CN204665285U - A kind of feed arrangement of incinerator - Google Patents

A kind of feed arrangement of incinerator Download PDF

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Publication number
CN204665285U
CN204665285U CN201520151791.8U CN201520151791U CN204665285U CN 204665285 U CN204665285 U CN 204665285U CN 201520151791 U CN201520151791 U CN 201520151791U CN 204665285 U CN204665285 U CN 204665285U
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China
Prior art keywords
feed arrangement
framework
fixedly connected
cylinder
incinerator
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Expired - Fee Related
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CN201520151791.8U
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Chinese (zh)
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邹斌
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Abstract

A kind of feed arrangement of incinerator, comprise base, framework, material-pulling device, feed arrangement, pressurizing unit, conveyor-belt apparatus, material collecting device, filter and rewinding case, framework comprises the first through hole, second through hole, locating piece and twisted plate, material-pulling device comprises scraping wings, first cylinder, first pull bar and expeller, feed arrangement comprises the first support and charging frame, pressurizing unit comprises the second support, second cylinder, pressure ram and crushing block, conveyor-belt apparatus comprises conveyer belt, rotating shaft and support column, material collecting device comprises L-type frame, plugging block, spring, 3rd support, 3rd cylinder, lean bar, flat board and swash plate, L-type frame comprises horizontal part and vertical portion, horizontal part is fixedly connected with framework, the cross section of plugging block is at right angles trapezoidal, the upper surface of plugging block is that lower left upper right side tilts, lean bar and comprise vertical bar and tilting bar, the lower surface of tilting bar contacts with the upper surface of plugging block.The utility model is practical and convenient, and operating efficiency is high.

Description

A kind of feed arrangement of incinerator
[technical field]
The utility model relates to technical field of waste incineration, particularly relates to a kind of feed arrangement of incinerator.
[background technology]
Waste incineration is one of effective ways of domestic waste harmless treatment, mainly comprises drying garbage, incineration firing and slag emission three processes.Incinerator Duan Qianxu is entered by garbage pusher to incineration furnace grate front end at rubbish, but, owing to there being certain water content in domestic waste, in pusher process, rubbish often oozes out a certain amount of sewage and flow to outside body of heater, produce foul odour, cause garbage incinerating system annex space enrironment severe contamination.
Therefore, necessaryly a kind of new technical scheme that can effectively solve the problems of the technologies described above is provided.
[utility model content]
Main purpose of the present utility model is the feed arrangement providing a kind of incinerator that can effectively solve the problems of the technologies described above.
To achieve these goals, the utility model adopts following technical scheme:
A kind of feed arrangement of incinerator, the feed arrangement of described incinerator comprises base, be positioned at the framework above described base, be positioned at the material-pulling device on the left of described framework, be positioned at the feed arrangement above described material-pulling device, be positioned at the pressurizing unit on the right side of described feed arrangement, be positioned at the conveyor-belt apparatus on the right side of described framework, be positioned at the material collecting device above described conveyor-belt apparatus, the filter being positioned at described framework inside and the rewinding case be positioned at below described filter, described framework comprises and is positioned at the first through hole at left surface, be positioned at the second through hole at right surface, the locating piece being positioned at described framework inside and the twisted plate be positioned at below described locating piece, described material-pulling device comprises scraping wings, be positioned at the first cylinder on described scraping wings, the expeller being positioned at the first pull bar on the right side of described first cylinder and being positioned on the right side of described first pull bar, described feed arrangement comprises the first support and is positioned at the charging frame on the right side of described first support, described pressurizing unit comprises the second support, be positioned at the second cylinder on the right side of described second support, the crushing block being positioned at the pressure ram below described second cylinder and being positioned at below described pressure ram, described conveyor-belt apparatus comprises conveyer belt, the support column being positioned at the rotating shaft on the left of described conveyer belt and being positioned at below described rotating shaft, described material collecting device comprises L-type frame, be positioned at the plugging block on the left of described L-type frame, be positioned at the spring on the right side of described plugging block, be positioned at the 3rd support above described L-type frame, be positioned at the 3rd cylinder of described 3rd support side, be positioned at and lean bar below described 3rd cylinder, be positioned at the flat board below described plugging block and be positioned at the swash plate below described flat board, described L-type frame is L-type, described L-type frame comprises horizontal part and is positioned at the vertical portion below described horizontal part, the left surface of described horizontal part is fixedly connected with the right surface of described framework, the cross section of described plugging block is at right angles trapezoidal, the upper surface of described plugging block is that lower left upper right side tilts, one end of described spring is fixedly connected with the right surface of described plugging block, the other end of described spring is fixedly connected with the left surface of described vertical portion, the described bar that leans comprises the vertical bar being positioned at upper end and the tilting bar being positioned at described vertical bar lower end, described tilting bar is that lower left upper right side tilts, the lower surface of described tilting bar contacts with the upper surface of described plugging block, the right surface of described flat board is fixedly connected with the left surface of described vertical portion, the lower surface of described plugging block is connected with the upper surface slide of described flat board.
Described locating piece is cuboid, and one end of described locating piece is fixedly connected with the inner surface of described framework.
Described twisted plate is bending, and one end of described twisted plate is fixedly connected with the inner surface of described framework.
Described scraping wings is cuboid, and the right surface of described scraping wings is fixedly connected with the left surface of described framework.
Described first pull bar is cylinder, the left end of described first pull bar is connected with described first cylinder, the right surface of described first pull bar is fixedly connected with the left surface of described expeller, described expeller is cuboid, and the lower surface of described expeller is connected with the upper surface slide of described scraping wings.
Described charging frame is cuboid, and the lower surface of described charging frame is connected with the upper surface slide of described expeller, and the right surface of described charging frame is fixedly connected with the left surface of described framework.
Described crushing block is cuboid, and the side of described crushing block is connected with the internal slide of described framework, and the lower surface of described pressure ram is fixedly connected with the upper surface of described crushing block.
Described swash plate is that upper left lower right tilts, and the left end of described swash plate is fixedly connected with the right surface of described framework.
The activated carbon adsorption layer that described filter comprises filter, be positioned at stainless steel filtering net below described filter, be positioned at the quartz sand filtration layer below described stainless steel filtering net and be positioned at below described quartz sand filtration layer.
Described rewinding case is cuboid, and the lower surface of described rewinding case contacts with the upper surface of described base, and the upper surface of described rewinding case is recessed to form a host cavity downwards.
Compared with prior art; the utility model has following beneficial effect: the feed arrangement structure of the utility model incinerator is simple; can effectively rubbish be put in incinerator; can effectively prevent sewage from flowing out simultaneously; thus can effective protection of the environment, prevent the generation of foul odour around incinerator.The utility model is practical and convenient, and operating efficiency is high.
[accompanying drawing explanation]
Fig. 1 is the structural representation of the feed arrangement of the utility model incinerator.
[detailed description of the invention]
As shown in Figure 1, the feed arrangement of the utility model incinerator comprises base 1, is positioned at framework 2 above described base 1, is positioned at material-pulling device 3 on the left of described framework 2, is positioned at feed arrangement 9 above described material-pulling device 3, is positioned at pressurizing unit 4 on the right side of described feed arrangement 9, is positioned at conveyor-belt apparatus 5 on the right side of described framework 2, is positioned at the material collecting device 6 above described conveyor-belt apparatus 5, the filter 7 being positioned at described framework 2 inside and the rewinding case 8 be positioned at below described filter 7.
As shown in Figure 1, described base 1 is in cuboid.Described framework 2 in cuboid, described framework 2 comprise be positioned at the first through hole 21 at left surface, be positioned at the second through hole 22 at right surface, the locating piece 23 that is positioned at described framework 2 inside and the twisted plate 24 be positioned at below described locating piece 23.The lower surface of described framework 2 is fixedly connected with the upper surface of described base 1.Described first through hole 21 is in rectangular-shaped, and described first through hole 21 communicates with the inside of described framework 2.The upper surface of described second through hole 22 is skewed, tilts in lower left upper right side.The lower surface of described second through hole 22 is horizontal.Described locating piece 23 is in cuboid, and described locating piece 23 is provided with two and lays respectively at described both sides, and the locating piece 23 being positioned at the left and right sides is in sustained height.One end of described locating piece 23 is fixedly connected with the inner surface of described framework 2.Described twisted plate 24 is in bending, and described twisted plate 24 is provided with two and lays respectively at the left and right sides, and one end of described twisted plate 42 is fixedly connected with the inner surface of described framework 2.
As shown in Figure 1, described material-pulling device 3 comprise scraping wings 32, the first cylinder 31 be positioned on described scraping wings 32, the expeller 34 that is positioned at the first pull bar 33 on the right side of described first cylinder 31 and is positioned on the right side of described first pull bar 33.Described scraping wings 32 is in cuboid, and described scraping wings 32 horizontal positioned, the right surface of described scraping wings 32 is fixedly connected with the left surface of described framework 2.The lower surface of described first cylinder 31 is fixedly connected with the upper surface of described scraping wings 32.Described first pull bar 33 is in cylinder, the left end of described first pull bar 33 is connected with described first cylinder 32, described first pull bar 33 is moved left and right under the effect of described first cylinder 31, and the right surface of described first pull bar 33 is fixedly connected with the left surface of described expeller 34.Described expeller 34 is in cuboid, and the lower surface of described expeller 34 contacts with the upper surface slide of described scraping wings 32.Described first through hole 21 contacts with the side slip of described expeller 34, and described expeller 34 can be moved left and right in described first through hole 21.
As shown in Figure 1, described feed arrangement 9 comprises the first support 91 and is positioned at the charging frame 92 on the right side of described first support 91.Described first support 91 is in L-type, one end of described first support 91 is fixedly connected with the upper surface of described scraping wings 32, the other end of described first support 91 is fixedly connected with the side of described charging frame 92, the left surface of described first cylinder 31 contacts with described first support 91, thus gives described first cylinder 31 enough motive forces.Described charging frame 92 is in cuboid, and the upper and lower surface of described charging frame 92 communicates.The lower surface of described charging frame 92 contacts with the upper surface slide of described expeller 34.The right surface of described charging frame 92 is fixedly connected with the left surface of described framework 2, and the upper surface of described charging frame 92 is in same level in the upper surface of described framework 2.
As shown in Figure 1, described pressurizing unit 4 crushing block 44 that comprises the second support 41, be positioned at the second cylinder 42 on the right side of described second support 41, be positioned at the pressure ram 43 below described second cylinder 42 and be positioned at below described pressure ram 43.Described second support 41 is in L-type, and one end of described second support 41 is fixedly connected with the upper surface of described framework 2, and the other end of described second support 41 is fixedly connected with the side of described second cylinder 42.Described second cylinder 42 is positioned at the top of described framework 2.Described pressure ram 43 is in cylinder, and the upper end of described pressure ram 43 is connected with described second cylinder 42, and the upper surface that described framework 2 is passed in the lower end of described pressure ram 43 extends to the inside of described framework 2.Described crushing block 44 is in cuboid, the side of described crushing block 44 is connected with the internal slide of described framework 2, the lower surface of described pressure ram 43 is fixedly connected with the upper surface of described crushing block 44, makes described pressure ram 43 that described crushing block 44 can be driven to move up and down.
As shown in Figure 1, described conveyor-belt apparatus 5 support column 53 that comprises conveyer belt 51, be positioned at the rotating shaft 52 on the left of described conveyer belt 51 and be positioned at below described rotating shaft 52.Described support column 53 is in cuboid, and the lower surface of described support column 53 is fixedly connected with the upper surface of described base 1, and described rotating shaft 52 turns with the upper shaft of described support column 53 and is connected, and described rotating shaft 52 can be rotated in the upper end of described support column 53.Described conveyer belt 51 is enclosed in described rotating shaft 52 around, and described rotating shaft 52 rotarily drives described conveyer belt 51 and moves.
As shown in Figure 1, described material collecting device 6 is positioned at the right side of described framework 2 and is positioned at the top of described conveyor-belt apparatus 5.Described material collecting device 6 comprises L-type frame 61, be positioned at plugging block 62 on the left of described L-type frame 61, be positioned at spring 63 on the right side of described plugging block 62, be positioned at the 3rd support 64 above described L-type frame 61, be positioned at the 3rd cylinder 65 of described 3rd support 64 side, be positioned at the swash plate 68 leaning bar 66, be positioned at the flat board 67 below described plugging block 62 and be positioned at below described dull and stereotyped 67 below described 3rd cylinder 65.Described L-type frame 61 is in L-type, and it comprises horizontal part and is positioned at the vertical portion below described horizontal part, described vertical portion and described horizontal part one-body molded.The left surface of described horizontal part is fixedly connected with the right surface of described framework 2.The cross section of described plugging block 62 is at right angles trapezoidal, the left end of described plugging block 62 is contained in described second through hole 22, the upper surface of described plugging block 62 is that lower left upper right side tilts, and the surface, left and right of described plugging block 62 is in perpendicular, and the lower surface of described plugging block 62 is horizontal plane.When described plugging block 62 is contained in described second through hole 22, the upper surface of described plugging block 62 contacts with the upper surface of described second through hole 22, the lower surface of described plugging block 62 contacts with the lower surface of described second through hole 22, thus by clogging for described second through hole 22.Described spring 63 is provided with two and lays respectively at upper and lower both sides, and one end of described spring 63 is fixedly connected with the right surface of described plugging block 62, and the other end of described spring 63 is fixedly connected with the left surface of described vertical portion.Described 3rd cylinder 65 is positioned at the top of described L-type frame 61, and described 3rd support 64 is in L-type, and one end of described 3rd support 64 is fixedly connected with the upper surface of described horizontal part, and the other end of described 3rd support 64 is fixedly connected with the side of described 3rd cylinder 65.The described bar 66 that leans comprises the vertical bar being positioned at upper end and the tilting bar being positioned at described vertical bar lower end, described vertical bar and described tilting bar one-body molded.The upper end of described vertical bar is connected with described 3rd cylinder 65, and described vertical bar can be moved up and down.The lower end of described vertical bar extends to the below of described horizontal part through the upper and lower surface of described horizontal part.Described tilting bar is that lower left upper right side tilts, the lower surface of described tilting bar contacts with the upper surface of described plugging block 62, thus when described in lean bar 66 move down under the effect of described 3rd cylinder 65 time, described plugging block 62 is moved right, thus the second through hole 22 is opened.Described dull and stereotyped 67 in cuboid, described dull and stereotyped 67 horizontal positioned, and the right surface of described dull and stereotyped 67 is fixedly connected with the left surface of described vertical portion, and described dull and stereotyped 67 exist certain interval with the right surface of described framework 2.The lower surface of described plugging block 62 contacts with the described upper surface slide of dull and stereotyped 67.Described swash plate 68 tilts in upper left lower right, the left end of described swash plate 68 is fixedly connected with the right surface of described framework 2, the right-hand member of described swash plate 69 from described left end downwards and extend to form to the right, the lower surface of described swash plate 68 and the lower surface of described vertical portion are in same level, and described conveyer belt 51 is aimed in the outlet that described swash plate 68 and described vertical portion are formed.
As shown in Figure 1, the described filter 7 filtrate gathering system 75 that comprises filter 71, be positioned at stainless steel filtering net 72 below described filter 71, be positioned at quartz sand filtration layer 73 below described stainless steel filtering net 72, be positioned at the activated carbon adsorption layer 74 below described quartz sand filtration layer 73 and be positioned at below described activated carbon adsorption layer 74.Described filter 71 is in cuboid, and the side of described filter 71 is fixedly connected with the inner surface of described framework 2, and the lower surface of described filter 71 is fixedly connected with the upper surface of described locating piece 23, thus the position of filter 71 is fixed.Described stainless steel filtering net 72, quartz sand filtration layer 73, activated carbon adsorption layer 74 and filtrate gathering system 75 are positioned at the below of described locating piece 23 and can purify also liquid, prevent its contaminated environment.
As shown in Figure 1, described rewinding case 8 is in cuboid, the lower surface of described rewinding case 8 contacts with the upper surface of described base 1, the upper surface of described rewinding case 8 is recessed to form a host cavity 81 downwards, described host cavity 81 is in cuboid, described twisted plate 24 is positioned at directly over described rewinding case 8, makes the liquid slipped on described twisted plate 24 can enter into host cavity 81 on rewinding case 8.
As shown in Figure 1, when the feed arrangement of described the utility model incinerator uses, first rubbish is put into from charging frame 91, then drop on scraping wings 32, then start the first cylinder 31, rubbish is shifted onto on the upper surface of the filter 71 of framework 2 by expeller 34.Then the second cylinder 42 is started, crushing block 44 is made to move down pressing waste, make integrally extruding wherein, the upper surface that the liquid extruded slips over twisted plate 24 through the filtration of filter 71 and stainless steel filtering net 72, quartz sand filtration layer 73, activated carbon adsorption layer 74 and filtrate gathering system 75 flows in the host cavity 81 of rewinding frame 8.After extruding, crushing block 44 moves up under the effect of described second cylinder 42, then the 3rd cylinder 65 is started, make to lean bar 66 to move down, plugging block 62 is moved right, then starts the first cylinder 31, make expeller 34 shift the rubbish after crushed the right side of framework 2 onto, now then its upper surface dropping on swash plate 68 drops on conveyer belt 51, under the transmission of conveyer belt 51, be transported to subsequent processing.Then expeller 34 is moved to the left high order end under the effect of the first cylinder 31, and then close the 3rd cylinder 65, described plugging block 62 is contained in the second through hole 22 under the effect of described spring 63.So far, the feed arrangement use procedure of the utility model incinerator is described.
Obviously, above-described embodiment is only used to clearly example is described, and the restriction not to embodiment.For those of ordinary skill in the field, other multi-form change or variations can also be made on the basis of the above description.Here without the need to also giving exhaustive to all embodiments.And thus the apparent change of amplifying out or variation be still among the protection domain that the utility model creates.

Claims (10)

1. the feed arrangement of an incinerator, it is characterized in that: the feed arrangement of described incinerator comprises base, be positioned at the framework above described base, be positioned at the material-pulling device on the left of described framework, be positioned at the feed arrangement above described material-pulling device, be positioned at the pressurizing unit on the right side of described feed arrangement, be positioned at the conveyor-belt apparatus on the right side of described framework, be positioned at the material collecting device above described conveyor-belt apparatus, the filter being positioned at described framework inside and the rewinding case be positioned at below described filter, described framework comprises and is positioned at the first through hole at left surface, be positioned at the second through hole at right surface, the locating piece being positioned at described framework inside and the twisted plate be positioned at below described locating piece, described material-pulling device comprises scraping wings, be positioned at the first cylinder on described scraping wings, the expeller being positioned at the first pull bar on the right side of described first cylinder and being positioned on the right side of described first pull bar, described feed arrangement comprises the first support and is positioned at the charging frame on the right side of described first support, described pressurizing unit comprises the second support, be positioned at the second cylinder on the right side of described second support, the crushing block being positioned at the pressure ram below described second cylinder and being positioned at below described pressure ram, described conveyor-belt apparatus comprises conveyer belt, the support column being positioned at the rotating shaft on the left of described conveyer belt and being positioned at below described rotating shaft, described material collecting device comprises L-type frame, be positioned at the plugging block on the left of described L-type frame, be positioned at the spring on the right side of described plugging block, be positioned at the 3rd support above described L-type frame, be positioned at the 3rd cylinder of described 3rd support side, be positioned at and lean bar below described 3rd cylinder, be positioned at the flat board below described plugging block and be positioned at the swash plate below described flat board, described L-type frame is L-type, described L-type frame comprises horizontal part and is positioned at the vertical portion below described horizontal part, the left surface of described horizontal part is fixedly connected with the right surface of described framework, the cross section of described plugging block is at right angles trapezoidal, the upper surface of described plugging block is that lower left upper right side tilts, one end of described spring is fixedly connected with the right surface of described plugging block, the other end of described spring is fixedly connected with the left surface of described vertical portion, the described bar that leans comprises the vertical bar being positioned at upper end and the tilting bar being positioned at described vertical bar lower end, described tilting bar is that lower left upper right side tilts, the lower surface of described tilting bar contacts with the upper surface of described plugging block, the right surface of described flat board is fixedly connected with the left surface of described vertical portion, the lower surface of described plugging block is connected with the upper surface slide of described flat board.
2. the feed arrangement of incinerator as claimed in claim 1, it is characterized in that: described locating piece is cuboid, one end of described locating piece is fixedly connected with the inner surface of described framework.
3. the feed arrangement of incinerator as claimed in claim 2, it is characterized in that: described twisted plate is bending, one end of described twisted plate is fixedly connected with the inner surface of described framework.
4. the feed arrangement of incinerator as claimed in claim 3, it is characterized in that: described scraping wings is cuboid, the right surface of described scraping wings is fixedly connected with the left surface of described framework.
5. the feed arrangement of incinerator as claimed in claim 4, it is characterized in that: described first pull bar is cylinder, the left end of described first pull bar is connected with described first cylinder, the right surface of described first pull bar is fixedly connected with the left surface of described expeller, described expeller is cuboid, and the lower surface of described expeller is connected with the upper surface slide of described scraping wings.
6. the feed arrangement of incinerator as claimed in claim 5, it is characterized in that: described charging frame is cuboid, the lower surface of described charging frame is connected with the upper surface slide of described expeller, and the right surface of described charging frame is fixedly connected with the left surface of described framework.
7. the feed arrangement of incinerator as claimed in claim 6, it is characterized in that: described crushing block is cuboid, the side of described crushing block is connected with the internal slide of described framework, and the lower surface of described pressure ram is fixedly connected with the upper surface of described crushing block.
8. the feed arrangement of incinerator as claimed in claim 7, is characterized in that: described swash plate is that upper left lower right tilts, and the left end of described swash plate is fixedly connected with the right surface of described framework.
9. the feed arrangement of incinerator as claimed in claim 8, is characterized in that: described filter comprises filter, the activated carbon adsorption layer that is positioned at stainless steel filtering net below described filter, is positioned at the quartz sand filtration layer below described stainless steel filtering net and is positioned at below described quartz sand filtration layer.
10. the feed arrangement of incinerator as claimed in claim 9, it is characterized in that: described rewinding case is cuboid, the lower surface of described rewinding case contacts with the upper surface of described base, and the upper surface of described rewinding case is recessed to form a host cavity downwards.
CN201520151791.8U 2015-03-17 2015-03-17 A kind of feed arrangement of incinerator Expired - Fee Related CN204665285U (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105251762A (en) * 2015-10-24 2016-01-20 刘洋 Device for treating petroleum-contaminated soil
CN105329588A (en) * 2015-10-30 2016-02-17 苏文达 Sorting dustbin
CN105329576A (en) * 2015-10-30 2016-02-17 苏文达 Environment-friendly trash bin
CN106552446A (en) * 2016-11-08 2017-04-05 东莞市天合机电开发有限公司 A kind of push-press type equipment for separating liquid from solid
CN108238384A (en) * 2018-03-20 2018-07-03 浙江聚光交通设施有限公司 A kind of town road garbage recovery device
CN109114574A (en) * 2018-08-01 2019-01-01 六安市智奇工业设计有限公司 A kind of medical garbage combustion device
CN113018962A (en) * 2021-02-25 2021-06-25 邓师广 Solid-liquid separation device for garbage disposal
CN116792755A (en) * 2023-08-08 2023-09-22 山东福航新能源环保股份有限公司 Garbage incinerator loading attachment

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105251762A (en) * 2015-10-24 2016-01-20 刘洋 Device for treating petroleum-contaminated soil
CN105329588A (en) * 2015-10-30 2016-02-17 苏文达 Sorting dustbin
CN105329576A (en) * 2015-10-30 2016-02-17 苏文达 Environment-friendly trash bin
CN105329576B (en) * 2015-10-30 2018-10-02 嘉兴欧祥通讯设备有限公司 Environment-protection garbage can
CN106552446A (en) * 2016-11-08 2017-04-05 东莞市天合机电开发有限公司 A kind of push-press type equipment for separating liquid from solid
CN106552446B (en) * 2016-11-08 2019-02-19 徐菊红 A kind of push-press type equipment for separating liquid from solid
CN108238384A (en) * 2018-03-20 2018-07-03 浙江聚光交通设施有限公司 A kind of town road garbage recovery device
CN109114574A (en) * 2018-08-01 2019-01-01 六安市智奇工业设计有限公司 A kind of medical garbage combustion device
CN113018962A (en) * 2021-02-25 2021-06-25 邓师广 Solid-liquid separation device for garbage disposal
CN116792755A (en) * 2023-08-08 2023-09-22 山东福航新能源环保股份有限公司 Garbage incinerator loading attachment
CN116792755B (en) * 2023-08-08 2024-01-30 山东福航新能源环保股份有限公司 Garbage incinerator loading attachment

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