Desalting device for development of epoxy diluent

By designing a desalination device for epoxy diluent development, and utilizing the combination of ion exchange resin and stirring fan blades, along with a bevel gear structure to improve stirring efficiency, the problem of salt influence in epoxy diluent production was solved, achieving efficient precipitation of salt ions and ensuring product quality and performance.

CN223628652UActive Publication Date: 2025-12-05HENAN NEWMET TECH CO LTD
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Patent Information

Application Number
CN202423246002.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-05
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Salt may be mixed into the epoxy diluent during the production process, affecting the purity and performance of the product.

Method used

A desalination device for epoxy diluent development was designed. By combining the ion exchange resin and the stirring blades in the stirring tank, the ion exchange resin comes into contact with the epoxy resin diluent, precipitating salt ions. Combined with the bevel gear and drive motor, the rotating shaft is driven to oscillate back and forth, thereby improving the stirring efficiency.

Benefits of technology

It effectively improves the precipitation efficiency of salt ions, ensuring the quality and performance of epoxy diluent.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a desalting device for development of an epoxy diluent, which comprises a base, a mixing drum arranged at the upper end of the base, an end cover arranged at the top end of the mixing drum, a linkage sleeve rotationally arranged in the end cover, a rotating shaft arranged in the linkage sleeve, a fixed shaft arranged in the rotating shaft and rotationally connected with the linkage sleeve. The axis of the fixed shaft is perpendicular to the axis of the rotating shaft, a swing structure is arranged in the linkage sleeve, and a motor support is arranged at the top end of the end cover. The utility model relates to the technical field of epoxy diluent desalination. According to the desalting device for development of the epoxy diluent, a driving structure drives a rotating shaft to rotate, so that a storage barrel and stirring fan blades at the bottom end of the rotating shaft rotate in the storage barrel, and the epoxy diluent can enter the storage barrel through a through hole to be in contact with ion exchange resin; and separating out salt ions in the epoxy resin diluent through ion exchange resin.
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Description

TECHNICAL FIELD

[0001] The utility model relates to epoxy diluent desalination technical field especially is epoxy diluent development desalination device. BACKGROUND

[0002] Epoxy diluent is mixed with base resin, which can reduce the viscosity of the curing system, increase the fluidity, prolong the service life, and facilitate large-area construction. It improves the operability without affecting the basic properties of the cured product. It is convenient for casting, pouring, bonding, sealing, impregnation and other applications.

[0003] Epoxy diluent may contain salt during production, which not only affects the purity of the product, but also may adversely affect the performance of the product.

[0004] In order to ensure the quality and performance of epoxy diluent development, desalination device is needed to treat epoxy diluent during production to ensure that the quality and performance of the product meet the requirements. UTILITY MODEL CONTENT

[0005] In view of the deficiencies in the prior art, the utility model aims to provide a desalination device for epoxy diluent development to solve the technical problems mentioned in the background.

[0006] The above technical purpose of the utility model is realized by the following technical scheme:

[0007] A desalination device for epoxy diluent development, comprising a base, a stirring drum is arranged at the upper end of the base, an end cover is arranged at the top end of the stirring drum, a linkage sleeve is rotatably arranged in the end cover, a rotating shaft is arranged in the linkage sleeve, a fixed shaft is arranged in the rotating shaft, the fixed shaft is rotatably connected with the linkage sleeve, the axis of the fixed shaft is perpendicular to the axis of the rotating shaft, an oscillating structure is arranged in the linkage sleeve, a motor bracket is arranged at the top end of the end cover, and a driving structure is arranged at the top end of the motor bracket.

[0008] The bottom end of the rotating shaft is provided with a storage cylinder, a plurality of stirring vanes are arranged on the outer peripheral wall of the storage cylinder, and a cavity communicating with the storage cylinder is arranged in the stirring vanes. The outer peripheral wall of the storage cylinder and the stirring vanes are provided with a plurality of uniformly distributed through holes, the diameter of the through holes is much smaller than the diameter of the ion exchange resin, and the storage cylinder and the cavity are loaded with ion exchange resin.

[0009] Further, the swing structure comprises bevel gears and a driving motor, the two bevel gears are fixedly arranged at two ends of the fixed shaft respectively and oppositely arranged, the driving motor is fixedly installed on the inner wall of the connecting sleeve, a driving cone is fixedly installed at the motor shaft of the driving motor, a plurality of transmission teeth are arranged on the outer peripheral wall of the driving cone and engaged with the bevel gears.

[0010] Further, the driving structure comprises a stirring motor, the stirring motor is fixedly connected with the motor support, and a hexagonal ball head is fixedly installed at the bottom end of the motor shaft of the stirring motor.

[0011] Further, a hexagonal hole matched with the hexagonal ball head is formed at the top end of the rotating shaft.

[0012] Further, a top groove is formed at the top end of the storage cylinder, and a storage cover is arranged in the top groove.

[0013] Further, a plurality of protruding rods are arranged on the outer peripheral wall of the end cover, and the distance between adjacent protruding rods is equal.

[0014] In summary, the utility model has at least one of the following beneficial technical effects:

[0015] 1. The desalination device for developing epoxy diluent drives the rotating shaft to rotate through the driving structure, so that the storage cylinder at the bottom end of the rotating shaft and the stirring fan blade rotate in the storage cylinder, the epoxy resin diluent can enter the inside of the storage cylinder through the through hole and contact the ion exchange resin, and then the ion exchange resin can precipitate the salt ions in the epoxy resin diluent;

[0016] 2. The desalination device for developing epoxy diluent drives the driving cone to rotate through the driving motor, so that the transmission teeth drive the bevel gears to rotate, since the number of transmission teeth is small, the driving cone and the transmission teeth can only drive one of the bevel gears to rotate, and since the two bevel gears are oppositely arranged, the fixed shaft can be effectively driven to reciprocate during the continuous rotation of the driving cone, so as to achieve the effect of reciprocating swing of the rotating shaft, improve the stirring efficiency of the epoxy resin diluent, and improve the precipitation efficiency of the salt ions. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to these drawings without creative labor.

[0018] Figure 1The utility model discloses a kind of structure schematic diagram of desalination device for epoxy diluent development.

[0019] Figure 2 The utility model discloses a kind of internal structure schematic diagram of desalination device for epoxy diluent development.

[0020] Figure 3 The utility model discloses a kind of structure schematic diagram of swing structure and storage cylinder of desalination device for epoxy diluent development.

[0021] Figure 4 The utility model discloses a kind of structure schematic diagram of swing structure of desalination device for epoxy diluent development Figure 1 .

[0022] Figure 5 The utility model discloses a kind of structure schematic diagram of swing structure of desalination device for epoxy diluent development Figure 2 .

[0023] Figure 6 The utility model discloses a kind of structure schematic diagram of drive structure of desalination device for epoxy diluent development.

[0024] In the drawing, 1, base; 2, stirring cylinder; 3, end cover; 4, linkage sleeve; 5, rotating shaft; 6, fixed shaft; 7, swing structure; 71, bevel gear; 72, drive motor; 73, drive cone; 74, transmission tooth; 8, motor support; 9, drive structure; 91, stirring motor; 92, hexagonal ball head; 93, hexagonal hole; 10, storage cylinder; 11, stirring fan blade; 12, cavity; 13, top groove; 14, storage cover; 15, convex rod. DETAILED DESCRIPTION

[0025] The utility model makes further detailed description in combination with drawing.

[0026] Embodiment:

[0027] Reference Figure 1 - Figure 6 The utility model discloses a kind of desalination device for epoxy diluent development, including base 1, the upper end of base 1 is provided with stirring cylinder 2, the top of stirring cylinder 2 is provided with end cover 3, end cover 3 is rotatably arranged with linkage sleeve 4 in its inside, linkage sleeve 4 is provided with rotating shaft 5 in its inside, rotating shaft 5 is provided with fixed shaft 6 in its inside, fixed shaft 6 is rotatably connected with linkage sleeve 4, the axis of fixed shaft 6 is perpendicular to the axis of rotating shaft 5, linkage sleeve 4 is provided with swing structure 7 in its inside, the top of end cover 3 is provided with motor support 8, motor support 8 is provided with drive structure 9 in its top;

[0028] The bottom end of the rotating shaft 5 is provided with a storage cylinder 10, the outer peripheral wall of the storage cylinder 10 is provided with a plurality of stirring vanes 11, and the inside of the stirring vanes 11 is provided with a cavity 12 in communication with the storage cylinder 10; the outer peripheral walls of the storage cylinder 10 and the stirring vanes 11 are each provided with a plurality of uniformly distributed through holes, the diameters of the through holes are much smaller than the diameters of the ion exchange resins, and the inside of the storage cylinder 10 and the cavity 12 are each loaded with ion exchange resins.

[0029] In the embodiment, when in use, the storage cylinder 10 is filled with ion exchange resins, and the epoxy resin diluent that needs to be desalted is filled in the inside of the stirring cylinder 2; the end cover 3 is buckled on the top end of the stirring cylinder 2, and the storage cylinder 10 and the stirring vanes 11 are inserted into the inside of the epoxy resin diluent;

[0030] The rotating shaft 5 is driven to rotate by the driving structure 9, so that the storage cylinder 10 and the stirring vanes 11 at the bottom end of the rotating shaft 5 rotate in the inside of the storage cylinder 10; and the rotating shaft 5 is driven to rotate in the process of rotating by the setting of the swing structure 7, the stirring efficiency is improved, the epoxy resin diluent can enter the inside of the storage cylinder 10 through the through holes and contact the ion exchange resins, and then the salt ions in the epoxy resin diluent are precipitated by the ion exchange resins.

[0031] In the further preferable embodiment of the utility model, as shown in Figures 1-6 The swing structure 7 includes bevel gears 71 and a driving motor 72, the bevel gears 71 are provided with two, the two bevel gears 71 are fixedly arranged at the two ends of the fixed shaft 6 and oppositely arranged, the driving motor 72 is fixedly installed on the inner wall of the communication sleeve, a driving cone 73 is fixedly installed at the motor shaft of the driving motor 72, a plurality of transmission teeth 74 are arranged on the outer peripheral wall of the driving cone 73, and the transmission teeth 74 are engaged with the bevel gears 71.

[0032] In the embodiment, the driving cone 73 is driven to rotate by the driving motor 72, so that the transmission teeth 74 drive the bevel gears 71 to rotate, because the number of the transmission teeth 74 is small, as shown in Figure 3 、 Figure 4 and Figure 5 The driving cone 73 and the transmission teeth 74 can only drive one of the bevel gears 71 to rotate, and because the two bevel gears 71 are oppositely arranged, the fixed shaft 6 can be effectively driven to reciprocate in the process of continuous rotation of the driving cone 73, so as to achieve the effect of reciprocating swing of the rotating shaft 5, so as to improve the stirring efficiency of the epoxy resin diluent, and thus the precipitation efficiency of the salt ions.

[0033] In the further preferable embodiment of the utility model, as shown in Figures 1-6As shown, the driving structure 9 comprises a stirring motor 91, the stirring motor 91 is fixedly connected with the motor support 8, and the motor shaft bottom end of the stirring motor 91 is fixedly installed with a hexagonal ball head 92.

[0034] The top end of the rotating shaft 5 is provided with a hexagonal hole 93 matched with the hexagonal ball head 92.

[0035] In the embodiment, the motor shaft of the stirring motor 91 and the hexagonal hole 93 at the top end of the rotating shaft 5 form a universal transmission joint through the setting of the hexagonal ball head 92, so that the rotating shaft 5 is driven to rotate by the stirring motor 91.

[0036] In further preferable embodiments of the utility model, as shown in the drawings, Figures 1-6 The top end of the storage cylinder 10 is provided with a top groove 13, and the inside of the top groove 13 is provided with a storage cover 14.

[0037] In the embodiment, the top groove 13 facilitates the replacement of the ion adsorption resin inside the storage cylinder 10, and the storage cover 14 is used for closing the storage cylinder 10.

[0038] In further preferable embodiments of the utility model, as shown in the drawings, Figures 1-6 The outer peripheral wall of the end cover 3 is provided with a plurality of protruding rods 15, and the distance between adjacent protruding rods 15 is equal.

[0039] In the embodiment, the setting of the protruding rod 15 facilitates the manual removal of the end cover 3.

[0040] The embodiments of the specific embodiment are preferable embodiments of the utility model, and are not limited to the protection scope of the utility model, so that: equivalent changes made according to the structure, shape and principle of the utility model should be covered in the protection scope of the utility model.

Claims

1. A desalination device for epoxy diluent development, characterized by, The utility model relates to a kind of ion exchange resin stirring device, including base (1), the upper end of base (1) is provided with stirring cylinder (2), the top of stirring cylinder (2) is provided with end cover (3), the inside rotation of end cover (3) is provided with linkage sleeve (4), the inside of linkage sleeve (4) is provided with rotating shaft (5), the inside of rotating shaft (5) is provided with fixed shaft (6), fixed shaft (6) is rotatably connected with linkage sleeve (4), the axis of fixed shaft (6) is perpendicular to the axis of rotating shaft (5), the inside of linkage sleeve (4) is provided with swing structure (7), the top of end cover (3) is provided with motor support (8), the top of motor support (8) is provided with drive structure (9); The bottom of rotating shaft (5) is provided with storage cylinder (10), the outer peripheral wall of storage cylinder (10) is provided with a plurality of stirring vanes (11), and the inside of the stirring vane (11) is provided with a cavity (12) communicated with the storage cylinder (10), the outer peripheral wall of the storage cylinder (10) and the stirring vane (11) is provided with a plurality of uniformly distributed through holes, the inside of the storage cylinder (10) and the cavity (12) is loaded with ion exchange resin.

2. The desalination device for developing an epoxy diluent according to claim 1, characterized by, The swing structure (7) includes bevel gears (71) and drive motors (72), the bevel gears (71) are provided with two, the two bevel gears (71) are respectively arranged at both ends of the fixed shaft (6), and the two bevel gears (71) are oppositely arranged, the drive motor (72) is fixedly installed on the inner wall of the communication sleeve, the motor shaft of the drive motor (72) is fixedly installed with a drive cone (73), the outer peripheral wall of the drive cone (73) is provided with a plurality of transmission teeth (74), and the transmission teeth (74) are engaged with the bevel gears (71).

3. The desalination device for developing an epoxy diluent according to claim 2, characterized by, The drive structure (9) includes a stirring motor (91), the stirring motor (91) is fixedly connected with the motor support (8), and the motor shaft bottom end of the stirring motor (91) is fixedly installed with a hexagonal ball head (92).

4. The desalination device for developing an epoxy diluent according to claim 3, characterized by, The top of the rotating shaft (5) is provided with a hexagonal hole (93) matched with the hexagonal ball head (92).

5. The desalination device for developing an epoxy diluent according to claim 4, characterized by The top of the storage cylinder (10) is provided with a top groove (13), and the inside of the top groove (13) is provided with a storage cover (14).

6. The desalination device for developing an epoxy diluent according to claim 5, characterized by The outer peripheral wall of the end cover (3) is provided with a plurality of protruding rods (15), and the distance between adjacent protruding rods (15) is equal.