CN218485921U - Multi-path automatic feeding device for production of spinning oil - Google Patents

Multi-path automatic feeding device for production of spinning oil Download PDF

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Publication number
CN218485921U
CN218485921U CN202222789729.4U CN202222789729U CN218485921U CN 218485921 U CN218485921 U CN 218485921U CN 202222789729 U CN202222789729 U CN 202222789729U CN 218485921 U CN218485921 U CN 218485921U
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China
Prior art keywords
reagent
stirring
tank body
feeding device
production
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CN202222789729.4U
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Chinese (zh)
Inventor
罗其浩
陆前兵
张亚萍
李炬澜
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Jiangsu Yuefu Oil Product Co ltd
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Jiangsu Yuefu Oil Product Co ltd
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Abstract

A multi-path automatic feeding device for production of textile oil comprises a reagent mixing tank, a tank supporting base, at least one multi-path reagent inlet assembly, a portal frame and a reagent stirring assembly, wherein the reagent mixing tank is arranged on the tank supporting base; wherein, multichannel reagent gets into the subassembly and includes the reagent jar body, pump, three-way pipe and two reagent conveyer pipes that the symmetry set up, is equipped with a plurality of reagent feed liquor mouths on the reagent conveyer pipe, and the liquid outlet of reagent feed liquor mouth and the inside cavity intercommunication of the reagent blending tank body. The utility model discloses a multichannel automatic feed device of weaving finish production usefulness has changed the traditional mode that only carries out the one way feeding through single import, through the improvement of reagent conveyer pipe, sets up a plurality of reagent feed liquor mouths on the reagent conveyer pipe, carries reagent to the internal different positions of reagent blending tank respectively through reagent feed liquor mouth to make reagent can mix together with the internal original reagent of reagent blending tank fast, shortened the time that the reagent mixes, and improved the homogeneity of mixing.

Description

Multi-path automatic feeding device for production of spinning oil
Technical Field
The utility model belongs to the technical field of the finish processing equipment, specifically, relate to a multichannel automatic feed device of weaving finish production usefulness.
Background
The spinning oil is prepared by blending a plurality of reagents according to spinning requirements, the plurality of reagents are added into a blending device and are mixed and reacted under certain reaction conditions to form the final spinning oil.
Chinese utility model patent with publication number CN213314728U discloses a spinning oil blending device, which includes: different reagents need to be respectively put into the blending device from the oil agent port and the solvent port according to requirements, and the mixed solution is subjected to mixing reaction at a certain temperature and under certain conditions. However, when the reagents are put into the tank body, the reagents are all put into the tank body from one opening, so the reagents initially enter the tank body in a strand mode and are then stirred uniformly by the stirring device. Therefore, the stirring time is increased and the mixing effect of the reagents is reduced.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: the utility model aims at providing a multichannel automatic feed device of weaving finish production usefulness has solved among the prior art reagent and has only got into through single import, causes the reagent to only get into the jar body all the way, needs to spend more time and carries out the problem of mixing.
The technical scheme is as follows: the utility model provides a multichannel automatic feeding device for producing textile oil, which comprises a reagent mixing tank body, a tank body supporting base, at least one multichannel reagent entering assembly, a portal frame and a reagent stirring assembly, wherein the reagent mixing tank body is fixedly arranged on the tank body supporting base, the multichannel reagent entering assembly is connected with the reagent mixing tank body, the portal frame is erected above the reagent mixing tank body, and the reagent stirring assembly is arranged on the portal frame; the multi-path reagent feeding assembly comprises a reagent tank body, a pump, a three-way pipe and two symmetrically arranged reagent conveying pipes, wherein a liquid inlet of the pump is communicated with the reagent tank body through a pipeline, a liquid outlet of the pump is connected with one end of the three-way pipe through a pipeline, the two symmetrically arranged reagent conveying pipes are respectively connected with the three-way pipe, a plurality of reagent liquid inlet nozzles are arranged on the reagent conveying pipes, the plurality of reagent liquid inlet nozzles are connected with the reagent mixing tank body, and a liquid outlet of each reagent liquid inlet nozzle is communicated with an inner cavity of the reagent mixing tank body. The utility model discloses a multichannel automatic feed device of weaving finish production usefulness has changed the traditional mode that only carries out the one way feeding through single import, through the improvement of reagent conveyer pipe, set up a plurality of reagent feed liquor mouths on the reagent conveyer pipe, carry reagent to the internal different positions of reagent blending tank respectively through reagent feed liquor mouth, thereby make reagent can be in the same place with the internal original reagent of reagent blending tank fast mixing, the time that the reagent mixes has been shortened, and the homogeneity of mixing has been improved.
Furthermore, according to the multi-path automatic feeding device for the production of the spinning oil, the multi-path automatic feeding device comprises a lower base plate, and the tank body supporting base, the multi-path reagent entering assembly and the portal frame are all fixedly arranged on the lower base plate. The lower bottom plate is an installation bottom plate of the integral device and is used for stably installing the multi-path automatic feeding device on the ground integrally.
Further, foretell multichannel automatic feed device that weaving finish production used, be equipped with a plurality of support posts on the lower plate, be equipped with the mounting panel on the support post, be connected with U type locking clamp on the mounting panel, the reagent conveyer pipe passes through U type locking clamp locking on the mounting panel. The U-shaped locking hoop is sleeved on the supporting stand column, and then the two end parts of the supporting stand column are locked on the mounting plate through nuts respectively, so that the vertical section conveying pipeline is stably fixed.
Further, foretell multichannel automatic feed device that weaving finish production used, the reagent conveyer pipe includes vertical section pipeline, vertical section pipeline's axis and the axis parallel arrangement of the reagent blending tank body, a plurality of reagent feed liquor mouths set gradually along vertical section pipeline's axis direction. Through the vertical section pipeline that sets up with the axial direction syntropy of the reagent blending tank body, can arrange a plurality of reagent feed liquor mouths along the axial direction of the reagent blending tank body to put into reagent at the different horizontal position department of the reagent blending tank body.
Further, foretell multichannel automatic feed device of weaving finish production usefulness, the upper end of the reagent blending tank body and lower tip all set up to the toper, the upper end of the reagent blending tank body is equipped with the opening to the lower tip of the reagent blending tank body is equipped with the liquid outlet. The opening of upper end realizes the entering of reagent stirring subassembly, installs the baiting valve on the liquid outlet that sets up, can carry out the emission of reagent according to the behavior.
Further, foretell multichannel automatic feed device of weaving finish production usefulness, reagent stirring subassembly includes stirring drive arrangement, lifting frame body and agitating unit, stirring drive arrangement sets up on the portal frame, lifting frame body and stirring drive arrangement connect, agitating unit and lifting frame body are connected to agitating unit sets up internally at the reagent blending tank. The lifting frame body is connected with the upper cover in the Shanghai mode, and stirring drive arrangement drive lifting frame body lift in-process can put into the reagent blending tank body with agitating unit and realize the stirring like this, goes up the housing and establishes in the opening position of the reagent blending tank body upper end simultaneously.
Further, the multichannel automatic feed device of foretell weaving finish production usefulness, stirring drive arrangement includes stirring driving motor, stirring speed reducer, stirring drive shaft, straight-tooth bevel gear one, straight-tooth bevel gear two, stirring drive lead screw and screw-nut, stirring driving motor, stirring speed reducer and stirring drive shaft all set up on the crossbeam of portal frame, stirring driving motor and stirring speed reducer are connected, stirring speed reducer and stirring drive shaft connection, straight-tooth bevel gear one and straight-tooth bevel gear two meshes, straight-tooth bevel gear two and stirring drive lead screw are connected, screw-nut and stirring drive lead screw threaded connection. The stirring driving motor drives the stirring driving screw rod to rotate through the transmission of the stirring driving shaft, the straight bevel gear I and the straight bevel gear II, and therefore the screw rod nut is lifted along the vertical direction.
Further, foretell multichannel automatic feed device of weaving finish production usefulness, be equipped with the guide post on the vertical stand of portal frame, the cover is equipped with the direction sliding sleeve on the guide post, all be connected with the connecting block on screw-nut and the direction sliding sleeve, the connecting block is connected with the lifting frame body. The guide post provides the direction that the vertical direction of lifting frame body removed, avoids lifting frame body vertical movement in-process offset.
Further, the multichannel automatic feed device of foretell weaving finish production usefulness, agitating unit includes agitator motor, stirring pivot, a plurality of stirring rod and a plurality of stirring vane, agitator motor sets up on lifting frame body to agitator motor and stirring pivot are connected, a plurality of stirring rods and stirring pivot are connected, dry stirring vane and the lower tip of stirring pivot are connected. A plurality of stirring rods and a plurality of stirring paddle leaf can carry out the even stirring of the internal reagent of reagent blending tank.
Furthermore, according to the multi-path automatic feeding device for the production of the spinning oil, the vertical upright post of the portal frame is provided with the vertical guide slide rail, and the lead screw nut and the guide slide sleeve are slidably connected with the vertical guide slide rail. The vertical direction slide rail that sets up has guaranteed the stability of the vertical removal of lifting frame body with the guide post cooperation.
Above-mentioned technical scheme can find out, the utility model discloses following beneficial effect has: multichannel automatic feed device of weaving finish production usefulness, the feeding mode to reagent has carried out innovative change, it is internal that the mode that will have original one way entering reagent changes present even spraying through a plurality of finish nozzles and gets into the reagent blending tank to make the initial of reagent entering be the structure of dispersion promptly, the stirring of carrying out reagent that can be quick through the reagent stirring subassembly that sets up, the efficiency of stirring has both been improved, guaranteed abundant between the reagent again, homogeneous mixing, guarantee production quality's stability.
Drawings
Fig. 1 is a schematic structural view of a multi-path automatic feeding device for producing textile oil of the present invention;
fig. 2 is a schematic structural view of the multi-way reagent inlet assembly of the present invention;
FIG. 3 is a top view of the multi-path reagent inlet assembly of the present invention;
fig. 4 is a schematic structural diagram of the stirring driving device of the present invention.
In the figure: the device comprises a reagent mixing tank body 1, an opening 11, a liquid outlet 12, a tank body support base 2, a multi-path reagent inlet component 3, a reagent tank body 31, a pump 32, a three-way pipe 33, a reagent conveying pipe 34, a vertical section conveying pipeline 341, a reagent liquid inlet nozzle 35, a portal frame 4, a guide column 41, a guide sliding sleeve 42, a connecting block 43, a vertical guide sliding rail 44, a reagent stirring component 5, a stirring driving device 51, a stirring driving motor 511, a stirring speed reducer 512, a stirring driving shaft 513, a straight bevel gear I514, a straight bevel gear II 515, a stirring driving screw 516, a screw nut 517, a lifting frame body 52, a stirring device 53, a stirring motor 531, a stirring rotating shaft 532, a stirring rod 533, a stirring blade 534, a lower base plate 6, a support upright post 61, a mounting plate 62 and a U-shaped locking hoop 63.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and to simplify the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, unless otherwise specified, "a plurality" means two or more unless explicitly defined otherwise.
In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those of ordinary skill in the art.
In the present application, unless expressly stated or limited otherwise, the recitation of a first feature "on" or "under" a second feature may include the recitation of the first and second features being in direct contact, and may also include the recitation of the first and second features not being in direct contact, but being in contact with another feature between them. Also, the first feature being "on," "above" and "over" the second feature includes the first feature being directly on and obliquely above the second feature, or merely indicating that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature includes the first feature being directly under and obliquely below the second feature, or simply meaning that the first feature is at a lesser elevation than the second feature.
Examples
The multi-path automatic feeding device for the production of the textile oil comprises a reagent mixing tank body 1, a tank body supporting base 2, at least one multi-path reagent entering component 3, a portal frame 4, a reagent stirring component 5 and a lower bottom plate 6, wherein the reagent mixing tank body 1 is fixedly arranged on the tank body supporting base 2, the multi-path reagent entering component 3 is connected with the reagent mixing tank body 1, the portal frame 4 is erected above the reagent mixing tank body 1, and the reagent stirring component 5 is arranged on the portal frame 4. The tank body supporting base 2, the multi-path reagent entering assembly 3 and the portal frame 4 are all fixedly arranged on the lower bottom plate 6.
The multi-path reagent inlet assembly 3 shown in fig. 2 and 3 comprises a reagent tank 31, a pump 32, a three-way pipe 33 and two symmetrically arranged reagent conveying pipes 34, wherein a liquid inlet of the pump 32 is communicated with the reagent tank 31 through a pipeline, a liquid outlet of the pump 32 is connected with one end of the three-way pipe 33 through a pipeline, the two symmetrically arranged reagent conveying pipes 34 are respectively connected with the three-way pipe 33, a plurality of reagent liquid inlet nozzles 35 are arranged on the reagent conveying pipes 34, the plurality of reagent liquid inlet nozzles 35 are connected with the reagent mixing tank 1, and a liquid outlet of the reagent liquid inlet nozzle 35 is communicated with an inner cavity of the reagent mixing tank 1. The upper end and the lower end of the reagent mixing tank body 1 are both set to be conical, the upper end of the reagent mixing tank body 1 is provided with an opening 11, and the lower end of the reagent mixing tank body 1 is provided with a liquid outlet 12. The pump 32 pumps the reagent from the reagent tank 31 into two reagent delivery pipes 34 respectively, which is a branch of the first stage, and enters the reagent mixing tank 1 through a plurality of reagent inlet nozzles 35 on the reagent delivery pipes 34, which is a branch of the second stage, thereby forming a way of dispersing multiple entering reagents.
In addition, be equipped with a plurality of support post 61 on the lower plate 6, be equipped with mounting panel 62 on the support post 61, be connected with U type locking clamp 63 on the mounting panel 62, reagent conveying pipe 34 locks on mounting panel 62 through U type locking clamp 63.
The reagent stirring assembly 5 shown in fig. 4 comprises a stirring driving device 51, a lifting frame body 52 and a stirring device 53, wherein the stirring driving device 51 is arranged on the portal frame 4, the lifting frame body 52 is connected with the stirring driving device 51, the stirring device 53 is connected with the lifting frame body 52, and the stirring device 53 is arranged in the reagent mixing tank body 1. Stirring drive arrangement 51 can drive lifting frame body 52 and go up and down to drive agitating unit 53 and go up and down along vertical direction, this in-process agitating unit 53 gets into or stretches out reagent mixing tank body 1.
In the above structure, the stirring drive device 51 includes a stirring drive motor 511, a stirring speed reducer 512, a stirring drive shaft 513, a straight bevel gear 514, a straight bevel gear two 515, a stirring drive screw 516 and a screw nut 517, the stirring drive motor 511, the stirring speed reducer 512 and the stirring drive shaft 513 are all disposed on the beam of the portal frame 4, the stirring drive motor 511 and the stirring speed reducer 512 are connected, the stirring speed reducer 512 and the stirring drive shaft 513 are connected, the straight bevel gear one 514 and the straight bevel gear two 515 are engaged, the straight bevel gear two 515 and the stirring drive screw 516 are connected, and the screw nut 517 and the stirring drive screw 516 are in threaded connection. Be equipped with guide post 41 on portal frame 4's the vertical stand, the cover is equipped with direction sliding sleeve 42 on the guide post 41, all be connected with connecting block 43 on screw-nut 517 and the direction sliding sleeve 42, connecting block 43 and lifting frame body 52 are connected. And a vertical guide slide rail 44 is arranged on a vertical upright post of the portal frame 4, and the screw rod nut 517 and the guide slide sleeve 42 are slidably connected with the vertical guide slide rail 44. The stirring driving motor 511 drives the stirring driving shaft 513 to rotate, so as to drive the first straight bevel gear 514 to rotate, the first straight bevel gear 514 drives the second straight bevel gear 515 to rotate, so that the stirring driving screw 516 rotates, and the screw rod nut 517 moves along the axial direction of the stirring driving screw 516, and the lifting is realized.
In addition, agitating unit 53 includes agitator motor 531, stirring pivot 532, a plurality of puddler 533 and a plurality of stirring paddle leaf 534, agitator motor 531 sets up on the hanger body 52 to agitator motor 531 is connected with stirring pivot 532, a plurality of puddlers 533 are connected with stirring pivot 532, dry stirring paddle leaf 534 is connected with the lower tip of stirring pivot 532. The stirring motor 531 drives the stirring rotating shaft 532 to rotate, so that the plurality of stirring rods 533 and the plurality of stirring blades 534 uniformly stir the reagent in the reagent mixing tank 1.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications can be made without departing from the principle of the present invention, and these modifications should also be regarded as the protection scope of the present invention.

Claims (10)

1. The utility model provides a multichannel automatic feed device of weaving finish production usefulness which characterized in that: the device comprises a reagent mixing tank body (1), a tank body supporting base (2), at least one multi-path reagent entering assembly (3), a portal frame (4) and a reagent stirring assembly (5), wherein the reagent mixing tank body (1) is fixedly arranged on the tank body supporting base (2), the multi-path reagent entering assembly (3) is connected with the reagent mixing tank body (1), the portal frame (4) is erected above the reagent mixing tank body (1), and the reagent stirring assembly (5) is arranged on the portal frame (4);
the multi-path reagent inlet assembly (3) comprises a reagent tank body (31), a pump (32), a three-way pipe (33) and two symmetrically arranged reagent conveying pipes (34), wherein a liquid inlet of the pump (32) is communicated with the reagent tank body (31) through a pipeline, a liquid outlet of the pump (32) is connected with one end of the three-way pipe (33) through a pipeline, the two symmetrically arranged reagent conveying pipes (34) are respectively connected with the three-way pipe (33), a plurality of reagent liquid inlet nozzles (35) are arranged on the reagent conveying pipes (34), the plurality of reagent liquid inlet nozzles (35) are connected with the reagent mixing tank body (1), and a liquid outlet of the reagent liquid inlet nozzle (35) is communicated with an inner cavity of the reagent mixing tank body (1).
2. A multi-path automatic feeding device for the production of textile finishes according to claim 1, characterized in that: the multi-path automatic feeding device comprises a lower bottom plate (6), wherein the tank body supporting base (2), the multi-path reagent entering assembly (3) and the portal frame (4) are fixedly arranged on the lower bottom plate (6).
3. The multi-path automatic feeding device for the production of textile finishes according to claim 2, characterized in that: be equipped with a plurality of support post (61) on lower plate (6), be equipped with mounting panel (62) on support post (61), be connected with U type locking clamp (63) on mounting panel (62), reagent conveyer pipe (34) are locked on mounting panel (62) through U type locking clamp (63).
4. The multi-path automatic feeding device for the production of textile finishes according to claim 1, characterized in that: the reagent conveying pipe (34) comprises a vertical section conveying pipe (341), the axis of the vertical section conveying pipe (341) is parallel to the axis of the reagent mixing tank body (1), and the plurality of reagent liquid inlet nozzles (35) are sequentially arranged along the axis direction of the vertical section conveying pipe (341).
5. The multi-path automatic feeding device for the production of textile finishes according to claim 1, characterized in that: the upper end and the lower tip of the reagent blending tank body (1) all set up to the toper, the upper end of the reagent blending tank body (1) is equipped with opening (11) to the lower tip of the reagent blending tank body (1) is equipped with liquid outlet (12).
6. The multi-path automatic feeding device for the production of textile finishes according to claim 1, characterized in that: reagent stirring subassembly (5) is including stirring drive arrangement (51), lifting frame body (52) and agitating unit (53), stirring drive arrangement (51) set up on portal frame (4), lifting frame body (52) and stirring drive arrangement (51) are connected, agitating unit (53) and lifting frame body (52) are connected to agitating unit (53) set up in reagent mixing tank body (1).
7. The multi-path automatic feeding device for the production of textile finishes according to claim 6, characterized in that: stirring drive arrangement (51) is including stirring driving motor (511), stirring speed reducer (512), stirring drive shaft (513), straight-tooth bevel gear (514), straight-tooth bevel gear two (515), stirring drive lead screw (516) and screw-nut (517), stirring driving motor (511), stirring speed reducer (512) and stirring drive shaft (513) all set up on the crossbeam of portal frame (4), stirring driving motor (511) and stirring speed reducer (512) are connected, stirring speed reducer (512) and stirring drive shaft (513) are connected, straight-tooth bevel gear (514) and straight-tooth bevel gear two (515) meshing, straight-tooth bevel gear two (515) and stirring drive lead screw (516) are connected, screw-nut (517) and stirring drive lead screw (516) threaded connection.
8. The multi-path automatic feeding device for the production of textile finishes according to claim 7, characterized in that: be equipped with guide post (41) on the vertical stand of portal frame (4), the cover is equipped with direction sliding sleeve (42) on guide post (41), all be connected with connecting block (43) on screw-nut (517) and direction sliding sleeve (42), connecting block (43) and lifting frame body (52) are connected.
9. The multi-path automatic feeding device for the production of textile finishes according to claim 8, characterized in that: agitating unit (53) include agitator motor (531), stirring pivot (532), a plurality of stirring rod (533) and a plurality of stirring paddle leaf (534), agitator motor (531) set up on jack body (52) to agitator motor (531) and stirring pivot (532) are connected, a plurality of stirring rod (533) and stirring pivot (532) are connected, dry stirring paddle leaf (534) and the lower tip of stirring pivot (532) are connected.
10. The multi-path automatic feeding device for the production of textile finishes according to claim 8, characterized in that: and a vertical guide sliding rail (44) is arranged on a vertical upright post of the portal frame (4), and the screw rod nut (517) and the guide sliding sleeve (42) are in sliding connection with the vertical guide sliding rail (44).
CN202222789729.4U 2022-10-24 2022-10-24 Multi-path automatic feeding device for production of spinning oil Active CN218485921U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222789729.4U CN218485921U (en) 2022-10-24 2022-10-24 Multi-path automatic feeding device for production of spinning oil

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222789729.4U CN218485921U (en) 2022-10-24 2022-10-24 Multi-path automatic feeding device for production of spinning oil

Publications (1)

Publication Number Publication Date
CN218485921U true CN218485921U (en) 2023-02-17

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CN202222789729.4U Active CN218485921U (en) 2022-10-24 2022-10-24 Multi-path automatic feeding device for production of spinning oil

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