CN213699878U - Production device for heat-conducting medium - Google Patents
Production device for heat-conducting medium Download PDFInfo
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- CN213699878U CN213699878U CN202022633617.0U CN202022633617U CN213699878U CN 213699878 U CN213699878 U CN 213699878U CN 202022633617 U CN202022633617 U CN 202022633617U CN 213699878 U CN213699878 U CN 213699878U
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Abstract
The application relates to a production device of heat-conducting media, and belongs to the field of heat-conducting oil production devices. It includes a jar body and supporting component, the supporting component includes bearing ring and supporting legs, the supporting legs has a plurality ofly, and a plurality ofly the supporting legs is followed bearing ring circumference interval sets up, jar body lower part is provided with the spacing ring, the spacing ring with the bearing ring butt, the annular ring that the confession was seted up to the bearing ring jar body lower part was passed. This application has supporting legs and changes convenient effect.
Description
Technical Field
The application relates to the field of heat conduction oil production devices, in particular to a production device for heat conduction media.
Background
The heat conducting oil is a heat transfer medium, is increasingly widely applied to various industrial and civil fields due to the advantages of good heat transfer effect, convenient operation, energy conservation, transportation and the like, and the early-used mineral oil type heat conducting oil gradually falls down due to the limitation of the self composition structure; various synthetic type heat transfer oils are gradually being replaced.
In the conduction oil production process, each component of conduction oil needs to mix according to a certain proportion, this hybrid process generally goes on in the blending tank, the blending tank is including a jar body, a plurality of feed inlets have been seted up on the upper portion of jar body, all install the inlet pipe in every feed inlet, the discharge gate has been seted up to the lower part of jar body, install the discharging pipe on the discharge gate, the lower part welded fastening of jar body has a plurality of supporting legss, keep the steady of placing of jar body through the supporting legs, the internal stirring subassembly that stirs the mediation that still is provided with the component in the blending tank.
In view of the above-described related art, the inventors have considered that when the supporting legs are damaged, the supporting legs are very inconvenient to replace.
SUMMERY OF THE UTILITY MODEL
In order to facilitate the change of supporting legs, the application provides a production device of heat-conducting medium.
The application provides a production device of heat-conducting medium adopts following technical scheme:
the utility model provides a production device of heat-conducting medium, includes a jar body and supporting component, the supporting component includes bearing ring and supporting legs, the supporting legs has a plurality ofly, and is a plurality of the supporting legs is followed bearing ring circumference interval sets up, jar body lower part is provided with the spacing ring, the spacing ring with the bearing ring butt, the annular ring that supplies jar body lower part is passed is seted up to the bearing ring.
Through adopting above-mentioned technical scheme, set up the supporting legs under the bearing ring, support the bearing ring through the supporting legs, through the support of bearing ring to the spacing ring, the supporting legs is indirect to the jar body and supports, when the supporting legs damages and needs to be changed, only need to take off the jar body from the bearing ring, the supporting component of renewal can, convenient and fast reduces the change and the maintenance degree of difficulty, jar body lower part passes the annular hole for the difficult horizontal migration of the relative bearing ring of jar body keeps the stability of supporting.
Optionally, an annular slot is formed in the bearing ring, an annular protrusion is arranged on the limiting ring, and the annular protrusion is embedded in the annular slot.
By adopting the technical scheme, the annular slot on the bearing ring is matched with the annular bulge on the limiting ring, so that the limiting ring is buckled with the bearing ring, the center of gravity of the tank body is indirectly kept on the central axis of the bearing ring, the tank body is better supported, the force received by each supporting leg under the bearing ring is better kept consistent, the problem that a certain supporting leg is more than other supporting legs and is more easily damaged is avoided as far as possible, and the service life of the bearing assembly is prolonged.
Optionally, a first screw hole penetrating through the annular slot is formed in the side wall of the bearing ring, a second screw hole is formed in the side wall, deviating from the tank body, of the annular protrusion, a limit screw penetrates through the first screw hole, and one end of the limit screw is fixed to the second screw hole in a threaded mode.
Through adopting above-mentioned technical scheme, carry out the reciprocal anchorage through stop screw between bearing ring and the spacing ring for be connected more firmly between spacing ring and the bearing ring, the jar body is difficult to drop more, and stop screw extracts from annular slot through the annular bulge of restriction, reaches the effect of connection fixation.
Optionally, the first screw hole is a kidney-shaped hole and extends along the circumferential direction of the bearing ring.
Through adopting above-mentioned technical scheme, first screw hole adopts waist type hole for first screw hole corresponds with the second screw hole more easily, and the fault-tolerant rate of the process that annular protrusion inserted annular slot is higher, and stop screw is more convenient when the installation.
Optionally, the bearing ring has a first ball groove formed in a side wall facing the limit ring, a ball is embedded in the first ball groove, and a second ball groove for embedding the upper portion of the ball is formed in a side wall facing the bearing ring of the limit ring.
Through adopting above-mentioned technical scheme, through setting up first ball groove, first ball inslot installation ball, set up the second ball groove on the spacing ring, realize the location installation between bearing ring and the spacing ring, first screw hole and second screw hole can be better correspond, bearing assembly and jar body between install the time more convenient, the ball can roll at first ball inslot, make the spacing ring install on the bearing ring after can through rotatory advance line location, it is more laborsaving convenient to install.
Optionally, an oil storage tank is arranged at the bottom of the first ball groove, and an oil filling tank communicated with the oil storage tank is arranged at the wall of the ball groove.
Through adopting above-mentioned technical scheme, set up the oil storage tank at the tank bottom in first ball groove, store lubricating oil through the oil storage tank for the ball can be at the more smooth and easy roll of first ball inslot, and the spacing ring can be relatively more smooth and easy roll of bearing ring, and the location installation between bearing ring and the spacing ring of being convenient for, the oil filler point is used for pouring into lubricating oil into for the oil storage tank, keeps better lubricated effect.
Optionally, the bearing ring is provided with a mounting groove, the first ball groove is arranged at the bottom of the mounting groove, a fixing ring is embedded in the mounting groove in an interference manner, the fixing ring is provided with a ball hole through which the ball penetrates, the cross section of the first ball groove is semicircular, and the aperture of the ball hole is gradually reduced from one end close to the first ball groove to the other end away from the first ball groove.
Through adopting above-mentioned technical scheme, through seting up the mounting groove and at the solid fixed ring of mounting groove internal installation, solid fixed ring's ball hole is passed on ball upper portion, because the cross-section in first ball groove is the semicircle, the diameter in ball hole reduces gradually for gu fixed ring can fix the ball at first ball inslot, the ball is difficult to drop and lose from first ball groove.
Optionally, the fixing ring is provided with an oil filling hole, and the oil filling hole is communicated with the oil filling groove.
Through adopting above-mentioned technical scheme, set up the oil filler point with the oil filler point intercommunication for the oil storage tank pours into lubricating oil into, oil filler point and ball contactless simultaneously, make the ball when rolling, the lubricating oil that the ball was taken out is difficult to flow from the oil filler point, and solid fixed ring scrapes the fluid of oil filler point to the ball again, reduces the loss speed of lubricating oil.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the supporting legs are arranged below the bearing ring, the bearing ring is supported through the supporting legs, the limiting ring is supported through the bearing ring, the supporting legs indirectly support the tank body, when the supporting legs are damaged and need to be replaced, the tank body only needs to be taken down from the bearing ring, a new supporting assembly is replaced, the replacement and maintenance difficulty is reduced, the lower portion of the tank body penetrates through the annular hole, the tank body is not prone to horizontally moving relative to the bearing ring, and the supporting stability is kept;
2. the limiting ring and the bearing ring are buckled through the annular slot and the annular bulge, the gravity center of the tank body is kept on the central axis of the bearing ring, the force borne by each supporting leg is kept consistent better, the phenomenon that a certain supporting leg bears too much is avoided, the service life of a bearing assembly is prolonged, the bearing ring and the limiting ring are fixed through a limiting screw, the connecting strength between the limiting ring and the bearing ring is improved, and the tank body is not easy to fall off;
3. through first ball groove, cooperation between ball and the second ball groove, realize the location installation between bearing ring and the spacing ring, the ball can roll at first ball inslot, make the spacing ring fix a position through the rotation after installing on the bearing ring, and is more convenient, set up the oil storage tank, improve the roll smoothness nature of ball, the solid fixed ring of installation in the mounting groove, fix the ball at first ball inslot, oil storage tank and oil filler point are used for pouring into lubricating oil into for the oil storage tank, keep better lubricated effect.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment of the present application;
FIG. 2 is a schematic structural view of the support assembly;
FIG. 3 is a sectional view of the mounting structure of the retainer ring and the load-bearing ring;
FIG. 4 is a sectional view of the positioning structure of the position-limiting ring and the load-bearing ring.
Description of reference numerals: 1. a tank body; 11. a limiting ring; 111. an annular projection; 112. a second screw hole; 113. a second ball groove; 12. a feed pipe; 13. a discharge pipe; 14. a stirring assembly; 2. a support assembly; 21. a load-bearing ring; 211. annular ring; 212. an annular slot; 213. a first screw hole; 214. a first ball groove; 215. an oil storage tank; 216. mounting grooves; 2161. positioning the salient points; 217. an oil injection groove; 22. supporting legs; 23. stabilizing the bottom plate; 3. a limit screw; 4. a ball bearing; 5. a fixing ring; 51. a ball hole; 52. an oil filler hole; 53. and (6) positioning a groove.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses production device of heat-conducting medium. Referring to fig. 1, the apparatus for producing of heat-conducting medium, including jar body 1 and the supporting component 2 that is used for the supporting tank body 1, a plurality of inlet pipes 12 are installed on 1 upper portion of the jar body, inlet pipe 12 supplies the different components pay-off of conduction oil to go into jar internal 1, still be provided with the stirring subassembly 14 that stirs the mediation to the component in the apparatus for producing of heat-conducting medium in the jar body 1, the driving piece motor of stirring subassembly 14 is installed outside jar body 1, the outer wall an organic whole of 1 lower parts of the jar body is fixed with the spacing ring 11 with supporting component 2 complex, discharging pipe 13 is installed to the.
Referring to fig. 1 and 2, the support assembly 2 includes a bearing ring 21 and a support leg 22, the bearing ring 21 is provided with a ring hole 211 for the lower part of the tank body 1 to pass through, the lower part of the tank body 1 passes through the ring hole 211 from top to bottom, the limit ring 11 on the tank body 1 abuts against the support ring, and the outer wall of the support ring is consistent with the outer diameter of the limit ring 11.
Referring to fig. 2 and 3, an annular slot 212 is formed in a side wall of the bearing ring 21 facing the limit ring 11, an annular protrusion 111 is integrally formed in the side wall of the limit ring 11 facing the bearing ring 21, the annular protrusion 111 is embedded in the annular slot 212, a first screw hole 213 penetrating through the annular slot 212 is formed in the side wall of the bearing ring 21, the first screw hole 213 is a kidney-shaped hole and extends and is formed along the circumferential direction of the bearing ring 21, in this embodiment, four first screw holes 213 are formed, the interval between adjacent first screw holes 213 is 90 degrees, a second screw hole 112 is formed in the side wall of the annular protrusion 111 facing away from the tank body 1, four second screw holes 112 are also formed, the adjacent second screw holes 112 are formed along the circumferential direction of the annular protrusion 111 at 90 degrees, a limit screw 3 penetrates through each first screw hole 213, and one end of each of four limit screws 3 close to the annular slot 212 is correspondingly screwed into the four second, the annular protrusion 111 is limited in the height direction.
Referring to fig. 2 and 4, the side wall of the bearing ring 21 facing the retainer ring 11 is further provided with four mounting grooves 216, in this embodiment, four mounting grooves 216 are provided, adjacent mounting grooves 216 are arranged at intervals of 90 degrees around the circumferential direction of the bearing ring 21, and the mounting grooves 216 and the adjacent first screw holes 213 are arranged at intervals of 45 degrees along the circumferential direction of the bearing ring 21, so that the four mounting grooves 216 and the four first screw holes 213 are alternately arranged, the mounting grooves 216 and the first screw holes 213 are not provided at the same position, and the influence on the strength of the bearing ring 21 is reduced.
Referring to fig. 2 and 4, the first ball groove 214 has been seted up to the tank bottom of mounting groove 216, and the cross-section of first ball groove 214 is the semicircle, the embedded ball 4 that is equipped with in first ball groove 214, the interference is inlayed and is equipped with solid fixed ring 5 in the mounting groove 216, gu fixed ring 5 sets up the ball hole 51 that supplies ball 4 to wear out, the aperture of ball hole 51 reduces to the one end of keeping away from first ball groove 214 along the one end that is close to first ball groove 214 gradually, and the maximum aperture of ball hole 51 equals the diameter of ball 4 for the pore wall and the ball 4 outer wall laminating of ball hole 51.
Referring to fig. 2 and 4, oil storage tank 215 has been seted up to the tank bottom in first ball groove 214, oil filler tank 217 has been seted up to the cell wall in ball 4 groove, oil filler tank 217 one end and oil storage tank 215 intercommunication, the tank bottom of oil filler tank 217 other end link up mounting groove 216, gu set up the oil filler point 52 that link up from top to bottom on the fixed ring 5, oil filler point 52 and oil filler tank 217 intercommunication, pour into lubricating oil through oil filler point 52, gu set up constant head tank 53 on one side of fixed ring 5, the cell wall an organic whole of mounting groove 216 is provided with location bump 2161, when location bump 2161 imbeds constant head tank 53, oil filler point 52 and oil filler tank 217 intercommunication, realize.
Referring to fig. 2 and 4, the side wall of the retainer ring 11 facing the bearing ring 21 is provided with a second ball groove 113 for the upper portion of the ball 4 to be inserted into, the cross section of the second ball groove 113 is a minor arc, and the first ball groove 214, the ball hole 51 and the second ball groove 113 form a complete spherical space for the ball 4 to be installed.
Referring to fig. 1 and 2, there are a plurality of support legs 22, in this embodiment, there are three support legs 22, three support legs 22 are arranged along the circumferential direction of the bearing ring 21 at equal angular intervals, one end of each support leg 22 is fixed to the bearing ring 21, the other end of each support leg 22 is provided with a stabilizing bottom plate 23, and the contact area between each support leg 22 and the ground is increased through the stabilizing bottom plate 23.
The implementation principle of the production device of the heat-conducting medium in the embodiment of the application is as follows: the tank body 1 is lifted, the tank body 1 is arranged on the supporting component 2, the tank body 1 is rotated, the second ball groove 113 and the balls 4 are aligned upwards, the upper parts of the balls 4 are embedded into the second ball groove 113, the second screw hole 112 and the first screw hole 213 are aligned upwards, and the limiting screw 3 is driven in to realize the connection and fixation between the supporting component 2 and the tank body 1.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. A production device of heat-conducting medium is characterized in that: including a jar body (1) and supporting component (2), supporting component (2) are including bearing ring (21) and supporting legs (22), supporting legs (22) have a plurality ofly, a plurality of supporting legs (22) are followed bearing ring (21) circumference interval sets up, jar body (1) lower part is provided with spacing ring (11), spacing ring (11) with bearing ring (21) butt, the confession has been seted up in bearing ring (21) the annular hole (211) that the jar body (1) lower part passed.
2. The apparatus for producing a heat transfer medium according to claim 1, wherein: an annular slot (212) is formed in the bearing ring (21), an annular protrusion (111) is arranged on the limiting ring (11), and the annular protrusion (111) is embedded in the annular slot (212).
3. The apparatus for producing a heat transfer medium according to claim 2, wherein: bearing ring (21) lateral wall is seted up and is link up first screw hole (213) of annular slot (212), annular arch (111) deviate from second screw hole (112) have been seted up to the lateral wall of jar body (1), wear to be equipped with stop screw (3) in first screw hole (213), stop screw (3) one end screw thread is fixed in second screw hole (112).
4. A production apparatus for a heat transfer medium according to claim 3, wherein: the first screw hole (213) is a waist-shaped hole and extends along the circumferential direction of the bearing ring (21).
5. The apparatus for producing a heat transfer medium according to claim 4, wherein: bearing ring (21) orientation first ball groove (214) have been seted up to the lateral wall of spacing ring (11), first ball groove (214) embedded ball (4) are equipped with, spacing ring (11) orientation the lateral wall of bearing ring (21) is seted up the confession second ball groove (113) that ball (4) upper portion was embedded.
6. The apparatus for producing a heat transfer medium according to claim 5, wherein: an oil storage groove (215) is formed in the bottom of the first ball groove (214), and an oil filling groove (217) communicated with the oil storage groove (215) is formed in the wall of the ball groove (4).
7. The apparatus for producing a heat transfer medium according to claim 6, wherein: the bearing ring (21) is provided with a mounting groove (216), the first ball groove (214) is arranged at the bottom of the mounting groove (216), the mounting groove (216) is internally embedded with a fixing ring (5) in an interference manner, the fixing ring (5) is provided with a ball hole (51) for the ball (4) to penetrate out, the cross section of the first ball groove (214) is a semicircle, and the aperture of the ball hole (51) is gradually reduced from one end close to the first ball groove (214) to one end far away from the first ball groove (214).
8. The apparatus for producing a heat transfer medium according to claim 7, wherein: an oil filling hole (52) is formed in the fixing ring (5), and the oil filling hole (52) is communicated with the oil filling groove (217).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022633617.0U CN213699878U (en) | 2020-11-13 | 2020-11-13 | Production device for heat-conducting medium |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022633617.0U CN213699878U (en) | 2020-11-13 | 2020-11-13 | Production device for heat-conducting medium |
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CN213699878U true CN213699878U (en) | 2021-07-16 |
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CN202022633617.0U Active CN213699878U (en) | 2020-11-13 | 2020-11-13 | Production device for heat-conducting medium |
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