CN104146049A - Mactra veneriformis conditioning accelerator - Google Patents
Mactra veneriformis conditioning accelerator Download PDFInfo
- Publication number
- CN104146049A CN104146049A CN201410388236.7A CN201410388236A CN104146049A CN 104146049 A CN104146049 A CN 104146049A CN 201410388236 A CN201410388236 A CN 201410388236A CN 104146049 A CN104146049 A CN 104146049A
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- China
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- water
- cuboid container
- electromagnetic valve
- switch
- water injection
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Abstract
The invention discloses a mactra veneriformis conditioning accelerator and belongs to the field of aquatic product processing. The accelerator comprises a cuboid container, a water storage box, a water injection electromagnetic valve, a water injection pipe, a water draining electromagnetic valve, a water drainage pipe, an optoelectronic switch and a float switch, wherein a separating net is horizontally arranged in the cuboid container; a slope is arranged at the bottom of the interior of the cuboid container; the optoelectronic switch is arranged at the lower part of the slope; the float switch is arranged at the upper end of the interior of the cuboid container; one end of the water injection pipe is communicated with the water storage box; the other end of the water injection pipe is connected with the upper end of the cuboid container through the water injection electromagnetic valve; the water drainage pipe is connected with the lower end of the cuboid container through the water draining electromagnetic valve; the water injection electromagnetic valve is connected into a power supply through the float switch; the water draining electromagnetic valve is connected with the power supply through the optoelectronic switch. According to the invention, with adoption of the method that water in the container is separated from the external air, mactra veneriformis conditioning is accelerated, automatic water changing and desilting are carried out when a certain amount of silt is gathered, manual intervention is not needed during the whole process, the labor intensity of workers is reduced, and the mactra veneriformis conditioning efficiency is improved.
Description
Technical field
The present invention relates to a kind of white clam and tell husky accelerator, belong to aquatic products processing field.
Background technology
White clam is a kind of delicious meat, nutritious seafood.But white clam inner product after salvaging has a lot of silt, if do not removed totally, will affect the taste of dish.At present, it is that white clam is poured into water that common white clam removes method for determining sand, then pour one deck oil film at the water surface, water and air separated, make white clam in water because of anoxic accelerate breathe, thereby improve the husky speed of telling, telling in husky process, staff needs regularly check the bottom, and change in time clear water in the time that underwater sediment increases, then again pour oil film into, this mode extremely expends staff's muscle power.
Summary of the invention
The present invention is directed to the problem in background technology, propose a kind of white clam and tell husky accelerator.
The present invention, for overcoming the above problems, adopts following technical scheme:
A kind of white clam tells husky accelerator, comprises cuboid container, storage tank, water injecting electromagnetic valve, water injection pipe, drain solenoid valve, drainpipe, optoelectronic switch and float switch; In described cuboid container, level is provided with filter, and the bottom in cuboid container is provided with slope; Described optoelectronic switch is located at slope lower; Described float switch is located at cuboid container inner upper end; Described water injection pipe one end is communicated with storage tank, and the water injection pipe other end is connected with cuboid container upper end by water injecting electromagnetic valve; Described drainpipe is connected with cuboid container lower end by drain solenoid valve; Described water injecting electromagnetic valve accesses power supply by float switch; Described drain solenoid valve accesses power supply by optoelectronic switch.
As scheme optimization, described cuboid container top is provided with lid.
Preferably, described optoelectronic switch adopts the electric switch that diffuses.
Preferably, described float switch adopts stainless steel floating ball switch.
Technique effect:
The present invention tells sand by the method for the water in container and extraneous air isolation is accelerated to white clam, and after silt gathers some automatic water-replacing sand discharge, whole process, without manual intervention, has reduced staff's labour intensity, has improved white clam and has told husky efficiency.
Brief description of the drawings
Fig. 1 is structural representation of the present invention.
Fig. 2 is the state diagram of silt in the time that slope lower is assembled.
Fig. 3 is the state diagram of liquid level during lower than float switch.
Label title in Fig. 1, Fig. 2, Fig. 3: 1, cuboid container; 2, slope; 3, filter; 4, lid; 5, storage tank; 6, water injecting electromagnetic valve; 7, water injection pipe; 8, drain solenoid valve; 9, drainpipe; 10, optoelectronic switch; 11, float switch; 12, white clam; 13, water; 14, silt.
Detailed description of the invention
Below in conjunction with accompanying drawing, technical scheme of the present invention is done in further detail and is introduced:
Structure of the present invention as shown in Figure 1, comprises cuboid container 1, storage tank 5, water injecting electromagnetic valve 6, water injection pipe 7, drain solenoid valve 8, drainpipe 9, optoelectronic switch 10 and float switch 11; The interior level of described cuboid container 1 is provided with filter 3, and the bottom in cuboid container 1 is provided with slope 2; Described optoelectronic switch 10 is located at slope 2 lowers; Described float switch 11 is located at cuboid container 1 inner upper end; Described water injection pipe 7 one end are communicated with storage tank 5, and water injection pipe 7 other ends are connected with cuboid container 1 upper end by water injecting electromagnetic valve 6; Described drainpipe 9 is connected with cuboid container 1 lower end by drain solenoid valve 8; Described water injecting electromagnetic valve 6 accesses power supply by float switch 11; Described drain solenoid valve 8 accesses power supply by optoelectronic switch 10.
Described cuboid container 1 top is provided with lid 4; Described filter 3 is rectangle woven wire, its long and wide respectively with length and wide equating of cuboid container 1 bottom surface, the height of filter 3, between water injecting electromagnetic valve 6 and drain solenoid valve 8, for carrying white clam, leaks silt to cuboid container 1 bottom simultaneously; Described storage tank 5 is for storing water purification.
Described optoelectronic switch 10 adopts the electric switch that diffuses that Nanjing Man Jisi Electric Applicance Co., Ltd model is MJS-FS50-JK, and the electric switch that diffuses is located at slope 2 lowers, for the silt of slope 2 lowers is detected.In the time that slope 2 lowers do not have silt, the light beam of the electric switch that diffuses transmitting can not be reflected back, and the contact of the electric switch that diffuses disconnects; When slope, 2 lowers have been assembled after a certain amount of silt, and the light beam of the electric switch that diffuses transmitting can be reflected back by silt, the closing of contact of the electric switch that diffuses.
It is the side-mounted stainless steel floating ball switch of NIVOMAG MK-200 that described float switch 11 adopts NIVELCO company model.When liquid level is during lower than float switch, the closing of contact of float switch; In the time that liquid level arrives or exceedes float switch, the contact of float switch disconnects.
Described water injecting electromagnetic valve 6 and drain solenoid valve 8 all adopt the 2W040-10BH magnetic valve of Shanghai Hao Shi valve Co., Ltd.When magnetic valve energising, the valve open of magnetic valve; When magnetic valve power-off, the valve closing of magnetic valve.
While removing sand, staff only need put into cuboid container 1 by white clam 12, after filling water, lid 4 is covered tightly to (as shown in Figure 1), now, the contact of float switch and optoelectronic switch 10 all disconnects, water injecting electromagnetic valve 6 and drain solenoid valve 8 all disconnect with power supply, valve closing, water in cuboid container 1 and outside air isolation, white clam in water because anoxic is accelerated to breathe, thereby tell rapidly sand, the silt 14 spuing can arrive cuboid container 1 bottom by filter 3, and slide to lower along slope 2 and gather together (as shown in Figure 2), when the silt of slope lower gathers when a certain amount of, the light beam of the electric switch that diffuses transmitting can be reflected back by silt, the closing of contact of electric switch diffuses, drain solenoid valve 8 and power connection, valve open, the water of cuboid container 1 bottom flows out from drainpipe 9 with silt, meanwhile, in cuboid container 1, liquid level starts to decline, when liquid level is during lower than float switch (as shown in Figure 3), the closing of contact of float switch, water injecting electromagnetic valve 6 and power connection, valve open, water purification in storage tank 5 can enter cuboid container 1 by water injection pipe 7.After the silt flow of cuboid container 1 bottom is complete, the contact of optoelectronic switch 10 disconnects, drain solenoid valve 8 power-off, valve closing.Storage tank 5 continues cuboid container 1 water filling, and in the time that liquid level is increased to float switch, the contact of float switch disconnects, water injecting electromagnetic valve 6 power-off, and valve closing, completes and once changes water sand discharge process.Now, the water in cuboid container 1 and outside air continue isolation, and white clam continues in the water of anoxic, to accelerate to tell sand.
Claims (4)
1. white clam tells a husky accelerator, it is characterized in that: comprise cuboid container (1), storage tank (5), water injecting electromagnetic valve (6), water injection pipe (7), drain solenoid valve (8), drainpipe (9), optoelectronic switch (10) and float switch (11); The interior level of described cuboid container (1) is provided with filter (3), and the bottom in cuboid container (1) is provided with slope (2); Described optoelectronic switch (10) is located at slope (2) lower; Described float switch (11) is located at cuboid container (1) inner upper end; Described water injection pipe (7) one end is communicated with storage tank (5), and water injection pipe (7) other end is connected with cuboid container (1) upper end by water injecting electromagnetic valve (6); Described drainpipe (9) is connected with cuboid container (1) lower end by drain solenoid valve (8); Described water injecting electromagnetic valve (6) is by float switch (11) access power supply; Described drain solenoid valve (8) is by optoelectronic switch (10) access power supply.
2. the white clam of one according to claim 1 tells husky accelerator, it is characterized in that: described cuboid container (1) top is provided with lid (4).
3. the white clam of one according to claim 1 tells husky accelerator, it is characterized in that: described optoelectronic switch (10) adopts the electric switch that diffuses.
4. the white clam of one according to claim 1 tells husky accelerator, it is characterized in that: described float switch (11) adopts stainless steel floating ball switch.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410388236.7A CN104146049A (en) | 2014-08-08 | 2014-08-08 | Mactra veneriformis conditioning accelerator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410388236.7A CN104146049A (en) | 2014-08-08 | 2014-08-08 | Mactra veneriformis conditioning accelerator |
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CN104146049A true CN104146049A (en) | 2014-11-19 |
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Family Applications (1)
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CN201410388236.7A Pending CN104146049A (en) | 2014-08-08 | 2014-08-08 | Mactra veneriformis conditioning accelerator |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108782724A (en) * | 2018-06-25 | 2018-11-13 | 杨小洲 | A kind of flower clam cleaning plant based on vibratory forces with stirring centrifugal force linkage |
CN109566709A (en) * | 2018-12-03 | 2019-04-05 | 蛤老大(福建)食品有限公司 | A kind of colored clam cleans automatically, meat shell separation equipment and its application method |
-
2014
- 2014-08-08 CN CN201410388236.7A patent/CN104146049A/en active Pending
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108782724A (en) * | 2018-06-25 | 2018-11-13 | 杨小洲 | A kind of flower clam cleaning plant based on vibratory forces with stirring centrifugal force linkage |
CN108782724B (en) * | 2018-06-25 | 2020-11-24 | 日照尊诚食品有限公司 | Clam cleaning device based on linkage of oscillating force and stirring centrifugal force |
CN109566709A (en) * | 2018-12-03 | 2019-04-05 | 蛤老大(福建)食品有限公司 | A kind of colored clam cleans automatically, meat shell separation equipment and its application method |
CN109566709B (en) * | 2018-12-03 | 2024-01-12 | 蛤老大(福建)食品有限公司 | Clam automatic cleaning and meat-shell separating equipment and application method thereof |
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WD01 | Invention patent application deemed withdrawn after publication | ||
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Application publication date: 20141119 |