CN213756649U - Feed conditioner convenient for drainage - Google Patents

Feed conditioner convenient for drainage Download PDF

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Publication number
CN213756649U
CN213756649U CN202022619090.6U CN202022619090U CN213756649U CN 213756649 U CN213756649 U CN 213756649U CN 202022619090 U CN202022619090 U CN 202022619090U CN 213756649 U CN213756649 U CN 213756649U
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China
Prior art keywords
water
water receiving
drain pipe
wall
drainage
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CN202022619090.6U
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Chinese (zh)
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蔡永强
胡东升
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Zhangjiakou Jiuzhou Dadi Feed Co ltd
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Zhangjiakou Jiuzhou Dadi Feed Co ltd
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Abstract

The utility model relates to a make things convenient for fodder quenching and tempering ware of drainage belongs to quenching and tempering ware field, and it includes the quenching and tempering ware body, and the diapire intercommunication of quenching and tempering ware body has the steam passageway, and the diapire of quenching and tempering ware body is provided with drainage structures, and drainage structures includes drain pipe, valve and water receiving bucket, the one end and the quenching and tempering ware body intercommunication of drain pipe, the other end and water receiving bucket intercommunication, water receiving bucket and drain pipe joint, valve and drain pipe intercommunication just are located the top of water receiving bucket. This application sets up drainage structures through the diapire at the quenching and tempering ware body, makes the inside water of quenching and tempering ware body flow in to the water receiving bucket along the drain pipe.

Description

Feed conditioner convenient for drainage
Technical Field
The application relates to the field of conditioners, in particular to a feed conditioner convenient for water drainage.
Background
The feed can be cured in a conditioner in the early stage of granulation, and the conditioner is provided with a double-shaft differential conditioner, adopts multi-point steam admission, and has long conditioning time, full conditioning and high curing degree. The conditioner can input steam through the steam channel in the use process, heats the fodder and rips.
After the use of present quenching and tempering ware, the inside steam of quenching and tempering ware condenses easily, makes water accumulate the bottom of quenching and tempering ware, leads to the fodder to deteriorate easily, therefore the staff generally can be at the bottom intercommunication drain pipe of quenching and tempering machine, derives the inside water of quenching and tempering machine with the drain pipe.
The related art has the disadvantages that a water receiving device is not arranged below the drain pipe, if the drain pipe is short, water in the drain pipe can directly flow to the ground to affect the use of the ground, and if the drain pipe is too long, a certain space is occupied, so that the operation of workers near the conditioner is inconvenient.
SUMMERY OF THE UTILITY MODEL
In order to make the drain pipe shift water to in the water receiving utensil effectively, this application provides a fodder quenching and tempering ware of convenient drainage.
The application provides a make things convenient for fodder quenching and tempering ware of drainage adopts following technical scheme:
the utility model provides a make things convenient for fodder quenching and tempering ware of drainage includes quenching and tempering ware body, and the diapire intercommunication of quenching and tempering ware body has steam channel, and the diapire of quenching and tempering ware body is provided with drainage structures, and drainage structures includes drain pipe, valve and water receiving bucket, the one end and the quenching and tempering ware body intercommunication of drain pipe, the other end and water receiving bucket intercommunication, water receiving bucket and drain pipe joint, valve and drain pipe intercommunication just are located the top of water receiving bucket.
Through adopting above-mentioned technical scheme, when needs drainage, open the valve, the inside water of quenching and tempering ware body flows into to the water receiving bucket along the drain pipe in, and the drainage mode is simple and convenient does benefit to and slows down this internal water of quenching and tempering ware and causes the fodder rotten.
Preferably, the fixed ring of fixedly connected with on the lateral wall of drain pipe, the vertical spout of having seted up of fixed ring's lateral wall outer wall, the spout runs through fixed ring's upper and lower surface, is connected with on the inner wall of water receiving bucket with the vertical sliding fit's of spout stopper.
Through adopting above-mentioned technical scheme, during the installation water receiving bucket, vertical rebound water receiving bucket makes the inside stopper of water receiving bucket vertically upwards slide in the spout, when the diapire of stopper exposes from the upper end of spout, rotates the water receiving bucket, makes the diapire of stopper and the upper wall butt of solid fixed ring, and at this moment, the water receiving bucket is fixed on the drain pipe.
Preferably, the upper wall of the fixing ring is vertically provided with a limiting groove, the depth of the limiting groove is smaller than the thickness of the fixing ring, and the limiting groove is matched with the limiting block for use.
By adopting the technical scheme, when the bottom wall of the limiting block is exposed from the upper end of the sliding groove, the water receiving barrel is rotated to enable the limiting block to enter the limiting groove, at the moment, the limiting groove can clamp the limiting block, and the water receiving barrel is further stably fixed on the drain pipe; when taking the water receiving bucket, earlier with the vertical rebound of water receiving bucket, make the diapire of stopper can with the upper wall butt of solid fixed ring, then rotate the water receiving bucket to opposite direction again, until the stopper can slide into the spout, vertical rebound water receiving bucket can follow the drain pipe and take off the water receiving bucket.
Preferably, the bottom of drain pipe is sealed, and the drain pipe is close to the lateral wall of diapire and has seted up the running water mouth, and running water mouth department sliding connection has the slip separation blade, and the inner wall of slip separation blade and the outer wall laminating of drain pipe, the lateral wall of drain pipe have seted up T type groove, and the one end fixedly connected with slider of slip separation blade inner wall, slider and the horizontal sliding fit of T type groove, the one end that the slider was kept away from to the slip separation blade can seal the running water mouth.
By adopting the technical scheme, when the water receiving barrel is installed, the sliding baffle is pushed to expose the water flowing port, and then the water receiving barrel is fixed with the water discharging pipe, so that water in the water discharging pipe can enter the water receiving barrel through the water flowing port; when water in the water receiving barrel needs to be poured out after the water receiving barrel is full, the sliding separation blade is pushed in the opposite direction while the water receiving barrel is taken away, at the moment, the sliding separation blade seals the water flowing port, the water discharging pipe can still continue to discharge water, the water is stored at the bottom of the water discharging pipe, the times of opening and closing the valve can be reduced, and quick water discharging is facilitated.
Preferably, the vertical draw-in groove of having seted up of slip separation blade outer wall, the draw-in groove with move the diapire intercommunication of separation blade, the inner wall connection of water receiving bucket has the card strip that uses with the draw-in groove cooperation, in the one end embedding draw-in groove that the water receiving bucket inner wall was kept away from to the card strip, the card strip is located the below of stopper.
Through adopting above-mentioned technical scheme, when fixing the water receiving bucket toward the drain pipe on, the vertical in-process that upwards removes in drain pipe periphery of water receiving bucket, the card strip can get into the draw-in groove, in the in-process that rotates the water receiving bucket and make the diapire of stopper and the upper wall butt of solid fixed ring, the card strip drives the slip separation blade and slides, expose the discharge orifice, water in the drain pipe can discharge in the water receiving bucket, when taking the water receiving bucket, in-process to the water receiving bucket of opposite direction rotation, the card strip drives the slip separation blade and slides to opposite direction, seal the discharge orifice, whole process is simple and convenient, still can save time.
Preferably, a spring is connected between the slide block and the side wall of the T-shaped groove far away from the water flowing port, one end of the spring is connected with the slide block, and the other end of the spring is connected with the side wall of the T-shaped groove.
By adopting the technical scheme, when the water receiving barrel is taken away, the sliding separation blade seals the water flowing port, the elastic force of the spring to the sliding separation blade enables the sliding separation blade to be difficult to slide, and the sealing of the sliding separation blade to the water flowing port is further facilitated.
Preferably, a rubber pad is laid on the bottom wall of the water receiving barrel.
Through adopting above-mentioned technical scheme, when the water droplet fell on the rubber pad, the rubber pad had weakened the rigid collision between water droplet and the water receiving bucket, helped weakening the water droplet in the drain pipe noise when to empty water receiving bucket bottom.
Preferably, the drain pipe is in communication with the steam channel.
Through adopting above-mentioned technical scheme, when leading to steam, close the valve of drain pipe, when needs drain pipe during operation, open the valve, make the drain pipe drainage, at this moment, the inside comdenstion water of steam channel also can flow through the drain pipe, because steam channel and quenching and tempering ware body intercommunication, so steam channel also can play the effect of drainage, in leading-in drain pipe with the inside water of quenching and tempering ware body, so drainage pipe can be practiced thrift.
To sum up, the application comprises the following beneficial technical effects:
1. the drainage structure is arranged on the bottom wall of the conditioner body, so that water in the conditioner body can flow into the water receiving barrel along the drainage pipe, and the aim of conveniently draining the water in the conditioner body is fulfilled;
2. the fixing ring is fixedly connected on the side wall of the drain pipe, so that the water receiving barrel is clamped and fixed with the fixing ring, and the mounting and dismounting processes of the water receiving barrel are simple and convenient;
3. through with drain pipe and steam passage intercommunication, steam passage also can play the effect of drainage, with the leading-in drain pipe of the inside water of quenching and tempering ware body, can practice thrift drainage pipe.
Drawings
FIG. 1 is a perspective view of a feed conditioner with convenient drainage according to an embodiment of the present application;
FIG. 2 is an exploded view of the embodiment of the present application highlighting the retaining ring;
FIG. 3 is an enlarged view of FIG. 2 taken at detail A;
FIG. 4 is a cross-sectional view of a drain pipe and a water bucket according to an embodiment of the present disclosure.
Description of reference numerals: 1. a conditioner body; 11. a steam channel; 2. a drainage structure; 21. a drain pipe; 211. a water flowing port; 22. a valve; 23. a water receiving barrel; 231. a limiting block, 232 and a clamping strip; 233. a rubber pad; 24. a T-shaped groove; 26. a fixing ring; 261. a chute; 262. a limiting groove; 27. a sliding catch; 271. a card slot; 28. a spring.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses a feed conditioner convenient for water drainage. Referring to fig. 1, a fodder quenching and tempering ware of convenient drainage includes quenching and tempering ware body 1, and the diapire intercommunication of quenching and tempering ware body 1 has steam channel 11, and the diapire of quenching and tempering ware body 1 is provided with drainage structures 2, and drainage structures 2 all communicate with steam channel 11 and quenching and tempering ware body 1. When drainage structures 2 during operation, the inside comdenstion water of steam channel 11 also can flow out through drain pipe 21, because steam channel 11 and quenching and tempering ware body 1 intercommunication, so steam channel 11 also can play the effect of drainage, with the leading-in to drainage structures 2 of the inside water of quenching and tempering ware body 1, drainage process is simple and convenient.
As shown in fig. 1, the drainage structure 2 includes a drainage pipe 21, a valve 22 and a water receiving bucket 23, one end of the drainage pipe 21 is communicated with the conditioner body 1, the other end is communicated with the water receiving bucket 23, the water receiving bucket 23 is clamped with the drainage pipe 21, the valve 22 is communicated with the drainage pipe 21 and is located above the water receiving bucket 23, and the steam passage 11 is communicated with the drainage pipe 21. When needing the drainage, open valve 22, the inside water of quenching and tempering ware body 1 flows into to receiving in the water bucket 23 along drain pipe 21, and the drainage mode is simple and convenient does benefit to and slows down the water in the quenching and tempering ware body 1 and causes the fodder rotten.
As shown in fig. 2, the fixed ring 26 of fixedly connected with on the lateral wall of drain pipe 21, the vertical spout 261 that has seted up of the lateral wall outer wall of fixed ring 26, spout 261 symmetry sets up to two, spout 261 runs through the upper and lower surface of fixed ring 26, fixedly connected with and the vertical sliding fit's of spout 261 stopper 231 on the inner wall of water receiving bucket 23, stopper 231 symmetry sets up to two, the spacing groove 262 has vertically been seted up to the upper wall of fixed ring 26, the degree of depth of spacing groove 262 is less than the thickness of fixed ring 26, spacing groove 262 uses with stopper 231 cooperation, the spacing groove 262 symmetry sets up to two. When the water receiving barrel 23 is installed, the water receiving barrel 23 is vertically moved upwards, so that the limiting block 231 inside the water receiving barrel 23 vertically slides upwards in the sliding groove 261, when the bottom wall of the limiting block 231 is exposed from the upper end of the sliding groove 261, the water receiving barrel 23 is rotated, the limiting block 231 enters the limiting groove 262, at the moment, the limiting groove 262 can clamp the limiting block 231, and further the water receiving barrel 23 is stably fixed on the drain pipe 21; when taking the water receiving bucket 23, firstly, the water receiving bucket 23 vertically moves upwards, so that the bottom wall of the limiting block 231 can be abutted to the upper wall of the fixing ring 26, then the water receiving bucket 23 is rotated in the opposite direction until the limiting block 231 can slide into the sliding groove 261, and the water receiving bucket 23 vertically moves downwards, so that the water receiving bucket 23 can be taken down from the drainage pipe 21.
As shown in fig. 1, when the water in the water receiving bucket 23 is more and needs to be poured, the valve 22 needs to be closed when the water receiving bucket 23 is moved to prevent the water from flowing to the ground, so that the water cannot be continuously drained in the process of pouring the water receiving bucket 23, and the drainage time is prolonged. Therefore, as shown in fig. 2 and fig. 3, the bottom of the drain pipe 21 is sealed, a drain port 211 is formed in the side wall of the drain pipe 21 close to the bottom wall, a sliding blocking piece 27 is connected to the drain port 211 in a sliding manner, the inner wall of the sliding blocking piece 27 is attached to the outer wall of the drain pipe 21, a T-shaped groove 24 is formed in the side wall of the drain pipe 21, a slider is fixedly connected to one end of the inner wall of the sliding blocking piece 27, the slider is in horizontal sliding fit with the T-shaped groove 24, and the drain port 211 can be sealed by the end, far away from the slider, of the sliding blocking piece 27. When the water receiving barrel 23 is installed, the sliding baffle 27 is pushed to expose the water flowing port 211, and then after the water receiving barrel 23 is fixed with the water discharging pipe 21, water in the water discharging pipe 21 can enter the water receiving barrel 23 through the water flowing port 211; when water in the water receiving barrel 23 needs to be poured after being filled, the sliding blocking piece 27 is pushed in the opposite direction while the water receiving barrel 23 is taken away, at the moment, the sliding blocking piece 27 seals the water flowing port 211, so that the water discharging pipe 21 can still continue to discharge water, the water is stored at the bottom of the water discharging pipe 21, the frequency of opening and closing the valve 22 can be reduced, and quick water discharging is facilitated.
In order to open and close the convection current mouth 211 more conveniently, as shown in fig. 3 and 4, a clamping groove 271 is vertically formed in the outer wall of the sliding baffle 27, the lower end of the clamping groove 271 is communicated with the sliding baffle 27, a clamping strip 232 which is matched with the clamping groove 271 and used is fixedly connected to the inner wall of the water receiving barrel 23, the height of the clamping strip 232 is larger than the depth of the clamping groove 271, the clamping strip 232 is located below the limiting block 231, and one end, far away from the inner wall of the water receiving barrel 23, of the clamping strip 232 is embedded into the clamping groove 271. When the water receiving barrel 23 is fixed on the drain pipe 21, the clamping strip 232 can enter the clamping groove 271 in the process that the water receiving barrel 23 vertically moves upwards at the periphery of the drain pipe 21, the clamping strip 232 drives the sliding baffle 27 to slide to expose the drain opening 211 in the process that the water receiving barrel 23 is rotated to enable the bottom wall of the limiting block 231 to be abutted to the upper wall of the fixing ring 26, at the moment, water in the drain pipe 21 can be discharged into the water receiving barrel 23, and when the limiting block 231 is clamped into the limiting groove 262, the distance between the clamping strip 232 and the upper wall of the clamping groove 271 is consistent with the depth of the limiting groove 262; when the water receiving barrel 23 is taken, in the process of rotating the water receiving barrel 23 in the opposite direction, the clamping strip 232 drives the sliding baffle 27 to slide in the opposite direction, the water flowing port 211 is sealed, the whole process is simple and convenient, and time can be saved.
As shown in fig. 3, a spring 28 is connected between the slider and the side wall of the T-shaped groove 24 away from the water flowing port 211, one end of the spring 28 is fixedly connected with the side wall of the slider, and the other end is fixedly connected with the side wall of the T-shaped groove. When the water receiving barrel 23 is connected, the spring 28 is compressed; when the water receiving barrel 23 is taken away and the water flowing port 211 is closed by the sliding baffle 27, the sliding baffle 27 is not easy to slide due to the elastic force of the spring on the sliding baffle 27, so that the sealing of the water flowing port 211 by the sliding baffle 27 is facilitated, and the water in the water discharging pipe 21 is not easy to flow to the ground.
In addition, because card strip 232 and stopper 231 are located the inner wall of water receiving bucket 23, so water receiving bucket 23 can adopt transparent material preparation, can see clearly card strip 232 and stopper 231's position when making things convenient for staff's installation water receiving bucket 23, is favorable to the staff to install water receiving bucket 23 fast.
As shown in fig. 4, when the amount of water in the water receiving tub 23 is small, noise is generated when water in the drain pipe 21 drips into the water receiving tub 23, and a rubber pad 233 is laid on the bottom wall of the water receiving tub 23. When water drops fall on the rubber pad 233, the rubber pad 233 cushions the water drops, which helps to reduce noise when the water in the drain pipe 21 drops to the bottom of the empty water receiving tub 23.
The implementation principle of the feed conditioner convenient for draining is as follows: when the water receiving barrel 23 is installed, the water receiving barrel 23 is vertically moved upwards, so that the limiting block 231 inside the water receiving barrel 23 vertically slides upwards in the sliding groove 261, when the bottom wall of the limiting block 231 is exposed from the upper end of the sliding groove 261, at the moment, the clamping strip 232 enters the clamping groove 271, then the water receiving barrel 23 is rotated, so that the limiting block 231 enters the limiting groove 262 to complete the fixation of the water receiving barrel 23, in the rotating process of the water receiving barrel 23, the clamping strip 232 drives the sliding blocking piece 27 to slide, the water flowing opening 211 is exposed, and at the moment, water in the water discharging pipe 21 can be discharged into the water receiving barrel 23; when the water receiving barrel 23 is taken, the water receiving barrel 23 is vertically moved upwards firstly, so that the bottom wall of the limiting block 231 can be abutted against the upper wall of the fixing ring 26, then the water receiving barrel 23 is rotated in the opposite direction until the limiting block 231 can slide into the sliding groove 261, in the rotating process of the water receiving barrel 23, the clamping strip 232 drives the sliding baffle 27 to slide in the opposite direction, the water flowing opening 211 is sealed, then the water receiving barrel 23 is vertically moved downwards, so that the limiting block 231 vertically slides downwards in the sliding groove 261, and then the water receiving barrel 23 can be taken down from the water discharging pipe 21. In the drainage process, water in the conditioner body 1 is effectively drained into the water receiving barrel 23 through the drain pipe 21, and the installation and the disassembly processes of the water receiving barrel 23 are simple and convenient.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a make things convenient for fodder quenching and tempering ware of drainage, includes quenching and tempering ware body (1), and the diapire intercommunication of quenching and tempering ware body (1) has steam channel (11), its characterized in that: the diapire of quenching and tempering ware body (1) is provided with drainage structures (2), and drainage structures (2) include drain pipe (21), valve (22) and water receiving bucket (23), and the one end and the quenching and tempering ware body (1) of drain pipe (21) communicate, and the other end communicates with water receiving bucket (23), and water receiving bucket (23) and drain pipe (21) joint, valve (22) and drain pipe (21) intercommunication just are located the top of water receiving bucket (23).
2. The feed conditioner convenient for water drainage as claimed in claim 1, wherein: fixedly connected with solid fixed ring (26) on the lateral wall of drain pipe (21), the vertical spout (261) of having seted up of the lateral wall outer wall of solid fixed ring (26), spout (261) run through the upper and lower surface of solid fixed ring (26), be connected with on the inner wall of water receiving bucket (23) with the vertical sliding fit's of spout (261) stopper (231).
3. The feed conditioner convenient for water drainage as claimed in claim 2, wherein: the upper wall of the fixing ring (26) is vertically provided with a limiting groove (262), the depth of the limiting groove (262) is smaller than the thickness of the fixing ring (26), and the limiting groove (262) is matched with the limiting block (231) for use.
4. The feed conditioner convenient for water drainage as claimed in claim 3, wherein: the bottom of drain pipe (21) is sealed, drain pipe (21) are close to the lateral wall of diapire and have been seted up running water mouth (211), sliding connection has slip separation blade (27) in running water mouth (211) department, the inner wall of slip separation blade (27) and the outer wall laminating of drain pipe (21), T type groove (24) have been seted up to the lateral wall of drain pipe (21), the one end fixedly connected with slider of slip separation blade (27) inner wall, slider and T type groove (24) horizontal sliding fit, the one end that the slider was kept away from in slip separation blade (27) can seal running water mouth (211).
5. The feed conditioner convenient for water drainage as claimed in claim 4, wherein: the vertical draw-in groove (271) of having seted up of slip separation blade (27) outer wall, draw-in groove (271) and the diapire intercommunication of moving separation blade (27), the inner wall of water receiving bucket (23) is connected with card strip (232) of using with draw-in groove (271) cooperation, and card strip (232) are kept away from in one end embedding draw-in groove (271) of water receiving bucket (23) inner wall, and card strip (232) are located the below of stopper (231).
6. The feed conditioner convenient for water drainage as claimed in claim 4, wherein: and a spring (28) is connected between the slide block and the side wall of the T-shaped groove (24) far away from the water flowing port (211), one end of the spring (28) is connected with the slide block, and the other end of the spring is connected with the side wall of the T-shaped groove (24).
7. The feed conditioner convenient for water drainage as claimed in claim 1, wherein: and a rubber pad (233) is laid on the bottom wall of the water receiving barrel (23).
8. The feed conditioner convenient for water drainage as claimed in claim 1, wherein: the drain pipe (21) is communicated with the steam channel (11).
CN202022619090.6U 2020-11-13 2020-11-13 Feed conditioner convenient for drainage Active CN213756649U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022619090.6U CN213756649U (en) 2020-11-13 2020-11-13 Feed conditioner convenient for drainage

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022619090.6U CN213756649U (en) 2020-11-13 2020-11-13 Feed conditioner convenient for drainage

Publications (1)

Publication Number Publication Date
CN213756649U true CN213756649U (en) 2021-07-23

Family

ID=76916917

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022619090.6U Active CN213756649U (en) 2020-11-13 2020-11-13 Feed conditioner convenient for drainage

Country Status (1)

Country Link
CN (1) CN213756649U (en)

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