CN203960037U - The combined air supply system of glass production line - Google Patents

The combined air supply system of glass production line Download PDF

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Publication number
CN203960037U
CN203960037U CN201420377499.3U CN201420377499U CN203960037U CN 203960037 U CN203960037 U CN 203960037U CN 201420377499 U CN201420377499 U CN 201420377499U CN 203960037 U CN203960037 U CN 203960037U
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CN
China
Prior art keywords
sub
cylinder
air feed
entrance
intake line
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420377499.3U
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Chinese (zh)
Inventor
黄启勇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tengzhou jinjing Glass Co Ltd
SHANDONG JINJING TECHNOLOGY Co Ltd
Original Assignee
Tengzhou jinjing Glass Co Ltd
SHANDONG JINJING TECHNOLOGY Co Ltd
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Filing date
Publication date
Application filed by Tengzhou jinjing Glass Co Ltd, SHANDONG JINJING TECHNOLOGY Co Ltd filed Critical Tengzhou jinjing Glass Co Ltd
Priority to CN201420377499.3U priority Critical patent/CN203960037U/en
Application granted granted Critical
Publication of CN203960037U publication Critical patent/CN203960037U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

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  • Feeding, Discharge, Calcimining, Fusing, And Gas-Generation Devices (AREA)

Abstract

The combined air supply system of glass production line, belongs to glass manufacturing apparatus field.Comprise the first sub-cylinder (8), the second sub-cylinder (12), the 3rd sub-cylinder (13), it is characterized in that: be provided with the first air feed group being connected with the entrance of the 3rd sub-cylinder (13), the the second air feed group and the 3rd air feed group that are connected with the entrance of the first sub-cylinder (8) and the second sub-cylinder (12), and the 4th air feed group being connected with the entrance of the first sub-cylinder (8), the second sub-cylinder (12) and the 3rd sub-cylinder (13) simultaneously; The first sub-cylinder (8) and the second sub-cylinder (12) are respectively provided with five outlets, form five delivery conduits, and the 3rd sub-cylinder (13) is provided with two outlets.By a plurality of airing systems are integrated, realized same pipeline and the properly distributed of airing system, improved production efficiency and made the more reasonably combined air supply system of glass production line of manpower setting simultaneously.

Description

The combined air supply system of glass production line
Technical field
The combined air supply system of glass production line, belongs to glass manufacturing apparatus field.
Background technology
In existing glass production line, in the first airing system as shown in Figure 2, the outlet of five the first compressors 1 is connected respectively, and the while is connected with the entrance of the first sub-cylinder 8 valve afterwards, the outlet of five the second compressors 28 and a screw machine 21 is connected respectively, and the while is connected with another entrance of the first sub-cylinder 8 valve afterwards, five outlets of the first sub-cylinder 8 connect respectively: first instrument operation pipeline 23, second instrument operation pipeline 24, the first atomization operation pipeline 25, the second atomization operation pipeline 26 and material process pipeline 27, by five the first compressors 1, five the second compressors 28 and a screw machine 21 are realized above each corresponding operation air feed.
In the first airing system as shown in Figure 3, the outlet of five screw machines 21 is connected with the entrance of the second sub-cylinder 12 and the 3rd sub-cylinder 13 simultaneously, two outlets of the second sub-cylinder 12 connect respectively first operation the pipeline 30 and second operation pipeline 31 that dusts that dusts, the outlet of the 3rd sub-cylinder 13 connects powder process operation pipeline 29, and five screw machines 21 are that above each corresponding operation is carried out air feed.In the prior art, be provided with the 3rd airing system (not shown in FIG.), be refinery coke operation air feed by the 3rd airing system simultaneously.
In the prior art, this airing system be provided with following defect: (1), airing system arrange dispersion, are not easy to unified management; (2) because airing system arranges dispersion, thereby not interkniting between each airing system, when difference air feed, easily there is the situation of air demand deficiency or air demand surplus in every group of airing system, and impact is produced and easily caused the wasting of resources simultaneously; (3) the second compressor 28, in above-mentioned the first airing system is old-fashioned V-type compressor, and working efficiency is low; (4), every group of airing system all need that staff is set and guard, and caused the waste of manpower.
Summary of the invention
The technical problems to be solved in the utility model is: overcome the deficiencies in the prior art, providing a kind of integrates a plurality of airing systems, realized same pipeline and the properly distributed of airing system, improved production efficiency and made the more reasonably combined air supply system of glass production line of manpower setting simultaneously.
The utility model solves the technical scheme that its technical problem adopts: the combined air supply system of this glass production line, comprise the first sub-cylinder, the second sub-cylinder, the 3rd sub-cylinder, it is characterized in that: be provided with the first air feed group being connected with the entrance of the 3rd sub-cylinder, the the second air feed group and the 3rd air feed group that are connected with the entrance of the first sub-cylinder and the second sub-cylinder, and the 4th air feed group being connected with the entrance of the first sub-cylinder, the second sub-cylinder and the 3rd sub-cylinder simultaneously;
The first sub-cylinder and the second sub-cylinder are respectively provided with five outlets, are provided with five delivery conduits simultaneously, and each delivery conduit is connected with an outlet in the second sub-cylinder with the first sub-cylinder; The 3rd sub-cylinder is provided with two outlets, and two outlets connect respectively the first delivery conduit and the second delivery conduit.
Preferably, the first described air feed group comprises: four screw machines and the first intake line, the outlet of four screw machines is respectively connected a valve afterwards by the entrance of the first intake line connection the 3rd sub-cylinder, and the first intake line is connected with the 3rd described air feed group simultaneously.
Preferably, the second described air feed group comprises: five the first compressors, whizzer and the second intake lines, the entrance of five the first compressors is connected respectively after a valve and is connected with the entrance of the second sub-cylinder with the first sub-cylinder, and the outlet of the whizzer valve of connecting is parallel on the second intake line afterwards.
Preferably, the 3rd described air feed group comprises: two screw machines and the 3rd intake line, the outlet of two screw machines is connected respectively after a valve and is connected with the 3rd intake line, the 3rd intake line is connected with the entrance of the second sub-cylinder, after the 3rd valve of simultaneously connecting, is connected with the entrance of the first sub-cylinder; Between the 3rd intake line and described the first intake line by the first valve UNICOM.
Preferably, the 4th described air feed group comprises: the 4th sub-cylinder and the 4th intake line, the outlet of the 4th sub-cylinder is connected and is connected one end of the 4th intake line after a valve, the other end of the 4th intake line is divided into three tunnels: the first via connects the entrance of the 3rd sub-cylinder, connects and connect the entrance that connects the second sub-cylinder after the entrance, Third Road series connection the 4th valve of the first sub-cylinder after the second valve in the second road.
Preferably, five described delivery conduits comprise to first instrument operation and the first atomization operation carry out air feed the 7th delivery conduit, first operation of dusting is carried out to the 6th delivery conduit of air feed, the 5th delivery conduit, second that second instrument operation and the second atomization operation are carried out to air feed dust the 4th delivery conduit of operation air feed and the 3rd delivery conduit of material process air feed.
Preferably, the first described delivery conduit is refinery coke operation air feed; The second described delivery conduit is powder process operation air feed.
Compared with prior art, the beneficial effect that the utility model has is: by original first, second and third airing system is integrated, all air feeders can be carried out to unified management and reasonably be assigned in each operation that needs air feed, avoided the situation of the confession QI-insufficiency that may occur when three groups of airing systems work alone in prior art or air feed excess phenomenon to occur, can open or close according to the actual gas consumption of each operation the air feed machine of respective numbers, avoided the waste of resource, made the air feed of each operation more stable simultaneously.
After three groups of airing systems are integrated, make one-piece construction compacter, reduced maintenance personnel's quantity, avoided the waste of manpower.
Omitted five the second compressors in former the first airing system, the machine of having banned highly energy-consuming, has saved resource simultaneously.
Accompanying drawing explanation
Fig. 1 is the combined air supply system architecture schematic diagram of glass production line.
Fig. 2 is prior art the first airing system structural representation.
Fig. 3 is prior art the second airing system structural representation.
Wherein: 1, the first compressor 2, the 4th sub-cylinder 3, the first valve 4, the first intake line 5, the second intake line 6, the 3rd intake line 7, the 4th intake line 8, the first sub-cylinder 9, the second valve 10, the 3rd valve 11, the 4th valve 12, the second sub-cylinder 13, the 3rd sub-cylinder 14, the first delivery conduit 15, the second delivery conduit 16, the 3rd delivery conduit 17, the 4th delivery conduit 18, the 5th delivery conduit 19, the 6th delivery conduit 20, the 7th delivery conduit 21, screw machine 22, whizzer 23, first instrument operation pipeline 24, second instrument operation pipeline 25, the first atomization operation pipeline 26, the second atomization operation pipeline 27, material process pipeline 28, the second compressor 29, powder process operation pipeline 30, the first operation pipeline 31 that dusts, the second operation pipeline that dusts.
Embodiment
Fig. 1 is most preferred embodiment of the present utility model, below in conjunction with 1 ~ 3 pair of the utility model of accompanying drawing, is described further.
In glass production line, be provided with the first airing system as shown in Figure 2, in the first airing system, five the first compressors 1, five the second compressors 28 and a screw machine 21 are connected corresponding operation are carried out to air feed with first instrument operation pipeline 23, second instrument operation pipeline 24, the first atomization operation pipeline 25, the second atomization operation pipeline 26 and material process pipeline 27 by the first sub-cylinder 8.In the second airing system shown in Fig. 3, five screw machines 21 are connected corresponding operation are carried out to air feed by the second sub-cylinder 12 and the 3rd sub-cylinder 13 and first dust operation pipeline 31 and the powder process operation pipeline 29 of operation pipeline 30 and second that dust.Being provided with the 3rd airing system (not shown in FIG.) simultaneously, being provided with its independently source of the gas and sub-cylinder (being the 4th sub-cylinder 2 shown in Fig. 1) in the 3rd airing system, is refinery coke operation air feed by the 3rd airing system.
In the combined air supply system of this glass production line, first, second airing system shown in above-mentioned Fig. 2 ~ 3 and the 3rd airing system are integrated, form airing system as shown in Figure 1.As shown in Figure 1, the outlet of five the first compressors 1 has been connected respectively after a valve and has been connected with the second intake line 5, the second intake line 5 is connected with the entrance of the second sub-cylinder 12 with the first sub-cylinder 8 simultaneously, and the outlet of whizzer 22 valve of connecting is parallel-connected on the second intake line 5 afterwards.The outlet of two screw machines 21 is connected respectively and is connected the 3rd intake line 6, the three intake lines 6 after a valve simultaneously and be connected with the entrance of the second sub-cylinder 12, and the 3rd valve 10 of simultaneously connecting is connected with the entrance of the first sub-cylinder 8 afterwards.The outlet of four screw machines 21 is connected respectively and is connected the first intake line 4, the first intake lines 4 after a valve simultaneously and be connected with the entrance of the 3rd sub-cylinder 13, between the first intake line 4 and the 3rd intake line 6, by the first valve 3, is connected.The entrance of the 4th sub-cylinder 2 in the 3rd above-mentioned airing system connects the source of the gas of the 3rd airing system, the outlet of the 4th sub-cylinder 2 is connected and is connected the 4th intake line 7 after a valve, the outlet of the 4th intake line 7 is divided into three tunnels: the first via connects the entrance of the 3rd sub-cylinder 13, connects and connect the entrance that connects the second sub-cylinder 12 after the entrance, Third Road series connection the 4th valve 11 of the first sub-cylinder 8 after the second valve 9 in the second road.Above-mentioned totally six screw machines 21 comprise in the second airing system in five in the first airing system in Fig. 2 and Fig. 3.
The first sub-cylinder 8 and the second sub-cylinder 12 are respectively provided with five outlets, and each exit is all in series with a valve.The outlet of the first sub-cylinder 8 and the second sub-cylinder 12 is respectively got an outlet and is coordinated one group of formation, therefore in totally ten outlets of the first sub-cylinder 8 and the second sub-cylinder 12, corresponding matching forms five groups of outlets: first group is connected with the 7th delivery conduit 20, the 7th delivery conduit 20 is connected with the first atomization operation pipeline 25 with above-mentioned first instrument operation pipeline 23, and first instrument operation and the first atomization operation are carried out to air feed; Second group is connected with the 6th delivery conduit 19, and the 6th the delivery conduit 19 and above-mentioned first operation pipeline 30 that dusts is connected, and first operation of dusting is carried out to air feed; The 3rd group is connected with the 5th delivery conduit 18, and the 5th delivery conduit 18 is connected with the second atomization operation pipeline 26 with above-mentioned second instrument operation pipeline 24, and second instrument operation and the second atomization operation are carried out to air feed; The 4th group is connected with the 4th delivery conduit 17, and the 4th the delivery conduit 17 and second operation pipeline 31 that dusts is connected, and is the second operation air feed that dusts; The 5th group is connected with the 3rd delivery conduit 16, and the 3rd delivery conduit 16 is connected with material process pipeline 27, is material process air feed.
The 3rd sub-cylinder 13 is provided with two outlets, after the valve of connecting respectively, is connected with the first delivery conduit 14 with the second delivery conduit 15, and the second delivery conduit 15 is connected with powder process operation pipeline 29, is powder process operation air feed; The first delivery conduit 14 be above-mentioned be refinery coke operation air feed.
By original first, second and third airing system is integrated, all air feeders can be carried out to unified management and reasonably be assigned in each operation that needs air feed, avoided the situation of the confession QI-insufficiency that may occur when three groups of airing systems work alone in prior art or air feed excess phenomenon to occur, can open or close according to the actual gas consumption of each operation the air feed machine of respective numbers, avoided the waste of resource, made the air feed of each operation more stable simultaneously.
After three groups of airing systems are integrated, make one-piece construction compacter, reduced maintenance personnel's quantity, avoided the waste of manpower.
Omitted five the second compressors 28 in former the first airing system, the machine of having banned highly energy-consuming, has saved resource simultaneously.
The above, it is only preferred embodiment of the present utility model, be not the utility model to be done to the restriction of other form, any those skilled in the art may utilize the technology contents of above-mentioned announcement to be changed or be modified as the equivalent embodiment of equivalent variations.But every technical solutions of the utility model content that do not depart from, any simple modification, equivalent variations and the remodeling above embodiment done according to technical spirit of the present utility model, still belong to the protection domain of technical solutions of the utility model.

Claims (7)

1. the combined air supply system of glass production line, comprise the first sub-cylinder (8), the second sub-cylinder (12), the 3rd sub-cylinder (13), it is characterized in that: be provided with the first air feed group being connected with the entrance of the 3rd sub-cylinder (13), the the second air feed group and the 3rd air feed group that are connected with the entrance of the first sub-cylinder (8) and the second sub-cylinder (12), and the 4th air feed group being connected with the entrance of the first sub-cylinder (8), the second sub-cylinder (12) and the 3rd sub-cylinder (13) simultaneously;
The first sub-cylinder (8) and the second sub-cylinder (12) are respectively provided with five outlets, are provided with five delivery conduits simultaneously, and each delivery conduit is connected with an outlet in the second sub-cylinder (12) with the first sub-cylinder (8); The 3rd sub-cylinder (13) is provided with two outlets, and two outlets connect respectively the first delivery conduit (14) and the second delivery conduit (15).
2. the combined air supply system of glass production line according to claim 1, it is characterized in that: the first described air feed group comprises: four screw machines (21) and the first intake line (4), the outlet of four screw machines (21) is respectively connected a valve afterwards by the entrance of the first intake line (4) connection the 3rd sub-cylinder (13), and the first intake line (4) is connected with the 3rd described air feed group simultaneously.
3. the combined air supply system of glass production line according to claim 1, it is characterized in that: the second described air feed group comprises: five the first compressors (1), whizzer (22) and the second intake line (5), the entrance of five the first compressors (1) is connected respectively after a valve and is connected with the entrance of the second sub-cylinder (12) with the first sub-cylinder (8), and the outlet of whizzer (22) valve of connecting is parallel on the second intake line (5) afterwards.
4. the combined air supply system of glass production line according to claim 1, it is characterized in that: the 3rd described air feed group comprises: two screw machines (21) and the 3rd intake line (6), the outlet of two screw machines (21) is connected respectively after a valve and is connected with the 3rd intake line (6), the 3rd intake line (6) is connected with the entrance of the second sub-cylinder (12), and the 3rd valve (10) of simultaneously connecting is connected with the entrance of the first sub-cylinder (8) afterwards; Between the 3rd intake line (6) and described the first intake line (4) by the first valve (3) UNICOM.
5. the combined air supply system of glass production line according to claim 1, it is characterized in that: the 4th described air feed group comprises: the 4th sub-cylinder (2) and the 4th intake line (7), the outlet of the 4th sub-cylinder (2) is connected and is connected one end of the 4th intake line (7) after a valve, the other end of the 4th intake line (7) is divided into three tunnels: the first via connects the entrance of the 3rd sub-cylinder (13), the second road the second valve (9) of connecting connects the entrance of the first sub-cylinder (8) afterwards, Third Road series connection the 4th valve (11) connects the entrance of the second sub-cylinder (12) afterwards.
6. the combined air supply system of glass production line according to claim 1, is characterized in that: five described delivery conduits comprise to first instrument operation and the first atomization operation carry out air feed the 7th delivery conduit (20), first operation of dusting is carried out to the 6th delivery conduit (19) of air feed, the 5th delivery conduit (18), second that second instrument operation and the second atomization operation are carried out to air feed dust the 4th delivery conduit (17) of operation air feed and the 3rd delivery conduit (16) of material process air feed.
7. the combined air supply system of glass production line according to claim 1, is characterized in that: described the first delivery conduit (14) is refinery coke operation air feed; Described the second delivery conduit (15) is powder process operation air feed.
CN201420377499.3U 2014-07-09 2014-07-09 The combined air supply system of glass production line Expired - Fee Related CN203960037U (en)

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CN201420377499.3U CN203960037U (en) 2014-07-09 2014-07-09 The combined air supply system of glass production line

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113499873A (en) * 2021-07-23 2021-10-15 张同胜 Multi-system integrated powder sprayer and using method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113499873A (en) * 2021-07-23 2021-10-15 张同胜 Multi-system integrated powder sprayer and using method thereof

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20141126

Termination date: 20180709