CN204220056U - For the process units of feed agent allicin - Google Patents

For the process units of feed agent allicin Download PDF

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Publication number
CN204220056U
CN204220056U CN201420684470.XU CN201420684470U CN204220056U CN 204220056 U CN204220056 U CN 204220056U CN 201420684470 U CN201420684470 U CN 201420684470U CN 204220056 U CN204220056 U CN 204220056U
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CN
China
Prior art keywords
sub
blending bunker
allicin
mixing device
rotary body
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420684470.XU
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Chinese (zh)
Inventor
郭华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
WEIFANG JIAYIJIA BIO-TECHNOLOGY Co Ltd
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WEIFANG JIAYIJIA BIO-TECHNOLOGY Co Ltd
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Priority to CN201420684470.XU priority Critical patent/CN204220056U/en
Application granted granted Critical
Publication of CN204220056U publication Critical patent/CN204220056U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a kind of process units for feed agent allicin, comprise powder and add tank, described powder adds tank and is connected with material elevator, the discharge end of described material elevator is connected with mixing device, described powder adds tank side and is provided with liquid material adding set, described liquid material adding set is connected to described mixing device, and described mixing device is connected with drawing mechanism, and the discharging opening of described drawing mechanism is provided with discharge device; Described powder adds tank, described material elevator and described mixing device and is also connected to dust arrester respectively; Mixing device of the present utility model makes powder material be uniformly dispersed; can mix more abundant with liquid material, the dust produced in each tank carries out unifying process by dust arrester, avoids dust to be floated to the outside of equipment; contribute to protecting indoor environment, ensure that staff's is healthy.

Description

For the process units of feed agent allicin
Technical field
The utility model relates to a kind of feed production equipment technical field, particularly relates to the process units for feed agent allicin.
Background technology
A complete production line is generally had mixing of feed manufacturing or feed addictive, adding namely from feedstuff, to various raw material metering mixing, the mix and blend arriving various raw material again makes feed product, having had the specific mechanical equipment of corresponding technique, mainly there is following shortcoming in the above-mentioned various equipment used at present:
One, blending bunker of the prior art is more concentrated when material falls, and because shaft is mostly laterally installed, material therefore can be caused to accumulate in the bottom of blending bunker, formed and stir dead angle, have impact on mixing effect, and then make the feeding quality of production uneven, differ greatly.
Two, when adding liquid material in blending bunker, feed molar ratio is more concentrated, easily make material local in blending bunker produce material ball, and partial material lacks and can not contact with liquid material, causes powder uneven with mixing of liquid material, thus affects product quality.
Three, the equipment that in prior art, feed mixes with additive mostly is open equipment, and pulverous raw material can produce a large amount of dust when toppling over and load in mixture, and the equipment of feed manufacturing is installed on indoor again, therefore cause ambient operating environment poor, be unfavorable for that staff's is healthy, also result in the waste of raw material simultaneously.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of batch mixing evenly and can not produce the process units for feed agent allicin of a large amount of dust.
For solving the problems of the technologies described above, the technical solution of the utility model is: for the process units of feed agent allicin, comprise powder and add tank, described powder adds tank and is connected with material elevator, the discharge end of described material elevator is connected with mixing device, and described powder adds tank side and is provided with liquid material adding set, and described liquid material adding set is connected to described mixing device, described mixing device is connected with drawing mechanism, and the discharging opening of described drawing mechanism is provided with discharge device; Described powder adds tank, described material elevator and described mixing device and is also connected to dust arrester respectively.
As preferred technical scheme, described mixing device comprises blending bunker, agitating device is rotatablely equipped with in described blending bunker, described agitating device is connected with drive unit, be positioned in described blending bunker above described agitating device and be provided with material dispersing device, the bottom of described blending bunker is communicated with discharging bin, and rotate between described blending bunker and described discharging bin and be provided with valve plate, described valve plate is connected with valve plate cylinder.
As preferred technical scheme, described material dispersing device comprises the umbrella sub-material rotary body rotating and be installed in described blending bunker, the charging aperture concentric of described sub-material rotary body and described blending bunker is arranged, and the outer surface of described sub-material rotary body is evenly equipped with screw material-distributing groove.
As preferred technical scheme, the outer surface of described sub-material rotary body with its summit for the center of circle is divided at least twice sub-material ring, on sub-material ring described in per pass, correspondence is provided with described screw material-distributing groove respectively, and the slot pitch between adjacent described screw material-distributing groove is increased to low side gradually by the top of described sub-material rotary body, the degree of depth of each described screw material-distributing groove is reduced to low side gradually by the top of described sub-material rotary body.
As preferred technical scheme, described liquid material adding set comprises liquid tank, bottom described liquid tank, booster pump is installed, the outlet end of described booster pump is connected to described blending bunker by liquid material pipe, fluid endless tube is provided with in described blending bunker, described fluid endless tube is furnished with fluid hole, and described fluid endless tube is arranged at the below of described sub-material rotary body, and described fluid loop diameter is greater than the maximum gauge of described sub-material rotary body.
As preferred technical scheme, described drawing mechanism is double-screw type feeder.
As preferred technical scheme, the discharging opening both sides that described discharge device is included in described discharging bin relatively rotate the material sackholder frame of installation, dust cover is provided with above described discharging opening, described dust cover is provided with the pipeline be connected with described dust arrester, described material sackholder frame bottom is set to the arc rubber anticreep clamp bar coordinated with the discharging opening of described discharging bin, is relatively provided with two folder frame folding control cylinders described in two between material sackholder frame.
As preferred technical scheme, described dust arrester comprises deduster, described deduster is provided with inlet end and outlet side, described inlet end adds tank, described material elevator and described mixing device respectively by air inlet pipe and described powder and is connected, described outlet side be connected with blast pipe, described blast pipe is provided with exhaust blower.
Owing to have employed technique scheme, for the process units of feed agent allicin, comprise powder and add tank, described powder adds tank and is connected with material elevator, the discharge end of described material elevator is connected with mixing device, and described powder adds tank side and is provided with liquid material adding set, and described liquid material adding set is connected to described mixing device, described mixing device is connected with drawing mechanism, and the discharging opening of described drawing mechanism is provided with discharge device; Described powder adds tank, described material elevator and described mixing device and is also connected to dust arrester respectively; The beneficial effects of the utility model are: mixing device makes powder material be uniformly dispersed; can mix more abundant with liquid material; the dust produced in each tank carries out unifying process by dust arrester; dust is avoided to be floated to the outside of equipment; contribute to protecting indoor environment, ensure that staff's is healthy.
Accompanying drawing explanation
The following drawings is only intended to schematically illustrate the utility model and explain, does not limit scope of the present utility model.Wherein:
Fig. 1 is the structural representation of the utility model embodiment;
Fig. 2 is the structural representation of the utility model embodiment mixing device;
Fig. 3 is the structural representation of the utility model embodiment material dispersing device;
In figure: 1-powder adds tank; 2-material elevator; 3-fluid endless tube; 4-liquid material pipe; 6-mixing device; 601-blending bunker; 602-shaft; 603-drive motors; 604-batch mixing valve plate; 605-batch mixing valve plate cylinder; 606-stirrer paddle; 607-discharging bin; 608-double-screw type feeder; 609-sub-material rotary body; 610-screw material-distributing groove; 611-sub-material ring; 7-liquid tank; 8-booster pump; 9-dust arrester; 91-deduster; 92-air inlet pipe; 93-blast pipe; 94-exhaust blower; 101-material sackholder frame; 102-dust cover; 103-rubber anticreep clamp bar; 104-presss from both sides frame folding control cylinder.
Detailed description of the invention
Below in conjunction with drawings and Examples, set forth the utility model further.In the following detailed description, the mode only by illustrating describes some one exemplary embodiment of the present utility model.Undoubtedly, those of ordinary skill in the art can recognize, when not departing from spirit and scope of the present utility model, can revise by various different mode to described embodiment.Therefore, accompanying drawing is illustrative with being described in essence, instead of for limiting the protection domain of claim.
As depicted in figs. 1 and 2, for the process units of feed agent allicin, comprise powder and add tank 1, described powder adds tank 1 and is connected with material elevator 2, the discharge end of described material elevator 2 is connected with mixing device 6, described powder adds tank 1 side and is provided with liquid material adding set, described liquid material adding set is connected to described mixing device 6, described mixing device is connected with drawing mechanism, the discharging opening of described drawing mechanism is provided with discharge device, production safety frame can be put at described material elevator 2 with described mixing device 6 outside winding, to improve the safety and stability used.
As shown in Figure 2, described mixing device 6 comprises the blending bunker 601 be communicated with the discharge end of described material elevator 2, agitating device is rotatablely equipped with in described blending bunker 601, described agitating device is connected with drive unit, described agitating device comprises the shaft 602 that two rotations are arranged, described in two, shaft 602 be arranged in parallel, and on described shaft 602, arrangement is provided with stirrer paddle 606, and stirring efficiency is high.Described drive unit comprises described blending bunker 601 outer end and is provided with the drive motors 603 driving described shaft 602, the top being positioned at described shaft 602 in described blending bunker 601 is provided with material dispersing device, described material dispersing device makes the material entered in described blending bunker 601 spread from trend surrounding and fall on described shaft 602, prevent material too concentrated, contribute to the uniformity improving mixing of materials.Be communicated with bottom described blending bunker 601 and be provided with discharging bin 607, rotate between described blending bunker 601 and described discharging bin 607 and be provided with valve plate 604, described valve plate 604 is connected with valve plate cylinder 605, described valve plate cylinder 605 can drive described valve plate 604 to rotate, and described blending bunker 601 and described discharging bin 607 is interconnected or independent separately.When carrying out batch mixing, valve plate 604 is in closed condition, after mixing of materials is good, by described valve plate cylinder 605, described valve plate 604 can be opened, the material mixed is made to enter described discharging bin 607 from described blending bunker 601, so that filling, when material is all transferred to after in described discharging bin 607, valve plate 604 can be closed, continue to add materials and mix, thus described discharging bin 607 carries out filling while blending bunker 601 can be made to stir, and is independent of each other, contribute to the efficiency improving Feed Manufacturing.
Described discharging bin 607 bottom discharge mouth place is provided with drawing mechanism, and described drawing mechanism is double-screw type feeder 608, can improve the efficiency that material exports.
As shown in Figure 3, described material dispersing device comprises the umbrella sub-material rotary body 609 rotating and be installed in described blending bunker 601, described sub-material rotary body 609 can be installed by support and be fixed in blending bunker 601, when material falls, can freely rotate under the driving of material, utilize centrifugal force, material is disperseed to surrounding.Described sub-material rotary body 609 is arranged with the charging aperture concentric of described blending bunker 601, and the outer surface of described sub-material rotary body 609 is evenly equipped with screw material-distributing groove 610.The outer surface of the rotary body of sub-material described in the present embodiment 609 with its summit for the center of circle is divided at least twice sub-material ring 611, on sub-material ring 611 described in per pass, correspondence is provided with described screw material-distributing groove 610 respectively, and the slot pitch between adjacent described screw material-distributing groove 610 is increased to low side gradually by the top of described sub-material rotary body 609, the degree of depth of each described screw material-distributing groove 610 is reduced to low side gradually by the top of described sub-material rotary body 609.Contribute to improving the efficiency of mixing of materials and the adequacy of mixing.
As depicted in figs. 1 and 2, described liquid material adding set comprises liquid tank 7, bottom described liquid tank 7, booster pump 8 is installed, the outlet end of described booster pump 8 is connected to described blending bunker 601 by liquid material pipe 4, fluid endless tube 3 is provided with in described blending bunker 601, described fluid endless tube 3 is furnished with fluid hole, described booster pump 8 can improve the dynamics that liquid material outwards sprays, described fluid endless tube 3 is arranged at the below of described sub-material rotary body, and described fluid endless tube 3 diameter is greater than the maximum gauge of described sub-material rotary body 609, what liquid material and powder material can be made mutually to mix is more even.
Structure as depicted in figs. 1 and 2, the discharging opening both sides that described discharge device is included in described discharging bin 607 relatively rotate the material sackholder frame 101 of installation, dust cover 102 is provided with above described discharging opening, described dust cover 102 is provided with the pipeline be connected with described dust arrester 12, described material sackholder frame 101 bottom is set to the arc rubber anticreep clamp bar 103 coordinated with the discharging opening of described discharging bin 607, two folder frame folding control cylinders 104 are relatively provided with between material sackholder frame 101 described in two, two described material sackholder frames 101 can strut or fasten under the control of corresponding described folder frame folding control cylinder 104, to realize the installation and removal of material bag, to facilitate material-filling, the inwall of described rubber anticreep clamp bar 103 is distributed with anti-skidding muscle, to improve the fixing fastness of material bag.
As shown in Figure 1, described powder adds tank 1, described material elevator 2 and described mixing device 6 and is also connected to dust arrester 9 respectively, described dust arrester 9 comprises deduster 91, the concrete structure of described deduster 91 is the content in the art known by those of ordinary skill, then this repeats no more.Described deduster 91 is provided with inlet end and outlet side, described inlet end adds tank 1, described material elevator 2 and described blending bunker 601 respectively by air inlet pipe 92 and described powder and is connected, described outlet side be connected with blast pipe 93, described blast pipe 93 is provided with exhaust blower 94, the dust that each tank body can produce by described deduster 91 carries out concentrated dust-removing, for purifying the air of a room, material being reclaimed simultaneously, preventing indoor and environmental pollution.
The utility model mixing device makes powder material be uniformly dispersed; can mix more abundant with liquid material, the dust produced in each tank carries out unifying process by dust arrester, avoids dust to be floated to the outside of equipment; contribute to protecting indoor environment, ensure that staff's is healthy.
Description of the present utility model provides for the purpose of example and description, and is not exhaustively or by the utility model be limited to disclosed form.Many modifications and variations are obvious for the ordinary skill in the art.Selecting and describing embodiment is in order to principle of the present utility model and practical application are better described, and enables those of ordinary skill in the art understand the utility model thus design the various embodiments with various amendment being suitable for special-purpose.

Claims (8)

1. for the process units of feed agent allicin, it is characterized in that: comprise powder and add tank, described powder adds tank and is connected with material elevator, the discharge end of described material elevator connects mixing device, described powder adds tank side and is provided with liquid material adding set, described liquid material adding set is connected to described mixing device, and described mixing device is connected with drawing mechanism, and the discharging opening of described drawing mechanism is provided with discharge device; Described powder adds tank, described material elevator and described mixing device and is also connected to dust arrester respectively.
2. as claimed in claim 1 for the process units of feed agent allicin, it is characterized in that: described mixing device comprises blending bunker, agitating device is rotatablely equipped with in described blending bunker, described agitating device is connected with drive unit, be positioned in described blending bunker above described agitating device and be provided with material dispersing device, the bottom of described blending bunker is communicated with discharging bin, and rotate between described blending bunker and described discharging bin and be provided with valve plate, described valve plate is connected with valve plate cylinder.
3. as claimed in claim 2 for the process units of feed agent allicin, it is characterized in that: described material dispersing device comprises the umbrella sub-material rotary body rotating and be installed in described blending bunker, the charging aperture concentric of described sub-material rotary body and described blending bunker is arranged, and the outer surface of described sub-material rotary body is evenly equipped with screw material-distributing groove.
4. as claimed in claim 3 for the process units of feed agent allicin, it is characterized in that: the outer surface of described sub-material rotary body with its summit for the center of circle is divided at least twice sub-material ring, on sub-material ring described in per pass, correspondence is provided with described screw material-distributing groove respectively, and the slot pitch between adjacent described screw material-distributing groove is increased to low side gradually by the top of described sub-material rotary body, the degree of depth of each described screw material-distributing groove is reduced to low side gradually by the top of described sub-material rotary body.
5. the process units for feed agent allicin as described in claim 3 or 4, it is characterized in that: described liquid material adding set comprises liquid tank, bottom described liquid tank, booster pump is installed, the outlet end of described booster pump is connected to described blending bunker by liquid material pipe, fluid endless tube is provided with in described blending bunker, described fluid endless tube is furnished with fluid hole, described fluid endless tube is arranged at below the below of described sub-material rotary body, and described fluid loop diameter is greater than the maximum gauge of described sub-material rotary body.
6., as claimed in claim 5 for the process units of feed agent allicin, it is characterized in that: described drawing mechanism is double-screw type feeder.
7. the process units for feed agent allicin as described in claim as arbitrary in claim 1, it is characterized in that: the discharging opening both sides that described discharge device is included in described discharging bin relatively rotate the material sackholder frame of installation, dust cover is provided with above described discharging opening, described dust cover is provided with the pipeline be connected with described dust arrester, described material sackholder frame bottom is set to the arc rubber anticreep clamp bar coordinated with the discharging opening of described discharging bin, is relatively provided with two folder frame folding control cylinders described in two between material sackholder frame.
8. the process units for feed agent allicin as described in claim as arbitrary in claim 1, it is characterized in that: described dust arrester comprises deduster, described deduster is provided with inlet end and outlet side, described inlet end adds tank, described material elevator and described mixing device respectively by air inlet pipe and described powder and is connected, described outlet side be connected with blast pipe, described blast pipe is provided with exhaust blower.
CN201420684470.XU 2014-11-14 2014-11-14 For the process units of feed agent allicin Expired - Fee Related CN204220056U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420684470.XU CN204220056U (en) 2014-11-14 2014-11-14 For the process units of feed agent allicin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420684470.XU CN204220056U (en) 2014-11-14 2014-11-14 For the process units of feed agent allicin

Publications (1)

Publication Number Publication Date
CN204220056U true CN204220056U (en) 2015-03-25

Family

ID=52918202

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420684470.XU Expired - Fee Related CN204220056U (en) 2014-11-14 2014-11-14 For the process units of feed agent allicin

Country Status (1)

Country Link
CN (1) CN204220056U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150325

Termination date: 20151114

EXPY Termination of patent right or utility model