CN209621583U - A kind of high-pressure shock absorber and the high pressure dephosphorization system using the damper - Google Patents

A kind of high-pressure shock absorber and the high pressure dephosphorization system using the damper Download PDF

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Publication number
CN209621583U
CN209621583U CN201920363537.2U CN201920363537U CN209621583U CN 209621583 U CN209621583 U CN 209621583U CN 201920363537 U CN201920363537 U CN 201920363537U CN 209621583 U CN209621583 U CN 209621583U
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China
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pressure
damper
shock absorber
spherical
feed pathway
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CN201920363537.2U
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Inventor
胡钢
裴令明
王程
雷杰
周峰
殷文忠
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Maanshan Iron and Steel Co Ltd
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Maanshan Iron and Steel Co Ltd
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Abstract

The utility model relates to high-pressure shock absorber fields, specifically a kind of high-pressure shock absorber and the high pressure dephosphorization system using the damper, the high-pressure shock absorber includes spherical damper, storage cavity is equipped with inside the spherical shape damper, the apocenosis passage for the feed pathway of feed liquor and for drain, the feed pathway and apocenosis passage intersection setting are equipped on spherical damper;The feed pathway and apocenosis passage are all connected with storage cavity.The internal cavities that high-pressure ball type damper disclosed by the utility model passes through the spherical damper of optimization, optimize the distributing position of feed pathway and apocenosis passage simultaneously, so that feed pathway is not arranged collinearly with apocenosis passage, water impact direction can be changed very much, high pressure water flow is set to enter impact spherical inner wall at the top of high-pressure ball type damper, it reflects and crosses together with the high pressure water flow pulsed below, weaken high pressure water pulsation wave crest, be enhanced by the pulsation situation of the high pressure water flow of high-pressure shock absorber.

Description

A kind of high-pressure shock absorber and the high pressure dephosphorization system using the damper
Technical field
The utility model relates to high-pressure shock absorber field, a kind of specifically high-pressure shock absorber and using the damper High pressure dephosphorization system.
Background technique
De-scaling pumping plant is the common setting of modern industry, generally all has three plunger high pressure waters of WEPUKO company, Germany production Pump is assembled with one in the outlet side of every plunger pump to alleviate high pressure water pulsation impact caused by equipment, pipe network The bellows high-voltage energy-storage damper of 12L, system working pressure 36MPa.The frequency of three plunger high-pressure water pumps draining is about 15 (secondary/second), high pressure water flow carry out high-frequency impact to bellows high-voltage energy-storage damper, cause high-voltage energy-storage damper service life Shorter, frequently more oil-changing valve, leather bag, shell, do not adapt to the fast pace of production, and spare part expense and human input are all larger, In order to solve such technical problem, a kind of the service life is longer, and can be used in the high-pressure shock absorber of high pressure dephosphorization system.
Utility model content
The purpose of the utility model is to overcome the deficiencies in the prior art, and providing one kind, the service life is longer, and can High-pressure shock absorber for high pressure dephosphorization system.
To achieve the goals above, the technical solution adopted in the utility model are as follows:
A kind of high-pressure shock absorber, the high-pressure shock absorber include spherical damper, are equipped with and deposit inside the spherical shape damper It is vented chamber, the apocenosis passage for the feed pathway of feed liquor and for drain, the feed pathway are equipped on spherical damper Intersect with apocenosis passage and is arranged;The feed pathway and apocenosis passage are all connected with storage cavity.
The apocenosis passage is arranged in a mutually vertical manner with feed pathway;The feed pathway is in spherical damper top.
It is connected with supporting leg mechanism on the spherical shape damper, the supporting leg mechanism includes multiple monomer support frames, institute It states monomer support frame one end to be connected with spherical damper lateral surface, the other end is connected with footing plate.
It is uniformly distributed between the monomer support frame, the monomer support frame includes vertical gripper shoe and hang plate, described perpendicular Straight panel is connected by hang plate with spherical damper.
The apocenosis passage and feed pathway edge are equipped with connection convex block, and the connection convex block is equipped with logical for drain The intercommunicating pore that road and feed pathway are connected with the external world;The connection convex block is equipped with the threaded hole for being connected with flange.
A kind of high pressure dephosphorization system, the high pressure dephosphorization system include high pressure plunger water pump, high-pressure shock absorber and high pressure Check-valves;The high pressure plunger water pump is connected by high-pressure shock absorber with high-pressure check valve.
The high pressure plunger water pump is connected by first connecting portion with high-pressure shock absorber;The first connecting portion includes the One high-pressure hose, it is described spherical shape damper on feed pathway be connected by the first high-pressure hose with high pressure plunger water pump.
It is connected between first high-pressure hose and high pressure plunger water pump by punched bend.
The punched bend is arcuate structure.
The spherical shape damper is connected by second connecting portion with high-pressure check valve;The second connecting portion includes second High-pressure hose, second high-pressure hose one end are connected with spherical damper apocenosis passage, and the other end is connected with high-pressure check valve.
Utility model has the advantages that
High-pressure ball type damper disclosed by the utility model is to pass through optimization for replacing former bellows high-voltage energy-storage damper The internal cavities of spherical damper, while optimizing the distributing position of feed pathway and apocenosis passage, so that feed pathway and drain Channel is not arranged collinearly, can change very much water impact direction, and high pressure water flow is made to enter impact at the top of high-pressure ball type damper Spherical inner wall is reflected and is crossed together with the high pressure water flow pulsed below, weakens high pressure water pulsation wave crest, by high pressure The pulsation situation of the high pressure water flow of damper is enhanced, and has cut down a part of wave crest and trough, becomes hydraulic pressure-time curve Gently, high-pressure water descaling hydraulic pressure is stabilized, reduces high pressure water pulsation to the impact of high pressure pipe network and equipment, plays the work of damping With.
Detailed description of the invention
Below to each width attached drawing of the utility model specification expression content and figure in label be briefly described:
Fig. 1 is the structural schematic diagram of the utility model.
Fig. 2 is cross-sectional view of the Fig. 1 along B-B.
Fig. 3 is the left view of Fig. 1.
Fig. 4 is the structural schematic diagram of the utility model dephosphorization system.
Fig. 5 is the structural schematic diagram of the first connecting flange in the utility model.
Fig. 6 is cross-sectional view of the Fig. 5 along B-B.
Fig. 7 be Fig. 5 along the sectional view of A-A.
Fig. 8 is the structural schematic diagram of DN50 high pressure flange connector in the utility model.
Fig. 9 be Fig. 8 along the sectional view of A-A.
Figure 10 is the side view of Fig. 8.
Label in above-mentioned figure is equal are as follows:
1, high-pressure ball type damper, 2, DN65-50 high pressure flange connector, 3, punched bend,
4, DN50 high pressure flange connector, the 5, first connecting flange, 6, the first high-pressure hose, the 7, second high-pressure hose, 8, height Press check-valves, 9, high pressure plunger water pump.
Specific embodiment
Specific embodiment of the present utility model is made into one by the description to optimum embodiment below against attached drawing Step detailed description.
A kind of high-pressure shock absorber, the high-pressure shock absorber 1 include spherical damper 101, inside the spherical shape damper 101 Equipped with storage cavity 1010, it is equipped with the feed pathway 104 for feed liquor on spherical damper 101 and the drain for drain is logical Road 105, the feed pathway 104 and the intersection setting of apocenosis passage 105;The feed pathway 104 and apocenosis passage 105 all with deposit Emptying chamber 1010 is connected;The utility model discloses a kind of novel 1 structures of high-pressure shock absorber, can be very good to be applied to height Press dephosphorization system in, high-pressure ball type damper 101 disclosed by the utility model be for replacing former bellows high-voltage energy-storage damper, By optimizing the internal cavities of spherical damper 101, while optimizing the distributing position of feed pathway 104 and apocenosis passage 105, makes It obtains feed pathway 104 not to be arranged collinearly with apocenosis passage 105, water impact direction can be changed very much, make high pressure water flow from high pressure Enter impact spherical inner wall at the top of spherical damper 101, reflects and cross together with the high pressure water flow pulsed below, make height Press water vein move wave crest weaken, be enhanced by the pulsation situation of the high pressure water flow of high-pressure shock absorber 1, cut down a part of wave crest and Trough becomes flat hydraulic pressure-time curve, stabilizes high-pressure water descaling hydraulic pressure, make high pressure water pulsation to high pressure pipe network and The impact of equipment reduces, and plays the role of damping.
Preferably, storing cavity 1010 in the utility model is spherical structure, can high pressure water flow be existed in this way It is relatively flat suitable to store the interior movement of cavity 1010, avoids causing biggish vibration because storing in cavity 1010 with protrusion.
Preferably, apocenosis passage 105 described in the utility model is arranged in a mutually vertical manner with feed pathway 104;It is described Feed pathway 104 is in 101 top of spherical damper;Such set-up mode makes apocenosis passage 105 and 104 water of feed pathway Flowing flow direction is orthogonal, such setting, can avoid enter into the high pressure water flow in storage cavity 1010 from feed liquor Channel 104 is directly entered apocenosis passage 105, is vertically arranged by the two, and high pressure water flow can be made from high-pressure ball type damper 101 Top enters impact spherical inner wall, reflects and crosses together with the high pressure water flow pulsed below, makes high pressure water pulsation wave crest Weaken, is enhanced by the pulsation situation of the high pressure water flow of high-pressure shock absorber 1, has cut down a part of wave crest and trough, made hydraulic pressure- The curve of time becomes flat, and stabilizes high-pressure water descaling hydraulic pressure, subtracts high pressure water pulsation to the impact of high pressure pipe network and equipment It is small, play the role of damping.
Preferably, supporting leg mechanism is connected in spherical shape damper described in the utility model 101, the support leg Mechanism includes multiple monomer support frames 103, and described 103 one end of monomer support frame is connected with spherical 101 lateral surface of damper, separately One end is connected with footing plate 1031;By the setting of supporting leg mechanism, is provided for spherical damper 101 and place place, led to Cross the setting of monomer support frame 103, can the high tangential damper of frame, the height of monomer support frame 103 can according to need progress Setting, while preferably, supporting leg mechanism is arranged in below spherical damper 101, and in monomer support frame 103 End is connected with footing plate 1031, and footing plate 1031 is used to increase the width of 103 end face of monomer support frame, preferably guarantees The stability that high-pressure shock absorber 1 is placed, at the same as bigger optimization, link bolt hole is equipped on footing plate 1031, it can Footing safety is connected with external agency by bolt, preferably guarantee the stability that high-pressure shock absorber 1 connects.
Preferably, being uniformly distributed between monomer support frame described in the utility model 103, the monomer support frame 103 Including vertical gripper shoe 1031 and hang plate 1033, the vertical plate is connected by hang plate 1033 with spherical damper 101; Each 1033 phase of the hang plate is given a bit;Vertical gripper shoe 1031 is longitudinally disposed in the utility model, hang plate 1033 One end is connected with vertical gripper shoe 1031, and other end inclination extends, such to be arranged so that each vertical gripper shoe 1031 is in Annular spread has biggish bearing area, it is ensured that the support to spherical damper 101;1033 one end of hang plate simultaneously It is connected with vertical gripper shoe 1031, the other end extends on spherical damper 101, so that vertical gripper shoe 1031 subtracts with spherical shape It shakes 101 generations of device to be connected with each other, support in this way, so that the support of 1033 pairs of each hang plate spherical dampers 101 Power Relatively centralized preferably ensure that the support to spherical damper 101.
Preferably, apocenosis passage 105 described in the utility model and 104 edge of feed pathway are equipped with connection convex block 102, the connection convex block 102 is equipped with the intercommunicating pore being connected for apocenosis passage 105 and feed pathway 104 with the external world 1021;The connection convex block 102 is equipped with the threaded hole for being connected with flange;By the setting of connection convex block 102, and Increase threaded hole on connection convex block 102, can be convenient the connection between spherical damper 101 and flange, then high pressure is facilitated to subtract Device 1 and the connection between the component that is connected are shaken, the setting of intercommunicating pore 1021 is in order to avoid influencing because of the setting for connecting convex block 102 Spherical 101 feed liquor of damper or out liquid;The setting of connection screw thread hole facilitates connection convex block 102 and is connected with external flanges; It is respectively equipped with a threaded hole in 1021 two sides of intercommunicating pore of each connection bump, guarantees the stabilization that flange is connect with connection bump Property;As bigger optimization, gasket is set between flange and connection bump;Here flange only be referred to as, actually under High pressure flange connector in text;Concrete model can be chosen according to specific needs.
A kind of high pressure dephosphorization system using the high-pressure shock absorber 1, the high pressure dephosphorization system include high-pressure plunger water Pump 9, high-pressure shock absorber 1 and high-pressure check valve 8;The high pressure plunger water pump 9 passes through high-pressure shock absorber 1 and high-pressure check valve 8 It is connected;By the use of above-mentioned high-pressure shock absorber 1, so that the high pressure dephosphorization system newly formed has good using effect, By spherical inner chamber, the setting of feed pathway 104 and apocenosis passage 105, while again because of the letter of 101 structure of high-pressure ball type damper Single, after installation, the maintenance cost in later period is very low, has saved a large amount of spare part expense and human input;Simultaneously than former bellows high pressure Accumulation of energy damper can preferably alleviate impact of the high pressure water pressure pulsation to equipment, pipe network;With good using effect.
Preferably, high pressure plunger water pump 9 described in the utility model passes through first connecting portion and 1 phase of high-pressure shock absorber Connection;The first connecting portion includes the first high-pressure hose 6, and the feed pathway 104 on the spherical shape damper 101 passes through first High-pressure hose 6 is connected with high pressure plunger water pump 9;By the setting of the first high-pressure hose 6, because of the first high-pressure hose 6 itself The problem of softness, so that the first high-pressure hose 6 itself just has good buffer function, in order to preferably reach this reality With novel purpose, good buffering and damping effect is played, there is good using effect in practice;Simultaneously as bigger Optimize, passes through the setting of the first high-pressure hose 6 in the utility model, facilitate between high pressure plunger water pump 9 and high-pressure shock absorber 1 Connection it is convenient to arrange in practice because the first high-pressure hose 6 is easily deformed, avoid conventional plastic pipeline or irony pipe Road arrangement has the problem of larger limitation.
Preferably, curved by punching press between the first high-pressure hose 6 and high pressure plunger water pump 9 described in the utility model First 3 are connected, and punched bend 3 is steel material support, can be to play preliminary delay using the materials such as stainless steel, punched bend 3 The effect of punching, because high pressure water flow is in contact with punched bend 3 at first after the ejection of high pressure plunger water pump 9, passes through punched bend 3 setting can be directly directly injected in the first high-pressure hose 6 from high pressure plunger water pump 9 to avoid water flow, reduce by the first high pressure Impact force suffered by hose 6 is conducive to extend the service life of the first parcel received sebific duct;Simultaneously as bigger optimization, this reality The punched bend 3 described in novel is arcuate structure, and the utility model uses the setting of arcuate structure, here punched bend 3 Side view such as figure is a quadrant, and such setting can make water (flow) direction change, so that water flow is by transverse direction Become longitudinal, streaming potential is increased, so that impact of the water flow to the first high-pressure hose 6 is reduced, so that the utility model has Better using effect;The trend that can change water flow in the utility model simultaneously, facilitates the subsequent cloth of the first high-pressure hose 6 It sets.
Preferably, spherical shape damper described in the utility model 101 passes through second connecting portion and 8 phase of high-pressure check valve Connection;The second connecting portion includes the second high-pressure hose 7,101 apocenosis passage of 7 one end of the second high-pressure hose and spherical damper 105 are connected, and the other end is connected with high-pressure check valve 8;By the setting of the second high-pressure hose 7, the second high-pressure hose 7 is set The purpose for setting purpose and the setting of the first high-pressure hose 6 is roughly the same, because of the first high-pressure hose 6 and the second high-pressure hose 7 itself The characteristic of structure, the first high-pressure hose 6 and the second high-pressure hose 7 have good deformability, so that first connecting portion and the The arrangement of two interconnecting pieces is more convenient, solves the problems, such as that conventional plastic pipeline or steel pipe arrangement difficulty are larger.
Preferably, punched bend 3 is connected by the first connecting flange 5 with the first high-pressure hose 6 in the utility model It connects, publicity pattern in this way, so that the connection between punched bend 3 and the first high-pressure hose 6 is more convenient, while at this The first connecting flange 5 includes attachment base 51 in utility model, and the attachment base 51 is equipped with multiple flange connecting holes, the connection Seat 51 is equipped with the communicating passage 52 for water flow flowing, and communicating passage 52 includes main channel 521 and multiple branched bottoms 522, Each branched bottom 522 is connected with main channel 521, and each branched bottom 522 is connected with first high-pressure hose 6, institute It states branched bottom 522 and is obliquely installed any two branched bottom 522 in V-shape distribution;Setting in this way, attachment base 51 can To be connected with multiple first high-pressure hoses 6, particular number, which can according to need, to be configured, while passing through above such structure Design so that the first connecting flange 5 has the function of consuming water flow dynamic energy, and then preferably plays cushioning effect, preferably exists It uses in practice;It is to have used two the first high-pressure hoses 6 in embodiment in the accompanying drawings, it is such to be arranged so that curved from punching press First 3 high pressure water flows come out enter first connecting portion and are divided into two water routes, the two water routes are passing through feed pathway respectively 104 enter in high-pressure shock absorbers 1 because feed pathway 104 be it is identical, this makes two water routes certainly exist intersection, two Water route is mutually impacted in intersection, it is possible to form vortex, to also function to the effect for slowing down and impacting to high-pressure shock absorber 1; Simultaneously in order to guarantee better using effect in the utility model, the first high-pressure hose 6 can also be by the in the utility model One connecting flange 5 is connected with feed liquor outlet, here may not be for the first connecting flange 5 and in high-pressure shock absorber 1 The connection bump of side is connected directly, it may be possible to be reused a traditional connecting flange and be carried out transition, guarantee that connection can be real It is existing, naturally it is also possible to it is connected to using the structure of attached drawing, specific structure optimizes according to the actual situation, because here first The difference of quantity is arranged in high-pressure hose 6, can use different connection types, and selection is configured as needed here, only It wants to guarantee that aqueous can enter in high-pressure shock absorber 1 from the first high-pressure hose 6, that is, guarantees that aqueous normally circulates .
Be described briefly in combination with attached drawing below for embodiment based on the above structure: the utility model is mounted on height Between 9 high-pressure outlet side of hydraulic plunger water pump and high-pressure check valve 8, high-pressure ball type damper 101, the first connection method are specifically included that Orchid 5, traditional connecting flange, punched bend 3, high-pressure check valve 8 etc.;
The high-pressure ball type damper 101 (such as Fig. 2) is a high pressure ball-type tank body, top vertical direction and side water Square to respectively there is a connection bump, respectively there are 8 M16 threaded holes on the surface of connection bump, for installing 21 1/4 cun of c-types Flange is the high-pressure hose of interface, the connection for having 37 axle center Φ vertical with connection bump plane among every 4 threaded holes Through-hole, top interface access the first high-pressure hose 6, and side face port connects the second high-pressure hose 7, two Φ 37 of connection bump at top There are one 2 through-holes for being in charge of screw thread at the center line anomaly edge of table 16mm of through-hole, a pressure-measuring head can be installed and be used to empty height Air inside pressure ball shape damper 101, specifically can according to need and is configured, and be not provided with being also what there is no problem;Spherical tank Lower part has three support frames and sphere welding integral;Traditional connecting flange is DN65-50 high pressure flange connector 2, It is containing 4 fixation holes for fixing with pump housing connecting side, other side is that DN50 has 25 ° of welding grooves, and material can be 16Mn,1Cr18Ni9Ti;88.9x20-90 ° -10 high pressure punched bend 3, radius of curvature 381mm reduce high pressure water Stream passes through impact when elbow, and material can be 16Mn, 1Cr18Ni9Ti;The working principle of the utility model are as follows: mounting means As shown in Figure 3.The operating pressure of high-pressure ball type damper 101 is 63MPa, volume 82L.Since entrance and exit is in 90 ° Design makes high pressure water flow enter impact spherical inner wall, the height for reflecting and pulsing below at the top of high-pressure ball type damper 101 Pressure water flow crosses together, weakens high pressure water pulsation wave crest, the pulsation situation by the high pressure water flow of high-pressure shock absorber 1 is changed It is kind, cut down a part of wave crest and trough, become flat hydraulic pressure-time curve, has stabilized high-pressure water descaling hydraulic pressure, make height It presses the dynamic impact to high pressure pipe network and equipment of water vein to reduce, plays the role of damping.
Installation method and use: firstly, by 101 Reasonable Orientation of high-pressure ball type damper in high pressure plunger water pump 9 Between outlet and high-pressure check valve 8, its lower margin is fixed with the bolt of 12 M12;By the DN65-50 high pressure flange connector 2 are fixed with three plunger high-pressure water pump high-pressure outlet sides with bolt, the high pressure punched bend 3 one and the DN65-50 high Pressure flange connector 2 welds, and makes other end straight up, so that it is connected with DN50 high pressure flange connector 4, further will 4 M30 hexagon socket head cap screws of DN50 high pressure flange connector 4 described above, nut and first containing O-ring seal The connection fastening of connecting flange 5, further, using electric block by described first connecting flange 5 and DN50 high pressure flange connector 4 It slings, the level of table on the first connecting flange 5 is checked with horizontal ruler, further by DN50 high pressure flange connector 4 and high pressure punching press Elbow 3 uses argon arc welding welding;Further, first connecting flange 5 and the height described with the high-pressure rubber pipe connection of 2 DN38 The entrance of pressure ball shape damper 101;Further gone out with the high-pressure rubber pipe connection of the 2 DN38 high-pressure ball type damper 101 Mouth and high-pressure check valve 8 install pressure measuring tie-in on the top of high-pressure ball type damper 101.After the completion of pipeline connection, production is solid Fixed rack.The platform of a suitable size is welded using the footing foundation of former high-voltage energy-storage damper, is further erected on platform The 100mm channel steels 110 that are drilled with the hole 28mm of placement 2, so that the plane of channel steel is adjacent to the two sides of DN50 high pressure flange connector, utilize 4 M24 threaded holes of the high pressure flange fitting body two sides DN50 processing, with the hexagon socket head cap screw of 4 M24 by 2 channel steels 110 and high Pressure flange fitting body tightens together, and is finally fully welded the bottom of 2 channel steels 110 with platform.
Before starting high pressure plunger water pump 9, inlet valve is first opened, then in the survey pressure on 101 top of high-pressure ball type damper After pressure hose emptying inner air is surveyed in connection on connector, then start high pressure plunger water pump 9, high-pressure ball type damper 101 is simultaneously It puts into operation.
Disclosure through the above structure so that the utility model provides a kind of high pressure ball-type damper, inside do not have Leather bag and oil valve, simpler than former bellows accumulation of energy shock absorber structure, spherical hollow space structure is by high pressure water flow strikes power compared with other structures Uniformly, it is hardly damaged, maintenance cost is extremely low;And since entrance and exit is in 90 °, the design that internal cavities are spherical shape, make height It presses water flow to enter impact spherical inner wall at the top of high-pressure ball type damper 101, equably reflects and subsequent high pressure water flow It crosses together, weakens high pressure water pulsation wave crest, the pulsation situation by the high pressure water flow of high-pressure ball type damper 101 is changed It is kind, cut down a part of wave crest and trough, become flat hydraulic pressure-time curve, has stabilized high-pressure water descaling hydraulic pressure, make height It presses the dynamic impact to high pressure pipe network and equipment of water vein to reduce, plays the role of damping, effect is also than former bladder type hydropneumatic accumulator damper It is good, meet the demand of current fast pace production;Simultaneously again due to the first connecting flange 5 and 101 entrance of high-pressure ball type damper it Between using the connection of 2 DN38 high-pressure hoses, by the vibration of high-pressure ball type damper 101 and equipment blocking, and absorb a part The impact that high pressure water is pulsed to equipment and pipe network, protects equipment.
Obvious the utility model specific implementation is not subject to the restrictions described above, as long as the method for using the utility model The improvement for the various unsubstantialities that conception and technical scheme carry out, both is within the protection scope of the present invention.

Claims (10)

1. a kind of high-pressure shock absorber, which is characterized in that the high-pressure shock absorber includes spherical damper, in the spherical shape damper Portion is equipped with storage cavity, and the apocenosis passage for the feed pathway of feed liquor and for drain is equipped on spherical damper, described Feed pathway and apocenosis passage intersection setting;The feed pathway and apocenosis passage are all connected with storage cavity.
2. a kind of high-pressure shock absorber according to claim 1, which is characterized in that the apocenosis passage and feed pathway are mutual It is vertically arranged;The feed pathway is in spherical damper top.
3. a kind of high-pressure shock absorber according to claim 1, which is characterized in that be connected with support on the spherical shape damper Foot mechanism, the supporting leg mechanism include multiple monomer support frames, monomer support frame one end and spherical damper lateral surface It is connected, the other end is connected with footing plate.
4. a kind of high-pressure shock absorber according to claim 3, which is characterized in that it is uniformly distributed between the monomer support frame, The monomer support frame includes vertical gripper shoe and hang plate, and the vertical plate is connected by hang plate with spherical damper.
5. a kind of high-pressure shock absorber according to claim 1, which is characterized in that the apocenosis passage and feed pathway edge Place is equipped with connection convex block, and the connection convex block is equipped with the intercommunicating pore being connected for apocenosis passage and feed pathway with the external world; The connection convex block is equipped with the threaded hole for being connected with flange.
6. a kind of high pressure dephosphorization system using the high-pressure shock absorber as described in claim any one of 1-5, which is characterized in that described High pressure dephosphorization system includes high pressure plunger water pump, high-pressure shock absorber and high-pressure check valve;The high pressure plunger water pump passes through height Pressure damper is connected with high-pressure check valve.
7. a kind of high pressure dephosphorization system according to claim 6, which is characterized in that the high pressure plunger water pump passes through first Interconnecting piece is connected with high-pressure shock absorber;The first connecting portion include the first high-pressure hose, it is described spherical shape damper on into Liquid channel is connected by the first high-pressure hose with high pressure plunger water pump.
8. a kind of high pressure dephosphorization system according to claim 7, which is characterized in that first high-pressure hose and high-pressure column It is connected between plug water pump by punched bend.
9. a kind of high pressure dephosphorization system according to claim 8, which is characterized in that the punched bend is arcuate structure.
10. a kind of high pressure dephosphorization system according to claim 6, which is characterized in that the spherical shape damper passes through second Interconnecting piece is connected with high-pressure check valve;The second connecting portion includes the second high-pressure hose, second high-pressure hose one end and ball Shape damper apocenosis passage is connected, and the other end is connected with high-pressure check valve.
CN201920363537.2U 2019-03-21 2019-03-21 A kind of high-pressure shock absorber and the high pressure dephosphorization system using the damper Active CN209621583U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109737047A (en) * 2019-03-21 2019-05-10 马鞍山钢铁股份有限公司 A kind of high-pressure shock absorber and the high pressure dephosphorization system using the damper

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109737047A (en) * 2019-03-21 2019-05-10 马鞍山钢铁股份有限公司 A kind of high-pressure shock absorber and the high pressure dephosphorization system using the damper

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