CN217276646U - Prefilling device for isolator - Google Patents

Prefilling device for isolator Download PDF

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Publication number
CN217276646U
CN217276646U CN202220651097.2U CN202220651097U CN217276646U CN 217276646 U CN217276646 U CN 217276646U CN 202220651097 U CN202220651097 U CN 202220651097U CN 217276646 U CN217276646 U CN 217276646U
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China
Prior art keywords
section
sealing
isolator
water injection
locking
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CN202220651097.2U
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Chinese (zh)
Inventor
陈永伟
邹洪先
李元
邱河文
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China General Nuclear Power Corp
CGN Power Co Ltd
China Nuclear Power Operation Co Ltd
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China General Nuclear Power Corp
CGN Power Co Ltd
China Nuclear Power Operation Co Ltd
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Priority to CN202220651097.2U priority Critical patent/CN217276646U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E30/00Energy generation of nuclear origin
    • Y02E30/30Nuclear fission reactors

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Abstract

The utility model relates to an isolator priming solution device, the isolator includes first base, second base, and the diaphragm of clamp setting between first base, second base, be equipped with the first connecting hole relative with the diaphragm on the second base, still be equipped with the exhaust hole that communicates with the parking space of diaphragm on the second base, isolator priming solution device is used for inserting in the first connecting hole, the first connecting hole is including locking hole section, the sealed hole section of setting up outwards; the isolator priming solution device comprises a water injection pipe section, a locking section and a water injection nozzle which are sequentially arranged from outside to inside; the locking section is connected between the water injection pipe section and the water injection nozzle and is in threaded connection with the locking hole section; the water injection pipeline section is communicated with the water injection nozzle, the water injection nozzle is inserted into the sealing hole section to inject water into the storage space, and the first connecting hole is sealed after the locking section is locked. The priming device has good priming filling effect, and the risk of plan delay of an overhaul mainline is reduced; the accuracy and the stability of the measurement of the important nuclear-grade transmitter are improved.

Description

Isolator priming solution device
Technical Field
The utility model relates to a nuclear power field, more specifically say, relate to an isolator priming solution device.
Background
The core-level transmitter with the capillary line mainly structurally comprises a transmitter body, the capillary line and an isolator. The isolator is directly connected with a loop medium, directly senses the pressure of the medium and transmits the pressure to the capillary line. The capillary line is filled with desalted and deoxygenated water, and pressure transmission is realized through water medium.
The transmitter body adopts an inductive measuring principle, senses differential pressure and converts the differential pressure change of physical quantity into the change of an inductive signal. The installation and replacement of the nuclear level transmitter with the capillary line adopt a vacuumizing and liquid filling technology, namely, the capillary line, the isolator and the pressure transmission medium cavity of the transmitter body need to be vacuumized, and the capillary line, the isolator and the pressure transmission medium cavity are filled with desalted and deoxidized water.
The filling effect of the capillary line, the isolator and the cavity of the transmitter body directly influences the accuracy and the stability of the measurement of the transmitter, so that the effect of vacuumizing and filling liquid needs to be ensured.
Particularly, the lower isolator needs to be prefilled before the lower isolator is vacuumized and filled with liquid, so that the diaphragm of the lower isolator is in a middle state when the lower isolator is vacuumized and filled with liquid, and the linearity measured by the transmitter is not influenced.
The left side of the isolator is connected with a capillary line (M20 x 100 joint hole) as shown in figure 1, the right side of the isolator is connected with a sampling line (1/4 inch joint hole), and the upper part of the right side of the isolator is also provided with an exhaust plug as shown in figure 2.
The middle of the isolator is provided with a diaphragm, and the diaphragm is used for transmitting the pressure in the process system to the diaphragm through a sampling pipeline; the diaphragm transmits the pressure to the capillary line side without damage, and transmits the pressure to the transmitter body through the aqueous medium in the capillary line.
The isolator is prefilled by filling an aqueous medium into a cavity on the right side of the isolator, filling fullness and integrity are guaranteed, and the phenomenon that a diaphragm deflects to cause poor linearity of transmitter measurement and influence the accuracy of overall measurement in a measuring range in the process of vacuumizing a capillary pipeline on the left side of the isolator and a cavity on the left side of the isolator is avoided. The purpose of the isolator prefill is to fill the right chamber of the isolator with an aqueous medium while ensuring that the diaphragm is in a neutral state during the process.
In order to ensure the normal operation of the priming operation of the isolator, a stable priming structure needs to be designed.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the present invention is to provide an isolator priming solution device for the above-mentioned defects of the prior art.
The utility model provides a technical scheme that its technical problem adopted is: constructing an isolator priming solution device, wherein the isolator comprises a first base, a second base and a diaphragm clamped between the first base and the second base, the second base is provided with a first connecting hole opposite to the diaphragm, the second base is also provided with an exhaust hole communicated with a storage space of the diaphragm, the isolator priming solution device is inserted into the first connecting hole, and the first connecting hole comprises a locking hole section and a sealing hole section which are arranged outwards; the isolator priming solution device comprises a water injection pipe section, a locking section and a water injection nozzle which are sequentially arranged from outside to inside;
the locking section is connected between the water injection pipe section and the water injection nozzle, and the locking section is in threaded connection with the locking hole section;
the water injection pipe section with the water injection nozzle intercommunication, the water injection nozzle inserts sealed hole section, in order to the parking space water injection, and will locking section locking back will first connecting hole is sealed.
In some embodiments, the bore diameter of the sealing bore section is smaller than the bore diameter of the locking bore section.
In some embodiments, the seal bore section comprises a first seal section, a second seal section, the first seal section being located between the second seal section and the locking section, the first seal section having a larger bore diameter than the second seal section;
the water injection nozzle comprises a pipe body and a sealing head, the pipe body and the locking section are arranged in the axial direction, the sealing head is located at one end, far away from the locking section, of the pipe body, and the connecting position between the first sealing section and the second sealing section is sealed.
In some embodiments, the end of the sealing head is closed, and the pipe body is provided with a water outlet communicated with the water injection pipe section.
In some embodiments, the sealing head is conical, and an inclined plane matched with the sealing head is arranged between the first sealing section and the second sealing section; or the sealing head is round-head-shaped, and an arc matched with the sealing head is arranged between the first sealing section and the second sealing section.
In some embodiments, the separator priming solution device further comprises a locking section arranged on the outer peripheral wall of the locking section, and the locking section is used for driving the locking section to rotate.
In some embodiments, the locking segment is a bolt.
In some embodiments, the water injection pipe section is connected with the locking section through the locking section, and the locking section is communicated with the water injection pipe section and the water injection nozzle.
In some embodiments, the water filling pipe section is a hose, and the liquid filling device further comprises a water filling driving device connected with the water filling pipe section.
In some embodiments, the water injection drive comprises a water injection pump.
Implement the utility model discloses an isolator priming solution device has following beneficial effect: the priming device can ensure the normal implementation of the priming operation of the isolator, realize good priming filling effect, ensure the reliability of the replacement process and reduce the risk of delaying the plan of the major overhaul line; and the accuracy and the stability of the measurement of the important nuclear-grade transmitter are improved. Meanwhile, the transmitter participates in the functions of monitoring the water level of the reactor core of the nuclear power unit, monitoring the water level of the voltage stabilizer and protecting, and plays an important role in improving the nuclear safety performance.
Drawings
The invention will be further explained with reference to the drawings and examples, wherein:
FIG. 1 is a schematic sectional view of a separator;
FIG. 2 is a schematic view of the right side view of the isolator;
fig. 3 is a cross-sectional view of the priming solution device in an embodiment of the present invention mated with the first connection hole;
FIG. 4 is a schematic view of the priming solution unit of FIG. 3 coupled to a fill actuator;
fig. 5 is a schematic diagram of a measuring device in an embodiment of the present invention when measuring a position of a diaphragm.
Detailed Description
In order to clearly understand the technical features, objects, and effects of the present invention, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
As shown in fig. 1, the isolator includes a first base 1, a second base 2, and a diaphragm 3 interposed between the first base 1 and the second base 2, the second base 2 is provided with a first connection hole 21 opposite to the diaphragm 3, and further, the first base is provided with a second connection hole 11 opposite to the diaphragm 3.
Usually, the first connection hole 21 is filled with liquid and water into the storage space where the membrane 3 is stored, the space between the membrane 3 and the first connection hole 21 is filled with water medium, and then the isolator membrane position measuring device 4 is used for measuring the position of the membrane 3, so as to ensure that the membrane 3 is in a middle state.
Preferably, the second base 2 is further provided with an exhaust hole 22 communicated with the storage space of the membrane 3, so that the air in the storage space is exhausted outwards while water is injected.
Referring to fig. 2 and 3, the isolator priming solution device 5 of a preferred embodiment of the present invention includes a water filling pipe section 51, a locking section 52, and a water filling nozzle 53, which are sequentially disposed from outside to inside, and the isolator priming solution device is inserted into the first connecting hole.
Further, the first connection hole 21 includes a locking hole section 221 and a sealing hole section 222 which are arranged from outside to inside, the locking section 52 is connected between the water injection pipe section 51 and the water injection nozzle 53, and the locking section 52 is screwed with the locking hole section 221, wherein the outer wall surface of the second base 2 which is pointed outwards refers to the side close to the membrane.
The water filling pipe section 51 communicates with the water filling nozzle 53, and the water filling nozzle 53 is inserted into the sealing hole section 222 to fill the storage space with water and seal the first connection hole 21 after the locking section 52 is locked.
The priming device 5 can ensure the normal implementation of the priming operation of the isolator, realize good priming filling effect, ensure the reliability of the replacement process and reduce the risk of plan delay of an overhaul mainline; and the accuracy and the stability of the measurement of the important nuclear-grade transmitter are improved. Meanwhile, the transmitter participates in the functions of monitoring the water level of the reactor core of the nuclear power unit, monitoring the water level of the voltage stabilizer and protecting, and plays an important role in improving the nuclear safety performance.
Preferably, the diameter of the sealing hole section 222 is smaller than that of the locking hole section 221, so as to facilitate the sealing of the water injection nozzle 53 with the sealing hole section 222.
Further, in order to further enhance the sealing effect, the sealing hole section 222 includes a first sealing section 2221 and a second sealing section 2222, the first sealing section 2221 is located between the second sealing section 2222 and the locking section 52, and the aperture of the first sealing section 2221 is larger than that of the second sealing section 2222. The water injection nozzle 53 is inserted into the first sealing section 2221 to be fitted to a side wall surface of the first sealing section 2221.
In this embodiment, the nozzle 53 includes a tubular body 531 and a sealing head 532, the tubular body 531 and the locking section 52 are axially disposed, and the sealing head 532 is located at an end of the tubular body 531 away from the locking section 52. Preferably, the end of the sealing head 532 is closed, and the tube 531 is provided with a water outlet 5311 communicated with the water filling tube 51. When the water is filled inwards by using the water filling nozzle 53, the exhaust valve 23 on the exhaust hole 22 is released, the locking section 52 is not locked in place, and the sealing head 532 is not in contact with the sealing hole section 222, so that water enters the isolator.
After the water injection is completed, the locking section 52 is locked, then the exhaust valve 23 on the exhaust hole 22 is locked, the position of the exhaust hole 22 is sealed, and the connecting position between the sealing head 532 and the first sealing section 2221 and the second sealing section 2222 is sealed, so that the water leakage is prevented.
By means of the tight fit between the sealing head 532 and the first sealing section 2221 and the second sealing section 2222, the sealing at the position is realized, and the sealing performance is good.
Preferably, the sealing head 532 is tapered, an inclined plane matched with the sealing head 532 is arranged between the first sealing section 2221 and the second sealing section 2222, and the tapered sealing head 532 is matched with the inclined plane to realize sealing. It is understood that in other embodiments, the sealing head 532 has a round head shape, and the first sealing section 2221 and the second sealing section 2222 have an arc therebetween, the round head sealing head 532 cooperates with the arc surface to achieve sealing.
To facilitate screwing, the separator priming device 5 further comprises a locking section 54 provided on the outer peripheral wall of the locking section 52 for rotating the locking section 52 by means of a tool such as a wrench. Preferably, the locking segment 54 is a bolt that is easily driven by a wrench.
Further, the water filling pipe section 51 is connected to the locking section 52 through the locking section 54, and the locking section 52 communicates the water filling pipe section 51 and the water filling nozzle 53.
As shown in fig. 4, the filling pipe section 51 is usually a hose, and the filling device 5 further includes a filling driving device 55 connected to the filling pipe section 51 to supply water to the filling pipe section 51 and fill the isolator with the water. In this embodiment, the water injection driving device 55 includes a water injection pump.
The locking section 52 of the isolator priming device 5 adopts an 1/4-inch NPT assembly, and a water injection pump is connected with the isolator through a hose and the 1/4-inch NPT locking section 52 on the priming device 5; firstly, opening the exhaust valve 23, wherein the top of the exhaust valve 23 is of a top bead structure, and the isolator cavity and the atmosphere form a passage in a unscrewing state and are in an atmosphere facing state; the screwing state means that the isolator chamber and the atmosphere form a closed passage and are in a closed state.
Initially, the priming apparatus 5 and the isolator are connected but not fully secured and the filling pump forms a passageway through the priming apparatus 5 and the isolator. The water injection pump performs injection operation, the aqueous medium is injected into the isolator cavity through the hose, the air medium in the cavity is continuously discharged due to the injection of the aqueous medium, and the aqueous medium is continuously discharged from a passage formed by the isolator cavity and the atmosphere from the exhaust valve 23.
At this time, the water injection pump is closed first, and then the exhaust valve 23 is closed, so that the sequence cannot be changed, and the phenomenon that the diaphragm 3 deviates from the middle state due to the pressure build-up formed inside the isolator is avoided. After the operations are finished, the priming solution device 5 is screwed, so that the isolator chamber is disconnected from an internal passage of the priming solution device 5, the isolator chamber is filled with a water medium, the hose and the water injection pump are removed, and the priming solution of the isolator is finished.
The main innovation points and application values of the isolator priming liquid assembly are as follows:
the priming solution device 5 has good adaptability with the internal structure of the isolator, and the priming solution of the isolator is realized; meanwhile, the completeness of liquid filling and the fullness degree of the cavity are ensured to be in a water medium filling state through the operation of water filling and air exhausting on the medium side.
The design of the conical surface at the top of the water injection nozzle 53 of the isolator priming device 5 ensures the establishment of the isolator cavity and the external passage during the liquid filling process; meanwhile, after the liquid filling is finished, the isolator cavity is disconnected from an external passage, and the sealing function is good.
The locking section 54 of the isolator priming device 5 and the water injection pipe section 51 are convenient to fasten and connect, and work efficiency is improved.
The isolator priming device 5 is a special tool for priming operation, so that the normal implementation of the priming liquid is ensured, and the effect of the priming liquid is ensured.
After the water injection is finished, the vent valve 23 is installed, the water injection pump and the isolator priming liquid device 5 are disassembled, at the moment, the water in the right side cavity can not flow out, and then the position of the diaphragm is measured by the isolator diaphragm position measuring device 4 from the first connecting hole 21.
Referring to fig. 1 and 5, the isolator diaphragm position measuring device 4 according to a preferred embodiment of the present invention includes a guide gauge 41 and a measuring rod 42, wherein when the isolator diaphragm position measuring device 4 is used to measure the position of the isolator diaphragm, the guide gauge 41 is connected to the first connecting hole 21, and the guide gauge 41 is provided with a guide hole 411 opposite to the first connecting hole 21.
The measuring rod 42 comprises a measuring section 421, the measuring section 421 is inserted into the guide hole 411, and when the inner end of the measuring section 421 abuts against the membrane 3, the position of the membrane 3 is obtained by the depth of insertion of the measuring rod 42.
The isolator diaphragm position measuring device 4 realizes high-precision measurement of the offset state of the isolator diaphragm 3 through the guide gauge 41 and the measuring rod 42; meanwhile, the acceptance standard of the pre-filling liquid of the isolator is formulated through the offset of the isolator diaphragm 3. The isolator diaphragm position measuring device 4 has good measurement accuracy and stability when completing the vacuumizing and liquid filling nuclear-grade transmitter, and remarkable economic and social benefits are obtained. Meanwhile, the isolator diaphragm position measuring device 4 is wide in applicability and has a wide popularization and application prospect.
Preferably, a threaded hole is formed in the first connecting hole 21, and the guide gauge 41 is screwed with the first connecting hole 21, so that the installation is stable and reliable.
In this embodiment, the measuring section 421 includes a thimble section 4211 and a positioning section 4212 connected to each other, and the thimble section 4211 has an outer diameter smaller than that of the positioning section 4212, so as to facilitate insertion into the hole section with a smaller inner end bore of the first connection hole 21.
Preferably, the outer diameter of the positioning section 4212 is matched with the guide hole 411, so that the positioning section 4212 is stably matched with the guide hole 411, and the positioning section 4212 is just matched with the aperture of the guide hole 411, thereby ensuring that the measuring rod 42 can be normally inserted, avoiding measurement deviation caused by an overlarge gap, and realizing that the measuring rod 42 and the diaphragm 3 are in a vertical state. The thimble section 4211 normally extends into the diaphragm 3 and contacts with the diaphragm 3, and the measuring section 421 realizes that the plane of the isolator diaphragm 3 is in a vertical state, so that the measuring accuracy is ensured, and the measuring precision is improved.
For better positioning, the first connection hole 21 includes a positioning hole section 111 at the end near the membrane 3, which matches the outer diameter of the ejector pin section 4211, for inserting the ejector pin section 4211, and ensures that the ejector pin section 4211 is perpendicular to the membrane 3.
The measuring rod 42 further comprises a reference section 422 connected with the measuring section 421, the end of the positioning section 4212 far away from the thimble section 4211 is connected with the reference section 422, and a user can hold the reference section 422 and insert the measuring section 421 into the guide hole 411, so that the operation is convenient. The reference section 422 is spaced opposite to the guide gauge 41 to measure the distance between the guide gauge 41 and the reference section 422, and the position of the diaphragm 3 can be obtained by measuring the distance between the guide gauge 41 and the reference section 422, so as to determine whether the diaphragm 3 is in a vertical state.
Preferably, in the present embodiment, the end of the reference segment 422 connected to the measuring segment 421 is a plane and perpendicular to the axial direction of the measuring rod 42, so as to facilitate measurement. Further, the guide gauge 41 is screwed to the first connection hole 21, and the end face of the guide gauge 41 is a flat surface and perpendicular to the axial direction of the guide hole 411, and the distance between the two opposite surfaces of the reference section 422 and the guide gauge 41 is measured, so that the position of the diaphragm 3 can be calculated, and whether the diaphragm is in a perpendicular state or not can be judged.
The measurement principle of the isolator diaphragm 3 is shown in fig. 5, after the guide gauge 41 is installed on the isolator, the measuring rod 42 is inserted into the isolator along the guide hole 411 on the guide gauge 41, and due to the guiding effect of the guide gauge 41, the top end of the measuring rod 42 is ensured to be in contact with the diaphragm 3 after the measuring rod 42 is inserted, and at the moment, the measuring rod 42, the isolator and the diaphragm 3 are both in a vertical state. Meanwhile, two opposite surfaces of the guide gauge 41 and the reference section 422 are circular planes, so that the caliper is convenient to use for measurement, and the accuracy and the precision requirement of measurement are guaranteed.
By measuring the distance between the reference segment 422 of the measuring rod 42 and the guide gauge 41, the state of the diaphragm 3 can be obtained. If the diaphragm 3 of the isolator is in the neutral state, the standard distance d is obtained, but in practice, the diaphragm 3 of the isolator has a certain deviation from the theoretical neutral state, and if the distance is between d ± Δ d, the state of the diaphragm 3 of the isolator is acceptable. If the distance exceeds d ± Δ d, the condition of the isolator diaphragm 3 is unacceptable and the isolator needs to be refilled to ensure that the condition of the diaphragm 3 is in the neutral position. ± Δ d is the allowable error of the diaphragm 3 from the neutral state.
It is understood that, in other embodiments, reference points for measuring the distance between the reference segments 422 and the guide gauge 41 may be respectively provided on the reference segments 422 and the guide gauge 41, and the distance between the guide gauge 41 and the reference segments 422 may be measured by the reference points. The reference section 422 and the guide gauge 41 may be provided with scale lines, indication lines, and the like to indicate the reference position.
Further, the reference position can be one or a combination of an inner groove, an inner concave hole and a boss, and can be conveniently used as a reference for measurement.
The guide gauge 41 is in threaded fit with the first connecting hole 21, a round hole is designed in the middle of the guide gauge 41, and the measuring rod 42 comprises a reference section 422, a positioning section 4212 and an ejector pin section 4211, so that the perpendicular state of the plane where the measuring rod 42 and the membrane 3 are located during measurement is guaranteed, and the measurement precision is improved.
The isolator diaphragm position measuring device 4 is highly attached to the isolator inner design structure, and the measuring operation mode is simple and fast.
The isolator diaphragm position measuring device 4 can not only effectively ensure that the isolator diaphragm 3 is in a middle state after being vacuumized and filled with liquid, but also realize good liquid filling effect, ensure the reliability of the replacement process and reduce the risk of delaying the plan of the major overhaul line; and the accuracy and the stability of the measurement of the important nuclear-grade transmitter are improved.
The isolator diaphragm position measuring device 4 has the main innovation points that:
the high-precision measurement of the offset state of the isolator diaphragm 3 is realized through the guide gauge 41 and the measuring rod 42; meanwhile, the acceptance standard of the pre-filling liquid of the isolator is formulated through the offset of the isolator diaphragm 3.
The upper thread of the guide gauge 41 and the middle guide hole 411 are designed, and the measuring rod 42 comprises a reference section 422, a positioning section 4212 and an ejector pin section 4211, so that the vertical state of the measuring rod 42 and the plane of the membrane 3 during measurement is ensured, and the measurement precision is improved.
The isolator diaphragm position measuring device 4 is highly attached to the inner design structure of the isolator, and the measuring operation mode is simple and fast.
It is to be understood that the above-described respective technical features may be used in any combination without limitation.
The above only is the embodiment of the present invention, not limiting the patent scope of the present invention, all the equivalent structures or equivalent processes that are used in the specification and the attached drawings or directly or indirectly applied to other related technical fields are included in the patent protection scope of the present invention.

Claims (10)

1. An isolator priming solution device comprises a first base (1), a second base (2) and a diaphragm (3) clamped between the first base (1) and the second base (2), wherein a first connecting hole (21) opposite to the diaphragm (3) is formed in the second base (2), an exhaust hole (22) communicated with a storage space of the diaphragm (3) is further formed in the second base (2), and the isolator priming solution device is used for being inserted into the first connecting hole (21), and is characterized in that the first connecting hole (21) comprises a locking hole section (221) and a sealing hole section (222) which are sequentially arranged from outside to inside;
the isolator priming solution device comprises a water injection pipe section (51), a locking section (52) and a water injection nozzle (53) which are sequentially arranged from outside to inside;
the locking section (52) is connected between the water injection pipe section (51) and the water injection nozzle (53), and the locking section (52) is in threaded connection with the locking hole section (221);
the water injection pipe section (51) is communicated with the water injection nozzle (53), the water injection nozzle (53) is inserted into the sealing hole section (222) to inject water into the storage space, and the first connecting hole (21) is sealed after the locking section (52) is locked.
2. The separator priming apparatus of claim 1, wherein the aperture diameter of said sealing bore section (222) is smaller than the aperture diameter of said locking bore section (221).
3. The separator priming apparatus according to claim 1, wherein the sealing bore section (222) comprises a first sealing section (2221), a second sealing section (2222), the first sealing section (2221) being located between the second sealing section (2222) and the locking section (52), the first sealing section (2221) having a larger bore diameter than the second sealing section (2222);
the water injection nozzle (53) comprises a pipe body (531) and a sealing head (532) which are arranged along the axial direction, the pipe body (531) is connected with the locking section (52), and the sealing head (532) is located at one end, far away from the locking section (52), of the pipe body (531) and is sealed at the connecting position between the first sealing section (2221) and the second sealing section (2222).
4. The separator priming device of claim 3, wherein the end of the sealing head (532) is closed, and the tube body (531) is provided with a water outlet (5311) communicated with the water injection tube section (51).
5. The separator priming device according to claim 3, wherein the sealing head (532) is tapered, and a bevel is provided between the first sealing section (2221) and the second sealing section (2222) to match the sealing head (532); or the sealing head (532) is round-head-shaped, and an arc matched with the sealing head (532) is arranged between the first sealing section (2221) and the second sealing section (2222).
6. An isolator priming device according to any one of the claims 1 to 5, wherein the isolator priming device (5) further comprises a locking section (54) arranged on the outer circumferential wall of the locking section (52), the locking section (54) being adapted to rotate the locking section (52).
7. The separator priming device of claim 6, wherein the locking section (54) is a bolt.
8. The separator priming device according to claim 6, wherein the filling pipe section (51) is connected to the locking section (52) through the locking section (54), the locking section (54) communicating the filling pipe section (51) and the filling nozzle (53).
9. An isolator priming device according to any one of claims 1 to 5, wherein the water injection tube section (51) is a hose, the priming device (5) further comprising a water injection drive (55) connected to the water injection tube section (51).
10. The isolator priming device of claim 9, wherein said water fill driving means (55) comprises a water fill pump.
CN202220651097.2U 2022-03-23 2022-03-23 Prefilling device for isolator Active CN217276646U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220651097.2U CN217276646U (en) 2022-03-23 2022-03-23 Prefilling device for isolator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220651097.2U CN217276646U (en) 2022-03-23 2022-03-23 Prefilling device for isolator

Publications (1)

Publication Number Publication Date
CN217276646U true CN217276646U (en) 2022-08-23

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Country Status (1)

Country Link
CN (1) CN217276646U (en)

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