Transversely-arranged ultralow-temperature water vapor trapping pump

By designing a horizontally arranged cryogenic water vapor capture pump, and utilizing components such as an assembly chassis, outer frame, and built-in assembly rack, the problems of inconvenient horizontal layout and mobile support in existing devices are solved, enabling convenient assembly and operation, and making it suitable for environments with insufficient height.

CN223716793UActive Publication Date: 2025-12-26SHANGHAI SHENGBEIKE REFRIGERATION TECH DEV
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Patent Information

Application Number
CN202423278481.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-26
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing cryogenic water vapor capture pumps are not convenient for horizontal layout assembly and mobile support assembly, which affects assembly placement and subsequent use.

Method used

A horizontally arranged cryogenic water vapor capture pump is designed, including a cryogenic water vapor capture system, an assembly chassis, an outer frame, an internal assembly rack, universal casters, and support studs. It allows for horizontal assembly and movable support as needed. Modular adjustment is achieved through the cooperation of the outer frame and the internal assembly rack. The side door facilitates maintenance, and the support studs and universal casters facilitate positioning and movement.

Benefits of technology

It enables convenient horizontal layout assembly and movement, improves the ease of assembly and use, facilitates placement when height is insufficient, and is convenient for inspection and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of trapping pump assembly assistance, in particular to a transversely-arranged ultralow-temperature water vapor trapping pump which comprises an ultralow-temperature water vapor trapping system, and the ultralow-temperature water vapor trapping system internally comprises but is not limited to a compressor, an exchanger, a filter, a separator and a valve. An assembly chassis is supported at the bottom of the ultralow-temperature water vapor trapping system, an outer cover frame is assembled above the assembly chassis in a covering mode, a built-in assembly frame is assembled in the outer cover frame in a supporting mode, universal moving wheels are assembled at the corners of the bottom of the assembly chassis, and supporting studs are arranged at the corners of the side edges of the assembly chassis in a supporting and colliding mode. Side doors are hinged to the front side and the rear side of the outer cover frame. According to the utility model, the machine body can be formed through transverse layout and assembly according to use requirements, and meanwhile, the machine body can be conveniently assembled, supported and moved according to the use requirements, so that the use and the operation are more convenient, and the three-dimensional cabinet can be conveniently assembled and placed when the height is insufficient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of trapping pump assembly, specifically to a transversely -arranged ultra -low temperature water vapor trapping pump. BACKGROUND

[0002] In many industrial and scientific research fields, the demand for low humidity environment is increasing, and the ultra -low temperature water vapor trapping pump emerges as the times require, becomes the key equipment for realizing high -efficient dehumidification and water vapor recovery, and the core working principle of ultra -low temperature water vapor trapping pump is based on the condensation characteristics of gas. Through the refrigeration system, the temperature in the trapping pump is reduced to a very low level, usually can reach -80 DEG C or even lower. When the gas containing water vapor enters the low temperature area, the water vapor will quickly condense into ice crystals and adhere to the condensing surface inside, so as to realize the purpose of separating water vapor from mixed gas. Other gases that are not condensed can pass through the trapping pump smoothly, achieving the dual effect of dry gas and trapping water vapor, the ultra -low temperature water vapor trapping pump is usually composed of refrigeration system, trapping cavity, vacuum system, control system and auxiliary components etc.

[0003] For this, like the announcement number for CN204918757U discloses a kind of novel ultra -low temperature water vapor trapping pump, it is characterized in that, 5 stage refrigeration components, defrosting component and buffer component are equipped in pump, the first port of 5 stage refrigeration components is connected with the high-pressure end bellow of compressor through the water-cooled exchanger, dry filter of series connection, second port is sequentially connected with refrigeration solenoid valve, refrigeration hand valve through copper pipe, and is circulated to refrigeration component through the loop pipe with loop hand valve, third port is connected with the low-pressure end bellow of compressor through copper pipe, above form first overall loop;The defrosting component forms second overall loop;The buffer component forms third overall loop;

[0004] However, the existing device is not convenient for transverse layout assembly and mobile support assembly according to needs, which affects assembly placement and subsequent use.

[0005] Therefore, in order to solve the above problems, a kind of ultra -low temperature water vapor trapping pump of transversely -arranged is provided. Utility model content

[0006] The utility model aims at providing a kind of ultra -low temperature water vapor trapping pump of transversely -arranged to solve the problems that the existing device is not convenient for transverse layout assembly and mobile support assembly according to needs, which affects assembly placement and subsequent use as described in the above background.

[0007] To achieve the above object, the utility model provides the following technical scheme: A kind of transverse layout's ultra-low temperature water vapor trapping pump, including ultra-low temperature water vapor trapping system, the internal composition of the ultra-low temperature water vapor trapping system includes but is not limited to compressor, exchanger, filter, separator and valve, the bottom of the ultra-low temperature water vapor trapping system is supported with assembly base plate, and assembly base plate surface is fixed with assembly bottom plate, the top of the assembly base plate is covered with the assembly of outer cover frame, the surface of the outer cover frame is equipped with the control panel electrically connected with ultra-low temperature water vapor trapping system, the inside of the outer cover frame is supported and is equipped with built-in assembly frame, the corner of the bottom of the assembly base plate is equipped with universal mobile wheel, the corner of the side edge of the assembly base plate is supported and is broken with support stud, the front and rear sides of the outer cover frame are hinged with side door.

[0008] As a further embodiment of the present application, the two sides of the outer cover frame are equipped with side plates through screws, and the inside of the side plates is uniformly provided with through holes, the top of the outer cover frame is covered with a top plate, and the control panel is fixed on the surface of the top plate.

[0009] As a further embodiment of the present application, the built-in assembly frame includes limiting slide column, four groups of the limiting slide column are fixed on the inner walls of the two sides of the outer cover frame at the upper and lower ends, and the surface of the limiting slide column is sleeved with an assembly slide seat, a assembly slide rod is fixed between the left and right assembly slide seats, the surface of the assembly slide rod is sleeved with an assembly slide block and a valve support, the front and rear inner walls of the two assembly slide blocks are fixed with an assembly beam plate, the inside of the assembly beam plate and the valve support is uniformly provided with bolt holes, the side wall of the valve support, the side wall of the assembly slide block and the side wall of the assembly slide seat are threadedly inserted with limiting lock pins, and the inner ends of the three limiting lock pins respectively abut and are clamped on the outer walls of the limiting slide column and the assembly slide rod.

[0010] As a further embodiment of the present application, the support stud is threadedly inserted into the inside of the corner of the side edge of the assembly base plate, and the bottom of the support stud is equipped with a support foot, the top of the support stud is fixed with a torsion block, the top view of the torsion block is hexagonal, and the inside of the side edge of the torsion block is provided with a insertion hole.

[0011] As a further embodiment of the present application, the surface of the support stud is threadedly sleeved with a limiting nut, and the two limiting nuts are located above and below the assembly base plate, the lower end of the support stud is movably sleeved with an assembly clamping sleeve, the inside of the assembly clamping sleeve is provided with an inner clamping ring, the inner clamping ring is fixed on the lower end of the support stud, the side edge of the assembly clamping sleeve is fixed with the support foot through screws, and the side edge corner of the support foot is provided with an edge screw hole.

[0012] As a further embodiment of the present application, the side edge of the side door is hinged with the side wall of the outer cover frame through a hinge, and the inside of the side door is equipped with a transparent window, the inside of the inner wall of the outer cover frame is equipped with an inner abutting frame corresponding to the side door.

[0013] As a further step of this solution, a latch is integrally fixed on the outer side of the bottom of the side door, and a pin is inserted inside the latch. The bottom end of the pin is engaged inside the mounting base plate, and a recessed hole corresponding to the pin is opened inside the mounting base plate.

[0014] Compared with the prior art, the beneficial effects of this utility model are: this utility model is easy to assemble into a machine body by horizontal layout according to the needs of use, and is also easy to assemble, support and move according to the needs of use, making the operation more convenient and easy to assemble and place when the height is insufficient to place the three-dimensional cabinet.

[0015] 1. This utility model, by providing an outer frame, an assembly chassis, and an assembly base plate, facilitates the horizontal laying and support of the cryogenic water vapor capture system with the assistance of the built-in assembly frame, enabling the horizontal layout of the corresponding machine body. This makes assembly and use more convenient. Furthermore, with the assistance of the built-in assembly frame, it is easy to adjust according to the size and specifications of each module of the cryogenic water vapor capture system, making assembly and use more convenient. It is also convenient to assemble and place when the height is insufficient to place a three-dimensional cabinet. Through this design, the convenience and practicality of the horizontally laid cryogenic water vapor capture pump are improved.

[0016] 2. This utility model features omnidirectional casters, which, in conjunction with the mounting chassis and mounting base plate, facilitate the movement of the machine body. The support studs further enhance its positioning and support capabilities, while the support feet reinforce the locking and securing functions, making it more convenient to use. Furthermore, the side door allows for easy access to the internal cryogenic water vapor capture system for inspection and maintenance, making its use more convenient, stable, and safe. This design improves the convenience and practicality of the horizontally mounted cryogenic water vapor capture pump. Attached Figure Description

[0017] Figure 1 This is a frontal perspective three-dimensional schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a bottom-view perspective view of the overall structure of this utility model;

[0019] Figure 3 This is a three-dimensional side view sectional diagram of a partial structure of the outer frame of this utility model;

[0020] Figure 4 This is a three-dimensional front view of a portion of the structure of the side door of this utility model when it is opened;

[0021] In the figure: 100, ultra-low temperature water vapor trapping system; 110, assembly base plate; 120, assembly base plate; 130, cover frame; 131, side plate; 132, top plate; 140, control panel; 150, universal mobile wheel; 160, built-in assembly frame; 161, limiting slide column; 162, assembly slide; 163, assembly slide rod; 164, assembly slide block; 165, assembly beam plate; 166, valve support; 167, limiting lock pin; 170, support stud; 171, support foot; 172, assembly sleeve; 173, inner collar; 174, edge screw hole; 175, limiting nut; 176, torsion block; 177, jack; 180, side door; 181, hinge; 182, transparent window; 183, clamping tongue; 184, bolt; 185, recess; 186, inner abutting frame. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0023] Please refer to Figures 1-4 An embodiment provided by the present application:

[0024] An ultra-low temperature water vapor trapping pump with a transverse layout, comprising an ultra-low temperature water vapor trapping system 100, the internal components of the ultra-low temperature water vapor trapping system 100 include but are not limited to a compressor, an exchanger, a filter, a separator and a valve, the bottom of the ultra-low temperature water vapor trapping system 100 is supported by an assembly base plate 110, and the surface of the assembly base plate 110 is fixedly provided with an assembly base plate 120, the top of the assembly base plate 110 is covered with an assembly cover frame 130, the surface of the assembly cover frame 130 is assembled with a control panel 140 electrically connected with the ultra-low temperature water vapor trapping system 100, the inside of the assembly cover frame 130 is supported by a built-in assembly frame 160, the bottom corner of the assembly base plate 110 is assembled with a universal mobile wheel 150, the side corner of the assembly base plate 110 is supported by a support stud 170, and the front and rear sides of the assembly cover frame 130 are hingedly connected with side doors 180;

[0025] As a more detailed embodiment, the two sides of the assembly cover frame 130 are assembled with side plates 131 through screws, and the inside of the side plates 131 is uniformly provided with through holes, the top of the assembly cover frame 130 is covered with a top plate 132, and the control panel 140 is fixed on the surface of the central front side of the top plate 132, so as to facilitate the covering of the outside of the assembly cover frame 130, and facilitate the formation of a stable body and machine body;

[0026] As a more detailed embodiment of the present embodiment, the built-in assembly frame 160 comprises a limiting slide column 161, four groups of limiting slide columns 161 are fixed on the inner walls of the two sides of the outer cover frame 130 at the upper and lower ends, and the surface of the limiting slide column 161 is sleeved with an assembly sliding seat 162. A assembly sliding rod 163 is fixed between the left and right two assembly sliding seats 162, and the surface of the assembly sliding rod 163 is sleeved with an assembly sliding block 164 and a valve support 166. Two assembly sliding blocks 164 are fixed on the inner walls of the front and rear of the assembly sliding block 164. The assembly beam plate 165 and the valve support 166 are uniformly provided with bolt holes in the interiors. The side wall of the valve support 166, the side wall of the assembly sliding block 164 and the side wall of the assembly sliding seat 162 are all threadedly inserted with a limiting lock pin 167. The inner ends of the three limiting lock pins 167 are respectively abutted and clamped on the outer walls of the limiting slide column 161 and the assembly sliding rod 163. In use, the sliding of the assembly sliding seat 162, the assembly sliding block 164 and the valve support 166 can be adjusted according to the size of each module of the ultra-low temperature water vapor trapping system 100 as needed, so that the assembly of the built-in module is more convenient and efficient.

[0027] As a more detailed embodiment of the present embodiment, the support stud 170 is threadedly inserted into the inside of the side corner of the assembly base plate 110, and the support stud 170 is assembled with a support foot 171 at the bottom, and a torsion block 176 is fixed at the top of the support stud 170. The torsion block 176 has a hexagonal shape in plan view, and the inside of the side edge of the torsion block 176 is provided with a insertion hole 177. In assembly and use, the support stud 170 can be rotated and supported as needed, the limiting support of the universal mobile wheel 150 is facilitated, the body limiting stability is maintained, the surface of the support stud 170 is threadedly sleeved with a limiting nut 175, the two limiting nuts 175 are located above and below the assembly base plate 110, the lower end of the support stud 170 is movably sleeved with an assembly clamping sleeve 172, the inside of the assembly clamping sleeve 172 is provided with an inner clamping ring 173, the inner clamping ring 173 is fixed at the lower end of the support stud 170, the side edge of the assembly clamping sleeve 172 is fixed with the support foot 171 through screws, and the side corner of the support foot 171 is provided with a side screw hole 174. In use, the limiting support of the support stud 170 is facilitated, and the support stud 170 is reinforced and assembled on the support platform through the support foot 171. At the same time, in use, the torsion block 176 and the insertion hole 177 can be rotated with the help of corresponding tools, so that the operation is more convenient. When the screw is rotated, the support foot 171 is supported in cooperation with the support stud 170 through the cooperation of the assembly clamping sleeve 172 and the inner clamping ring 173.

[0028] As a more detailed embodiment of the present application, the side door 180 is hinged to the side wall of the outer cover frame 130 by a hinge 181, and a transparent window 182 is arranged inside the side door 180, and an inner abutting frame 186 corresponding to the side door 180 is arranged inside the inner wall of the outer cover frame 130, so that during use, the hinge assembly of the side door 180 and the observation of the interior through the transparent window 182 are facilitated, and a latch 183 is integrally arranged outside the bottom of the side door 180, a latch pin 184 is arranged inside the latch 183, the bottom end of the latch pin 184 is clamped in the inside of the assembly bottom plate 120, and a recess hole 185 corresponding to the latch pin 184 is formed in the inside of the assembly bottom plate 120, so that during use, the limiting and opening and closing according to the use needs are facilitated, and subsequent operation and maintenance are more convenient.

[0029] Working principle: during assembly and use, the assembly bottom plate 110 and the assembly bottom plate 120 are supported, the outer cover frame 130 and the built-in assembly frame 160 are arranged, the corresponding transverse flat assembly and placement of the internal component modules of the ultra-low temperature water vapor trapping system 100 are facilitated, the sliding adjustment according to the specifications and corresponding positions of each module is facilitated under the cooperation of the built-in assembly frame 160, the assembly operation is more convenient, then the whole is formed under the cooperation of the side plate 131 and the top plate 132, the internal maintenance and maintenance are facilitated under the opening and closing of the side door 180, the movement is facilitated by the universal moving wheels 150, after being moved to a suitable position, the limiting and supporting are facilitated by the support screw 170 under the cooperation of the support bottom foot 171, the operation and use are more convenient, the assembly and placement are facilitated when the height is not enough to place the three-dimensional cabinet, the use is more convenient, and the operation ends here.

[0030] The above is only a preferred embodiment of the present application, and does not limit the present application in any form; any ordinary technical personnel in the industry can smoothly implement the present application according to the drawings shown in the specification and the above description; however, any equivalent changes, modifications and evolution of the above-mentioned technical content within the scope of the technical scheme of the present application are equivalent embodiments of the present application; meanwhile, any equivalent changes, modifications and evolution of the above-mentioned technical content within the scope of the technical scheme of the present application are equivalent embodiments of the present application; meanwhile, any equivalent changes, modifications and evolution of the above-mentioned technical content within the scope of the technical scheme of the present application are equivalent embodiments of the present application.

Claims

1. A horizontally arranged ultra-low temperature water vapor trapping pump comprising an ultra-low temperature water vapor trapping system (100) inside which components include, but are not limited to, a compressor, an exchanger, a filter, a separator, and a valve, characterized in that: The bottom of the ultra-low temperature water vapor trapping system (100) is supported by an assembly base plate (110), and the surface of the assembly base plate (110) is fixedly provided with an assembly base plate (120). An outer cover frame (130) is provided on the assembly base plate (110), and the surface of the outer cover frame (130) is provided with a control panel (140) electrically connected with the ultra-low temperature water vapor trapping system (100). An inner assembly frame (160) is supported and assembled in the inner cover frame (130). Universal moving wheels (150) are assembled at the corners of the bottom of the assembly base plate (110). Support studs (170) are supported and broken at the corner of the side edge of the assembly base plate (110). Side doors (180) are hinged on the front and rear sides of the outer cover frame (130).

2. A cryogenic, water vapor jet pump of the transverse arrangement according to claim 1, characterized in that: The outer cover frame (130) is assembled with side plates (131) on both sides by screws, and the inner side plates (131) are uniformly provided with through holes. The top of the outer cover frame (130) is covered and assembled with a top plate (132). The control panel (140) is fixed on the surface of the central front side of the top plate (132).

3. A cryogenic, water vapor jet pump of the transverse arrangement according to claim 1, characterized in that: The inner assembly frame (160) includes limiting slide columns (161). Four groups of limiting slide columns (161) are fixedly arranged on the inner walls of the outer cover frame (130) at the upper and lower ends. A limiting slide column (161) is sleeved with an assembly sliding seat (162). Assembly sliding rods (163) are fixedly arranged between the left and right assembly sliding seats (162). Assembly sliding rods (163) are sleeved with assembly sliding blocks (164) and valve supports (166). Assembly beam plates (165) are fixedly arranged on the inner walls of the front and rear of the two assembly sliding blocks (164). The assembly beam plates (165) and the valve supports (166) are uniformly provided with bolt holes in the inner walls. Limiting lock pins (167) are threadedly inserted into the side walls of the valve supports (166), the side walls of the assembly sliding blocks (164) and the side walls of the assembly sliding seats (162). The inner ends of the three groups of limiting lock pins (167) are respectively abutted and clamped on the outer walls of the limiting slide columns (161) and the assembly sliding rods (163).

4. A cryogenic, water vapor jet pump of the transverse arrangement according to claim 1, characterized in that: The support stud (170) is threadedly inserted into the inner corner of the side edge of the assembly base plate (110), and the support stud (170) is assembled with a support foot (171) at the bottom. The support stud (170) is fixedly provided with a torsion block (176) at the top. The torsion block (176) has a hexagonal shape in plan view, and the inner side of the torsion block (176) is provided with a insertion hole (177).

5. A cryogenic, water vapor jet pump of the transverse arrangement according to claim 4, characterized in that: The surface of the support stud (170) is threadedly sleeved with a limiting nut (175). Two groups of limiting nuts (175) are arranged above and below the assembly base plate (110). The lower end of the support stud (170) is movably sleeved with an assembly clamping sleeve (172). The assembly clamping sleeve (172) is provided with an inner clamping ring (173). The inner clamping ring (173) is fixedly arranged on the lower end of the support stud (170). The assembly clamping sleeve (172) is fixedly arranged on the support foot (171) by screws. The side corner of the support foot (171) is provided with a side screw hole (174).

6. A cryogenic, water vapor jet pump of the transverse arrangement according to claim 1, characterized in that: The side door (180) is hinged to the side wall of the outer cover frame (130) through a hinge (181), and a transparent window (182) is arranged in the side door (180).

7. A cryogenic, water vapor jet pump of the transverse arrangement according to claim 6, characterized in that: A clamping tongue (183) is integrally arranged on the bottom outer side of the side door (180), a bolt (184) is arranged in the clamping tongue (183), the bottom end of the bolt (184) is clamped in the assembling bottom plate (120), and a recess hole (185) corresponding to the bolt (184) is formed in the assembling bottom plate (120).

Citation Information

Patent Citations

  • Novel ultra -low temperature steam entrapment pump

    CN204918757U