CN214516596U - Cleaning and drying interface device - Google Patents

Cleaning and drying interface device Download PDF

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Publication number
CN214516596U
CN214516596U CN202023348530.5U CN202023348530U CN214516596U CN 214516596 U CN214516596 U CN 214516596U CN 202023348530 U CN202023348530 U CN 202023348530U CN 214516596 U CN214516596 U CN 214516596U
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China
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drying
pipeline
die holder
spraying
lifting
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CN202023348530.5U
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Chinese (zh)
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沈俊
孙浩星
石富晴
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Wuxi Fodoo Precision Industry Co ltd
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Wuxi Fodoo Precision Industry Co ltd
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Abstract

The utility model relates to a wash stoving interface arrangement, including the platform, install the interface module in the platform, the interface module top is equipped with the bottleneck die holder, and slidable mounting spouts the pipeline of drying by the fire among the interface module, spouts the pipeline of drying by the drive of lifting unit, and the bottleneck die holder comprises die holder shell and inside lining, and the die holder shell is installed on the platform, and the inside lining is placed in with the die holder shell, all is equipped with the blow off water hole in die holder shell and the inside lining. The utility model has simple structure and small occupied space; the bottle mouth central point is put to ingenious washing and drying pipeline design to stretch into in the inversion steel bottle, reciprocal washing and its inner wall of drying, interface structure is wear-resisting sealed again, both can strengthen the effect of wasing and drying, can collect the sewage that flows from the bottle mouth again.

Description

Cleaning and drying interface device
Technical Field
The utility model belongs to the technical field of steel bottle class container washs, a wash stoving interface arrangement is related to.
Background
The inner wall of the steel cylinder container needs to be cleaned and dried before gas or other substances are filled in the steel cylinder container, and the cleaning and drying device in the current market has single function and difficult wastewater recovery; the cleaning and drying processes can not be completed on the same device, and the whole device occupies a large area; the nozzle used for cleaning or drying in the device can not automatically reciprocate and can not realize active cleaning or drying; and (5) cleaning and drying.
Disclosure of Invention
The utility model aims to provide a cleaning and drying interface device, which can solve the problems that a nozzle for cleaning or drying can not automatically reciprocate and can not realize active cleaning or drying; problems of washing and drying.
According to the utility model provides a technical scheme: the interface device for cleaning and drying comprises a platform, wherein an interface assembly is installed in the platform, a bottle mouth mold base is arranged above the interface assembly, a spraying and drying pipeline is installed in the interface assembly in a sliding mode and driven by a lifting unit.
As a further improvement, the bottle mouth mold base is composed of a mold base shell and a lining, the mold base shell is installed on the platform, the lining is placed in the mold base shell, the mold base shell and the lining are all provided with a sewage drainage hole.
As a further improvement of the utility model, the interface module includes the collecting pipe, the wear-resisting sealing joint of collecting pipe internally mounted.
As a further improvement, be equipped with sewage conduit and installation cavity in the collection pipeline, sewage conduit one end intercommunication bottleneck die holder, other end intercommunication drain, fixed mounting in the installation cavity wear-resisting sealing joint, slidable mounting spout and dry by the fire the pipeline.
As a further improvement, the wear-resistant sealing joint comprises a joint body, a bearing is arranged in the joint body, and sealing elements are arranged at two ends of the joint body.
As a further improvement, the spraying and drying pipeline comprises a hollow slide bar, the upper end of the hollow slide bar is connected with a nozzle, and the lower end of the hollow slide bar is connected with a quick coupling and a transfer seat in sequence.
As a further improvement, the cavity slide bar is hollow structure, the nozzle has spouts the chamber, spout a plurality of orifices of evenly distributed in the chamber periphery, the design has the dismouting plane in the periphery, the inside transmission medium passageway that is equipped with of adapter.
As a further improvement, the lifting unit comprises a frame, install the lift driving piece on the frame, the lift driving piece passes through lift drive mechanism and connects the lift executive, the lift executive is connected spout and dries by the fire the pipeline.
As a further improvement of the utility model, a guide mechanism is arranged on the frame.
As a further improvement of the utility model, the lifting driving member is a lifting motor; the lifting transmission mechanism is a screw rod transmission mechanism.
The positive progress effect of this application lies in:
1. the utility model has simple structure and small occupied space; the bottle mouth central point is put to ingenious washing and drying pipeline design to stretch into in the inversion steel bottle, reciprocal washing and its inner wall of drying, interface structure is wear-resisting sealed again, both can strengthen the effect of wasing and drying, can collect the sewage that flows from the bottle mouth again.
2. This device has the reciprocating motion function, can adjust the migration scope according to the height dimension of different steel bottles, realizes the reciprocal washing stoving of steel bottle inner wall, and the adjustment is convenient, product coverage is big.
3. The device can transmit cleaning media and drying media, one set of device realizes the conveying of various media, and the device can clean and dry, has high equipment utilization rate and low economic cost.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the bottle mouth mold base of the present invention.
Fig. 3 is a schematic structural diagram of the collecting pipe of the present invention.
Fig. 4 is the structure schematic diagram of the wear-resistant sealing joint and the spraying and drying pipeline of the present invention.
Fig. 5 is a schematic structural view of the wear-resistant sealing joint of the present invention.
Fig. 6 is a schematic structural diagram of the spraying and drying pipeline of the present invention.
Fig. 7 is a schematic structural view of the nozzle of the present invention.
Fig. 8 is a cross-sectional view of the nozzle of the present invention.
Fig. 9 is a schematic structural diagram of the adaptor of the present invention.
Fig. 10 is a schematic structural view of the lifting unit of the present invention.
Detailed Description
It should be noted that the embodiments and features of the embodiments of the present invention may be combined with each other without conflict. The present invention will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
In order to make the technical solution of the present invention better understood, the technical solution of the embodiments of the present invention will be clearly and completely described below 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. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts shall belong to the protection scope of the present invention.
It should be noted that the terms "first," "second," and the like in the description and claims of the present invention and in the drawings described above are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used may be interchanged under appropriate circumstances for purposes of describing the embodiments of the invention herein. Furthermore, the terms "comprises," "comprising," and "having," and any variations thereof, are intended to cover such processes, methods, systems, articles, or apparatus that comprise a list of steps or elements, are not necessarily limited to those steps or elements expressly listed, but may include other steps or elements not expressly listed or inherent to such processes, methods, articles, or apparatus.
Fig. 1-10 include a bottle mouth mold base 1, an interface assembly 2, a platform 3, a spraying and baking pipeline 4, a lifting unit 5, etc.
As shown in fig. 1, the utility model relates to a wash stoving interface arrangement, including platform 3, install interface module 2 in the platform 3, interface module 2 top is equipped with bottleneck die holder 1, and slidable mounting spouts in the interface module 2 and dries by the fire pipeline 4, spouts to dry by the fire pipeline 4 and is driven by lift unit 5.
FIG. 2 is a structure diagram of a bottle mouth mold base 1, which is composed of a mold base outer shell 1-1 and an inner liner 1-2, wherein the mold base outer shell 1-1 is arranged on a platform 3, the inner liner 1-2 is arranged in an inner cavity of the mold base outer shell 1-1, and the inner liner 1-2 matched with the mold base outer shell is replaced according to the shape of a bottle mouth of a steel bottle. The die holder shell 1-1 is formed by processing metal pipes, a round or square or special-shaped inner cavity is arranged in the middle, and a flange is arranged at the bottom and used for connecting and fixing the bottleneck die holder 1 and the platform 3. The inner liner 1-2 is made of soft material, the shape of the inner liner is matched with the inner cavity of the die holder shell 1-1, and the inner cavity of the inner liner is matched with the shape of the bottle mouth of the steel bottle. Sewage drainage holes are formed in the die holder shell 1-1 and the lining 1-2.
The interface assembly 2 comprises a collecting duct 2-1 and a wear-resistant sealing joint 2-2. The collecting pipe 2-1 is arranged in the platform 3, and the wear-resistant sealing joint 2-2 is positioned inside the collecting pipe 2-1.
The wear-resistant sealing joint 2-2 extends into the collecting pipe 2-1, keeps concentric and is connected at the bottom. The center position in the wear-resistant sealing joint 2-2 is provided with a spraying and drying pipeline 4 for positioning and supporting, and further, a closed surface is formed on the inclined surface at the bottom of the collecting pipeline 2-1 and plays a role in sealing the collecting pipeline 2-1. The lifting unit 5 is connected with the bottom of the spraying and drying pipeline 4, so that the spraying and drying pipeline 4 has the function of lifting up and down. The spraying and drying pipeline 4 can directly go deep into the inner wall of the steel cylinder from the center of the interface component 2 through the bottle mouth die holder 1 to perform spraying, washing and drying operation.
Fig. three is a structural diagram of a collecting pipeline 2-1, a sewage pipeline and an installation cavity are arranged in the collecting pipeline 2-1, one end of the sewage pipeline is communicated with a bottle mouth die holder 1, the other end of the sewage pipeline is communicated with a sewage discharge outlet, a wear-resistant sealing joint 2-2 is fixedly installed in the installation cavity, and a spraying and drying pipeline 4 is installed in a sliding mode, as shown in fig. 4.
The collecting pipeline 2-1 is formed by welding a first flange 2-1-1, a first pipe fitting 2-1-2, an inclined plane pipe 2-1-3, a second pipe fitting 2-1-4 and a second flange 2-1-5.
The first pipe fitting 2-1-2 is arranged below the first flange 2-1-1, the second pipe fitting 2-1-4 is obliquely connected to the side face of the first pipe fitting 2-1-2 and is aligned with a gap on the circumferential side face of the first pipe fitting 2-1-2, and the other end of the second pipe fitting 2-1-4 is connected with the second flange 2-1-5; the inclined plane pipe 2-1-3 is arranged in the first pipe fitting 2-1-2, is concentric and has the bottoms aligned with each other, an inclined plane is designed at the top of the inclined plane pipe 2-1-3, and is aligned with the lowest point of the first pipe fitting 2-1-2 and the second pipe fitting 2-1-4 at the position close to the lower part of the inclined plane, and the angle of the inclined plane is the same as or similar to the included angle between the first pipe fitting 2-1-2 and the second pipe fitting 2-1-4; the sewage flowing down along the bottle mouth mold base 1 flows to the water outlet along the inclined plane.
Fig. 5 is a block diagram of the wear-resistant sealing joint 2-2. The wear-resistant sealing joint 2-2 consists of a joint main body 2-2-1, a bearing 2-2-2, a top gland 2-2-3, a bottom gland 2-2-4, a multi-layer sealing element 2-2-5 and a single-layer sealing element 2-2-6.
The wear-resistant sealing joint 2-2 comprises a joint body, and the middle section of the spraying and drying pipeline 4 is connected in the joint body in a sliding mode.
In order to enable the middle section of the spraying and drying pipeline 4 to slide more smoothly in the joint body, a bearing 2-2-2 is arranged in the joint body, and the middle section of the spraying and drying pipeline 4 is positioned in an inner ring of the bearing 2-2-2.
In order to prevent external media from entering the joint body, sealing elements are arranged at two ends of the joint body and are positioned between the joint body and the middle section of the spraying and drying pipeline 4 and outside the bearing 2-2-2.
In this embodiment, the joint body comprises a joint main body 2-2-1, the upper end of the joint main body 2-2-1 is connected with a top gland 2-2-3, and the lower end of the joint main body 2-2-1 is connected with a bottom gland 2-2-4.
The bearings 2-2-2 are respectively positioned at the upper end and the lower end of the joint body and are axially fixed by a top gland and a bottom gland.
The seal includes a first seal assembly and a second seal assembly.
The top gland 2-2-3 is internally provided with a sealing component 1, and the bottom gland 2-2-4 is internally provided with a sealing component 2.
The first seal assembly is located in the top gland 2-2-3 and includes a multi-layer seal 2-2-5 and a first single-layer seal 2-2-6, the multi-layer seal 2-2-5 being located above the first single-layer seal 2-2-6.
A second seal assembly is located in the bottom gland 2-2-4 and includes a second single layer seal 2-2-6.
The joint main body 2-2-1 is a hollow sliding rod, the outer side of the joint main body is provided with a flange edge, and the bottom end face and the top end face of the joint main body are provided with inward holes for installing the bearing 2-2-2 and a positioning gland.
The top gland 2-2-3 and the bottom gland 2-2-4 are disc type parts, and a circular boss is designed on the end face of one side of each part and used for installation and positioning; one or more circumferential grooves are designed inside for mounting the multi-layer seal 2-2-5 and the single-layer seal 2-2-6.
Fig. 6 is a structural view of the spray drying duct 4.
The spraying and drying pipeline 4 consists of a nozzle 4-1, a hollow slide bar 4-2, a quick connector 4-3 and an adapter 4-4.
The middle section of the spraying and drying pipeline 4 is a hollow slide bar 4-2, the upper end of the hollow slide bar 4-2 is provided with threads and is connected with a nozzle 4-1, and the lower end of the hollow slide bar is sequentially connected with a quick connector 4-3 and an adapter 4-4.
The hollow slide bar 4-2 is a hollow structure and is arranged in the wear-resistant sealing joint 2-2 in a sliding manner.
Fig. 7-8 is a structural diagram of a nozzle 4-1, which has a spray cavity 4-1-1, the bottom of the inner cavity is designed with a threaded hole, a plurality of spray holes 4-1-2 are evenly distributed on the circumference, the top is also designed with one or more spray holes 4-1-2, so that the medium flowing into the nozzle can be sprayed out from the spray holes 4-1-2, and the inner wall of a steel cylinder is evenly washed. The outer circumference is provided with symmetrical disassembly and assembly planes 4-1-3, so that an outer hexagonal wrench can be conveniently used for disassembly and assembly.
Fig. 9 shows a mechanical diagram of the adapter 4-4, in which two perpendicular threaded holes are designed, and the bottom holes extend and intersect to form a complete transmission medium channel 4-4-1, which introduces a medium and enters the nozzle 4-1 through the hollow slide rod 4-2, and finally is ejected from the orifice 4-1-2 to uniformly wash the inner wall of the steel cylinder.
The lifting unit 5 consists of a connecting rod 5-2, a pin 5-3, a support 5-4, a nut 5-5, a screw rod 5-6, a bearing seat 5-7, a first belt pulley 5-8, a belt 5-9, a second belt pulley 5-10, a lifting motor 5-11, an installation plate 5-12, a frame 5-13, a sliding block 5-14, a sliding rail 5-15 and a frame 5-13.
As shown in fig. 10, the lifting unit 5 includes a frame 5-13, a lifting driving member is mounted on the frame 5-13, the lifting driving member is connected to a lifting executing member through a lifting transmission mechanism, and the lifting executing member is connected to the spraying and drying pipeline 4.
In order to make the movement of the lifting executing part more stable, a guide mechanism is arranged on the machine frame 5-13.
The lifting driving piece is a lifting motor 5-11. The lifting motor 5-11 is arranged on the frame 5-13 through the mounting plate 5-12.
The lifting transmission mechanism comprises bearing blocks 5-7 and second belt wheels 5-10, the second belt wheels 5-10 are installed on output shafts of lifting motors 5-11, the two bearing blocks 5-7 are installed at the upper end and the lower end of a rack 5-13 respectively, screw rods 5-6 are installed in the bearing blocks 5-7 in a rotating mode, first belt wheels 5-8 are installed at one ends of the screw rods 5-6, the second belt wheels 5-10 are connected with the first belt wheels 5-8 through belts 5-9, and nuts 5-5 are sleeved on the peripheries of the screw rods 5-6.
The lifting executive component comprises a connecting rod 5-2 and a support 5-4, the bottom surface of the connecting rod 5-2 is in contact with the surface of the support 5-4 and is fixedly connected through threads, and a nut 5-5 is connected in the middle of the support 5-4.
The connecting rod 5-2 is hinged with the lower part of the adapter 4-4 through a pin 5-3.
One end of the adapter 4-4 is connected with the spraying and drying pipeline 4 through threads, and the other end is connected with the connecting rod 5-2 and fixed at the through hole of the adapter through a pin 5-3. The middle part of the adapter 4-4 is provided with a straight through groove which forms a Y-shaped opening together with the two side surfaces and is used for positioning the connecting rod 5-2, and the middle parts of the two side surfaces of the straight through groove are provided with transverse through holes.
The guide mechanism comprises slide rails 5-15, the slide rails 5-15 are arranged on one sides of the screw rods 5-6 in parallel, slide blocks 5-14 are arranged on the slide rails 5-15 in a sliding mode, and the slide blocks 5-14 are connected with the supports 5-4.
The connecting rod 5-2 is a flat strip-shaped part, and the width of the connecting rod is the same as or similar to that of the Y-shaped opening of the adapter 4-4; the end part of the connecting rod is provided with a transverse through hole for mounting and fixing with the adapter 4-4; the bottom end face is designed with a longitudinal threaded hole.
The support 5-4 is composed of a plate a, a plate b and a plate c, wherein the plate b is centered and is correspondingly connected and fixed with the plate a and the plate c at two side surfaces in a threaded connection mode. The plate a is provided with a first longitudinal through hole for butting the connecting rod 5-2; the plate b is provided with a transverse through hole for mounting the sliding blocks 5-14; the plate c is provided with a second longitudinal through hole for mounting the nut 5-5.
The circumferential surface of the screw rod 5-6 is provided with a thread for transmission, two ends of the screw rod are provided with steps for mounting the bearing 2-2-2, and the top of the screw rod is provided with an extension shaft for mounting the first belt pulley 5-8.
In other embodiments, the lift drive member is a lift cylinder mounted vertically on the frame 5-13 with the piston end of the lift cylinder facing vertically upward. The piston end of the lifting oil cylinder is connected with the adapter 4-4.
The lifting motors 5-11 realize the up-and-down movement of the spraying and drying pipeline 4 through a screw rod transmission mechanism.
It is to be understood that the above embodiments are merely exemplary embodiments that have been employed to illustrate the principles of the present invention, and that the present invention is not limited thereto. It will be apparent to those skilled in the art that various modifications and improvements can be made without departing from the spirit and substance of the invention, and these modifications and improvements are also considered to be within the scope of the invention.

Claims (10)

1. The utility model provides a wash stoving interface arrangement which characterized in that: the device comprises a platform (3), an interface component (2) is installed in the platform (3), a bottle mouth mold base (1) is arranged above the interface component (2), a spraying and drying pipeline (4) is installed in the interface component (2) in a sliding mode, and the spraying and drying pipeline (4) is driven by a lifting unit (5).
2. The cleaning and drying interface device of claim 1, wherein: the bottle mouth die holder (1) is composed of a die holder outer shell (1-1) and an inner lining (1-2), the die holder outer shell (1-1) is installed on the platform (3), the inner lining (1-2) is placed in the die holder outer shell (1-1), and sewage draining holes are formed in the die holder outer shell (1-1) and the inner lining (1-2).
3. The cleaning and drying interface device of claim 1, wherein: the interface component (2) comprises a collecting pipeline (2-1), and a wear-resistant sealing joint (2-2) is arranged in the collecting pipeline (2-1).
4. The wash dry interface device of claim 3, wherein: a sewage pipeline and an installation cavity are arranged in the collecting pipeline (2-1), one end of the sewage pipeline is communicated with the bottle mouth die holder (1), the other end of the sewage pipeline is communicated with a sewage outlet, the wear-resistant sealing joint (2-2) is fixedly installed in the installation cavity, and the spraying and drying pipeline (4) is installed in a sliding mode.
5. The cleaning and drying interface device of claim 4, wherein: the wear-resistant sealing joint (2-2) comprises a joint body, a bearing (2-2-2) is arranged in the joint body, and sealing elements are arranged at two ends of the joint body.
6. The cleaning and drying interface device of claim 1, wherein: the spraying and drying pipeline (4) comprises a hollow sliding rod (4-2), the upper end of the hollow sliding rod (4-2) is connected with the nozzle (4-1), and the lower end of the hollow sliding rod is sequentially connected with the quick connector (4-3) and the adapter (4-4).
7. The wash dry interface device of claim 6, wherein: the hollow sliding rod (4-2) is of a hollow structure, the nozzle (4-1) is provided with a spraying cavity (4-1-1), a plurality of spraying holes (4-1-2) are uniformly distributed on the periphery of the spraying cavity (4-1-1), a dismounting plane (4-1-3) is designed on the periphery, and a transmission medium channel is arranged inside the adapter (4-4).
8. The cleaning and drying interface device of claim 1, wherein: the lifting unit (5) comprises a rack (5-13), a lifting driving piece is installed on the rack (5-13), the lifting driving piece is connected with a lifting executing piece through a lifting transmission mechanism, and the lifting executing piece is connected with the spraying and drying pipeline (4).
9. The wash dry interface device of claim 8, wherein: and a guide mechanism is arranged on the machine frame (5-13).
10. The wash dry interface device of claim 8, wherein: the lifting driving piece is a lifting motor (5-11); the lifting transmission mechanism is a screw rod transmission mechanism.
CN202023348530.5U 2020-12-31 2020-12-31 Cleaning and drying interface device Active CN214516596U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023348530.5U CN214516596U (en) 2020-12-31 2020-12-31 Cleaning and drying interface device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023348530.5U CN214516596U (en) 2020-12-31 2020-12-31 Cleaning and drying interface device

Publications (1)

Publication Number Publication Date
CN214516596U true CN214516596U (en) 2021-10-29

Family

ID=78299841

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023348530.5U Active CN214516596U (en) 2020-12-31 2020-12-31 Cleaning and drying interface device

Country Status (1)

Country Link
CN (1) CN214516596U (en)

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