic chemical substances, no raw materials irritating to the skin and no mould and virus bacteria residues, the napkin paper is characterized by strong water absorption, no pathogenic bacteria, uniform soft thickness, no holes, uniform wrinkling and the like, and the paper pulp needs to be poured into stirring equipment for stirring treatment in the production process of the napkin paper.
Notice No. is CN 210674961U's utility model discloses a magma mixing arrangement is used in napkin paper production, the on-line screen storage device comprises a base, the top fixedly connected with mixing arrangement body of base, the bottom fixedly connected with of mixing arrangement body is located the inboard drive machine of base, drive machine's output fixedly connected with puddler, drive machine's one end is kept away from to the puddler runs through to the inside and the fixedly connected with stirring leaf of mixing arrangement body, the top of mixing arrangement body is articulated through the hinge has the apron, the right side intercommunication of mixing arrangement body has the discharging pipe. This magma mixing arrangement is used in napkin paper production has solved current agitated vessel function and structure more singleness, and is inconvenient to the stirring processing of paper pulp, leads to the stirring efficiency of paper pulp to reduce, makes the problem that the condition that the paper pulp stirring qualification rate is not up to standard frequently appears easily simultaneously, and this magma mixing arrangement is used in napkin paper production possesses advantages such as function pluralism. However, the technical solution of this patent has the following disadvantages: because a filtering structure is not arranged, impurities still existing in the primary pulp after stirring and mixing treatment cannot be filtered, so that the impurities in the primary pulp are easily mixed in the mixed pulp, and the subsequent production and processing are adversely affected.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides a to prior art's is not enough, provides a magma mixing arrangement is used in napkin paper production, not only can stir the hybrid processing to the magma fast uniformly, but also can conveniently carry out filtration processing to the magma after the stirring is mixed through filtration to improve the quality of mixing paper pulp, can also clear up the impurity that filters out conveniently in time, thereby prolong filtration's filter effect.
In order to solve the technical problem, the utility model discloses a technical scheme is: a primary pulp mixing device for napkin paper production comprises a mixing barrel, a feed hopper arranged at the top of the mixing barrel, support legs arranged at the bottom of the mixing barrel, a discharge pipe arranged at the bottom of the mixing barrel, a control valve arranged on the discharge pipe, a stirring module arranged on the mixing barrel and a filtering module arranged at the bottom of the mixing barrel;
the filtering module comprises vertical plates arranged at the bottom of the mixing drum and positioned on the left side and the right side of the discharging pipe, first telescopic push rods respectively transversely connected with the inner side walls of the two vertical plates, adjusting motors respectively connected with output shafts of the two first telescopic push rods, and a screening drum arranged between output shafts of the two adjusting motors and matched with the discharging pipe. The filtering module also comprises a cleaning spray head which is arranged at the bottom of the mixing cylinder and is matched with the screening cylinder, a water supply pipe which is arranged between the cleaning spray head and a water source, and a pump body which is arranged on the water supply pipe and is connected with the bottom of the mixing cylinder. The stirring module is including setting up the mounting bracket at the U type at mixing drum top, the flexible push rod of second of setting on the mounting bracket top diapire, the agitator motor of setting at the output shaft lower extreme of the flexible push rod of second, the (mixing) shaft that is connected and runs through the mixing drum top downwards with agitator motor's output shaft, set up at the top of mixing drum and with the through-hole of stirring shaft adaptation and set up on the (mixing) shaft and with the stirring vane of mixing drum looks adaptation.
Furthermore, the side end of the stirring blade is also provided with a scraping plate matched with the mixing cylinder. The scraping plate can scrape and clean the materials adhered to the inner wall of the mixing cylinder, so that the materials are prevented from being adhered to the inner side wall of the mixing cylinder in the stirring and mixing process and not participating in mixing, the waste of the materials is avoided, and the quality of mixed paper pulp is not influenced; carry out the in-process of ejection of compact, can avoid mixing the waste that the paper pulp adhesion can't carry out the ejection of compact and cause mixed paper pulp on the inner wall of mixing drum.
Further, the bottom of supporting leg still is provided with the walking wheel, and the side of supporting leg still is provided with the extension board, still is provided with on the extension board to be used for carrying out the rag bolt fixed with ground, and the walking wheel is the universal wheel that the band pulley was stopped. Through the travelling wheels, a user can move the device to a proper position in a time-saving and labor-saving manner, and then the foundation bolt can penetrate through the extension plate and is connected with the ground, so that the device is prevented from easily deviating; when the device needs to be moved again later, the foundation bolt is separated from the ground.
Furthermore, the lower extreme inside wall of mixing drum is the cone cylindric, and stirring vane and scraping plate all are with mixing drum looks adaptation.
Furthermore, a pushing rod is further arranged on the outer side wall of the mixing cylinder, and an anti-skid sleeve is further arranged on the pushing rod. Through the pushing rod, the walking wheel can be matched with the walking wheel, the device can be moved more conveniently, and the pushing rod can be operated conveniently through the anti-skidding sleeve.
Furthermore, a connecting cylinder fixedly clamped with the pushing rod is further arranged on the outer side wall of the mixing cylinder, and a connecting bolt used for fixing the pushing rod is further arranged on the connecting cylinder. Through the cooperation of connecting cylinder, connecting bolt, can realize pushing away the nimble connection and the dismantlement of pole and mixing drum.
Compared with the prior art, the beneficial effects of the utility model are as follows: through the mixing drum, the feeder hopper, the supporting leg, the discharging pipe, a control valve, two risers, two first telescopic push rods, two accommodate motor, a section of thick bamboo is strained to the sieve, wash the shower nozzle, the delivery pipe, the pump body, the mounting bracket, the flexible push rod of second, agitator motor, the (mixing) shaft, the through-hole, stirring vane's cooperation, not only can stir the hybrid processing to the magma fast evenly, but also can conveniently carry out filtration processing to the magma after the stirring is mixed through filtration, thereby improve the quality of mixing paper pulp, can also clear up the impurity of crossing conveniently in time, thereby prolong filtration's filter effect.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the travelling wheel, the extension plate and the foundation bolt of the present invention;
FIG. 3 is a schematic view of the push rod and the anti-slip cover of the present invention;
fig. 4 is a schematic structural view of the connecting cylinder and the connecting bolt of the present invention.
In the figure: 101. a mixing drum; 102. a feed hopper; 103. supporting legs; 104. a discharge pipe; 105. a control valve; 106. a traveling wheel; 107. an extension plate; 108. anchor bolts; 109. a push rod; 110. an anti-slip sleeve; 111. a connecting cylinder; 112. a connecting bolt; 201. a vertical plate; 202. a first telescopic push rod; 203. adjusting the motor; 204. a screen cartridge; 205. cleaning the spray head; 206. a water supply pipe; 207. a pump body; 301. a mounting frame; 302. a second telescopic push rod; 303. a stirring motor; 304. a stirring shaft; 305. a through hole; 306. a stirring blade; 307. and a scraping plate.
Detailed Description
For a better understanding of the present invention, the contents of the present invention will be further clarified below by referring to examples, but the present invention is not limited to the following examples. In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. It will be apparent, however, to one skilled in the art, that the present invention may be practiced without one or more of these specific details.
As shown in fig. 1, a raw stock mixing device for producing napkin paper comprises a mixing barrel 101, a feed hopper 102 arranged at the top of the mixing barrel 101, support legs 103 arranged at the bottom of the mixing barrel 101, a discharge pipe 104 arranged at the bottom of the mixing barrel 101, a control valve 105 arranged on the discharge pipe 104, a stirring module arranged on the mixing barrel 101 and a filtering module arranged at the bottom of the mixing barrel 101;
the filtration module is including setting up at the bottom of mixing drum 101 and be located the riser 201 of discharging pipe 104 left and right sides, respectively with the first flexible push rod 202 of the inside wall horizontal phase who is connected of two risers 201, respectively with the adjusting motor 203 that the output shaft of two first flexible push rods 202 is connected and set up between the output shaft of two adjusting motor 203 and strain a section of thick bamboo 204 with the sieve of discharging pipe 104 looks adaptation. The filtering module further comprises a cleaning spray nozzle 205 which is arranged at the bottom of the mixing drum 101 and is matched with the screening drum 204, a water supply pipe 206 which is arranged between the cleaning spray nozzle 205 and a water source, and a pump body 207 which is arranged on the water supply pipe 206 and is connected with the bottom of the mixing drum 101. The stirring module is including setting up the mounting bracket 301 at the U type at mixing drum 101 top, the second telescopic push rod 302 of setting on mounting bracket 301 top diapire, the agitator motor 303 of setting at the output shaft lower extreme of second telescopic push rod 302, be connected with agitator motor 303's output shaft and run through the (mixing) shaft 304 at mixing drum 101 top downwards, the setting is at mixing drum 101 top and with the through-hole 305 of (mixing) shaft 304 looks adaptation and set up on (mixing) shaft 304 and with mixing drum 101 looks adaptation stirring vane 306, the side of stirring vane 306 still is provided with the scraping board 307 with mixing drum 101 looks adaptation, the lower extreme inside wall of mixing drum 101 is the cone drum form, stirring vane 306 and scraping board 307 all with mixing drum 101 looks adaptation.
Firstly, raw pulp to be mixed is added into the mixing cylinder 101 through the feed hopper 102, then the stirring motor 303 can be started, so that the stirring shaft 304 and the stirring blades 306 rotate, the raw pulp in the mixing cylinder 101 is stirred, the raw pulp in the mixing cylinder 101 is mixed, and meanwhile, the output shaft of the second telescopic push rod 302 can repeatedly stretch up and down, so that the stirring shaft 304 and the stirring blades 306 can horizontally rotate and also move up and down, the stirring range of the stirring shaft 304 and the stirring blades 306 is changed and expanded, and the raw pulp in the mixing cylinder 101 is stirred and mixed more quickly and uniformly; in the process of mixing the primary pulp, the materials adhered to the inner wall of the mixing cylinder 101 can be scraped and cleaned by the scraper plate 307, so that the materials are prevented from being adhered to the inner wall of the mixing cylinder 101 and not mixed in the stirring and mixing process.
Then, the control valve 105 can be opened, so that the mixed pulp subjected to mixing treatment leaves the mixing cylinder 101 through the discharge pipe 104 and is discharged, and in the discharging process, the scraper 307 can scrape and clean the materials adhered to the inner wall of the mixing cylinder 101, so that the materials are prevented from being adhered to the inner wall of the mixing cylinder 101 and not participating in mixing in the stirring and mixing process, and the waste of the materials and the influence on the quality of the mixed pulp are avoided; carry out the in-process of ejection of compact, can avoid mixing the waste that the pulp adhesion can't carry out the ejection of compact and cause mixed pulp on the inner wall of mixing drum 101, because the lower extreme inside wall of mixing drum 101 is the cone cylinder shape, so can avoid mixing the pulp to be detained in the bottom of mixing drum 101.
The mixed pulp leaving the mixing drum 101 through the discharge pipe 104 falls into the screen drum 204, and is filtered by the screen drum 204, and the slurry in the mixed pulp passes through the openings of the screen drum 204, leaves the screen drum 204, and falls into a receiving container, and impurities in the mixed pulp are retained in the screen drum 204 because the impurities cannot pass through the openings of the screen drum 204.
After a period of time, when more impurity has been held back in the sieve filter cylinder 204, only need close control valve 105, pause the ejection of compact, and make the output shaft of two first flexible push rods 202 stretch out and draw back in step, make the sieve filter cylinder 204 move to the side top of accepting the container, then just can make the output shaft of two adjusting motor 203 rotate, make the sieve filter cylinder 204 rotate, switch into opening state down, thereby make the impurity that is detained in the sieve filter cylinder 204 leave sieve filter cylinder 204, later alright rotate once more with the output shaft that makes two adjusting motor 203, make sieve filter cylinder 204 resume opening state up, and make the output shaft of two first flexible push rods 202 stretch out and draw back in step, make sieve filter cylinder 204 get back to the below of discharging pipe 104.
In order to improve the cleaning effect on the filtering cylinder 204, when the filtering cylinder is in a state with the opening facing downwards, the filtering cylinder 204 can be moved synchronously by the output shafts of the two first telescopic push rods 202, so that the filtering cylinder 204 is moved to the position below the cleaning spray head 205, and then the pump body 207 can be started, so that water flow reaches the cleaning spray head 205 through the water supply pipe 206 and is sprayed out, and the filtering cylinder 204 is cleaned, and impurities remained in the filtering cylinder 204 are cleaned; after the washing treatment of the sieve filter cylinder 204 is completed, the pump body 207 can be suspended, and then the output shafts of the two adjusting motors 203 can rotate again, so that the sieve filter cylinder 204 recovers the state that the opening faces upwards, and the output shafts of the two first telescopic push rods 202 synchronously extend and retract, so that the sieve filter cylinder 204 returns to the lower part of the discharge pipe 104.
According to the utility model discloses a further embodiment, as shown in fig. 2, the bottom of supporting leg 103 still is provided with walking wheel 106, and the side of supporting leg 103 still is provided with extension board 107, still is provided with on the extension board 107 to be used for carrying out the rag bolt 108 fixed with ground, and walking wheel 106 is the universal wheel that the band pulley was stopped. Through the travelling wheels 106, a user can move the device to a proper position in a time-saving and labor-saving manner, and then the anchor bolts 108 can penetrate through the extension plates 107 and be connected with the ground, so that the device is prevented from easily shifting; when the apparatus is subsequently to be moved again, it is sufficient to first detach the anchor bolts 108 from the ground.
According to another embodiment of the present invention, as shown in fig. 3, a pushing rod 109 is further disposed on the outer sidewall of the mixing drum 101, and an anti-slip cover 110 is further disposed on the pushing rod 109. Through pushing away pole 109, can cooperate with walking wheel 106, more conveniently remove the device, through anti-skidding cover 110, can conveniently operate pushing away pole 109.
According to another embodiment of the present invention, as shown in fig. 4, a connecting cylinder 111 fixed to the pushing rod 109 is further disposed on the outer sidewall of the mixing cylinder 101, and a connecting bolt 112 for fixing the pushing rod 109 is further disposed on the connecting cylinder 111. The pushing rod 109 can be flexibly connected to and detached from the mixing cylinder 101 by the engagement of the connecting cylinder 111 and the connecting bolt 112.
Finally, the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting, and other modifications or equivalent replacements made by the technical solutions of the present invention by those of ordinary skill in the art should be covered within the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solutions of the present invention.

Claims (7)

1. A virgin pulp mixing device for napkin production comprises a mixing barrel (101), a feed hopper (102) arranged at the top of the mixing barrel (101), support legs (103) arranged at the bottom of the mixing barrel (101), a discharge pipe (104) arranged at the bottom of the mixing barrel (101), a control valve (105) arranged on the discharge pipe (104), a stirring module arranged on the mixing barrel (101) and a filtering module arranged at the bottom of the mixing barrel (101);
the method is characterized in that: the filtration module is including setting up riser (201) in the bottom of mixing drum (101) and being located discharging pipe (104) left and right sides, respectively with the inside wall horizontal phase of two riser (201) first flexible push rod (202) that are connected, respectively with adjusting motor (203) of the output shaft of two first flexible push rod (202) and set up between the output shaft of two adjusting motor (203) and strain a section of thick bamboo (204) with the sieve of discharging pipe (104) looks adaptation.
2. The virgin pulp mixing device for producing napkin according to claim 1, wherein: the filtering module further comprises a cleaning spray head (205) which is arranged at the bottom of the mixing barrel (101) and is matched with the screening barrel (204), a water supply pipe (206) which is arranged between the cleaning spray head (205) and a water source, and a pump body (207) which is arranged on the water supply pipe (206) and is connected with the bottom of the mixing barrel (101).
3. The virgin pulp mixing device for producing napkin according to claim 2, wherein: the stirring module comprises a U-shaped mounting frame (301) arranged at the top of the mixing drum (101), a second telescopic push rod (302) arranged on the bottom wall of the top of the mounting frame (301), a stirring motor (303) arranged at the lower end of an output shaft of the second telescopic push rod (302), a stirring shaft (304) which is connected with an output shaft of the stirring motor (303) and downwards penetrates through the top of the mixing drum (101), a through hole (305) which is arranged at the top of the mixing drum (101) and is matched with the stirring shaft (304), and stirring blades (306) which are arranged on the stirring shaft (304) and are matched with the mixing drum (101).
4. The virgin pulp mixing device for producing napkin according to claim 3, wherein: the side end of the stirring blade (306) is also provided with a scraping plate (307) matched with the mixing cylinder (101).
5. The virgin pulp mixing device for producing napkin according to claim 4, wherein: the bottom of the supporting leg (103) is also provided with a travelling wheel (106), the side end of the supporting leg (103) is also provided with an extension plate (107), and the extension plate (107) is also provided with an anchor bolt (108) used for being fixed with the ground.
6. The virgin pulp mixing device for producing napkin according to claim 5, wherein: the walking wheels (106) are universal wheels with wheel brakes.
7. The primary pulp mixing device for producing napkins according to claim 5 or 6, wherein: the inner side wall of the lower end of the mixing cylinder (101) is in a conical cylinder shape, and the stirring blades (306) and the scraping plates (307) are matched with the mixing cylinder (101).
CN202222072183.0U 2022-08-08 2022-08-08 Magma mixing arrangement is used in napkin production Active CN218166800U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222072183.0U CN218166800U (en) 2022-08-08 2022-08-08 Magma mixing arrangement is used in napkin production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222072183.0U CN218166800U (en) 2022-08-08 2022-08-08 Magma mixing arrangement is used in napkin production

Publications (1)

Publication Number Publication Date
CN218166800U true CN218166800U (en) 2022-12-30

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ID=84617571

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222072183.0U Active CN218166800U (en) 2022-08-08 2022-08-08 Magma mixing arrangement is used in napkin production

Country Status (1)

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CN (1) CN218166800U (en)

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