CN219098084U - Solid phase particle reversing valve - Google Patents
Solid phase particle reversing valve Download PDFInfo
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- CN219098084U CN219098084U CN202223519713.8U CN202223519713U CN219098084U CN 219098084 U CN219098084 U CN 219098084U CN 202223519713 U CN202223519713 U CN 202223519713U CN 219098084 U CN219098084 U CN 219098084U
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- 239000002245 particle Substances 0.000 title claims abstract description 24
- 239000007790 solid phase Substances 0.000 title claims abstract description 20
- 238000007790 scraping Methods 0.000 claims abstract description 32
- 239000008187 granular material Substances 0.000 claims description 4
- 239000007787 solid Substances 0.000 claims 6
- 238000009825 accumulation Methods 0.000 abstract description 4
- 239000000463 material Substances 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000004140 cleaning Methods 0.000 description 1
- 238000006073 displacement reaction Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000000670 limiting effect Effects 0.000 description 1
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Abstract
The utility model provides a solid-phase particle reversing valve, which relates to the field of reversing valves and aims to solve the problems that when the existing solid-phase particle reversing valve is used, residues and attachments are generated on the inner wall of the reversing valve, the residues and attachments are inconvenient to clean and easy to block after long-time accumulation. The internal part is arranged in the main body, so that particles flow through and then contact with the stressed part, the stressed part is stressed and moved, the scraping part and the connecting rod are stressed and moved together, the scraping part is driven to move together, the scraping part generates moving power, the scraping part continuously scrapes the inner wall of the main body, and residues are avoided from being generated on the inner wall of the main body.
Description
Technical Field
The utility model belongs to the technical field of reversing valves, and particularly relates to a solid-phase particle reversing valve.
Background
When carrying solid phase granule, generally need to use the switching-over valve to open the change circulation direction, and then improve the convenience of using, improve conveying efficiency.
When the existing solid-phase particle reversing valve is used, residues and attachments are generated on the inner wall of the reversing valve after solid-phase particles are conveyed for a long time, the residues and the attachments are inconvenient to clean and easy to block after long-time accumulation, and the firmness and the service life are easy to influence due to the fact that the reversing valve is easy to receive rotation control force and circulation vibration force after being used for many times.
Disclosure of Invention
In order to solve the technical problems, the utility model provides a solid-phase particle reversing valve, which aims to solve the problems that residues and attachments are easily generated on the inner wall of the reversing valve after solid-phase particles are conveyed for a long time when the conventional solid-phase particle reversing valve is used, the residues and attachments are inconvenient to clean, and the solid-phase particle reversing valve is easy to block after long-time accumulation.
The solid phase particle reversing valve of the utility model comprises: a main body; the main body is a reversing valve body, the top end of the main body is provided with a mounting plate, two sides of the top end of the mounting plate are respectively provided with a contact plate, the bottom of each contact plate is provided with a stress block, and the stress blocks are of wedge-shaped structures; the inner parts are of annular structures, three inner parts are arranged in total and are respectively arranged at two ends and the inside of the bottom end of the main body, two sides of each inner part are respectively provided with a guide rod, the inner ends of the guide rods are connected with inner rings, scraping parts which are uniformly arranged are arranged in the guide rods, the scraping parts are of annular structures, and the cross sections of the scraping parts are of triangular structures.
Optionally, the mounting plate is of a rectangular plate structure, the corner positions of the mounting plate are respectively provided with a connecting hole, the middle positions of two sides of the main body are respectively provided with a stress groove, the stress grooves are of a rectangular structure, the inner ends of the stress grooves are of wedge-shaped structures, and the stress blocks are embedded in the stress grooves; the bottom of each stress block is provided with a bottom block, each bottom block is of a rectangular structure, each contact plate is of a U-shaped structure, two sides of the outer end of each contact plate are respectively provided with a square groove, and the positions of the square grooves correspond to the positions of the connecting holes; every the moving part is installed respectively to the bottom both sides of contact plate, and the moving part is L shape structure, and the moving part is the rubber material, and the outer end of moving part is equipped with the recess, and the inside of every moving part is equipped with an auxiliary tank, and the top of auxiliary tank is rectangular structure, and the bottom both sides of auxiliary tank are slope form structure, and the recess internally mounted of moving part has the contact block, and the contact block is rectangular structure, and the outside of contact block is arc structure, and the contact block embedding is inside the square groove of contact plate.
Optionally, two control pieces are respectively arranged in the inner piece and the inner ring, the inner ends of the control pieces are of arc structures, a round hole is formed in each control piece, two pull pieces are respectively arranged on two sides of each inner piece, the inner ends of the pull pieces are of arc structures, and the pull pieces are connected with the inner ends of the guide rods; the guide rods are of cylindrical structures, two sides of each scraping piece are respectively provided with a guide groove, each guide groove is of an arc-shaped structure, the guide rods are embedded in the guide grooves, two connecting rods are arranged on the outer sides of the scraping pieces at the outer ends, each connecting rod is of an I-shaped shaft structure, a spring is sleeved on the outer side of each connecting rod, and each connecting rod is inserted into a round hole of each control piece; the inside of scraping the piece is equipped with two connecting plates, and the connecting plate is T shaped plate structure, is equipped with a atress piece between every two connecting plates, and the atress piece is circular structure, and the both sides of every atress piece are equipped with a recess respectively.
Compared with the prior art, the utility model has the following beneficial effects:
1. the scraping pieces are uniformly arranged in the guide rod, the scraping pieces are of a circular ring structure, and the cross section of each scraping piece is of a triangular structure, so that when the device is used, the inner pieces can be controlled to be arranged in the main body, particles can be contacted with the stressed pieces after flowing, the stressed pieces can be forced to move, the scraping pieces and the connecting rod can be forced to move together, the scraping pieces are driven to move together, the scraping pieces can generate moving power, the scraping pieces can continuously scrape the inner wall of the main body, and residues on the inner wall of the main body are avoided;
the problems that residues and attachments are easy to generate on the inner wall of the reversing valve after solid-phase particles are conveyed for a long time, the residues and attachments are inconvenient to clean, and the reversing valve is easy to block after long-time accumulation are solved;
2. the top of the main body is provided with the mounting plate, two sides of the top of the mounting plate are respectively provided with the contact plates, the bottom of each contact plate is provided with a stress block, and the stress blocks are of wedge-shaped structures, so that when the device is used, bolts are inserted into square grooves of the contact plates and connecting holes of the mounting plate, after the bolts are screwed up, the contact plates can be pressed to move downwards, meanwhile, stress pieces can be inserted into the stress grooves, and as the contact surfaces are of inclined structures, the contact plates can be transversely displaced, and further the contact blocks are driven to contact with the side edges of the bolts, after the bolts are screwed up, the bolts can be fixed in an auxiliary jacking manner, the limiting effect is improved, the bolts are prevented from loosening, and the firmness of the main body is prevented from being influenced;
the problem that the firmness and the service life are easily influenced due to the fact that the reversing valve is easy to receive rotation control force and circulation vibration force after being used for many times is solved.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is a schematic bottom view of the present utility model.
Fig. 3 is an exploded perspective view of the present utility model.
Fig. 4 is a schematic exploded perspective view of the main body of the present utility model.
Fig. 5 is an exploded perspective view of the internal part of the present utility model.
In the figure, the correspondence between the component names and the drawing numbers is:
1. a main body; 101. a mounting plate; 102. a stress groove; 103. a stress block; 104. a bottom block; 105. a contact plate; 106. a moving member; 107. an auxiliary groove; 108. a contact block;
2. an inner member; 201. a control member; 202. a pull member; 203. a guide rod; 204. a connecting rod; 205. a scraping piece; 206. a guide groove; 207. a connecting plate; 208. a stress piece.
Detailed Description
Embodiments of the present utility model are described in further detail below with reference to the accompanying drawings and examples.
Examples:
as shown in fig. 1 to 5:
the present utility model provides a solid phase particle diverter valve comprising: a main body 1; the reversing valve comprises a reversing valve body, wherein the top end of the reversing valve body 1 is provided with a mounting plate 101, two sides of the top end of the mounting plate 101 are respectively provided with a contact plate 105, the bottom of each contact plate 105 is provided with a stress block 103, and the stress blocks 103 are of wedge-shaped structures, so that after the reversing valve is subjected to falling pressure, the stress blocks 103 can be contacted with the inside of a stress groove 102, the contact plates 105 can drive the contact blocks 108 to transversely displace together, and further the bolts are pushed to be fixed, so that the loosening of the reversing valve body 1 is avoided; the internal parts 2, the internal parts 2 are circular ring structure, the internal parts 2 are equipped with three altogether, three internal parts 2 are installed respectively at the both ends and the bottom inside of main part 1, can be in the inside a plurality of positions of main part 1 and use, every internal parts 2's both sides are equipped with a guide arm 203 respectively, the inner of guide arm 203 is connected with the inner ring, the internally mounted of guide arm 203 has evenly arranged scrapes 205, scrape 205 is circular ring structure, scrape 205's cross-section is triangle-shaped structure, be used for with the inner wall contact of main part 1, make after the solid phase granule circulate, scrape 205 can be under the cooperation of spring, and then scrape the residue, avoid producing the jam.
Referring to fig. 4, the mounting plate 101 has a rectangular plate structure, the corner positions of the mounting plate 101 are respectively provided with a connecting hole for inserting a bolt, so as to assist in fixing the main body 1, the middle positions of two sides of the main body 1 are respectively provided with a stress groove 102, the stress grooves 102 have a rectangular structure, the inner ends of the stress grooves 102 have a wedge structure, and the stress blocks 103 are embedded in the stress grooves 102, so that after the stress blocks 103 are forced to move downwards, the contact plates 105 can be driven to move transversely together; the bottom of each stress block 103 is provided with a bottom block 104, the bottom block 104 is of a rectangular structure and is used for positioning and mounting the stress block 103, the contact plate 105 is of a U-shaped structure, two sides of the outer end of the contact plate 105 are respectively provided with a square groove, and the positions of the square grooves correspond to the positions of the connecting holes, so that bolts can pass through the square grooves; the bottom both sides of every contact plate 105 are installed respectively and are moved piece 106, move piece 106 is L shape structure, move piece 106 and be the rubber material, can assist in supporting contact plate 105, the outer end of moving piece 106 is equipped with the recess, the inside of every moving piece 106 is equipped with an auxiliary groove 107, the top of auxiliary groove 107 is rectangular structure, the bottom both sides of auxiliary groove 107 are the slope form structure, make moving piece 106 can warp after the pressurized, the recess internally mounted of moving piece 106 has contact block 108, contact block 108 is rectangular structure, the outside of contact block 108 is arc structure, contact block 108 imbeds in the square groove inside of contact plate 105, can remove in the square groove inside, and then contact with the bolt side, avoid the bolt to become flexible.
Referring to fig. 5, two control members 201 are respectively arranged in the inner member 2 and the inner ring, the inner ends of the control members 201 are arc structures, a round hole is formed in each control member 201 for allowing a connecting rod 204 to be inserted, so that the connecting rod 204 can drive the scraping members 205 to guide and displace together, and further, a spring can be compressed, the scraping members 205 can reciprocate, two sides of each inner member 2 are respectively provided with a pulling member 202, the inner ends of the pulling members 202 are arc structures, the inner members 2 can be conveniently pulled out, cleaning and replacement are convenient, and the pulling members 202 are connected with the inner ends of the guide rods 203; the guide rods 203 are of cylindrical structures, two sides of each scraping piece 205 are respectively provided with a guide groove 206, the guide grooves 206 are of arc structures, the guide rods 203 are embedded in the guide grooves 206, so that the scraping pieces 205 can conduct guiding displacement, two connecting rods 204 are arranged on the outer sides of the scraping pieces 205 at the outer ends, each connecting rod 204 is of an I-shaped shaft structure, a spring is sleeved on the outer side of each connecting rod 204 and used for assisting in pushing the scraping piece 205 to reciprocate, and the connecting rods 204 are inserted into round holes of the control pieces 201; the inside of scraping the piece 205 is equipped with two connecting plates 207, connecting plate 207 is T shaped plate column structure for connecting and scraping the piece 205, can support atress piece 208 simultaneously, is equipped with atress piece 208 between every two connecting plates 207, and atress piece 208 is circular structure, and the both sides of every atress piece 208 are equipped with a recess respectively, make after the solid phase granule circulate, can promote atress piece 208 and remove, and then make and scrape the piece 205 and remove, make the spring can be compressed, make and scrape the piece 205 and can reciprocate and scrape the inner wall of getting main part 1, improve clean effect, avoid producing attachment and residue.
When in use, the utility model is characterized in that: when the device is needed to be used, the inner piece 2 can be directly controlled by manpower to be installed at the two ends and the inside of the bottom end of the main body 1, then the main body 1 is controlled to be installed and connected, so that a bolt can be inserted into a connecting hole of the mounting plate 101, the square groove of the contact plate 105 is internally provided, after the bolt is screwed up, the contact plate 105 can be downwards moved, the stress block 103 can be in contact with the inside of the stress groove 102, the contact plate 105 can be downwards moved, the contact block 108 can be automatically in contact with the side edge of the bolt, the bolt can be fixed, the loosening of the later-stage bolt is avoided, then the side edge and the bottom of the main body 1 are controlled to be connected with a pipeline, solid-phase particles can be in contact with the stress piece 208 when solid-phase particles circulate, the stress piece 208 can be stressed to move, the scraping piece 205 drives the connecting rod 204 to move together, the spring is compressed, the scraping piece 205 can be reciprocally moved, the inner wall of the main body 1 can be prevented from generating residues and attachments, the inner wall of the main body 1 can be prevented from being blocked, the inner side edge of the main body 1 can be conveniently reversed when the main body 1 is needed to be controlled.
Claims (7)
1. Solid phase granule switching-over valve, its characterized in that includes: a main body (1); the reversing valve comprises a reversing valve body, wherein the reversing valve body is characterized in that the main body (1) is provided with a mounting plate (101) at the top end of the main body (1), two sides of the top end of the mounting plate (101) are respectively provided with a contact plate (105), the bottom of each contact plate (105) is provided with a stress block (103), and the stress blocks (103) are of a wedge-shaped structure; the inner part (2), the inner part (2) is the ring form structure, and the inner part (2) is equipped with three altogether, and inside both ends and the bottom of main part (1) are installed respectively to three inner part (2), and the both sides of every inner part (2) are equipped with a guide arm (203) respectively, and the inner of guide arm (203) is connected with the inner ring, and the internally mounted of guide arm (203) has scraping piece (205) of evenly arranging, scrapes piece (205) and is ring form structure, scrapes the cross-section of piece (205) and is triangle-shaped structure.
2. The solid particle reversing valve according to claim 1, wherein the mounting plate (101) is of a rectangular plate-shaped structure, the corner positions of the mounting plate (101) are respectively provided with a connecting hole, the middle positions of two sides of the main body (1) are respectively provided with a stress groove (102), the stress grooves (102) are of a rectangular structure, the inner ends of the stress grooves (102) are of wedge-shaped structures, and the stress blocks (103) are embedded in the stress grooves (102).
3. The solid particle reversing valve according to claim 2, wherein a bottom block (104) is arranged at the bottom of each stress block (103), the bottom block (104) is of a rectangular structure, the contact plate (105) is of a U-shaped structure, square grooves are respectively arranged on two sides of the outer end of the contact plate (105), and the positions of the square grooves correspond to the positions of the connecting holes.
4. A solid particle reversing valve according to claim 3, wherein a moving member (106) is respectively mounted on two sides of the bottom of each contact plate (105), the moving member (106) is of an L-shaped structure, the moving member (106) is made of rubber, a groove is formed in the outer end of the moving member (106), an auxiliary groove (107) is formed in the inner portion of each moving member (106), the top end of the auxiliary groove (107) is of a rectangular structure, two sides of the bottom of the auxiliary groove (107) are of an inclined structure, contact blocks (108) are mounted in the grooves of the moving member (106), the contact blocks (108) are of rectangular structures, the outer sides of the contact blocks (108) are of arc structures, and the contact blocks (108) are embedded in the square grooves of the contact plates (105).
5. The solid particle reversing valve according to claim 1, wherein two control members (201) are respectively arranged in the inner member (2) and the inner ring, the inner ends of the control members (201) are arc-shaped structures, a round hole is formed in each control member (201), a pull member (202) is respectively arranged on two sides of each inner member (2), the inner ends of the pull members (202) are arc-shaped structures, and the inner ends of the pull members (202) are connected with the inner ends of the guide rods (203).
6. The solid particle reversing valve according to claim 5, wherein the guide rods (203) are of cylindrical structures, two sides of each scraping piece (205) are respectively provided with a guide groove (206), each guide groove (206) is of an arc-shaped structure, the guide rods (203) are embedded in the guide grooves (206), two connecting rods (204) are arranged on the outer sides of the outer scraping pieces (205), each connecting rod (204) is of an I-shaped shaft structure, a spring is sleeved on the outer side of each connecting rod (204), and each connecting rod (204) is inserted into a round hole of the control piece (201).
7. The solid particle reversing valve according to claim 1, wherein two connecting plates (207) are arranged in the scraping piece (205), the connecting plates (207) are of T-shaped plate structures, a stress piece (208) is arranged between every two connecting plates (207), the stress piece (208) is of a circular structure, and two sides of each stress piece (208) are respectively provided with a groove.
Priority Applications (1)
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CN202223519713.8U CN219098084U (en) | 2022-12-28 | 2022-12-28 | Solid phase particle reversing valve |
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CN202223519713.8U CN219098084U (en) | 2022-12-28 | 2022-12-28 | Solid phase particle reversing valve |
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CN219098084U true CN219098084U (en) | 2023-05-30 |
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CN202223519713.8U Active CN219098084U (en) | 2022-12-28 | 2022-12-28 | Solid phase particle reversing valve |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116624630A (en) * | 2023-07-26 | 2023-08-22 | 山东拓顿换热设备有限公司 | Valve with anti-blocking structure for plate heat exchanger |
-
2022
- 2022-12-28 CN CN202223519713.8U patent/CN219098084U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116624630A (en) * | 2023-07-26 | 2023-08-22 | 山东拓顿换热设备有限公司 | Valve with anti-blocking structure for plate heat exchanger |
CN116624630B (en) * | 2023-07-26 | 2023-09-15 | 山东拓顿换热设备有限公司 | Valve with anti-blocking structure for plate heat exchanger |
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Address after: Building 4, No. 5399 Waiqingsong Road, Qingpu District, Shanghai, 2017 Patentee after: Tuomfei Valve Technology Co.,Ltd. Country or region after: China Address before: Building 5, No. 1065 Xinda Road, Xianghuaqiao Street, Qingpu District, Shanghai, 201700 Patentee before: Tuomfei Valve Technology Co.,Ltd. Country or region before: China |