CN219868767U - Efficient cooling mechanism for silanization object reaction - Google Patents

Efficient cooling mechanism for silanization object reaction Download PDF

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Publication number
CN219868767U
CN219868767U CN202321269713.9U CN202321269713U CN219868767U CN 219868767 U CN219868767 U CN 219868767U CN 202321269713 U CN202321269713 U CN 202321269713U CN 219868767 U CN219868767 U CN 219868767U
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main body
cooling
filter screen
main part
cooler
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CN202321269713.9U
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Chinese (zh)
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韩朋
江雪峰
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Jiangsu Hankuo Biological Co ltd
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Jiangsu Hankuo Biological Co ltd
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Abstract

The utility model discloses a high-efficiency cooling mechanism for silanization reaction, which comprises a cooler main body, wherein the cooler main body comprises a fixed base, a cooling main body, an inlet, an outlet and a filter screen, the inlet and the outlet are respectively arranged at two ends of the cooling main body, and the fixed base is welded and fixed at two ends of the lower surface of the cooling main body; through designing clean processing mechanism, can be when cooler main part cooling treatment that intakes, when the filter screen filters surface accumulation dirt, handheld hand wheel drives pivot and twists reverse gear A and rotates, and drive twists reverse gear B and connecting axle rotation when twists reverse gear A rotates, and drive the rotation brush and rotate at the surface of filter screen when the connecting axle rotates, and will rotate the brush and clean processing when the surface rotation of filter screen, consequently the surface cleaning of filter screen is handled regularly, and easy stable cooling treatment uses of intaking to the inside of cooler main part, and improve cooler main part clean processing effect and high-efficient cooling treatment effect when using.

Description

Efficient cooling mechanism for silanization object reaction
Technical Field
The utility model belongs to the technical field of coolers, and particularly relates to a high-efficiency cooling mechanism for silanization reaction.
Background
The silane is a silicon substituted analogue of alkane, and is easy to cause reaction equipment to generate heat during the reaction treatment of the silanization, the silanization reaction equipment needs to be cooled, a cooler is usually arranged for cooling and using, the existing cooler is equipment for matching and cooling and using the silanization reaction equipment, the equipment is fixedly arranged and used during the use, water is smoothly fed and stably filtered, and the cleaning treatment effect and the efficient cooling treatment effect of the cooler during the use are improved;
the existing cooler is directly connected with silanization thing reaction equipment when using, and be convenient for to its reaction equipment cooling treatment, and by import to inside water intaking when cooling treatment, and filter dirty processing through the filter screen when intaking, and when the inside cooling of intaking to the cooler for a long time uses, cause the surface of filter screen to easily accumulate too much dirty, and be inconvenient for the dirty clean processing to the filter screen surface, make the cooler influence when using to inside water intaking, consequently, influence its cooling treatment effect of intaking when installing the cooling with silanization thing reaction and using, and reduce the problem of cooler to silanization thing reaction equipment's cooling treatment effect, for this reason we propose a silanization thing reaction to use high-efficient cooling mechanism.
Disclosure of Invention
The utility model aims to provide a high-efficiency cooling mechanism for silanization reaction, which solves the problems that in the background technology, when water is introduced into the interior of a cooler for a long time to cool and use, excessive dirt is easily accumulated on the surface of a filter screen, dirt on the surface of the filter screen is inconvenient to clean, and the cooler is influenced to use water entering the interior when in use, so that the cooling effect of the cooler on the water entering when the cooler and silanization reaction are installed and cooled is influenced, and the cooling effect of the cooler on silanization reaction equipment is reduced.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a silanization thing is high-efficient cooling mechanism for reaction, includes the cooler main part, the cooler main part includes unable adjustment base, cooling main part, import, export and filter screen, the import with the export sets up respectively at the both ends of cooling main part, unable adjustment base welded fastening is at the lower surface both ends of cooling main part, the filter screen sets up the inside one end at the cooling main part, still be provided with in the cooler main part:
the cleaning treatment mechanism comprises a rotation adjusting assembly, a driving connecting assembly and a cleaning assembly, and is arranged at the end part of the cooling main body and positioned on the surface of the filter screen;
buffering protection mechanism, and this buffering protection mechanism protection subassembly and buffering subassembly, buffering protection mechanism sets up the surface at the cooling main part.
Preferably, the rotation adjusting component comprises a rotating shaft rotatably connected to one end inside the cooling main body, a hand wheel is arranged on the surface of the end part of the rotating shaft, which is located on the cooling main body, and a torsion gear A is arranged at the bottom end of the rotating shaft.
Preferably, the driving connection assembly comprises a connection frame fixed at one end inside the cooling main body in a welded mode, the rotating shaft penetrates through the connection frame, the end portion of the connection frame is rotatably connected with a connection shaft, a torsion gear B is arranged at the end portion of the connection shaft, and the torsion gear B is connected with the torsion gear A in a meshed mode.
Preferably, the connecting shaft penetrates through the end part of the connecting frame, and the rotating shaft and the connecting shaft are rotationally connected with the torsion gear B through the torsion gear A.
Preferably, the cleaning assembly comprises a rotating brush arranged on the surface of the filter screen, and the middle position of the rotating brush is fixedly connected with the end part of the connecting shaft through a screw.
Preferably, the protection assembly comprises a protection plate arranged on the outer surface of the cooling main body, and the protection plate is of an arc-shaped structure.
Preferably, the buffer assembly comprises an elastic plate fixedly installed at the joint of the inner surface of the guard plate and the surface of the cooling main body through bolts, and the guard plate is in buffer connection with the surface of the cooling main body through the elastic plate.
Compared with the prior art, the utility model has the beneficial effects that:
through designing clean processing mechanism, can be when cooler main part cooling treatment that intakes, when the filter screen filters surface accumulation dirt, handheld hand wheel drives pivot and twists reverse gear A and rotates, and drive twists reverse gear B and connecting axle rotation when twists reverse gear A rotates, and drive the rotation brush and rotate at the surface of filter screen when the connecting axle rotates, and will rotate the brush and clean processing when the surface rotation of filter screen, consequently the surface cleaning of filter screen is handled regularly, and easy stable cooling treatment uses of intaking to the inside of cooler main part, and improve cooler main part clean processing effect and high-efficient cooling treatment effect when using.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of a part of a cross-sectional structure of a filter screen and a stationary base of the present utility model;
FIG. 3 is an enlarged schematic view of the portion A of FIG. 2 according to the present utility model;
FIG. 4 is a schematic side view of the cooling body, guard plate and spring plate of the present utility model;
in the figure: 100. a cooler body; 101. a fixed base; 102. a cooling body; 1021. a guard board; 1022. an elastic plate; 103. an inlet; 104. an outlet; 105. a filter screen; 1051. a hand wheel; 1052. a rotating shaft; 1053. a rotating brush; 1054. a connecting frame; 1055. a torsion gear A; 1056. a connecting shaft; 1057. torsion gear B.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1 to 4, the present utility model provides a technical solution: the utility model provides a silanization thing is high-efficient cooling mechanism for reaction, including cooler main part 100, cooler main part 100 includes unable adjustment base 101, cooling main part 102, import 103, export 104 and filter screen 105, import 103 and export 104 set up respectively at the both ends of cooling main part 102, unable adjustment base 101 welded fastening is at the lower surface both ends of cooling main part 102, filter screen 105 sets up the inside one end at cooling main part 102, when using cooler main part 100 fixed mounting back, install import 103 with external inlet tube, export 104 and drain pipe, install cooler main part 100 with external reaction equipment again, consequently in the inside water intaking to cooler main part 100 and filter the processing by filter screen 105, and cooler main part 100 intaking is to reaction equipment cooling treatment, still be provided with on the cooler main part 100:
the cleaning treatment mechanism comprises a rotation adjusting component, a driving connecting component and a cleaning component, the cleaning treatment mechanism is arranged on the surface of the filter screen 105 at the end part of the cooling main body 102, the cooler main body 100 can be used for filtering water from the inlet 103 to the inside of the cooling main body 102 through the filter screen 105, the cleaning treatment mechanism is used for cleaning the surface of the filter screen 105, the stable cooling treatment is carried out on the inside of the cooler main body 100, and the cleaning treatment effect and the efficient cooling treatment effect of the cooler main body 100 are improved when the cooler is used.
In order to facilitate the rotation adjustment and use through the rotation adjustment assembly and facilitate the rotation cleaning process, in this embodiment, preferably, the rotation adjustment assembly includes a rotating shaft 1052 rotatably connected to one end inside the cooling main body 102, a hand wheel 1051 is disposed on the surface of the cooling main body 102 at the end of the rotating shaft 1052, and a torsion gear a1055 disposed at the bottom end of the rotating shaft 1052, the hand wheel 1051 drives the rotating shaft 1052 to rotate with the torsion gear a1055 for adjustment and use, in order to facilitate the installation of a rotating brush 1053 and the rotation cleaning process through the driving connection assembly, the driving connection assembly includes a connecting frame 1054 welded to one end inside the cooling main body 102, the rotating shaft 1052 penetrates through the inside of the connecting frame 1054, the end of the connecting frame 1054 is rotatably connected with a connecting shaft 1056, the end of the connecting shaft 1056 is provided with a torsion gear B1057, the torsion gear B1057 is engaged with the torsion gear a1055, and the connecting shaft 1056 is driven to rotate when the torsion gear a1055 rotates, and the connecting shaft 1056 is driven to rotate for the rotation adjustment and use, and the rotating brush 1053 is made to rotate with the connecting shaft 1056 through the connecting shaft 1056 and the connecting shaft 1056.
In order to facilitate the surface cleaning treatment of the filter screen 105 by the cleaning assembly and facilitate the cleaning and filtering treatment, in this embodiment, preferably, the cleaning assembly includes a rotating brush 1053 disposed on the surface of the filter screen 105, and the middle position of the rotating brush 1053 is fixedly connected with the end of the connecting shaft 1056 by a screw, so that the connecting shaft 1056 is rotated to drive the rotating brush 1053 to rotate for cleaning treatment.
Buffer protection mechanism, and this buffer protection mechanism protection subassembly and buffer assembly, buffer protection mechanism set up in the surface of cooling main part 102, can use cooler main part 100 fixed mounting cooling, buffer protection mechanism to the surface of cooler main part 100 by buffer protection mechanism this moment uses, extension cooler main part 100's life.
In order to be convenient for protect when using through the protection subassembly and use, and increase of service life, in this embodiment, preferably, the protection subassembly is including setting up the backplate 1021 at cooling main part 102 surface, and backplate 1021 is arc structure, in order to be convenient for protect backplate 1021 buffering when receiving the striking through buffering protection subassembly, and be convenient for protect and use, buffering subassembly includes through screw fixed mounting at backplate 1021 internal surface and cooling main part 102 surface junction's elastic plate 1022, and backplate 1021 and cooling main part 102's surface pass through elastic plate 1022 buffer connection, be convenient for by elastic plate 1022 to backplate 1021 buffering protection use.
The working principle and the using flow of the utility model are as follows: in the efficient cooling mechanism for the silylation agent reaction, when the efficient cooling mechanism is used, the cooler main body 100 is fixedly installed by directly contacting the fixing base 101 with the installation surface, and when the efficient cooling mechanism is used after the cooler main body 100 is fixedly installed, the inlet 103 is installed with an external water inlet pipe, the outlet 104 is installed with a water outlet pipe, and the cooler main body 100 is installed with external reaction equipment again, so that water continuously flows into the cooler main body 100 and is filtered by the filter screen 105, and the cooler main body 100 is subjected to cooling treatment on the reaction equipment;
then, when the cooler main body 100 is subjected to water cooling treatment and dirt is accumulated on the surface of the filter screen 105, the hand-held hand wheel 1051 drives the rotating shaft 1052 and the torsion gear A1055 to rotate, and drives the torsion gear B1057 and the connecting shaft 1056 to rotate when the torsion gear A1055 rotates, and drives the rotating brush 1053 to rotate on the surface of the filter screen 105 when the connecting shaft 1056 rotates, and the rotating brush 1053 is subjected to cleaning treatment when the surface of the filter screen 105 rotates, so that the surface of the filter screen 105 is cleaned regularly, the stable water cooling treatment is easily performed in the cooler main body 100, and the cleaning treatment effect and the efficient cooling treatment effect of the cooler main body 100 are improved when the cooler is used;
finally, when the silanization object reaction equipment is cooled after the cooler main body 100 is fixedly installed, the cooler main body 100 is directly fixedly installed to expose outside for use, when the cooler main body 100 is fixedly installed to be used outside, at the moment, when the surface of the cooler main body 100 is impacted by an external object, the object is directly impacted on the surface of the guard plate 1021, the guard plate 1021 is buffered by the elastic plate 1022 in an elastic connection mode, the object impacted by the external object rebounds, the impact is reduced, the protection using effect of the cooler main body 100 when the cooler main body 100 is installed to be used outside is improved, and the service life of the cooler main body 100 when the cooler is used is prolonged.
Although embodiments of the present utility model have been shown and described in detail with reference to the foregoing detailed description, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations may be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a silanization thing is high-efficient cooling mechanism for reaction, includes cooler main part (100), cooler main part (100) include unable adjustment base (101), cooling main part (102), import (103), export (104) and filter screen (105), import (103) with export (104) set up respectively at the both ends of cooling main part (102), unable adjustment base (101) welded fastening is at the lower surface both ends of cooling main part (102), inside one end at cooling main part (102) is set up to filter screen (105), its characterized in that: the cooler main body (100) is also provided with:
the cleaning treatment mechanism comprises a rotation adjusting assembly, a driving connecting assembly and a cleaning assembly, and is arranged at the end part of the cooling main body (102) and positioned on the surface of the filter screen (105);
and the buffer protection mechanism is used for protecting the assembly and the buffer assembly and is arranged on the surface of the cooling main body (102).
2. The efficient cooling mechanism for silylation reaction of claim 1, wherein: the rotation adjusting assembly comprises a rotating shaft (1052) rotatably connected to one end inside the cooling main body (102), a hand wheel (1051) is arranged on the surface of the end portion of the rotating shaft (1052) located on the cooling main body (102), and a torsion gear A (1055) is arranged at the bottom end of the rotating shaft (1052).
3. The efficient cooling mechanism for silylation reaction according to claim 2, wherein: the driving connection assembly comprises a connecting frame (1054) which is welded and fixed at one end inside the cooling main body (102), the rotating shaft (1052) penetrates through the connecting frame (1054), the end part of the connecting frame (1054) is rotationally connected with a connecting shaft (1056), the end part of the connecting shaft (1056) is provided with a torsion gear B (1057), and the torsion gear B (1057) is mutually meshed and connected with the torsion gear A (1055).
4. The efficient cooling mechanism for silylation reaction of claim 3, wherein: the connecting shaft (1056) penetrates through the end part of the connecting frame (1054), and the rotating shaft (1052) and the connecting shaft (1056) are rotatably connected with the torsion gear B (1057) through the torsion gear A (1055).
5. The efficient cooling mechanism for silylation reaction of claim 3, wherein: the cleaning assembly comprises a rotating brush (1053) arranged on the surface of the filter screen (105), and the middle position of the rotating brush (1053) is fixedly connected with the end part of the connecting shaft (1056) through a screw.
6. The efficient cooling mechanism for silylation reaction of claim 1, wherein: the protection assembly comprises a protection plate (1021) arranged on the outer surface of the cooling main body (102), and the protection plate (1021) is of an arc-shaped structure.
7. The efficient cooling mechanism for silanization reaction according to claim 6, wherein: the buffer assembly comprises an elastic plate (1022) fixedly arranged at the joint of the inner surface of the guard plate (1021) and the surface of the cooling main body (102) through screws, and the guard plate (1021) is in buffer connection with the surface of the cooling main body (102) through the elastic plate (1022).
CN202321269713.9U 2023-05-24 2023-05-24 Efficient cooling mechanism for silanization object reaction Active CN219868767U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321269713.9U CN219868767U (en) 2023-05-24 2023-05-24 Efficient cooling mechanism for silanization object reaction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321269713.9U CN219868767U (en) 2023-05-24 2023-05-24 Efficient cooling mechanism for silanization object reaction

Publications (1)

Publication Number Publication Date
CN219868767U true CN219868767U (en) 2023-10-20

Family

ID=88344711

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321269713.9U Active CN219868767U (en) 2023-05-24 2023-05-24 Efficient cooling mechanism for silanization object reaction

Country Status (1)

Country Link
CN (1) CN219868767U (en)

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