CN212767699U - Dampproofing storage device of protein hydrolysate - Google Patents

Dampproofing storage device of protein hydrolysate Download PDF

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Publication number
CN212767699U
CN212767699U CN202021381209.4U CN202021381209U CN212767699U CN 212767699 U CN212767699 U CN 212767699U CN 202021381209 U CN202021381209 U CN 202021381209U CN 212767699 U CN212767699 U CN 212767699U
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drum
protein hydrolysate
cylinder
storage device
moisture
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CN202021381209.4U
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Chinese (zh)
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刘骞
孔保华
韩建春
姜瞻梅
彭新颜
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Northeast Agricultural University
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Northeast Agricultural University
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Abstract

The utility model belongs to the technical field of the treatment of protein hydrolysate, in particular to a moisture-proof storage device for protein hydrolysate, which comprises a support frame, wherein a cylinder is arranged on the upper end surface of the support frame, a refrigeration box, a water inlet pipe and a controller are sequentially and fixedly arranged on the upper end surface of the cylinder from left to right, a first electromagnetic valve is fixedly arranged on the outer side wall of the water inlet pipe, a temperature sensor and a humidity sensor are sequentially and fixedly arranged on the inner side wall at the top end of the cylinder from left to right, a plurality of support rods are fixedly connected with the upper end and the lower end of the inner side wall of the cylinder, one end of the support rods close to the support rods is fixedly connected with a storage tank, a water outlet pipe is communicated with the right side wall of the storage tank, so that a large amount of protein hydrolysate is stored in the storage tank for refrigerating storage, the storage time of the protein hydrolysate is prolonged, thereby keeping the cylinder dry and achieving the effect of moisture protection.

Description

Dampproofing storage device of protein hydrolysate
Technical Field
The utility model relates to a technical field is handled to the protein hydrolysate, concretely relates to dampproofing storage device of protein hydrolysate.
Background
Today, protein hydrolysates are used as raw materials by various industries due to their multiple uses and generally good availability, and one application area cited here is the production of cosmetics (cosmetic products) or body care products, as a source of raw materials for the production of protein hydrolysates, vegetable or animal substrates are employed, and the rest of the materials produced in other areas, such as in the food industry in the corresponding vegetable or animal processing, are also available here.
At present, when the protein hydrolysate is stored, the protein hydrolysate is sealed and then placed in a refrigerator for refrigeration storage, the storage mode is only suitable for storing a small amount of protein hydrolysate, the storage time is short, and the protein hydrolysate is easily affected with damp, so that the protein hydrolysate is deteriorated.
Disclosure of Invention
For the problem that provides among the above-mentioned background art of solution, the utility model provides a dampproofing storage device of albumen hydrolysate has a large amount of albumen hydrolysates to store in the holding vessel, refrigerates and deposits, prolongs the dwell time of albumen hydrolysate to and when the fan rotates, accelerate the interior air flow of drum and the steam in the drum through the recess from the drain pipe discharge, and then keep dry in making the drum characteristics.
In order to achieve the above object, the utility model provides a following technical scheme: dampproofing storage device of albumen hydrolysate, including the support frame, the drum is installed to the up end of support frame, the up end of drum has refrigeration case, inlet tube and controller from a left side to the right side fixed mounting in proper order, the lateral wall fixed mounting of inlet tube has first solenoid valve, the inside wall on drum top has temperature sensor and humidity transducer from a left side to the right side fixed mounting in proper order, a plurality of bracing pieces of the equal fixedly connected with in upper and lower both ends of drum inside wall, it is a plurality of the one end fixedly connected with holding vessel that the bracing piece is close to, the right side wall intercommunication of holding vessel has the outlet pipe, the lateral wall fixed mounting of outlet pipe has the second solenoid valve, the inside wall fixed mounting of drum left end has the fan, the bottom face fixed mounting of two landing legs of support frame.
Sealed the saving in the holding vessel in order to put protein hydrolysate, conduct the utility model discloses the dampproofing storage device of protein hydrolysate is preferred, the lateral wall intercommunication of the lateral wall that the drum was run through to the bottom of inlet tube and holding vessel, the top of inlet tube is provided with sealed lid.
In order to reduce the temperature in the drum when weather is hot for the protein hydrolysate in the holding vessel preserves longer, as the utility model discloses the dampproofing storage device of protein hydrolysate is preferred, the bottom intercommunication of refrigeration case has the cold air duct, the cold air duct runs through the lateral wall of drum and extends to the inside of drum.
In order to fix the drum in the standing groove, as the utility model discloses the dampproofing storage device of albumen hydrolysate is preferred, the up end of support frame is provided with the standing groove, the drum is installed in the inside of standing groove.
In order to fall into the recess with the steam in the drum, and then discharge from the drain pipe, as the utility model discloses the dampproofing storage device of protein hydrolysate is preferred, the lateral wall fixed connection of drum bottom is fluted, the right-hand member fixedly connected with drain pipe of recess.
In order to prevent that the dust from getting into the drum, as the utility model discloses the dampproofing storage device of albumen hydrolysate is preferred, the inside wall at both ends all is provided with the dust screen about the drum, the right-hand member of outlet pipe runs through the right side wall of drum and extends to the outside of drum.
In order to carry the signal of telecommunication for the controller at temperature sensor, humidity transducer, the function of controller control refrigeration case and fan to and conveniently control first solenoid valve and second solenoid valve and open, conduct the utility model discloses the dampproofing storage device of proteolysis is preferred, refrigeration case, fan, temperature sensor, humidity transducer, first solenoid valve and second solenoid valve all with controller electric connection.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the moisture-proof storage device for the protein hydrolysate pours the protein hydrolysate into the storage tank through the water inlet pipe, then closes the first electromagnetic valve and the sealing cover, and further performs sealed storage on the protein hydrolysate;
2. this dampproofing storage device of albumen hydrolysate, when humidity transducer monitors the humidity in the drum and surpasss the humidity of settlement, humidity transducer gives the controller with signal transmission, the controller is to fan signal transmission, the fan begins to rotate, accelerate outside air current entering drum in, and then accelerate the air flow in the drum, thereby make the steam rapid evaporation in the drum, dust screen on the drum prevents that the dust from getting into in the drum, the steam that produces on the inner wall of drum flows into the recess along the inner wall of drum in, integrated water droplet is along the recess, discharge from the drain pipe, make and keep dry in the drum, thereby when the fan rotates, accelerate the air flow in the drum and the steam in the drum through the recess from the drain pipe discharge, and then keep dry in making the drum, reach dampproofing effect.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention. In the drawings:
FIG. 1 is a schematic diagram of the moisture-proof storage device for protein hydrolysate according to the present invention;
FIG. 2 is a cross-sectional view of the moisture-proof protein hydrolysate storage device of the present invention;
fig. 3 is a left side sectional view of the present invention.
In the figure, 1, a support frame; 101. a supporting wheel; 2. a cylinder; 201. a support bar; 202. a groove; 203. a drain pipe; 3. a water inlet pipe; 301. a first solenoid valve; 302. a sealing cover; 303. a controller; 4. a fan; 5. a refrigeration case; 501. a cold air pipe; 6. a temperature sensor; 7. a humidity sensor; 8. a storage tank; 801. a water outlet pipe; 802. a second solenoid valve; 9. and (6) placing the groove.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1-3, the present invention provides the following technical solutions: dampproofing storage device of albumen hydrolysate, including support frame 1, drum 2 is installed to the up end of support frame 1, drum 2's up end has refrigeration case 5 from a left side to the right side fixed mounting in proper order, inlet tube 3 and controller 303, the lateral wall fixed mounting of inlet tube 3 has first solenoid valve 301, the inside wall on 2 tops of drum has temperature sensor 6 and humidity transducer 7 from a left side to the right side fixed mounting in proper order, the equal a plurality of bracing pieces 201 of the upper and lower both ends of drum 2 inside wall, the one end fixedly connected with holding vessel 8 that a plurality of bracing pieces 201 are close to, the right side wall intercommunication of holding vessel 8 has outlet pipe 801, the lateral wall fixed mounting of outlet pipe 801 has second solenoid valve 802, the inside wall fixed mounting of 2 left ends of drum has fan 4, the bottom face fixed mounting of two landing legs of support frame 1.
In this embodiment: the sealing cover 302 is opened, the first electromagnetic valve 301 is opened through the controller 303, the protein hydrolysate is poured into the storage tank 8 through the water inlet pipe 3, the first electromagnetic valve 301 and the sealing cover 302 are closed, the protein hydrolysate is sealed and stored, when the temperature sensor 6 monitors that the temperature in the cylinder 2 exceeds the temperature for storing the protein hydrolysate, the temperature sensor 6 transmits a signal to the controller 303, the controller 303 sends an electric signal to the refrigeration box 5, the refrigeration box 5 starts to refrigerate, the refrigerated cold air is discharged into the cylinder 2 through the cold air pipe 501 to be diffused, the storage tank 8 is cooled, when the humidity sensor 7 monitors that the humidity in the cylinder 2 exceeds the set humidity, the humidity sensor 7 transmits the signal to the controller 303, the controller 303 sends a signal to the air fan 4, the fan 4 starts to rotate, and the external air flow is accelerated to enter the cylinder 2, and further quickening the air flow in the cylinder 2, thereby making the steam in the cylinder 2 evaporate fast, the dust screen on the cylinder 2 prevents the dust from entering into the cylinder 2, the steam produced on the inner wall of the cylinder 2 flows into the groove 202 along the inner wall of the cylinder 2, the integrated water drops are discharged from the drain pipe 203 along the groove 202, and the interior of the cylinder 2 is kept dry.
As a technical optimization scheme of the utility model, the lateral wall that drum 2 was run through to the bottom of inlet tube 3 communicates with the lateral wall of holding vessel 8, and the top of inlet tube 3 is provided with sealed lid 302.
In this embodiment: through setting up sealed lid 302, at first open sealed lid 302, open first solenoid valve 301 again, then pour into inlet tube 3 with protein hydrolysate in, protein hydrolysate flows into holding vessel 8 through inlet tube 3 in, closes first solenoid valve 301 again, covers sealed lid 302 on inlet tube 3, and then seals to protein hydrolysate and preserve.
As a technical optimization scheme of the utility model, the bottom intercommunication of refrigeration case 5 has cold air duct 501, and cold air duct 501 runs through the lateral wall of drum 2 and extends to the inside of drum 2.
In this embodiment: when the temperature sensor 6 monitors that the temperature in the cylinder 2 exceeds the temperature for storing the protein hydrolysate, the temperature sensor 6 transmits a signal to the controller 303, the controller 303 receives the signal transmitted by the temperature sensor 6, then the controller 303 transmits an electric signal to the refrigerating box 5, the refrigerating box 5 starts to refrigerate after receiving the signal, and cold air refrigerated by the refrigerating box 5 enters the cylinder 2 through the cold air pipe 501, so that the storage tank 8 is cooled.
As a technical optimization scheme of the utility model, the up end of support frame 1 is provided with standing groove 9, and drum 2 is installed in the inside of standing groove 9.
In this embodiment: by providing the placement groove 9, the drum 2 is mounted in the placement groove 9, and the drum 2 is fixed in the placement groove 9, thereby preventing the placement groove 9 from moving left and right on the support frame 1.
As a technical optimization scheme of the utility model, the lateral wall fixedly connected with recess 202 of 2 bottoms of drum, the right-hand member fixedly connected with drain pipe 203 of recess 202.
In this embodiment: the moisture generated on the inner wall of the cylinder 2 flows into the groove 202 along the inner wall of the cylinder 2, and the integrated water drops are discharged from the drain pipe 203 along the groove 202.
As a technical optimization scheme of the utility model, the inside wall at both ends all is provided with the dust screen about drum 2, and the right-hand member of outlet pipe 801 runs through the right side wall of drum 2 and extends to the outside of drum 2.
In this embodiment: humidity transducer 7 monitors when humidity in drum 2 exceeds the humidity of settlement, humidity transducer 7 gives controller 303 with signal transmission, controller 303 sends signal to fan 4, fan 4 begins to rotate, accelerate the outside air current to get into from the left side of drum 2, and then discharge from the right side of drum 2, fan 4 rotates the flow of accelerating the interior air of drum 2, thereby make the steam rapid evaporation in drum 2, keep dry, the dust screen that the left and right ends wall of drum 2 set up, prevent the dust along with the air current entering drum 2, influence other equipment work.
As the utility model discloses a technical optimization scheme, refrigeration case 5, fan 4, temperature sensor 6, humidity transducer 7, first solenoid valve 301 and second solenoid valve 802 all with controller 303 electric connection.
In this embodiment: the controller 303 controls the first solenoid valve 301 to open, so that the protein hydrolysate is poured into the storage tank 8, and the controller 303 controls the second solenoid valve 802 to open, so that the protein hydrolysate is discharged from the storage tank 8.
The utility model discloses a theory of operation and use flow: firstly, the sealing cover 302 is opened, the first electromagnetic valve 301 is opened through the controller 303, the protein hydrolysate is poured into the storage tank 8 through the water inlet pipe 3, then the first electromagnetic valve 301 and the sealing cover 302 are closed, the protein hydrolysate is sealed and stored, when the temperature sensor 6 monitors that the temperature in the cylinder 2 exceeds the temperature for storing the protein hydrolysate, the controller 303 sends an electric signal to the refrigerating box 5 after receiving the signal sent by the temperature sensor 6, the refrigerating box 5 starts refrigerating, the produced cold air enters the cylinder 2 through the cold air pipe 501, the storage tank 8 is cooled, when the humidity sensor 7 monitors that the humidity in the cylinder 2 exceeds the set humidity, the humidity sensor 7 transmits the signal to the controller 303, the controller 303 sends a signal to the fan 4, the fan 4 starts rotating, the flow of the air in the cylinder 2 is accelerated, and the water vapor in the cylinder 2 is rapidly evaporated, and prevent that the dust from getting into in drum 2, the steam that produces on the inner wall of drum 2 flows into in recess 202 along the inner wall of drum 2, and the integrated water droplet is along recess 202, discharges from drain pipe 203, makes and keeps dry in the drum 2 to reach the effect of dampproofing storage, when taking out the proteolysis thing in the holding vessel 8, open second solenoid valve 802 through controller 303, discharge the proteolysis thing in the holding vessel 8, remove support frame 1 through four trundles 101.
The above description is only exemplary of the present invention and should not be construed as limiting the present invention, and any modifications, equivalents and improvements made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (7)

1. Dampproofing storage device of protein hydrolysate, including support frame (1), its characterized in that: drum (2) is installed to the up end of support frame (1), there are refrigeration case (5), inlet tube (3) and controller (303) in proper order fixed mounting from a left side to the right side in the up end of drum (2), the lateral wall fixed mounting of inlet tube (3) has first solenoid valve (301), there are temperature sensor (6) and humidity transducer (7) in proper order fixed mounting from a left side to the right side in the inside wall on drum (2) top, the equal fixedly connected with a plurality of bracing pieces (201) in upper and lower both ends of drum (2) inside wall, a plurality of one end fixedly connected with holding vessel (8) that bracing piece (201) are close to, the right lateral wall intercommunication of holding vessel (8) has outlet pipe (801), the lateral wall fixed mounting of outlet pipe (801) has second solenoid valve (802), the inside wall fixed mounting of drum (2) left end has fan (4), and supporting wheels (101) are fixedly arranged on the bottom end surfaces of the two supporting legs of the supporting frame (1).
2. The moisture-resistant storage device of protein hydrolysate as set forth in claim 1, wherein: the bottom of inlet tube (3) runs through the lateral wall of drum (2) and communicates with the lateral wall of holding vessel (8), the top of inlet tube (3) is provided with sealed lid (302).
3. The moisture-resistant storage device of protein hydrolysate as set forth in claim 1, wherein: the bottom intercommunication of refrigeration case (5) has cold air duct (501), cold air duct (501) run through the lateral wall of drum (2) and extend to the inside of drum (2).
4. The moisture-resistant storage device of protein hydrolysate as set forth in claim 1, wherein: the upper end face of the support frame (1) is provided with a placing groove (9), and the cylinder (2) is installed in the placing groove (9).
5. The moisture-resistant storage device of protein hydrolysate as set forth in claim 1, wherein: the outer side wall of the bottom end of the cylinder (2) is fixedly connected with a groove (202), and the right end of the groove (202) is fixedly connected with a drain pipe (203).
6. The moisture-resistant storage device of protein hydrolysate as set forth in claim 1, wherein: the inner side walls of the left end and the right end of the cylinder (2) are provided with dust screens, and the right end of the water outlet pipe (801) penetrates through the right side wall of the cylinder (2) and extends to the outside of the cylinder (2).
7. The moisture-resistant storage device of protein hydrolysate as set forth in claim 1, wherein: refrigeration case (5), fan (4), temperature sensor (6), humidity transducer (7), first solenoid valve (301) and second solenoid valve (802) all with controller (303) electric connection.
CN202021381209.4U 2020-07-14 2020-07-14 Dampproofing storage device of protein hydrolysate Active CN212767699U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021381209.4U CN212767699U (en) 2020-07-14 2020-07-14 Dampproofing storage device of protein hydrolysate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021381209.4U CN212767699U (en) 2020-07-14 2020-07-14 Dampproofing storage device of protein hydrolysate

Publications (1)

Publication Number Publication Date
CN212767699U true CN212767699U (en) 2021-03-23

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Application Number Title Priority Date Filing Date
CN202021381209.4U Active CN212767699U (en) 2020-07-14 2020-07-14 Dampproofing storage device of protein hydrolysate

Country Status (1)

Country Link
CN (1) CN212767699U (en)

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