CN213700055U - Ore crushing device convenient to specification is categorised - Google Patents

Ore crushing device convenient to specification is categorised Download PDF

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Publication number
CN213700055U
CN213700055U CN202022253316.5U CN202022253316U CN213700055U CN 213700055 U CN213700055 U CN 213700055U CN 202022253316 U CN202022253316 U CN 202022253316U CN 213700055 U CN213700055 U CN 213700055U
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dust
crushing
baffle
box
stones
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王润海
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Jiaxian Zhonghe Building Materials Co ltd
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Jiaxian Zhonghe Building Materials Co ltd
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Abstract

The utility model discloses an ore crushing device convenient for specification classification, which comprises a device body and an internal mechanism, wherein in the process of stone crushing, some stones splash to both sides, a baffle is arranged to separate the stones, the stones after separation can vertically fall down and be crushed through the middle of a crushing tooth and a crushing tooth, the baffle can be adjusted in distance through a threaded rod, an outer end operator only needs to hold a handle to rotate the threaded rod in a threaded sleeve, the crushed stones can be screened through a first sieve plate and a second sieve plate, the aperture of the first sieve plate is larger than that of the second sieve plate, the device can classify the stones with different specifications after the stones are crushed, a dust absorption air pump can absorb dust generated after crushing stones in a machine body inner cavity through an air suction pipe and a dust absorption cover, and the sucked dust is discharged to the inner side of a water tank through an output pipe, the active carbon layer of installation can purify the dust, prevents directly discharging to the fuselage outside and influences the surrounding environment.

Description

Ore crushing device convenient to specification is categorised
Technical Field
The utility model relates to an ore processing technology field specifically is an ore crushing device convenient to specification is categorised.
Background
The ore is a mineral aggregate which can extract useful components from the ore or has certain utilizable performance, and can be divided into metal minerals and non-metal minerals, and the ore can be applied to engineering fields such as metal mines, metallurgical industry, chemical industry, building industry, iron (highway) construction units, cement industry, sandstone industry and the like after being processed step by crushing, grinding and the like.
Most of crushing devices on the market today are behind the ore crushing, can only carry out preliminary screening, the ore screening of coming out in great specification range, can't carry out more refined screening according to the actual production needs, the process that makes whole broken screening is comparatively complicated, and after dropping into the ore building stones, some building stones will splash to the both sides of device probably cause not to carry out the surface that the breakage just directly falls to the sieve, the regulation nature and the practicality that make the device when the breakage are unsatisfactory, and will produce a large amount of dusts during broken ore, if will cause harm to the health by the direct suction of human body, it is unsatisfactory to make holistic feature of environmental protection.
Aiming at the problems, the adjustment, the practicability and the environmental protection of the crushing device are improved. To this end, an ore crushing device is proposed which facilitates specification classification.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an ore crushing device convenient to specification is categorised has improved breaker's regulation nature, practicality and feature of environmental protection, has solved the problem of proposing in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: an ore crushing device convenient for specification classification comprises a device body and an internal mechanism, wherein the internal mechanism is arranged in an inner cavity of the device body, the device body comprises a machine body, a feeding hole, an observation window, a motor box, a control panel, a first collecting box, a second collecting box and a dust collecting box, the feeding hole is formed in the top end of the machine body, the observation window is formed in the upper end of the front surface of the machine body, the motor box is arranged at the lower end of the observation window, the control panel is arranged on the outer surface of the motor box, the first collecting box is arranged on one side of the machine body, the second collecting box is arranged on the side of the machine body, which is far;
the inside mechanism includes the crushing roller, broken tooth, the adjusting part, screening subassembly, vibrating motor, ejector pin and breathing pipe, the crushing roller is installed to the inner chamber of fuselage, and the crushing roller is located the lower extreme of feed inlet, the surface of crushing roller is provided with broken tooth, and the quantity that the crushing roller set up is two sets of at least, the adjusting part is installed to the both sides of crushing roller, screening subassembly is installed to the lower extreme of crushing roller, vibrating motor is installed to one side lower extreme of screening subassembly, the ejector pin is installed to vibrating motor's upper end, one side that vibrating motor was kept away from to the screening subassembly is installed the breathing pipe.
Further, the dust collection box includes water tank, dust absorption air pump, output tube and activated carbon layer, and the water tank is installed to the inner chamber bottom of dust collection box, and the dust absorption air pump is installed to upper end one side of water tank, and dust absorption air pump and breathing pipe swing joint, and the output tube is installed to one side that the breathing pipe was kept away from to the dust absorption air pump, and the activated carbon layer is installed to the inner chamber bottom of water tank.
Further, the adjusting part includes the baffle, smashes tooth and threaded rod, and the baffle is installed to the lower extreme both sides of feed inlet, and the baffle is located the both sides of crushing roller, and crushing tooth is installed to one side of baffle, and the threaded rod is installed to one side that the baffle kept away from crushing tooth, and threaded rod and baffle swing joint.
Further, the threaded rod includes bearing, handle and thread bush, and the threaded rod passes through one side swing joint of bearing and baffle, and the handle is installed to one side that the baffle was kept away from to the threaded rod, and the handle is located the outside of fuselage, and the thread bush is installed to the centre of threaded rod, and the thread bush runs through the fuselage.
Further, the screening subassembly includes first sieve, the second sieve, first discharge gate, the second discharge gate and material receiving box, first sieve is installed to the lower extreme of crushing roller, the second sieve is installed to the lower extreme of first sieve, first discharge gate has been seted up to one side of first sieve, first discharge gate and first collecting box swing joint, the second discharge gate has been seted up to one side that first discharge gate was kept away from to the second discharge gate, and second discharge gate and second collecting box swing joint, material receiving box is installed to the lower extreme of second sieve, and material receiving box is located the bottom of fuselage inner chamber.
Furthermore, the breathing pipe includes suction hood, L type fixed plate and fixing bolt, and the suction hood is installed to the one side that the breathing pipe kept away from the dust absorption air pump, and the suction hood is located one side of fuselage inner chamber, and L type fixed plate is installed at the both ends of suction hood, and fixing bolt runs through the suction hood through L type fixed plate.
Furthermore, the dust hood comprises a filter screen, and the surface of one side of the dust hood, which is far away from the air suction pipe, is provided with the filter screen.
Further, the motor box is electrically connected with the control panel, and the output end of a motor in the motor box is movably connected with the output end of the crushing roller.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model provides an ore crushing device convenient to specification classification, when building stones fall into the middle of the crushing roller through the feed inlet, broken tooth will carry out broken dispersion to building stones, in the broken process of building stones, some building stones will splash to both sides, the baffle that sets up can separate the building stones, building stones after separating the fender can fall perpendicularly and break through the middle of crushing tooth and broken tooth, avoid building stones not to have through the broken direct whereabouts, and the baffle can carry out distance control through the threaded rod, outer end operating personnel only need to hold the handle and make the threaded rod rotate in the threaded sleeve, improve holistic regulation;
2. the utility model provides a mineral breaker convenient to specification is categorised, the building stones after the breakage will be sieved through first sieve and second sieve, the aperture of first sieve is greater than the aperture of second sieve, can't pass through the building stones of first sieve, will fall into the inboard of first collecting box through first discharge gate according to the inclination of first sieve, can't pass through the building stones of second sieve, will fall into the inboard of second collecting box through the second discharge gate according to the inclination of second sieve, building stones through the second sieve will fall into the inboard of material receiving box, make the device can classify the building stones of different specifications after the building stones are broken, improve holistic practicality;
3. the utility model provides a pair of ore crushing device convenient to specification is categorised, the dust absorption air pump can adsorb the dust that produces after the building stones of fuselage inner chamber are smashed through breathing pipe and suction hood, the suction hood is fixed through L type fixed plate, and the filter screen of installation can block the building stones of whereabouts, prevent that building stones from being inhaled by the dust absorption air pump, make the dust can normally be inhaled simultaneously, the dust after inhaling will discharge the inboard of water tank through the output tube, prevent that the inboard at the dust collection box from producing the raise dust, the activated carbon layer of installation can purify the dust, prevent to directly discharge the fuselage outside and influence the surrounding environment, improve holistic environmental protection effect.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the internal mechanism of the present invention;
FIG. 3 is a schematic view of the internal structure of the dust collecting box of the present invention;
FIG. 4 is a cross-sectional view of an adjustment assembly of the present invention;
fig. 5 is a partial enlarged view of the air suction pipe of the present invention.
In the figure: 1. a device body; 11. a body; 12. a feed inlet; 13. an observation window; 14. a motor case; 15. a control panel; 16. a first collection tank; 17. a second collection tank; 18. a dust collection box; 181. a water tank; 182. a dust absorption air pump; 183. an output pipe; 184. an activated carbon layer; 2. an internal mechanism; 21. a crushing roller; 22. crushing teeth; 23. an adjustment assembly; 231. a baffle plate; 232. crushing teeth; 233. a threaded rod; 2331. a bearing; 2332. a handle; 2333. a threaded sleeve; 24. a screen assembly; 241. a first screen deck; 242. a second screen deck; 243. a first discharge port; 244. a second discharge port; 245. a material receiving box; 25. a vibration motor; 26. a top rod; 27. an air intake duct; 271. a dust hood; 2711. a filter screen; 272. an L-shaped fixing plate; 273. and (5) fixing the bolt.
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. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-2, an ore crushing device convenient for specification classification comprises a device body 1 and an internal mechanism 2, wherein the internal mechanism 2 is installed in an inner cavity of the device body 1, the device body 1 comprises a machine body 11, a feed port 12, an observation window 13, a motor box 14, a control panel 15, a first collecting box 16, a second collecting box 17 and a dust collecting box 18, the feed port 12 is formed in the top end of the machine body 11, the observation window 13 is formed in the upper end of the front side of the machine body 11, the motor box 14 is installed at the lower end of the observation window 13, the control panel 15 is installed on the outer surface of the motor box 14, the first collecting box 16 is installed on one side of the machine body 11, the second collecting box 17 is installed on one side of the machine body 11 away from the first collecting box 16, the dust collecting box 18 is installed on the upper end of the second collecting box 17, and the internal mechanism, Ejector pin 26 and breathing pipe 27, crushing roller 21 is installed to the inner chamber of fuselage 11, and crushing roller 21 is located the lower extreme of feed inlet 12, the surface of crushing roller 21 is provided with broken tooth 22, and the quantity that crushing roller 21 set up is two sets of at least, adjusting part 23 is installed to the both sides of crushing roller 21, screening subassembly 24 is installed to the lower extreme of crushing roller 21, vibrating motor 25 is installed to one side lower extreme of screening subassembly 24, ejector pin 26 is installed to vibrating motor 25's upper end, screening subassembly 24 is kept away from one side of vibrating motor 25 and is installed breathing pipe 27.
Referring to fig. 2-5, an ore crushing device convenient for specification classification, a dust collecting box 18 includes a water tank 181, a dust-absorbing air pump 182, an output pipe 183 and an activated carbon layer 184, the water tank 181 is installed at the bottom end of an inner cavity of the dust collecting box 18, the dust-absorbing air pump 182 is installed at one side of the upper end of the water tank 181 and movably connected with an air suction pipe 27, the output pipe 183 is installed at one side of the dust-absorbing air pump 182 far away from the air suction pipe 27, the activated carbon layer 184 is installed at the bottom end of the inner cavity of the water tank 181, an adjusting assembly 23 includes a baffle plate 231, crushing teeth 232 and threaded rods 233, the baffle plate 231 is installed at two sides of the lower end of the feed inlet 12, the baffle plate 231 is located at two sides of the crushing roller 21, the crushing teeth 232 are installed at one side of the baffle plate 231, the threaded rods 233 are installed, the threaded rod 233 is movably connected with one side of the baffle plate 231 through a bearing 2331, a handle 2332 is arranged at one side of the threaded rod 233 far away from the baffle plate 231, the handle 2332 is positioned at the outer side of the body 11, a screw boss 2333 is installed at the middle of the screw rod 233, and the screw boss 2333 penetrates through the body 11, when rock material falls through the feed opening 12 into the middle of the crushing roller 21, the crushing teeth 22 will crush and disperse the rock material, during the process of stone crushing, some stones will splash to both sides, the baffle 231 can be used to block the stones, when the blocked stone can vertically fall through the middle of the crushing teeth 232 and the crushing teeth 22 for crushing, the stone is prevented from directly falling without being crushed, and the distance of the baffle 231 can be adjusted through the threaded rod 233, and an operator at the outer end only needs to hold the handle 2332 to rotate the threaded rod 233 in the threaded sleeve 2333, so that the overall adjustability is improved.
The screening assembly 24 comprises a first screening plate 241, a second screening plate 242, a first discharging port 243, a second discharging port 244 and a material receiving box 245, the first screening plate 241 is installed at the lower end of the crushing roller 21, the second screening plate 242 is installed at the lower end of the first screening plate 241, the first discharging port 243 is formed in one side of the first screening plate 241, the first discharging port 243 is movably connected with the first collecting box 16, the second discharging port 244 is formed in the side, away from the first discharging port 243, of the second discharging port 244, the second discharging port 244 is movably connected with the second collecting box 17, the material receiving box 245 is installed at the lower end of the second screening plate 242 and is located at the bottom end of the inner cavity of the machine body 11, crushed stone can be screened through the first screening plate 241 and the second screening plate 242, the aperture of the first screening plate 241 is larger than that of the second screening plate 242, the stone which cannot pass through the screening plate 241 of the first screening plate 241 can fall into the inner side of the first collecting, the building stones that can't pass through the second sieve 242 will fall into the inboard of second collecting box 17 through second discharge gate 244 according to the inclination of second sieve 242, and the building stones through second sieve 242 will fall into the inboard of material receiving box 245, makes the device can classify the building stones of different specifications after the building stones are broken, improves holistic practicality.
The suction pipe 27 includes a suction hood 271, an L-shaped fixing plate 272 and a fixing bolt 273, the suction hood 271 is installed on one side of the suction pipe 27 away from the suction air pump 182, the suction hood 271 is located on one side of the inner cavity of the body 11, the L-shaped fixing plates 272 are installed on both ends of the suction hood 271, the fixing bolt 273 penetrates the suction hood 271 through the L-shaped fixing plate 272, the suction hood 271 includes a filter screen 2711, the filter screen 2711 is installed on one side of the suction hood 271 away from the suction pipe 27, the suction air pump 182 can absorb dust generated by crushing stones in the inner cavity of the body 11 through the suction pipe 27 and the suction hood 271, the suction hood 271 is fixed through the L-shaped fixing plate 272, and the filter screen 2711 installed can block falling stones to prevent the stones from being sucked by the suction air pump 182 and simultaneously make the dust normally sucked by the suction air pump 183 to be discharged to the inner side of the water tank 181 to prevent dust from being raised inside, activated carbon layer 184 of installation can purify the dust, prevents directly to discharge the fuselage 11 outside influence surrounding environment, improves holistic environmental protection effect, and motor case 14 and control panel 15 electric connection, and the motor output in the motor case 14 and the output swing joint of crushing roller 21.
In summary, the following steps: the utility model provides an ore crushing device convenient to specification is categorised, when the building stones falls into the centre of crushing roller 21 through feed inlet 12, broken tooth 22 will break the building stones and disperse, in the broken in-process of building stones, some building stones will splash to both sides, baffle 231 that sets up can separate the building stones, building stones after separating can fall through the centre of smashing tooth 232 and broken tooth 22 perpendicularly and break, avoid the building stones not through the breakage just directly fall, and baffle 231 can carry out the distance adjustment through threaded rod 233, outer end operating personnel only need to hold handle 2332 and make threaded rod 233 rotate in threaded sleeve 2333 can, improve holistic regulation, the building stones after the breakage will be sieved through first sieve 241 and second sieve 242, the aperture of first sieve 241 is greater than the aperture of second sieve 242, can't pass through first sieve 241, the stones which fall into the first collecting box 16 through the first discharging hole 243 according to the inclination angle of the first sieve plate 241 and cannot pass through the second sieve plate 242 fall into the second collecting box 17 through the second discharging hole 244 according to the inclination angle of the second sieve plate 242, the stones which pass through the second sieve plate 242 fall into the material receiving box 245, so that the device can classify stones with different specifications after the stones are crushed, thereby improving the overall practicability, the dust suction air pump 182 can absorb the dust generated after crushing stones in the inner cavity of the machine body 11 through the air suction pipe 27 and the dust suction cover 271, the dust suction cover 271 is fixed through the L-shaped fixing plate 272, the installed filter screen 2711 can block the falling stones, thereby preventing the stones from being sucked by the dust suction air pump 182 and simultaneously enabling the dust to be normally sucked, the sucked dust is discharged to the inner side of the water tank 181 through the output pipe 183, and preventing the dust from being generated in the inner side of the dust collecting box 18, the installed activated carbon layer 184 can purify dust, prevent the dust from being directly discharged to the outside of the machine body 11 to influence the surrounding environment, and improve the overall environmental protection effect.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. The utility model provides an ore crushing device convenient to specification is categorised, includes device body (1) and internal mechanism (2), and the inner chamber at device body (1) is installed in internal mechanism (2), its characterized in that: the device body (1) comprises a machine body (11), a feed inlet (12), an observation window (13), a motor box (14), a control panel (15), a first collecting box (16), a second collecting box (17) and a dust collecting box (18), wherein the feed inlet (12) is formed in the top end of the machine body (11), the observation window (13) is formed in the upper end of the front surface of the machine body (11), the motor box (14) is installed at the lower end of the observation window (13), the control panel (15) is installed on the outer surface of the motor box (14), the first collecting box (16) is installed on one side of the machine body (11), the second collecting box (17) is installed on one side, away from the first collecting box (16), of the machine body (11), and the dust collecting box (18;
inside mechanism (2) are including crushing roller (21), broken tooth (22), adjusting part (23), screening subassembly (24), vibrating motor (25), ejector pin (26) and breathing pipe (27), crushing roller (21) are installed to the inner chamber of fuselage (11), and crushing roller (21) are located the lower extreme of feed inlet (12), the surface of crushing roller (21) is provided with broken tooth (22), and the quantity that crushing roller (21) set up is two sets of at least, adjusting part (23) are installed to the both sides of crushing roller (21), screening subassembly (24) are installed to the lower extreme of crushing roller (21), vibrating motor (25) are installed to one side lower extreme of screening subassembly (24), ejector pin (26) are installed to the upper end of vibrating motor (25), one side that vibrating motor (25) were kept away from in screening subassembly (24) is installed breathing pipe (27).
2. A mineral breaker apparatus to facilitate size classification as claimed in claim 1 wherein: dust collection box (18) include water tank (181), dust absorption air pump (182), output tube (183) and activated carbon layer (184), and water tank (181) are installed to the inner chamber bottom of dust collection box (18), and dust absorption air pump (182) are installed to upper end one side of water tank (181), and dust absorption air pump (182) and breathing pipe (27) swing joint, and output tube (183) are installed to the one side that breathing pipe (27) were kept away from in dust absorption air pump (182), and activated carbon layer (184) are installed to the inner chamber bottom of water tank (181).
3. A mineral breaker apparatus to facilitate size classification as claimed in claim 1 wherein: adjusting part (23) include baffle (231), smash tooth (232) and threaded rod (233), and baffle (231) are installed to the lower extreme both sides of feed inlet (12), and baffle (231) are located the both sides of crushing roller (21), and crushing tooth (232) are installed to one side of baffle (231), and threaded rod (233) are installed to one side that crushing tooth (232) were kept away from in baffle (231), and threaded rod (233) and baffle (231) swing joint.
4. A mineral breaker apparatus to facilitate size classification as claimed in claim 3 wherein: the threaded rod (233) comprises a bearing (2331), a handle (2332) and a threaded sleeve (2333), the threaded rod (233) is movably connected with one side of the baffle plate (231) through the bearing (2331), the handle (2332) is installed on one side, away from the baffle plate (231), of the threaded rod (233), the handle (2332) is located on the outer side of the machine body (11), the threaded sleeve (2333) is installed in the middle of the threaded rod (233), and the threaded sleeve (2333) penetrates through the machine body (11).
5. A mineral breaker apparatus to facilitate size classification as claimed in claim 1 wherein: the screening assembly (24) comprises a first screening plate (241), a second screening plate (242), a first discharging hole (243), a second discharging hole (244) and a material receiving box (245), the first screening plate (241) is installed at the lower end of the crushing roller (21), the second screening plate (242) is installed at the lower end of the first screening plate (241), the first discharging hole (243) is formed in one side of the first screening plate (241), the first discharging hole (243) is movably connected with the first collecting box (16), the second discharging hole (244) is formed in one side, far away from the first discharging hole (243), of the second discharging hole (244), the second discharging hole (244) is movably connected with the second collecting box (17), the material receiving box (245) is installed at the lower end of the second screening plate (242), and the material receiving box (245) is located at the bottom end of the inner cavity of the machine body (11.
6. A mineral breaker apparatus to facilitate size classification as claimed in claim 1 wherein: the suction pipe (27) comprises a dust hood (271), an L-shaped fixing plate (272) and a fixing bolt (273), the dust hood (271) is installed on one side, away from the dust suction air pump (182), of the suction pipe (27), the dust hood (271) is located on one side of the inner cavity of the machine body (11), the L-shaped fixing plate (272) is installed at two ends of the dust hood (271), and the fixing bolt (273) penetrates through the dust hood (271) through the L-shaped fixing plate (272).
7. A mineral breaker apparatus to facilitate size classification in accordance with claim 6 wherein: the dust hood (271) comprises a filter screen (2711), and the filter screen (2711) is installed on the surface of one side, away from the air suction pipe (27), of the dust hood (271).
8. A mineral breaker apparatus to facilitate size classification as claimed in claim 1 wherein: the motor box (14) is electrically connected with the control panel (15), and the output end of a motor in the motor box (14) is movably connected with the output end of the crushing roller (21).
CN202022253316.5U 2020-10-12 2020-10-12 Ore crushing device convenient to specification is categorised Active CN213700055U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022253316.5U CN213700055U (en) 2020-10-12 2020-10-12 Ore crushing device convenient to specification is categorised

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022253316.5U CN213700055U (en) 2020-10-12 2020-10-12 Ore crushing device convenient to specification is categorised

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Publication Number Publication Date
CN213700055U true CN213700055U (en) 2021-07-16

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113617667A (en) * 2021-10-09 2021-11-09 徐州市江山新型建材有限公司 Stone processing equipment for building
CN114345463A (en) * 2021-12-30 2022-04-15 安徽东辰新材料科技有限公司 Renewable efficient production device and process for deeply removing benzene and aldehyde and fire-floating filter particles

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113617667A (en) * 2021-10-09 2021-11-09 徐州市江山新型建材有限公司 Stone processing equipment for building
CN113617667B (en) * 2021-10-09 2021-12-14 徐州市江山新型建材有限公司 Stone processing equipment for building
CN114345463A (en) * 2021-12-30 2022-04-15 安徽东辰新材料科技有限公司 Renewable efficient production device and process for deeply removing benzene and aldehyde and fire-floating filter particles

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