CN218056758U - Emulsifier raw materials storage tank system - Google Patents

Emulsifier raw materials storage tank system Download PDF

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Publication number
CN218056758U
CN218056758U CN202222391244.XU CN202222391244U CN218056758U CN 218056758 U CN218056758 U CN 218056758U CN 202222391244 U CN202222391244 U CN 202222391244U CN 218056758 U CN218056758 U CN 218056758U
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guide block
air
storage tank
pipe
tank system
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CN202222391244.XU
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张建
罗宏慧
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Fujian Hechuan Technology Co ltd
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Fujian Hechuan Technology Co ltd
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Abstract

The utility model relates to an emulsifier raw materials storage tank system, which comprises a tank body, the storage chamber has been seted up to the inside of the jar body, the feed inlet that communicates in the storage chamber is seted up at the top of the jar body, the discharge gate in storage chamber is seted up to the bottom of the jar body, be provided with first intake pipe in the storage chamber, first intake pipe communicates in outside air pump, first intake pipe is provided with the outlet duct that communicates in the storage chamber, the top in storage chamber is provided with the gas vent, the gas vent has set gradually check valve and manometer. The method has the effect of reducing the risk of oxidation reaction of the raw materials.

Description

Emulsifier raw materials storage tank system
Technical Field
The application relates to the technical field of storage devices, in particular to an emulsifier raw material storage tank system.
Background
In order to facilitate the storage and taking and placing of materials, a storage tank is generally adopted at present, and the storage tank is widely applied in the industries such as biotechnology, pharmacy, chemical industry and the like. Current storage tank sets firmly on the support including a jar body and support, jar body, and jar body is whole to be cylindrically, and open at the top has the feed inlet, and the discharge gate has been seted up to the bottom.
With respect to the related art among the above, the inventors consider that the following drawbacks exist: when emulsifier raw materials are stored in a storage tank in the prior art, air in the storage tank is easy to generate oxidation reaction with the raw materials, so that the emulsifier raw materials are changed in taste or deteriorated.
SUMMERY OF THE UTILITY MODEL
In order to reduce the risk that the raw materials take place oxidation reaction, this application provides an emulsifier raw materials storage tank system.
The application provides an emulsifier raw materials storage tank system adopts following technical scheme:
the storage tank comprises a tank body, the storage cavity has been seted up to the inside of the tank body, the feed inlet that communicates in the storage cavity has been seted up at the top of the tank body, the discharge gate that communicates in the storage cavity has been seted up to the bottom of the tank body, be provided with first intake pipe in the storage cavity, first intake pipe communicates in outside air pump, the top of storage cavity is provided with the gas vent, the gas vent has set gradually check valve and manometer.
Through adopting above-mentioned technical scheme, after the raw materials is saved in the storage tank, let in nitrogen gas to first intake pipe, utilize nitrogen gas to pass through the gas vent with the air in the storage tank and extrude outside the storage tank, treat that the numerical value of manometer reaches and set for the threshold value after, stop to let in nitrogen gas in the storage tank to the realization utilizes the effect of nitrogen gas seal stock, reduces the risk that the oxidation reaction takes place for the raw materials.
Preferably, the first air inlet pipe is arranged on the bottom wall of the storage cavity.
By adopting the technical scheme, the gas outlet of the gas outlet pipe is arranged at the bottom of the storage tank, namely the gas outlet is positioned below the liquid level of the raw materials. Through the flow of nitrogen from bottom to top, the air storage in the storage tank is further reduced, so that the risk of oxidation reaction of the raw materials is further reduced.
Preferably, the air outlet pipe is provided with an air guide block at the opening, the air guide block is provided with a plurality of air holes, the air holes are communicated with the air outlet pipe, and the air guide block is provided with a filter screen for covering the air holes.
Through adopting above-mentioned technical scheme, when emulsifier raw materials appear the precipitate and deposit in the bottom of holding vessel, the precipitate can at first fall on the air guide block, and the filter screen on the air guide block can block the precipitate, reduces the precipitate and drops the inside possibility that leads to first intake pipe jam of business turn over trachea.
Preferably, the terminal surface that is close to the outlet duct of air guide block is provided with the stand pipe, the periphery wall of outlet duct is located to the stand pipe slip cover.
Through adopting above-mentioned technical scheme for the air guide piece is for dismantling the setting, uses a period at the air guide piece after, and some precipitations can be adhered to the filter screen on the air guide piece, can dismantle the air guide piece this moment, and wash the air guide piece.
Preferably, the outlet duct articulates there is spacing pendulum rod, spacing pendulum rod is provided with many and distributes around tracheal axis, the free end of spacing pendulum rod is provided with the fixture block, the perisporium of stand pipe is provided with the spacing groove that supplies the fixture block on the spacing pendulum rod to block to establish, the inner wall ring of stand pipe is equipped with the spacing ring that supplies tracheal tip butt, the outlet duct is provided with the driving piece that drives a plurality of spacing pendulum rods and carry out synchronous rotation and make the fixture block card locate the spacing groove.
Through adopting above-mentioned technical scheme, when installing the guide block, locate the outlet duct with the uide bushing, then make a plurality of spacing pendulum rods rotate around the pin joint to the direction that is close to the guide duct through the driving piece for the fixture block card is located the spacing inslot, restricts along the axial displacement of outlet duct to this to the guide duct, realizes the fixed connection of guide block and outlet duct.
Preferably, the driving piece is the guide block, the perisporium of outlet duct is located to the guide block slip cover, spacing pendulum rod includes gag lever post and actuating lever, the one end of gag lever post articulates in the lateral wall of outlet duct, the fixture block sets up in the free end of gag lever post, the one end fixed connection of actuating lever is in spacing pendulum rod, the other end butt of actuating lever in the periphery wall of guide block, the guide block is provided with forces the actuating lever to remove and makes the fixture block card locate the spigot surface of spacing groove, the outlet duct is provided with forces the guide block to the elastic component that is close to the air guide block direction and removes.
Through adopting above-mentioned technical scheme, the spigot surface forces the actuating lever to remove to the free end that drives the gag lever post rotates around the pin joint to the direction that is close to the stand pipe, makes the fixture block card on the gag lever post locate the spacing inslot, and the elastic component forces the guide block to slide to the direction that forces the actuating lever to remove all the time, thereby makes the fixture block card locate the spacing inslot always.
Preferably, one end of the driving rod close to the guide block is rotatably connected with a guide wheel, and the peripheral wall of the guide wheel abuts against the guide surface of the guide block.
Through adopting above-mentioned technical scheme, be provided with the leading wheel for the friction between actuating lever and the spigot surface becomes rolling friction from sliding friction, reduces the frictional force between actuating lever and the guide, makes the spigot surface force the actuating lever more easily and removes.
Preferably, the one end that the spacing ring is close to the outlet duct is provided with the sealing ring, the inner wall ring of stand pipe is equipped with the first seal groove of a plurality of, the periphery wall of outlet duct is provided with the second seal groove corresponding with first seal groove of a plurality of, first seal groove is provided with the sealing washer that the card inlays in the second seal groove, the sealing washer is the rubber circle.
By adopting the technical scheme, the air tightness of the joint of the air outlet pipe and the guide pipe is ensured, the possibility of leakage of air from the joint of the guide pipe and the air outlet pipe is reduced, and the output pressure of the air guide block is ensured.
To sum up, the utility model discloses following beneficial effect has:
1. the gas outlet of the gas outlet pipe is arranged at the bottom of the material storage tank, namely the gas outlet is positioned below the liquid level of the raw materials. The air storage in the material storage tank is further reduced through the flow of the nitrogen from bottom to top, so that the risk of oxidation reaction of the raw materials is further reduced;
2. be provided with the air guide block, when emulsifier raw materials appear the precipitate and deposit in the bottom of holding vessel, the precipitate can at first fall on the air guide block, and the filter screen on the air guide block can block the precipitate, reduces the precipitate and drops the inside possibility that leads to first intake pipe jam of business turn over trachea.
Drawings
FIG. 1 is a schematic diagram showing the construction of an emulsifier raw material storage tank system according to the present embodiment;
fig. 2 is a schematic structural view of a first intake pipe in the present embodiment;
FIG. 3 is a schematic view of the structure of the seal ring;
fig. 4 is a schematic structural view of the air guide block.
In the figure, 1, a tank body; 11. a feed inlet; 12. a discharge port; 13. an air pump; 14. an exhaust port; 15. a material storage cavity; 2. a first intake pipe; 21. a second intake pipe; 22. an air outlet pipe; 221. a force application ring; 222. a guide block; 223. a spring; 224. a second seal groove; 23. a gas guide block; 231. air holes are formed; 24. a guide tube; 241. a limiting groove; 242. a first seal groove; 243. a seal ring; 244. a limiting ring; 245. a gasket; 25. a limit swing rod; 251. a limiting rod; 252. a drive rod; 253. a clamping block; 254. a guide wheel.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses emulsifier raw materials storage tank system, refer to FIG. 1, including a jar body 1, jar body 1 is cylindricly, storage cavity 15 has in jar body 1, feed inlet 11 that feeds through in storage cavity 15 is seted up at jar body 1's top, discharge gate 12 that feeds through in storage cavity 15 is seted up to jar body 1's bottom, be provided with first intake pipe 2 in the storage cavity 15, first intake pipe 2 feeds through in outside air pump 13, storage cavity 15's top is provided with gas vent 14, gas vent 14 has set gradually check valve and manometer.
Referring to fig. 2, the bottom of the material storage cavity 15 is provided with a plurality of first air inlet pipes 2 in parallel, the first air inlet pipes 2 are communicated with each other through second air inlet pipes 21, and one of the first air inlet pipes 2 is communicated with an external air pump 13. The upper peripheral wall of first intake pipe 2 is provided with a plurality of outlet duct 22, and a plurality of outlet duct 22 is along the axis direction equipartition of first intake pipe 2, and the axis direction of outlet duct 22 is parallel with the axis direction of jar body 1.
Referring to fig. 2, an air guide block 23 is disposed at the upper end of the air outlet pipe 22, the air guide block 23 is in a semi-spherical shape, a guide pipe 24 is disposed on the lower end surface of the air guide block 23, the guide pipe 24 is sleeved on the outer peripheral wall of the air outlet pipe 22 along the axial direction of the air outlet pipe 22, a plurality of air holes 231 are uniformly distributed on the circumferential surface of the air guide block 23, and the air holes 231 are communicated with the air outlet pipe 22.
Referring to fig. 3 and 4, the inner wall of the guide tube 24 is provided with a limit ring 244 for abutting against the end of the outlet tube 22, the peripheral wall of the outlet tube 22 is hinged with a limit swing rod 25, and the limit swing rods 25 are provided in plurality and distributed around the axial direction of the outlet tube 22. The limit swing rod 25 comprises a limit rod 251 and a driving rod 252, one end of the limit rod 251 is hinged to the outer side wall of the air outlet pipe 22, a clamping block 253 is fixedly connected to the free end of the limit rod 251, and a limit groove 241 for clamping the clamping block 253 is formed in the circumferential wall of the guide pipe 24 in a surrounding mode. One end fixed connection in the hinged end of gag lever post 251 of actuating lever 252, the other end of actuating lever 252 is extended towards the direction of keeping away from air guide block 23 for spacing pendulum rod 25 is the V type setting, and the one end that air guide block 23 was kept away from to actuating lever 252 rotates and is connected with leading wheel 254, and outlet duct 22 is provided with a plurality of spacing pendulum rods 25 of drive and carries out the synchronous dress and understand and make fixture block 253 block locate the driving piece in spacing groove 241.
Referring to fig. 4, the driving member is a guide block 222, the guide block 222 is slidably sleeved on the air outlet pipe 22 along the axial direction of the air outlet pipe 22, the cross section of the guide block 222 is circular, and the radius of the guide block 222 gradually decreases from the direction away from the air guide block 23 to the direction close to the air guide block 23, so that the outer peripheral wall of the guide block 222 forms a guide surface. The peripheral wall of the air outlet pipe 22 is provided with a force applying ring 221 in a protruding manner on one side of the guide block 222 away from the air guide block 23, an elastic member for forcing the guide block 222 to move towards the direction close to the air guide block 23 is arranged between the force applying ring 221 and the guide block 222, the elastic member is a spring 223, one end of the spring 223 is fixedly connected to the side surface of the force applying ring 221 close to the air guide block 23, and the other end of the spring 223 is fixedly connected to the end surface of the guide block 222 away from the air guide block 23.
Referring to fig. 3, a sealing ring is coaxially disposed on one side of the limiting ring 244 close to the air outlet pipe 22, the end of the air outlet pipe 22 abuts against the side surface of the sealing ring far away from the limiting ring 244, and the sealing ring is a rubber ring. The inner wall of the guide pipe 24, which is located on one side of the sealing ring close to the air outlet pipe 22, is provided with a plurality of first sealing grooves 242 in a surrounding manner, the plurality of first sealing grooves 242 are distributed along the axis direction of the guide pipe 24, the first sealing grooves 242 are fixedly connected with sealing rings 243, the outer peripheral wall of the first air inlet pipe 2, which is close to one side of the air guide pipe, is provided with a plurality of second sealing grooves 224 in a surrounding manner, and when the end portion of the air outlet pipe 22 abuts against the sealing rings, the positions of the first sealing grooves 242 and the second sealing grooves 224 are corresponding. A seal ring 243 is fixedly connected to the first seal groove 242, and the seal ring 243 is fitted into the second seal groove 224. The air tightness of the joint of the air outlet pipe 22 and the guide pipe 24 is ensured, the possibility of air leakage from the joint of the guide pipe 24 and the air outlet pipe 22 is reduced, and the output pressure of the air guide block 23 is ensured.
The implementation principle of the emulsifier raw material storage tank system in the embodiment of the application is as follows: after the raw materials are stored in the storage tank, nitrogen is introduced into the first air inlet pipe 2, the nitrogen sequentially enters the tank body 1 through the air outlet pipe 22 and the air guide block 23, air in the storage tank is extruded out of the tank body 1 through the air outlet 14, and after the numerical value of the pressure gauge reaches a set threshold value, the nitrogen is stopped to be introduced into the storage tank, so that the effect of sealing the raw materials by using the nitrogen is realized. When the bottom of deposit and sediment holding vessel appears in the emulsifier raw materials, the precipitate can at first fall on air guide block 23, and the filter screen on air guide block 23 can block the precipitate, reduces the precipitate and drops into the inside possible air guide block 23 that leads to first intake pipe 2 to block up of first intake pipe 2.
When the air guide block 23 is used for a period of time, the air guide block 23 can be detached, force is applied to the guide block 222, the guide block 222 slides in the direction close to the force application ring 221, the guide surface does not act on the driving rod 252, the clamping block 253 can be separated from the clamping of the limiting groove 241 at the moment, and the air guide block 23 can be detached and cleaned. After the cleaning, the guide block 222 is driven to slide, the spring 223 is compressed to have elastic potential energy, the guide pipe 24 is sleeved on the air outlet pipe 22, the end of the air outlet pipe 22 abuts against the sealing ring, the force applied to the guide block 222 is removed, the spring 223 forces the guide block 222 to slide under the action of the elastic potential energy, the guide wheel 254 abuts against the guide surface of the guide block 222, the drive rod 252 is forced to move by the guide surface, the limiting rod 251 swings around the hinge point, the fixture block 253 is clamped in the limiting groove 241, the guide block 222 forces the drive rod 252 to move all the time under the action of the elastic potential energy of the spring 223, the fixture block 253 is clamped in the limiting groove 241 all the time, and the installation stability of the air guide block 23 and the guide pipe 24 is improved.
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. An emulsifier raw materials storage tank system which characterized in that: including a jar body (1), storage cavity (15) have been seted up to the inside of the jar body (1), feed inlet (11) that communicate in storage cavity (15) have been seted up at the top of the jar body (1), discharge gate (12) that communicate in storage cavity (15) have been seted up to the bottom of the jar body (1), be provided with first intake pipe (2) in storage cavity (15), first intake pipe (2) communicate in outside air pump (13), first intake pipe (2) are provided with and communicate in outlet duct (22) of storage cavity (15), the top of storage cavity (15) is provided with gas vent (14), gas vent (14) have set gradually the manometer.
2. The emulsifier material storage tank system of claim 1, wherein: the air outlet pipe (22) is arranged on the bottom wall of the material storage cavity (15).
3. The emulsifier material storage tank system of claim 1, wherein: the air outlet pipe (22) is located the opening part and is provided with air guide block (23), a plurality of bleeder vent (231) have been seted up in air guide block (23), bleeder vent (231) communicate in air outlet pipe (22), air guide block (23) are provided with the filter screen that covers bleeder vent (231).
4. The emulsifier material storage tank system of claim 3, wherein: the terminal surface that air guide block (23) are close to outlet duct (22) is provided with stand pipe (24), the periphery wall of outlet duct (22) is located to stand pipe (24) slip cover.
5. The emulsifier material storage tank system of claim 4, wherein: the utility model discloses a spacing trachea, including outlet duct (22), spacing pendulum rod (25) are provided with many and distribute around the axis of outlet duct (22), the free end of spacing pendulum rod (25) is provided with fixture block (253), the perisporium of stand pipe (24) is provided with fixture block (253) that supplies on spacing pendulum rod (25) and blocks spacing groove (241) of establishing, the inner wall ring of stand pipe (24) is equipped with spacing ring (244) that supplies the tip butt of outlet duct (22), outlet duct (22) are provided with the driving piece that drives a plurality of spacing pendulum rods (25) and carry out synchronous rotation and make fixture block (253) block locate spacing groove (241).
6. The emulsifier material storage tank system of claim 5, wherein: the driving piece is a guide block (222), the guide block (222) is slidably sleeved on the peripheral wall of the air outlet pipe (22), the limiting swing rod (25) comprises a limiting rod (251) and a driving rod (252), one end of the limiting rod (251) is hinged to the outer side wall of the air outlet pipe (22), the clamping block (253) is arranged at the free end of the limiting rod (251), one end of the driving rod (252) is fixedly connected to the limiting swing rod (25), the other end of the driving rod (252) abuts against the peripheral wall of the guide block (222), the guide block (222) is provided with a guide surface which forces the driving rod (252) to move and enables the clamping block (253) to be clamped in the limiting groove (241), and the air outlet pipe (22) is provided with an elastic piece which forces the guide block (222) to move towards the direction close to the air guide block (23).
7. The emulsifier material storage tank system of claim 6, wherein: one end of the driving rod (252) close to the guide block (222) is rotatably connected with a guide wheel (254), and the outer peripheral wall of the guide wheel (254) is abutted to the guide surface of the guide block (222).
8. The emulsifier material storage tank system of claim 5, wherein: the utility model discloses a spacing ring (244) is provided with the sealing ring near the one end of outlet duct (22), the inner wall ring of stand pipe (24) is equipped with a plurality of first seal groove (242), the periphery wall of outlet duct (22) is provided with a plurality of and first seal groove (242) corresponding second seal groove (224), first seal groove (242) are provided with the sealing washer (243) that inlay card in second seal groove (224).
CN202222391244.XU 2022-11-09 2022-11-09 Emulsifier raw materials storage tank system Active CN218056758U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222391244.XU CN218056758U (en) 2022-11-09 2022-11-09 Emulsifier raw materials storage tank system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222391244.XU CN218056758U (en) 2022-11-09 2022-11-09 Emulsifier raw materials storage tank system

Publications (1)

Publication Number Publication Date
CN218056758U true CN218056758U (en) 2022-12-16

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CN202222391244.XU Active CN218056758U (en) 2022-11-09 2022-11-09 Emulsifier raw materials storage tank system

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CN (1) CN218056758U (en)

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