CN119460552B - Feeder is used in production of freeze-dried bone meal - Google Patents

Feeder is used in production of freeze-dried bone meal Download PDF

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Publication number
CN119460552B
CN119460552B CN202411604030.3A CN202411604030A CN119460552B CN 119460552 B CN119460552 B CN 119460552B CN 202411604030 A CN202411604030 A CN 202411604030A CN 119460552 B CN119460552 B CN 119460552B
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China
Prior art keywords
shell
chain plate
plug
frame
pushing
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CN202411604030.3A
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CN119460552A (en
Inventor
聂作梅
李希鹏
乔冠龙
乔仁蛟
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Qingdao Wantuming Biological Products Co ltd
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Qingdao Wantuming Biological Products Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G17/00Conveyors having an endless traction element, e.g. a chain, transmitting movement to a continuous or substantially-continuous load-carrying surface or to a series of individual load-carriers; Endless-chain conveyors in which the chains form the load-carrying surface
    • B65G17/30Details; Auxiliary devices
    • B65G17/48Controlling attitudes of load-carriers during movement
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G17/00Conveyors having an endless traction element, e.g. a chain, transmitting movement to a continuous or substantially-continuous load-carrying surface or to a series of individual load-carriers; Endless-chain conveyors in which the chains form the load-carrying surface
    • B65G17/30Details; Auxiliary devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G17/00Conveyors having an endless traction element, e.g. a chain, transmitting movement to a continuous or substantially-continuous load-carrying surface or to a series of individual load-carriers; Endless-chain conveyors in which the chains form the load-carrying surface
    • B65G17/30Details; Auxiliary devices
    • B65G17/32Individual load-carriers

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Drying Of Solid Materials (AREA)

Abstract

本发明涉及输送设施领域,尤其涉及一种冻干骨粉生产用喂料器,包括链板输送机,所述链板输送机的链板上均匀分布转动安装有多根壳载轴,所述壳载轴的上端固定安装有收集壳,所述收集壳的内部放置有网框,所述收集壳的前端设置有排出件,所述链板输送机的机架后端安装有两个导轨,两个所述导轨呈平行设置,所述导轨呈连续弯曲设置,所述链板输送机的链板上安装有加速件,所述加速件与壳载轴相连接,所述加速件的端部安装有推壳齿轮,所述推壳齿轮的侧面啮合有推壳齿板。本发明提高了输送质量,同时还保证了输送环境的洁净,并方便了使用。

The present invention relates to the field of conveying facilities, and in particular to a feeder for freeze-dried bone powder production, comprising a chain plate conveyor, on which a plurality of shell bearing shafts are evenly distributed and rotatably installed, a collection shell is fixedly installed on the upper end of the shell bearing shaft, a mesh frame is placed inside the collection shell, a discharge member is arranged at the front end of the collection shell, two guide rails are arranged at the rear end of the frame of the chain plate conveyor, the two guide rails are arranged in parallel, and the guide rails are arranged in a continuous bending manner, an accelerator is installed on the chain plate of the chain plate conveyor, the accelerator is connected to the shell bearing shaft, a shell pushing gear is installed at the end of the accelerator, and a shell pushing gear plate is meshed on the side of the shell pushing gear. The present invention improves the conveying quality, while also ensuring the cleanliness of the conveying environment and facilitating use.

Description

Feeder is used in production of freeze-dried bone meal
Technical Field
The invention relates to the field of conveying facilities, in particular to a feeder for producing freeze-dried bone powder.
Background
The freeze-dried bone powder, as the name implies, is prepared by adopting a vacuum freeze-drying method. The method sublimates water in bone powder at low temperature and low pressure to obtain dry and loose powdered product. The freeze-drying technology can fully preserve the activity of the substance, and has less damage to biological tissues and cell structures.
In the process of producing the freeze-dried bone powder, a feeder such as a chain plate conveyor and the like is often used for conveying the bone material after cleaning, so that the bone material can be conveyed to the next production process, however, in the actual conveying process, a large amount of water stains are attached to the surface of the bone material due to the fact that the bone material is just cleaned, so that the water stains can drop on the conveyor in the conveying process, the conveying environment is polluted, and meanwhile, the surface of the conveyed bone material is more in water stains and is easy to influence the subsequent drying.
Disclosure of Invention
The invention aims to solve the defects in the background art and provides a feeder for producing freeze-dried bone powder.
In order to achieve the purpose, the feeder for producing the freeze-dried bone powder comprises a chain plate conveyor, wherein a plurality of shell carrying shafts are uniformly and rotatably arranged on a chain plate of the chain plate conveyor, a collecting shell is fixedly arranged at the upper end of the shell carrying shafts, a net frame is placed in the collecting shell, a discharging part is arranged at the front end of the collecting shell, two guide rails are arranged at the rear end of a frame of the chain plate conveyor, the two guide rails are arranged in parallel, the guide rails are continuously bent, an accelerating part is arranged on a chain plate of the chain plate conveyor, the accelerating part is connected with the shell carrying shafts, a shell pushing gear is arranged at the end part of the accelerating part, a shell pushing toothed plate is meshed with the side surface of the shell pushing gear, a pushing wheel is arranged at the end part of the shell pushing toothed plate, and the pushing wheel is correspondingly arranged between the two guide rails, and the shell pushing toothed plate is in sliding connection with the chain plate of the chain plate conveyor.
Preferably, the middle part of pushing away the wheel runs through and rotates and installs the shaft, the tip of shaft is fixed mutually with pushing away the shell pinion rack, the guide way has all been seted up to the up and down terminal surface of pushing away the shell pinion rack, fixed mounting has the gear rack that leads on the link joint of link joint conveyer, the tip laminating of gear rack is in the inside of guide way.
Preferably, the lower extreme fixed mounting of two the guide rail has the rail frame, the tip of rail frame is fixed mutually with the frame of link joint conveyer, two the one end of guide rail all extends has straight rail, two the other end of guide rail all inclines to extend has into the baffle, two advance the baffle and be the symmetry setting, advance baffle, straight rail all and guide rail integrated into one piece, the inner wall middle part of collecting the shell extends there is the pawl, the pawl laminating is in the surface of net frame.
Preferably, the accelerating member comprises a first connecting shaft rotatably mounted on a chain plate of the chain plate conveyor, the first connecting shaft is positioned behind the shell carrying shaft, a second large gear is coaxially inlaid on the upper portion of the outer surface of the first connecting shaft, a first small gear is coaxially inlaid on the outer surface of the shell carrying shaft, and the first small gear is meshed with the second large gear.
Preferably, the second connecting shaft is rotatably installed on the chain plate of the chain plate conveyor, the second connecting shaft is positioned at the rear of the first connecting shaft, a large gear is coaxially embedded at the lower part of the outer surface of the second connecting shaft, a small gear is coaxially embedded at the lower part of the outer surface of the first connecting shaft, the small gear is meshed with the large gear, and the shell pushing gear is coaxially embedded at the end part of the second connecting shaft.
Preferably, the discharging part comprises a discharging bent pipe fixedly communicated with the lower part of the front end of the collecting shell, a plug is plugged at the end part of the discharging bent pipe, a T-shaped seat is fixedly arranged at the front end of the collecting shell, the T-shaped seat is arranged above the discharging bent pipe, a plug rod is elastically arranged at two ends of the T-shaped seat, and the lower end of the plug rod is connected with the plug.
Preferably, the outside winding of push rod has reset spring, two fixed mounting has between the upper end of push rod links to solid frame, reset spring's one end is fixed mutually with T shape seat, reset spring's the other end is fixed mutually with linking to solid frame, it has the lug to link to extend in the middle part of the upper end of solid frame, the tip of lug is installed and is pushed away the stopper wheel, the lower extreme fixed mounting of push rod has solid stopper frame, the tip of solid stopper frame is fixed mutually with the stopper.
Preferably, the front end of the frame of the chain plate conveyor is fixedly provided with a lower fixing frame, the end part of the lower fixing frame is fixedly provided with an L-shaped connecting groove, one end of the L-shaped connecting groove is opened, the front end of the lower fixing frame is fixedly provided with an upper fixing frame, the end part of the upper fixing frame is fixedly provided with a plug pressing rail, the end part of the plug pressing rail is extended with a plug pushing rail, the plug pushing rail is arranged in an upward inclined manner, and the plug pushing rail and the plug pressing rail are integrally formed.
Compared with the prior art, the invention has the following beneficial effects:
1. When the link joint conveyer carries the bone material that washs the completion in the screen frame, push away the wheel and can laminate and roll between two guide rails to under the effect of continuous crooked guide rail, order about to push away shell pinion rack and constantly reciprocate, and then drive and push away shell gear and rotate, make No. two connecting axles through a gear wheel, no. two pinion and No. two gear wheels, the acceleration of a pinion can drive the shell and carry the axle and rotate fast, so order to order about the screen frame to spin, let the water stain that bone material surface is attached can be thrown away, avoid influencing follow-up drying, with this effectual conveying quality that has improved.
2. Through the collection shell that sets up, can accept the water that throws away, avoid polluting the conveying environment, the effectual cleanness of having guaranteed conveying environment, simultaneously when chain link conveyer is driving the net frame and remove, make the push away the wheel and remove to two between the straight rail, push away the stopper wheel and just remove to pushing away stopper rail department, continue to remove afterwards, make the push away the stopper wheel can laminate in pushing away the inclined plane of stopper rail and roll, let the plug pole can progressively move down, and then drive the plug and move down, in order to break away from the discharge return bend, make the discharge return bend can be opened, let the hydroenergy of accepting in the collection shell discharge to L shape connects the inslot through the discharge return bend, with this self-completion drainage operation, the effectual use of having made things convenient for.
Drawings
FIG. 1 is a schematic diagram of a feeder for producing freeze-dried bone powder;
FIG. 2 is an enlarged view of the feeder for producing the freeze-dried bone powder of FIG. 1A according to the present invention;
FIG. 3 is a schematic view of a collecting shell of a feeder for producing lyophilized bone powder;
FIG. 4 is an internal view of a collection housing of a feeder for producing lyophilized bone powder in accordance with the present invention;
FIG. 5 is a schematic view of a pusher wheel of a feeder for producing lyophilized bone powder according to the present invention;
Fig. 6 is a schematic view of a guide rail of a feeder for producing freeze-dried bone powder according to the present invention.
In the figure, 1, a chain plate conveyor; 2, collecting shell, 3, guide rail, 4, rail frame, 5, support claw, 6, discharge bend, 7, plug, 8, fixed plug frame, 9, plug rod, 10, T-shaped seat, 11, return spring, 12, connecting frame, 13, lug, 14, plug wheel, 15, feed guide plate, 16, push wheel, 17, net frame, 18, pinion number one, 19, shell carrying shaft, 20, connecting shaft number one, 21, pinion number two, connecting shaft number two, 23, large gear number one, 24, gear guide frame, 25, shell pushing toothed plate, 26, shell pushing gear, 27, large gear number two, 28, guide groove, 29, wheel axle, 30, straight rail, 31, upper fixed frame, 32, plug pressing rail, 33, lower fixed frame, 34, L-shaped connecting groove, 35, plug rail.
Detailed Description
The following description is presented to enable one of ordinary skill in the art to make and use the invention. The preferred embodiments in the following description are by way of example only and other obvious variations will occur to those skilled in the art.
The feeder for producing the freeze-dried bone powder shown in fig. 1-6 comprises a chain plate conveyor 1, a plurality of shell carrying shafts 19 are uniformly distributed and rotatably arranged on the chain plate of the chain plate conveyor 1, a collecting shell 2 is fixedly arranged at the upper end of the shell carrying shafts 19, the shell carrying shafts 19 play a role in carrying the collecting shell 2, a net frame 17 is placed in the collecting shell 2, the net frame 17 plays a role in loading the cleaned bone material, a discharging piece is arranged at the front end of the collecting shell 2, the collecting shell 2 can bear water stains thrown out, two guide rails 3 are arranged at the rear end of a frame of the chain plate conveyor 1, the two guide rails 3 are arranged in parallel, the guide rails 3 are continuously bent and are matched with push wheels 16, a push shell toothed plate 25 can be driven to continuously move forwards and backwards, a push shell gear 26 is driven to rotate, a connecting shaft 22 is driven to rapidly rotate through a large gear 23, a small gear 21 and a small gear 27, the acceleration of the small gear 18 can drive the shell carrying shafts 19 to rapidly rotate, the net frame 17 is driven to rotate, the end face of the push wheels 25 are correspondingly to the end of the push wheels 25, the push wheels 16 are correspondingly arranged at the end of the push wheels 25, the push wheels 25 are correspondingly arranged at the end of the push wheels 16, the push wheels 25 are correspondingly arranged at the end of the push wheels 25, and the push wheels 16 are correspondingly connected with the push wheels 25, and the end of the push wheels 25 are correspondingly arranged.
The middle part of pushing away the wheel 16 runs through and rotates and installs shaft 29, and shaft 29's tip is fixed with pushing away shell pinion rack 25 mutually, and shaft 29 plays and bears the effect of pushing away the wheel 16, and guide slot 28 has all been seted up to pushing away the upper and lower terminal surface of shell pinion rack 25, and fixed mounting has guide tooth frame 24 on the link joint of link joint conveyer 1, and guide tooth frame 24's tip laminating is in the inside of guide slot 28, and guide slot 28 and guide tooth frame 24 play and carry out the effect of guiding to pushing away shell pinion rack 25.
The lower extreme fixed mounting of two guide rails 3 has rail frame 4, the tip of rail frame 4 is fixed mutually with the frame of link joint conveyer 1, rail frame 4 plays the effect of bearing the weight of guide rail 3, the one end of two guide rails 3 all extends has straight rail 30, straight rail 30 can restrict pushing away shell pinion rack 25, make drainage in-process collection shell 2 can not appear rotating the phenomenon, the other end of two guide rails 3 all slope extension has into baffle 15, two advance baffle 15 and be the symmetry setting, advance baffle 15 can be convenient for push wheel 16 get into between two guide rails 3, advance baffle 15, straight rail 30 all and guide rail 3 integrated into one piece, the inner wall middle part of collection shell 2 extends has branch claw 5, branch claw 5 laminating in the surface of net frame 17, branch claw 5 can hold the weight of net frame 17, make the space between net frame 17 and the collection shell 2.
The accelerating piece comprises a first connecting shaft 20 which is rotatably arranged on a chain plate of the chain plate conveyor 1, the first connecting shaft 20 is positioned at the rear of the shell carrying shaft 19, the first connecting shaft 20 plays a role in carrying a second large gear 27 and a second small gear 21, the second large gear 27 is coaxially inlaid on the upper portion of the outer surface of the first connecting shaft 20, the first small gear 18 is coaxially inlaid on the outer surface of the shell carrying shaft 19, the first small gear 18 is meshed with the second large gear 27, and the first small gear 18 and the second large gear 27 can accelerate the shell carrying shaft 19 to rotate.
The link joint of link joint conveyer 1 rotates and installs No. two connecting axles 22, no. two connecting axles 22 are located the rear of No. one connecting axle 20, no. two connecting axles 22 play the effect of bearing to No. one gear wheel 23, push away shell gear 26, no. two gear wheel 23 has been inlayed to No. two connecting axle 22's surface lower part is coaxial, no. two pinion 21 has been inlayed to No. one gear wheel 20's surface lower part is coaxial, no. two pinion 21 meshes with No. one gear wheel 23 mutually, push away shell gear 26 and inlay in No. two connecting axle 22's tip coaxially, no. two pinion 21 play the effect of accelerating No. one connecting axle 20 with No. one gear wheel 23 and rotate.
The discharge piece includes fixed intercommunication in the discharge return bend 6 of collecting shell 2 front end lower part, and discharge return bend 6 plays the effect that supplies the water in the collection shell 2 to discharge, and the tip cock stem 7 has been plugged to discharge return bend 6, and cock stem 7 plays the effect of shutoff to discharge return bend 6, and the front end fixed mounting of collection shell 2 has T shape seat 10, and T shape seat 10 is located the top of discharge return bend 6, and the equal elastic mounting in both ends of T shape seat 10 pushes away stopper rod 9, and T shape seat 10 plays the effect of leading to stopper rod 9, and the lower extreme of stopper rod 9 is connected with cock stem 7.
The outside winding of stopper rod 9 has reset spring 11, reset spring 11 can let the stopper post 7 of downshifting reset, in order to carry out shutoff to discharge return bend 6 again, fixed mounting has even solid frame 12 between the upper end of two stopper rods 9, reset spring 11's one end is fixed with T shape seat 10, reset spring 11's the other end is fixed with even solid frame 12, it plays the effect together with two stopper rods 9 to link solid frame 12, it has lug 13 to link solid frame 12's upper end middle part extension, the tip of lug 13 installs the stopper wheel 14, the lug 13 plays the effect of bearing to the stopper wheel 14, the lower extreme fixed of stopper rod 9 has solid plug frame 8, solid plug frame 8 plays the effect together with stopper rod 9 and stopper 7 fixed.
The front end of the frame of the chain plate conveyor 1 is fixedly provided with a lower fixed frame 33, the end part of the lower fixed frame 33 is fixedly provided with an L-shaped connecting groove 34, the lower fixed frame 33 plays a role in fixing the L-shaped connecting groove 34, the L-shaped connecting groove 34 plays a role in supporting water discharged from the bent pipe 6, one end of the L-shaped connecting groove 34 is opened, water in the L-shaped connecting groove 34 can be conveniently discharged, the front end of the lower fixed frame 33 is fixedly provided with an upper fixed frame 31, the end part of the upper fixed frame 31 is fixedly provided with a plug pressing rail 32, the upper fixed frame 31 plays a role in fixing the plug pressing rail 32, the end part of the plug pressing rail 32 is extended with a plug pressing rail 35, the plug pressing rail 32 can press the plug wheel 14, the plug pressing rail 7 keeps a downward moving state, namely the bent pipe 6 is kept in an open state, when the chain plate conveyor 1 moves to a net frame 17, the plug wheel 14 moves to a position between two straight rails 30, the plug wheel 14 just moves to the plug pressing rail 35, the plug pressing wheel 14 moves to the bent pipe 6, the water can be continuously moved to the bent pipe 6, the inclined surface can be continuously moved to the bent pipe 6, the water can be supported by the bent pipe 6, the water can be continuously moved to the bent pipe 6, the bent pipe can be continuously moved to the bent pipe 3, the water can be continuously move to the bent pipe 3, and the plug pressing wheel 2 can be continuously moved to be separated from the bent pipe, and can be kept in a position by the bent pipe, and can be gradually moved by the water, and the water can be continuously moved by the water, and the water can be moved.
During conveying, the net frame 17 filled with bone materials is placed in the collecting shell 2, then the chain plate conveyor 1 works to convey the bone materials which are cleaned in the net frame 17, the net frame 17 is driven to rotate, water stains attached to the surface of the bone materials can be thrown down in the conveying process, meanwhile, the collecting shell 2 rolls between the two guide rails 3, so that under the action of the continuously bent guide rails 3, the shell pushing toothed plate 25 is driven to continuously move back and forth, the shell pushing gear 26 is driven to rotate, the connecting shaft 22 can drive the shell carrying shaft 19 to rotate rapidly through the large gear 23, the small gear 21 and the large gear 27, the small gear 18, the net frame 17 is driven to rotate, the water stains attached to the surface of the bone materials can be thrown down, the collecting shell 2 is prevented from affecting subsequent drying, when the chain plate conveyor 1 drives the net frame 17 to move, the plug 14 moves to the two straight rails 30, the plug 14 just moves to the plug 35, the plug 14 can be pushed down to the plug 6, the plug 35 can be pushed down, the plug 6 can be pushed down in the pipe 35, the plug 6 can be gradually separated from the inclined surface of the collecting shell, and the plug 6 can be gradually opened, and the plug 6 can be gradually separated from the inclined surface of the collecting shell 6.
The foregoing has shown and described the basic principles, principal features and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present invention, and various changes and modifications may be made therein without departing from the spirit and scope of the invention, which is defined by the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The feeder for producing the freeze-dried bone powder comprises a chain plate conveyor (1), and is characterized in that a plurality of shell carrying shafts (19) are uniformly and rotatably arranged on a chain plate of the chain plate conveyor (1), a collecting shell (2) is fixedly arranged at the upper end of each shell carrying shaft (19), a net frame (17) is arranged in each collecting shell (2), a discharging piece is arranged at the front end of each collecting shell (2), two guide rails (3) are arranged at the rear end of a frame of the chain plate conveyor (1), the two guide rails (3) are arranged in parallel, the guide rails (3) are continuously and flexibly arranged, an accelerating piece is arranged on the chain plate of the chain plate conveyor (1), the accelerating piece is connected with the corresponding shell carrying shaft (19), a shell pushing gear (26) is arranged at the end part of each accelerating piece, a shell pushing toothed plate (25) is meshed on the side surface of each shell pushing gear (26), a pushing wheel (16) is arranged at the end part of each shell pushing toothed plate (25), and the pushing wheel (16) is correspondingly arranged between the two guide rails (3), and the chain plate conveyor (1) is connected with the chain plate conveyor (25);
the accelerating piece comprises a first connecting shaft (20) rotatably arranged on a chain plate of the chain plate conveyor (1), the first connecting shaft (20) is positioned behind a shell carrying shaft (19), a second large gear (27) is coaxially embedded in the upper part of the outer surface of the first connecting shaft (20), a first small gear (18) is coaxially embedded in the outer surface of the shell carrying shaft (19), and the first small gear (18) is meshed with the second large gear (27);
The chain plate of the chain plate conveyor (1) is rotatably provided with a second connecting shaft (22), the second connecting shaft (22) is positioned behind the first connecting shaft (20), a first large gear (23) is coaxially embedded in the lower portion of the outer surface of the second connecting shaft (22), a second small gear (21) is coaxially embedded in the lower portion of the outer surface of the first connecting shaft (20), the second small gear (21) is meshed with the first large gear (23), and a shell pushing gear (26) is coaxially embedded in the end portion of the second connecting shaft (22).
2. The feeder for producing freeze-dried bone powder according to claim 1, wherein the middle part of the pushing wheel (16) is rotatably provided with a wheel shaft (29) in a penetrating manner, the end part of the wheel shaft (29) is fixed with a pushing shell toothed plate (25), the upper end surface and the lower end surface of the pushing shell toothed plate (25) are provided with guide grooves (28), a chain plate of the chain plate conveyor (1) is fixedly provided with a guide toothed frame (24), and the guide structure of the end part of the guide toothed frame (24) is attached to the inside of the guide grooves (28).
3. The feeder for producing freeze-dried bone powder according to claim 1, wherein the lower ends of the two guide rails (3) are fixedly provided with a rail frame (4), the end parts of the rail frame (4) are fixed with the frame of the chain plate conveyor (1), one ends of the two guide rails (3) are respectively provided with a straight rail (30), the other ends of the two guide rails (3) are respectively provided with a guide plate (15) in an inclined and extending mode, the two guide plates (15) are symmetrically arranged, the guide plates (15) and the straight rails (30) are integrally formed with the guide rails (3), the middle parts of the inner walls of the collecting shells (2) are respectively provided with a supporting claw (5), and the supporting claws (5) are attached to the outer surfaces of the net frames (17).
4. The feeder of claim 1, wherein the discharging part comprises a discharging bent pipe (6) fixedly communicated with the lower part of the front end of the collecting shell (2), a plug (7) is plugged at the end part of the discharging bent pipe (6), a T-shaped seat (10) is fixedly arranged at the front end of the collecting shell (2), the T-shaped seat (10) is positioned above the discharging bent pipe (6), a plug rod (9) is elastically installed at two ends of the T-shaped seat (10), and the lower end of the plug rod (9) is connected with the plug (7).
5. The feeder for producing freeze-dried bone powder according to claim 4, wherein a reset spring (11) is wound on the outer side of the plug rod (9), a connecting and fixing frame (12) is fixedly arranged between the upper ends of the two plug rods (9), one end of the reset spring (11) is fixed with the T-shaped seat (10), the other end of the reset spring (11) is fixed with the connecting and fixing frame (12), a lug (13) extends in the middle of the upper end of the connecting and fixing frame (12), a plug wheel (14) is arranged at the end part of the lug (13), a plug fixing frame (8) is fixedly arranged at the lower end of the plug rod (9), and the end part of the plug fixing frame (8) is fixed with the plug column (7).
6. The feeder for producing freeze-dried bone powder according to claim 5, wherein a lower fixing frame (33) is fixedly arranged at the front end of the frame of the chain plate conveyor (1), an L-shaped connecting groove (34) is fixedly arranged at the end part of the lower fixing frame (33), one end of the L-shaped connecting groove (34) is opened, an upper fixing frame (31) is fixedly arranged at the front end of the lower fixing frame (33), a plug pressing rail (32) is fixedly arranged at the end part of the upper fixing frame (31), a plug pressing rail (35) extends at the end part of the plug pressing rail (32), the plug pressing rail (35) is obliquely arranged upwards, and the plug pressing rail (35) and the plug pressing rail (32) are integrally formed.
CN202411604030.3A 2024-11-12 2024-11-12 Feeder is used in production of freeze-dried bone meal Active CN119460552B (en)

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CN119460552B true CN119460552B (en) 2025-04-18

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