Condenser for producing grey water dispersing agent
By providing protective plates and auxiliary matching components at the ends of the condenser tubes, the problem of dirt accumulation in the tubes is solved, convenient cleaning and protection are achieved, and the operating stability and maintenance efficiency of the condenser are improved.
Patent Information
- Application Number
- CN202511164831.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-20
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2045-08-20
AI Technical Summary
After long-term use, existing condensers are prone to dirt accumulation on the inner walls and ends of the tubes, which are difficult to clean effectively and lack protective mechanisms, affecting the normal operation and cleaning convenience of the condenser.
A protective plate is set at the end of the tube of the condenser, and is positioned and installed through the protective installation component. Auxiliary matching components are set on the protective plate, including calibration positioning plug shafts, rubber sleeves and hexagonal fastening nuts, etc., to ensure that the end of the tube is not corroded by dirt and is easy to clean.
While ensuring the normal operation of the condenser, the disassembly and assembly design of the protective plate improves the convenience of tube cleaning, reduces the erosion of dirt on the tubes, and improves the working efficiency and maintenance convenience of the condenser.
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Figure CN120720883A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of condensers, in particular to a condenser for producing ash water dispersants. Background Art
[0002] The existing Chinese patent authorization document with announcement number CN216953624U discloses a stainless steel condenser for the production of high molecular weight dispersants, which includes a first shell and a second shell. A first connecting plate is provided on one side of the first shell, and a second connecting plate is provided on a side close to the first shell. A plurality of connecting holes are provided on one side of the first connecting plate and the second connecting plate. An air inlet is provided on one side of the first shell, and a shell cover is connected to one side of the second shell. A refrigerant inlet is provided on the top of the first shell and the second shell, and a liquid outlet is provided on the bottom of the first shell and the second shell. A plurality of tubes are provided inside the first shell and the second shell, and a screw rod is provided at the bottom end of the first shell and the second shell.
[0003] The above scheme realizes the rotation of the screw by cooperating with the first bevel gear, the second bevel gear and the motor, thereby driving the scraper to move on the screw, so as to facilitate the scraping of scale accumulated at the bottom ends of the first shell and the second shell, and discharge it from the liquid outlet, thereby effectively reducing the water flow resistance in the shell; however, after long-term use, the condenser in the above scheme and the prior art will also accumulate dirt on the inner wall of the tube, which needs to be cleaned regularly, and dirt will also accumulate at the end of the tube. The inner wall of the condenser tube is generally cleaned with clean water or auxiliary reagents. However, it is difficult to rinse the dirt accumulated at the end of the tube with water. Generally, staff use auxiliary tools to wash it. There is a lack of a protective mechanism for the end of the tube, which protects the end of the tube from being eroded by dirt on the one hand and provides convenience when cleaning the dirt on the other hand.
[0004] To this end, the present invention proposes a condenser for producing ash water dispersant to solve the above problems. Summary of the Invention
[0005] The object of the present invention is to provide a condenser for producing grey water dispersant to solve the problems raised in the above background technology.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a condenser for producing ashwater dispersant, comprising a condenser shell and an end connecting plate provided at an end of the condenser shell, wherein the end connecting plate has bolt mounting holes equidistantly provided thereon, and wherein the condenser shell is provided with tubes, and the ends of the tubes are connected to a support plate head; A docking groove body is provided on the inner side wall of the tube mouth of the array of tubes, the bolt mounting holes and the matching through holes near the edge of the protective plate are corresponding to each other and are provided in the same number of groups, and an auxiliary matching component is provided in the protective plate.
[0007] Preferably, the protective disc is arranged at the end of the tube array, and the protective disc is positioned and installed by a protective installation assembly. The auxiliary matching assembly in the protective disc corresponds to the setting position of the tube array and the number of setting groups is the same.
[0008] Preferably, the protective mounting assembly includes a calibration positioning plug shaft, a connecting threaded body, a sleeve auxiliary cone head, a calibration positioning through-hole, a rubber cap, an auxiliary ramp body and a hexagonal fastening nut; the calibration positioning plug shaft is symmetrically arranged on one side of the protective disk, and a connecting threaded body is provided on the annular side wall of the calibration positioning plug shaft, and a sleeve auxiliary cone head is provided on the end of the calibration positioning plug shaft, and the connecting threaded body on the annular surface of the calibration positioning plug shaft is threadedly connected with the hexagonal fastening nut.
[0009] Preferably, the calibration and positioning plug shaft passes through the calibration and positioning through hole, and the calibration and positioning through hole is symmetrically arranged in the end connecting plate, and the aperture of the calibration and positioning through hole is equal to the end diameter of the calibration and positioning plug shaft.
[0010] Preferably, the calibration and positioning plug shaft is sleeved with a rubber sleeve cap, and an auxiliary slope body is provided on the inner side of one end of the rubber sleeve cap.
[0011] Preferably, the auxiliary matching component includes an auxiliary threaded hole cavity, a loading tube head, a matching connecting thread, a limiting clamp, a rotating auxiliary protrusion, a docking ring body, a buffer trough body and an auxiliary cotton strip; the auxiliary threaded hole cavity is arranged in the protective disk, and the auxiliary threaded hole cavity corresponds to the setting position of the tube array and the number of settings is the same. The outer annular surface of the loading tube head is provided with a matching connecting thread, and the matching connecting thread is adapted to the auxiliary threaded hole cavity for threaded connection.
[0012] Preferably, a limiting clamp is fixedly provided at one end of the loading tube head, and a rotation auxiliary protrusion is fixedly provided at an equal distance at the end of the limiting clamp, and a loading tube head is threadedly connected in one of the auxiliary threaded holes.
[0013] Preferably, the inner diameter of the loading tube head is set equal to the diameter of the tube, and a docking ring body is fixedly provided at the other end of the loading tube head. The docking ring body is adapted to be plugged into the docking groove body on the inner side of the end of the tube, the inner diameter of the ring mouth of the docking ring body is set equal to the inner diameter of the tube, the outer diameter of the ring mouth of the docking ring body is set equal to the diameter of the docking groove body, and the outer wall of the docking ring body is adapted to fit the inner wall of the docking groove body.
[0014] Preferably, a buffer groove is provided on the outer annular surface of the docking ring body, and an auxiliary tampon is provided in the buffer groove.
[0015] Preferably, the buffer trough body is configured as an annular trough, the auxiliary tampon is also configured as an annular trough, and an auxiliary tampon is arranged in the buffer trough body.
[0016] Compared with the prior art, the present invention has the following beneficial effects: The condenser for producing ash water dispersant designed by the present invention comprises a condenser shell and an end connecting plate arranged at the end of the condenser shell, bolt mounting holes are equidistantly arranged on the end connecting plate, a tube array is arranged in the condenser shell, and the ends of the tube array are connected to the support plate head; wherein a docking groove body is provided on the inner side wall of the tube orifice of the tube array, the bolt mounting hole corresponds to the setting position of the matching through hole of the protective plate near the edge position, and an auxiliary matching component is provided in the protective plate; the protective plate in this solution is arranged at the end position of the tube array, and the protective plate is positioned and installed by the protective mounting assembly; wherein this solution is provided by providing a protective plate and providing a protective plate on the protective plate The installation component provides a protection function for the end pipe openings of the tubes on the basis of ensuring the normal operation of the condensation work, that is, after long-term use, the dirt formed will accumulate on the protection plate, thus preventing the dirt from corroding the ends of the tubes; on the other hand, the protection installation component is set up so that the protection plate can be disassembled and assembled. When the tubes in the condenser are cleaned in the later stage, on the one hand, the dirt on the inner wall of the tube can be rinsed with clean water and cleaning agents. For the cleaning work of the dirt accumulated on the protection plate, the protection plate can be removed and cleaned, thereby improving the convenience of cleaning the tubes, which is of positive significance to the normal operation of the condenser. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 The right side schematic diagram of the explosion of the connection between the condenser shell and the protective plate structure of the present invention; Figure 2 for Figure 1 A magnified schematic diagram of the structural connection at center A; Figure 3 This is a schematic diagram of the exploded left side of the connection between the condenser shell and the protective plate structure of the present invention; Figure 4 It is a front side schematic diagram of the connection structure of the protection plate, the protection installation component and the auxiliary matching component of the present invention; Figure 5 for Figure 4 A magnified schematic diagram of the structural connection at point B in the middle; Figure 6 This is a schematic diagram of the rear side of the structure connecting the protective plate, the protective mounting assembly, and the auxiliary matching assembly of the present invention; Figure 7 This is a schematic diagram of the connection of the protective disc structure of the present invention; Figure 8 for Figure 7 A magnified schematic diagram of the structural connection at point C in the middle; Figure 9 This is a schematic diagram of the connection structure of the auxiliary matching component of the present invention; Figure 10 It is a schematic plan view of the structural connection of the auxiliary matching components of the present invention.
[0018] In the figure: condenser shell 1, end connecting plate 2, bolt mounting hole 3, tube array 4, support plate head 5, docking groove body 6, protective plate 7, matching through hole 8, calibration positioning plug shaft 901, connecting thread body 902, sleeve auxiliary cone head 903, calibration positioning through hole 904, rubber sleeve cap 905, auxiliary slope body 906, hexagonal fastening nut 907, auxiliary threaded hole 1001, loading tube head 1002, matching connecting thread 1003, limiting clamp 1004, rotating auxiliary protrusion 1005, docking plug ring body 1006, buffer trough body 1007, auxiliary cotton strip 1008. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present invention are described clearly and completely below. The embodiments of the present invention and all other embodiments obtained by persons of ordinary skill in the art without creative work are within the scope of protection of the present invention.
[0020] Example 1: Please refer to Figures 1-10 A condenser for producing ash-water dispersant comprises a condenser shell 1 and an end connecting plate 2 arranged at the end of the condenser shell 1, wherein bolt mounting holes 3 are equidistantly arranged on the end connecting plate 2, a column tube 4 is arranged in the condenser shell 1, and the ends of the column tube 4 are connected to the support plate head 5; wherein a docking groove body 6 is provided on the inner side wall of the tube mouth of the column tube 4, the bolt mounting hole 3 and the matching through hole 8 near the edge position of the protective plate 7 are corresponding in position and the same number of groups are provided, and an auxiliary matching component is provided in the protective plate 7; the protective plate 7 in this scheme is arranged at the end position of the column tube 4, and the protective plate 7 is positioned and installed by the protective mounting component, and the auxiliary matching component in the protective plate 7 corresponds to the setting position of the column tube 4 and the same number of groups are provided.
[0021] This solution provides a protection function for the end pipe openings of the tubes 4 on the basis of ensuring the normal operation of the condensation work by providing a protection plate 7 and a protection installation component on the protection plate 7, that is, the dirt accumulated on the protection plate 7 after long-term use; on the other hand, the protection plate 7 can be disassembled and assembled by the protection installation component. When the tubes 4 in the condenser are cleaned in the later stage, on the one hand, the dirt on the inner wall of the tube 4 can be rinsed with clean water and a cleaning agent. For the cleaning work of the dirt accumulated on the protection plate 7, the protection plate 7 can be removed and cleaned, thereby improving the convenience of cleaning the tube 4, which is of positive significance to the normal operation of the condenser.
[0022] Among them, an auxiliary threaded hole cavity 1001 is set in the protective disk 7, and a loading pipe head 1002 is threadedly connected in the auxiliary threaded hole cavity 1001. The loading pipe head 1002 is set with the same number of groups as the array tube 4, which ensures the smooth flow of liquid during condensation work; For the installation of the protective disk 7, this solution is achieved by setting a protective installation component, wherein the protective installation component includes a calibration positioning plug shaft 901, a connecting thread body 902, a sleeve auxiliary cone head 903, a calibration positioning through hole 904, a rubber sleeve cap 905, an auxiliary slope body 906 and a hexagonal fastening nut 907; the calibration positioning plug shaft 901 is symmetrically arranged on one side of the protective disk 7, and the calibration positioning plug shaft is symmetrically arranged on the calibration positioning plug shaft. The side wall of the annular surface of 901 is provided with a connecting threaded body 902, and the end of the calibration and positioning plug shaft 901 is provided with a sleeve auxiliary cone head 903. The connecting threaded body 902 on the annular surface of the calibration and positioning plug shaft 901 is threadedly connected with the hexagonal fastening nut 907; the calibration and positioning plug shaft 901 passes through the calibration and positioning through hole 904, and the calibration and positioning through hole 904 is symmetrically arranged in the end connecting plate 2. The aperture of the calibration and positioning through hole 904 is equal to the end diameter of the calibration and positioning plug shaft 901; the calibration and positioning plug shaft 901 is sleeved with the rubber sleeve cap 905, and an auxiliary slope body 906 is provided on the inner side of one end of the rubber sleeve cap 905; when installing and positioning the protective disk 7 When the calibration positioning plug-in shaft 901 is inserted into the calibration positioning plug-in shaft 901, the side provided with the calibration positioning plug-in shaft 901 is first moved toward the position of the end connecting plate 2, and the calibration positioning plug-in shaft 901 is aligned with the calibration positioning through-hole 904 on the end connecting plate 2. The purpose of providing the sleeve auxiliary cone head 903 at the end of the calibration positioning plug-in shaft 901 is to facilitate the insertion of the calibration positioning plug-in shaft 901 into and through the calibration positioning through-hole 904. When the calibration positioning plug-in shaft 901 passes through the calibration positioning through-hole 904, at the same time, the matching through-hole 8 provided near the edge position of the protective disk 7 will be aligned with the position of the bolt mounting hole 3 on the end connecting plate 2. 4, first put the rubber cap 905 on the calibration and positioning plug shaft 901. The purpose of setting the auxiliary slope body 906 on the inner side of one end of the calibration and positioning plug shaft 901 is also to facilitate its sleeve connection with the calibration and positioning plug shaft 901, that is, to facilitate the calibration and positioning plug shaft 901 to pass through the rubber cap 905. After the calibration and positioning plug shaft 901 passes through the rubber cap 905, it is fixed with the hexagonal fastening nut 907, that is, the hexagonal fastening nut 907 is threadedly connected to the connecting threaded body 902 on the outer annular surface of the calibration and positioning plug shaft 901 until the hexagonal fastening nut 907 is tightened. The positioning and installation work of the protective disk member 7 can be completed quickly and the operation is convenient.
[0023] When the calibration positioning plug shaft 901 on one side of the protective disc 7 is inserted into and passes through the calibration positioning through hole 904 on the end connecting plate 2, when the protective disc 7 is continued to be pushed, the loading pipe head 1002 set at this time will also be aligned with the pipe mouth of the array tube 4, and the docking plug ring body 1006 set at one end of the loading pipe head 1002 will also be aligned with the docking groove body 6 on the inner side of the pipe mouth of the array tube 4. Push the protective disc 7 until the docking plug ring body 1006 set is inserted into the docking groove body 6 on the inner side of the pipe mouth of the array tube 4. At this time, the rubber sleeve cap 905 and the hexagonal fastening nut 90 are used to tighten the screw. 7 is used in conjunction with the calibration positioning plug shaft 901 to realize the installation and positioning of the protective disk 7; wherein the auxiliary matching assembly includes an auxiliary threaded hole cavity 1001, a loading tube head 1002, a matching connection thread 1003, a limiting clamp 1004, a rotating auxiliary protrusion 1005, a docking plug ring body 1006, a buffer tank body 1007 and an auxiliary cotton strip 1008; the auxiliary threaded hole cavity 1001 is set in the protective disk 7, and the auxiliary threaded hole cavity 1001 corresponds to the setting position of the array tube 4 and the setting group number is the same, and the outer annular surface of the loading tube head 1002 is provided with a matching connection thread The thread 1003 is matched with the connecting thread 1003 and the auxiliary threaded hole 1001 for threaded connection; a limit clamp 1004 is fixedly provided at one end of the loading tube head 1002, and a rotating auxiliary protrusion 1005 is fixedly provided at an equidistant distance at the end of the limit clamp 1004, and a loading tube head 1002 is threadedly provided in an auxiliary threaded hole 1001; the inner diameter of the loading tube head 1002 is equal to the diameter of the tube 4, and a docking plug ring body 1006 is fixedly provided at the other end of the loading tube head 1002, and the docking plug ring body 1006 and the docking groove body on the inner side of the end of the tube 4 are connected. 6 are adapted for plugging, the inner diameter of the ring opening of the docking insert ring body 1006 is set equal to the inner diameter of the tube 4, the outer diameter of the ring opening of the docking insert ring body 1006 is set equal to the diameter of the docking groove body 6, and the outer wall of the docking insert ring body 1006 is adapted to fit with the inner wall of the docking groove body 6; a buffer groove body 1007 is provided on the outer ring surface of the docking insert ring body 1006, and an auxiliary sliver 1008 is provided in the buffer groove body 1007; the buffer groove body 1007 is set as an annular groove, the auxiliary sliver 1008 is also set as an annular shape, and an auxiliary sliver 1008 is provided in the buffer groove body 1007.
[0024] When cleaning the array tube 4, the inner wall of the array tube 4 is directly rinsed with clean water and a cleaning agent. Before that, if the loading tube head 1002 set on the protective disk 7 is not blocked by the accumulated dirt, the inner wall of the array tube 4 can be rinsed first, and then the protective disk 7 can be disassembled for cleaning; if the loading tube head 1002 on the protective disk 7 is blocked by the accumulated dirt, the protective disk 7 needs to be disassembled first, otherwise it will affect the cleaning of the inner wall of the array tube 4; therefore, for the disassembly of the protective disk 7, first loosen the hexagonal fastening nut 907 with the corresponding auxiliary tool until the threaded connection between the hexagonal fastening nut 907 and the calibration positioning plug 901 is released, and then the hexagonal fastening nut 907 is removed, and then the rubber cap 905 is removed from the calibration positioning plug The shaft 901 is removed, and the fixed connection contact of the protective plate 7 is made, and then the protective plate 7 is removed. During this process, if it is difficult to remove the protective plate 7 due to dirt, the staff can use a leather hammer or a small hammer to knock on the two calibration and positioning plug shafts 901 at the same time, that is, knock on the ends of the calibration and positioning plug shafts 901 to facilitate the separation of the protective plate 7 from the end connecting plate 2 position of the condenser shell 1, that is, to separate the docking plug ring body 1006 at the end of the loading tube head 1002 from the docking groove body 6 on the inner side of the tube mouth of the column tube 4. After the docking plug ring body 1006 is separated from the docking groove body 6, continue to move the protective plate 7 horizontally until the calibration and positioning plug shaft 901 on one side of the protective plate 7 is separated from the calibration and positioning through-hole 904 on the end connecting plate 2, and the disassembly of the protective plate 7 is completed.
[0025] In order to facilitate the cleaning of the protective disc 7, the present solution sets the protective disc 7 to be detachable, that is, the protective disc 7 can be removed and then cleaned separately. However, in order to further improve the convenience and cleaning effect of the cleaning work of the protective disc 7, the present solution sets a detachable loading tube head 1002, that is, the loading tube head 1002 is threadedly connected to the auxiliary threaded hole 1001 on the protective disc 7. When cleaning the protective disc 7, if there is less dirt accumulated on the protective disc 7, the protective disc 7 can be cleaned directly. However, if there is a lot of dirt accumulated on the protective disc 7, or dirt is also accumulated on the inner side of the loading tube head 1002, in order to improve the cleaning effect, the loading tube head 1002 at the corresponding position can be directly disassembled and removed, or the loading tube head 1002 that is partially damaged can also be locally cleaned. 1001, and then the loading tube head 1002 is rotated until the limiting clamp 1004 at the end of the loading tube head 1002 is tightly attached to the disk surface of the protective disk 7.The purpose of the docking insert ring body 1006 provided at the other end of the loading tube head 1002 and the docking groove body 6 on the inner side of the tube mouth of the array tube 4 is to form a sealing effect for the docking of the loading tube head 1002 and the array tube 4, that is, to prevent the integral body from overflowing outward from the docking position between the loading tube head 1002 and the array tube 4, thereby trying to avoid the formation of dirt and impurities at the tube mouth position of the array tube 4. Furthermore, this solution also provides a buffer groove body 1007 on the outer annular surface of the docking insert ring body 1006 and an auxiliary cotton strip 1008 in the buffer groove body 1007. The use of the buffer groove body 1007 and the auxiliary cotton strip 1008 here can further improve the docking insert ring body 100 6 and the docking groove body 6 have a plug-in sealing effect. That is, if liquid overflows from the plug-in contact position between the docking insert ring body 1006 and the docking groove body 6, the buffer tank body 1007 provided at this time provides a buffer and flow control effect for the overflowing liquid. In addition, an auxiliary tampon 1008 is provided in the buffer tank body 1007 to assist in absorbing the liquid, so that the liquid remains in the auxiliary tampon 1008. If scale is generated in the auxiliary tampon 1008 later, the auxiliary tampon 1008 can be removed from the buffer tank body 1007 and the buffer tank body 1007 can be cleaned and then replaced with a new auxiliary tampon 1008.
[0026] After the cleaning of the protective disc 7 is completed, it is installed and positioned. In this process, the calibration positioning shaft 901 is first aligned with the calibration positioning through-hole 904 on the end connecting plate 2, that is, when the calibration positioning shaft 901 is aligned and inserted into the calibration positioning through-hole 904, the docking insert ring body 1006 arranged at one end of the loading tube head 1002 is aligned with the docking groove body 6 on the inner side of the pipe mouth of the array tube 4. The purpose of the matching calibration of the calibration positioning shaft 901 and the calibration positioning through-hole 904 here is to improve the installation convenience of the protective disc 7, that is, to avoid repeatedly adjusting the angle position of the protective disc 7 when installing the protective disc 7 to align the docking insert ring body 1006 with the docking groove body 6, thereby greatly improving the convenience of operation.
[0027] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A condenser for producing ashwater dispersant, comprising a condenser shell (1) and an end connecting plate (2) arranged at an end of the condenser shell (1), wherein bolt mounting holes (3) are arranged at equal intervals in the end connecting plate (2), and a tube array (4) is arranged in the condenser shell (1), and the ends of the tube array (4) are connected to a support plate head (5); Its characteristics are: A docking groove body (6) is provided on the inner side wall of the tube mouth of the array tube (4), the bolt mounting hole (3) and the matching through hole (8) near the edge of the protective plate (7) are arranged in corresponding positions and the same number of groups are provided, and an auxiliary matching component is provided in the protective plate (7).
2. The condenser for producing ash water dispersant according to claim 1, characterized in that: The protective disc (7) is arranged at the end of the tube array (4), and the protective disc (7) is positioned and installed by means of a protective installation assembly. The auxiliary matching assembly in the protective disc (7) corresponds to the arrangement position of the tube array (4) and has the same number of arrangement groups.
3. The condenser for producing ash water dispersant according to claim 2, characterized in that: The protective installation assembly comprises a calibration positioning plug shaft (901), a connecting threaded body (902), a sleeve auxiliary cone head (903), a calibration positioning through hole (904), a rubber sleeve cap (905), an auxiliary slope body (906) and a hexagonal fastening nut (907); the calibration positioning plug shaft (901) is symmetrically arranged on one side of the protective disk (7), a connecting threaded body (902) is arranged on the annular side wall of the calibration positioning plug shaft (901), a sleeve auxiliary cone head (903) is arranged on the end of the calibration positioning plug shaft (901), and the connecting threaded body (902) on the annular surface of the calibration positioning plug shaft (901) is threadedly connected with the hexagonal fastening nut (907).
4. The condenser for producing ash water dispersant according to claim 3, characterized in that: The calibration positioning insertion shaft (901) passes through the calibration positioning through hole (904), and the calibration positioning through hole (904) is symmetrically arranged in the end connecting plate (2). The aperture of the calibration positioning through hole (904) is equal to the end diameter of the calibration positioning insertion shaft (901).
5. The condenser for producing ash water dispersant according to claim 3, characterized in that: The calibration and positioning plug shaft (901) is sleeved with the rubber sleeve cap (905), and an auxiliary slope body (906) is provided on the inner side of one end of the rubber sleeve cap (905).
6. The condenser for producing ash water dispersant according to claim 1, characterized in that: The auxiliary matching component comprises an auxiliary threaded hole (1001), a loading tube head (1002), a matching connection thread (1003), a limiting clamp (1004), a rotating auxiliary protrusion (1005), a docking ring body (1006), a buffer tank body (1007) and an auxiliary cotton strip (1008); the auxiliary threaded hole (1001) is arranged in the protective disk (7), and the auxiliary threaded hole (1001) corresponds to the setting position of the tube array (4) and has the same number of settings; the outer annular surface of the loading tube head (1002) is provided with a matching connection thread (1003), and the matching connection thread (1003) is threadedly connected to the auxiliary threaded hole (1001).
7. The condenser for producing ash water dispersant according to claim 6, characterized in that: A limiting clamp ring (1004) is fixedly provided at one end of the loading tube head (1002), and a rotating auxiliary protrusion (1005) is fixedly provided at an equal distance at the end of the limiting clamp ring (1004). A loading tube head (1002) is threadedly provided in one of the auxiliary threaded bores (1001).
8. The condenser for producing ash water dispersant according to claim 6, characterized in that: The inner diameter of the loading tube head (1002) is set equal to the diameter of the tube (4), and a docking insert ring body (1006) is fixedly provided at the other end of the loading tube head (1002). The docking insert ring body (1006) is adapted to be plugged into the docking groove body (6) on the inner side of the end of the tube (4). The inner diameter of the ring opening of the docking insert ring body (1006) is set equal to the inner diameter of the tube (4), the outer diameter of the ring opening of the docking insert ring body (1006) is set equal to the diameter of the docking groove body (6), and the outer wall of the docking insert ring body (1006) is adapted to be fitted with the inner wall of the docking groove body (6).
9. The condenser for producing ash water dispersant according to claim 6, characterized in that: A buffer groove body (1007) is provided on the outer annular surface of the docking ring body (1006), and an auxiliary cotton strip (1008) is provided in the buffer groove body (1007).
10. The condenser for producing ash water dispersant according to claim 6, characterized in that: The buffer trough body (1007) is configured as an annular trough, and the auxiliary tampon (1008) is also configured as an annular trough. An auxiliary tampon (1008) is provided in the buffer trough body (1007).
Citation Information
Patent Citations
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