CN210021675U - Combined vertical type cooling and drying machine shell assembly - Google Patents

Combined vertical type cooling and drying machine shell assembly Download PDF

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Publication number
CN210021675U
CN210021675U CN201920612981.3U CN201920612981U CN210021675U CN 210021675 U CN210021675 U CN 210021675U CN 201920612981 U CN201920612981 U CN 201920612981U CN 210021675 U CN210021675 U CN 210021675U
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main
shell
auxiliary
base
shell body
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CN201920612981.3U
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肖亦希
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Shenzhen Zhongyida Mechanical And Electrical Engineering Co Ltd
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Shenzhen Zhongyida Mechanical And Electrical Engineering Co Ltd
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Abstract

The utility model discloses a combined vertical type refrigeration dryer shell component, which comprises a main base, a main shell body, a side baffle and an auxiliary shell body, wherein the main shell body is fixed on the main base through bolts, one end of the main shell body is fixed with the side baffle through screws, the other end of the main shell body is also provided with a drawing groove, one end of the auxiliary shell body is inserted into the drawing groove, the auxiliary shell body is also welded on the auxiliary base, the auxiliary base is correspondingly inserted into the drawing groove arranged at one end of the main base and is fastened through locking bolts, the auxiliary shell body and the main shell body are spliced into a complete shell, and the bottom ends of the main base and the auxiliary base are connected with trundles through connecting rods; this novel shell subassembly passes through the casing that main casing body and auxiliary housing spliced to remove through utilizing the isolation otter board in the casing and control, adjust the space of main equipment room, control room and instrument room, can make the size and the inner space change of casing, thereby be applicable to the cold machine structure of doing of size change, the practicality is strong, is favorable to reducing the manufacturing cost of cold machine of doing.

Description

Combined vertical type cooling and drying machine shell assembly
Technical Field
The utility model relates to a cold dry quick-witted equipment technical field especially relates to a modular vertical cold dry machine shell assembly.
Background
The cold dryer is a freeze dryer for short, refers to a novel technology, belongs to an air source processing element in a pneumatic system, and utilizes a refrigerant to exchange heat with compressed air so as to reduce the temperature of the compressed air to the dew point temperature within the range of 2-10 ℃.
Along with the development of the air dryer, more and more enterprises prefer to use the air dryer more and more commonly, and therefore, the enterprises in the air dryer production industry continuously innovate the air dryer so as to improve the competitiveness of the air dryer at home in the market, but most of the existing enterprises innovate and perfect aiming at the internal structure of the air dryer and neglect the shell of the air dryer, so that the enterprises produce a new air dryer every time, and when the size of the air dryer is changed, the corresponding air dryer shell needs to be produced additionally, the shell of the air dryer has no universality and is inconvenient to use, and the reduction of the production cost is not facilitated.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problems in the prior art, and provides a combined vertical type cooling and drying machine shell component.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a modular vertical refrigerated dryer shell subassembly, includes main base, the main casing body, side shield and auxiliary casing, the main casing body passes through the bolt fastening on main base, the one end of the main casing body is passed through the screw fixation and is had the side shield, the other end of the main casing body still is provided with the pull groove, the one end of auxiliary casing inserts in the pull groove, auxiliary casing still welds on auxiliary base, auxiliary base also corresponds inserts in the pull groove of main base one end setting to through locking bolt fastening, an intact casing is pieced together with the main casing body to auxiliary casing, main base and auxiliary base's bottom all is connected with the truckle through the connecting rod.
Preferably, a plurality of bolt holes are formed in the two sides of the auxiliary base corresponding to the locking bolts, and rubber strips are arranged on notches of the drawing grooves.
Preferably, a heat dissipation fan is installed on the inner side of the auxiliary shell, an isolation net is welded on the outer side of the heat dissipation fan, and a louver-shaped heat dissipation window is further arranged on the side baffle.
Preferably, the inside both sides of main casing body all weld have two fixed strips of placing from top to bottom, be provided with one row of fixed orifices on the fixed strip, still placed one in the main casing and kept apart the otter board, the both sides welding of keeping apart the otter board has two mountings, two the mounting still is fixed respectively on two fixed strips through the set screw, just keep apart into a main equipment room between otter board and the isolation net.
Preferably, one side of keeping apart the otter board is provided with a horizontal pull baffle, the pull baffle inserts in the baffle, all weld the mounting on pull baffle and the baffle to fix on main casing body through the set screw, pull baffle and baffle still will keep apart the space between otter board and the side shield and separate into control room and instrument room, the instrument room is located the top of control room.
Preferably, the control room is communicated with the instrument room through wire holes formed in the drawing partition plate, the main equipment room is communicated with the control room and the instrument room through two wire holes formed in the isolation screen plate, and the main shell is further provided with an observation window corresponding to the instrument room.
Compared with the prior art, the utility model provides a modular vertical refrigerated dryer shell subassembly possesses following beneficial effect:
(1) this novel vertical cold doing machine shell subassembly of combination formula splices a casing through main casing body and auxiliary housing to remove through utilizing the isolation otter board in the casing and control, adjust the space of main equipment room, control room and instrument room, can make the size and the inner space of casing change, thereby be applicable to the cold dry quick-witted structure that the size changed, the practicality is strong, is favorable to reducing the manufacturing cost of cold dry machine, and the distribution of casing inner space is clear and definite, so that the cold dry mechanism of classified installation.
(2) This neotype vertical refrigerated dryer shell subassembly of combination formula dispels the heat to main equipment room, control room and instrument room simultaneously through the heat dissipation fan that sets up, and the steam after the heat dissipation in time derives from tripe type heat dissipation window along with the heat dissipation wind that the heat dissipation fan blew off, and the heat dissipation is comprehensive, and the radiating effect is good.
The part that does not relate to in the device all is the same with prior art or can adopt prior art to realize, the utility model discloses simple structure, convenient operation.
Drawings
Fig. 1 is a schematic view of a subjective structure of a housing assembly of a combined vertical refrigerator-dryer according to the present invention;
fig. 2 is an internal cross-sectional view of a housing assembly of a combined vertical refrigerator-dryer according to the present invention;
fig. 3 is a schematic view of a connection structure between a main housing and an auxiliary housing of a combined vertical type refrigeration and drying machine housing assembly provided by the present invention;
in the figure: 1. a main base; 2. a main housing; 3. a side dam; 4. a louver type heat dissipation window; 5. A screw; 6. a sub-base; 7. locking the bolt; 8. bolt holes; 9. a caster wheel; 10. a sub-housing; 11. drawing the groove; 12. a rubber strip; 13. a heat dissipation fan; 14. an isolation net; 15. a fixing strip; 16. isolating the screen plate; 17. a fixing member; 18. fixing screws; 19. a partition plate; 20. drawing and pulling the partition plate; 21. a main equipment room; 22. a control room; 23. an instrument room; 24. a wire hole; 25. and (4) an observation window.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Example 1
As shown in fig. 1-3, a combined vertical type refrigeration and drying machine shell assembly comprises a main base 1, a main shell 2, a side baffle 3 and an auxiliary shell 10, wherein the main shell 2 is fixed on the main base 1 through bolts, the side baffle 3 is fixed at one end of the main shell 2 through a screw 5, a drawing groove 11 is further arranged at the other end of the main shell 2, one end of the auxiliary shell 10 is inserted into the drawing groove 11, the auxiliary shell 10 is drawn from the drawing groove 11, so as to change the size of an internal space between the auxiliary shell 10 and the main shell 2, the auxiliary shell 10 is welded on the auxiliary base 6, the auxiliary base 6 is correspondingly inserted into the drawing groove 11 arranged at one end of the main base 1 and is fastened through a locking bolt 7, so that the auxiliary base 6 is prevented from driving the auxiliary shell 10 to move, the internal space of the shell is changed, the auxiliary shell 10 and the main shell 2 are spliced into a complete shell, casters 9 are connected at the bottom ends of the main base 1 and, casters 9 are used to facilitate movement of the housing.
The both sides of vice base 6 correspond locking bolt 7 and are provided with a plurality of bolt hole 8, can lock into bolt hole 8 with locking bolt 7 from the outside of main base 1 to it is fixed with main base 1 and vice base 6, the notch of pull groove 11 is provided with rubber strip 12, can increase the leakproofness between vice casing 10 and the main casing body 2, avoids the rainwater to get into inside the casing from pull groove 11.
The heat dissipation fan 13 is installed on the inner side of the auxiliary shell 10, the isolation net 14 is welded on the outer side of the heat dissipation fan 13, the louver-type heat dissipation window 4 is further arranged on the side baffle 3, the main equipment room 21, the control room 22 and the instrument room 23 are simultaneously cooled through the arranged heat dissipation fan 13, and heat after heat dissipation is timely led out of the louver-type heat dissipation window 4 along with heat dissipation air blown out by the heat dissipation fan 13, so that the heat dissipation is comprehensive and the heat dissipation effect is good.
Example 2
As shown in fig. 1-3, two fixing strips 15 are welded on two sides of the interior of the main housing 2, the fixing strips 15 are disposed up and down, a row of fixing holes are formed in the fixing strips 15, an isolating mesh plate 16 is further disposed in the main housing 2, two fixing members 17 are welded on two sides of the isolating mesh plate 16, the two fixing members 17 are further fixed on the two fixing strips 15 through fixing screws 18, and a main equipment room 21 is partitioned between the isolating mesh plate 16 and the isolating mesh 14.
The space size of the main equipment room 21 can be changed by moving the isolation screen plate 16 left and right in the main casing 2, and the moved isolation screen plate 16 can be fixed on the fixing strip 15 by using the fixing screw 18, so that the isolation screen plate 16 is fixed in the main casing 2.
A transverse drawing clapboard 20 is arranged on one side of the isolation screen plate 16, the drawing clapboard 20 is inserted into the clapboard 19, fixing pieces 17 are welded on the drawing clapboard 20 and the clapboard 19 and are fixed on the main shell 2 through fixing screws 18, the drawing clapboard 20 and the clapboard 19 also divide the space between the isolation screen plate 16 and the side baffle plate 3 into a control chamber 22 and an instrument chamber 23, and the instrument chamber 23 is positioned above the control chamber 22.
By pulling the partition 20 in the partition 19, the overall length of the partition can be changed to suit the control room 22 and the instrument room 23 with changed space.
The control room 22 is communicated with the instrument room 23 through a wire hole 24 arranged on the drawing clapboard 20, the main equipment room 21 is respectively communicated with the control room 22 and the instrument room 23 through two wire holes 24 arranged on the isolation screen plate 16, the wire holes 24 are convenient for connecting wires to pass through, and the main shell body 2 is also provided with an observation window 25 corresponding to the instrument room 23 so as to observe the instrument number in the instrument room 23.
It should be noted that, when the shell assembly of the combined vertical type refrigeration dryer disclosed by the utility model is used, the auxiliary base 6 and the auxiliary shell 10 are drawn in the drawing groove 11 according to the size of the internal structure of the refrigeration dryer, so that the internal space of the auxiliary shell 10 and the main shell 2 conforms to the installation size of the refrigeration dryer, and then the main base 1 and the auxiliary base 6 are fixed by the locking bolt 7, and further the auxiliary shell 10 and the main shell 2 are fixed, so that the internal space of the shell is determined;
meanwhile, the isolation screen plate 16 is moved left and right in the main shell 2, the drawing partition plate 20 and the partition plate 19 are correspondingly moved up and down, the length and the position of the total partition plate are changed, the space of the main equipment chamber 21, the control chamber 22 and the instrument chamber 23 in the shell corresponds to the installation space of the main equipment mechanism, the control mechanism and the instrument mechanism of the refrigeration dryer, and then the isolation screen plate 16, the drawing partition plate 20 and the partition plate 19 are fixed through the fixing screws 18, so that the main equipment mechanism, the control mechanism and the instrument mechanism of the refrigeration dryer are respectively installed in the main equipment chamber 21, the control chamber 22 and the instrument chamber 23.
This novel vertical refrigerated dryer shell subassembly of combination formula splice a casing through main casing body 2 and auxiliary housing 10, and remove through utilizing isolation otter board 16 in the casing and control, adjust main equipment room 21, the space of control room 22 and instrument room 23, can make the size and the inner space of casing change, thereby be applicable to the refrigerated dryer structure that the size changes, therefore, the clothes hanger is strong in practicability, be favorable to reducing the manufacturing cost of refrigerated dryer, and the distribution of casing inner space is clear and definite, so that the cold interior mechanism of doing of classified installation, still 13 simultaneously main equipment room 21 through the heat dissipation fan that sets up, control room 22 and instrument room 23 dispel the heat, and steam after the heat dissipation is in time followed tripe type heat dissipation window 4 and is derived along with the cooling air that heat dissipation fan 13 blew out, the heat dissipation is comprehensive, the radiating effect is good.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. A shell component of a combined vertical type cold dryer comprises a main base (1), a main shell (2), a side baffle (3) and an auxiliary shell (10), it is characterized in that the main shell (2) is fixed on the main base (1) through bolts, one end of the main shell (2) is fixed with a side baffle (3) through a screw (5), the other end of the main shell (2) is also provided with a drawing groove (11), one end of the auxiliary shell (10) is inserted into the drawing groove (11), the auxiliary shell (10) is also welded on the auxiliary base (6), the auxiliary base (6) is correspondingly inserted into a drawing groove (11) arranged at one end of the main base (1), and is fastened by a locking bolt (7), the auxiliary shell (10) and the main shell (2) are spliced into a complete shell, the bottom ends of the main base (1) and the auxiliary base (6) are connected with trundles (9) through connecting rods.
2. The shell assembly of the combined vertical type refrigeration dryer according to claim 1, characterized in that the corresponding locking bolts (7) on both sides of the secondary base (6) are provided with a plurality of bolt holes (8), and the notch of the drawing groove (11) is provided with a rubber strip (12).
3. The shell assembly of the combined vertical type refrigeration dryer according to claim 1, wherein the inner side of the auxiliary shell (10) is provided with a heat dissipation fan (13), an isolation net (14) is welded on the outer side of the heat dissipation fan (13), and the side baffle (3) is further provided with a louver type heat dissipation window (4).
4. The shell assembly of the combined vertical type refrigeration and drying machine according to claim 1, wherein two fixing strips (15) which are arranged up and down are welded on two sides of the interior of the main shell (2), a row of fixing holes are formed in the fixing strips (15), an isolating screen plate (16) is further arranged in the main shell (2), two fixing pieces (17) are welded on two sides of the isolating screen plate (16), the two fixing pieces (17) are further fixed on the two fixing strips (15) through fixing screws (18), and a main equipment room (21) is formed between the isolating screen plate (16) and the isolating screen (14).
5. The shell assembly of the combined vertical type refrigeration and drying machine is characterized in that a transverse drawing clapboard (20) is arranged on one side of the isolation screen plate (16), the drawing clapboard (20) is inserted into the clapboard (19), fixing pieces (17) are welded on the drawing clapboard (20) and the clapboard (19) and are fixed on the main shell (2) through fixing screws (18), the drawing clapboard (20) and the clapboard (19) also divide the space between the isolation screen plate (16) and the side baffle plate (3) into a control chamber (22) and an instrument chamber (23), and the instrument chamber (23) is positioned above the control chamber (22).
6. The shell assembly of the combined vertical type refrigeration and drying machine is characterized in that the control chamber (22) is communicated with the instrument chamber (23) through a wire hole (24) formed in the drawing clapboard (20), the main equipment chamber (21) is respectively communicated with the control chamber (22) and the instrument chamber (23) through two wire holes (24) formed in the isolation screen plate (16), and the main shell (2) is further provided with an observation window (25) corresponding to the instrument chamber (23).
CN201920612981.3U 2019-04-30 2019-04-30 Combined vertical type cooling and drying machine shell assembly Active CN210021675U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920612981.3U CN210021675U (en) 2019-04-30 2019-04-30 Combined vertical type cooling and drying machine shell assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920612981.3U CN210021675U (en) 2019-04-30 2019-04-30 Combined vertical type cooling and drying machine shell assembly

Publications (1)

Publication Number Publication Date
CN210021675U true CN210021675U (en) 2020-02-07

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Application Number Title Priority Date Filing Date
CN201920612981.3U Active CN210021675U (en) 2019-04-30 2019-04-30 Combined vertical type cooling and drying machine shell assembly

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113865276A (en) * 2021-10-08 2021-12-31 北京理工大学珠海学院 Keratinocyte growth factor drying device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113865276A (en) * 2021-10-08 2021-12-31 北京理工大学珠海学院 Keratinocyte growth factor drying device

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