An environmentally friendly alcoholamine grinding aid production and processing equipment

The combination of temperature detection and airbag pushing components solves the problem of poor temperature control in the production of grinding aids in winter, achieves efficient stirring and uniform mixing, and avoids power waste and time extension.

CN117181098BActive Publication Date: 2025-09-09YANGZHOU WUYUAN RENEWABLE RESOURCES CO LTD
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Patent Information

Application Number
CN202311452587.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-03
Publication Date
2025-09-09
Estimated Expiration
2043-11-03

AI Technical Summary

Technical Problem

When producing grinding aids in winter, the temperature is difficult to control, resulting in low stirring efficiency, and the heating temperature is too high, wasting electricity or the stirring time is too long.

Method used

A temperature detector is used to monitor the temperature of the raw materials in the mixing drum in real time, and the heating temperature is adjusted by the heating coil. Combined with the air bag and pushing component, the raw materials are ensured to be evenly mixed, avoiding power waste and prolonged mixing time.

Benefits of technology

It achieves efficient stirring when producing grinding aids in winter, avoids electricity waste and extended stirring time, and ensures uniform mixing of raw materials and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of production of grinding aids, and in particular to an environmentally friendly alcohol amine grinding aid production and processing equipment. Technical problem: When preparing grinding aids in winter, heating is required to assist the preparation. When the heating temperature is high, it will lead to waste of electricity, and when it is low, it will lead to longer stirring time. The technical solution of the present invention is: an environmentally friendly alcohol amine grinding aid production and processing equipment, including a support frame and a stirring drum, etc.; the support frame is fixedly connected to the stirring drum. The raw materials in the stirring drum flow into the discharge port through the charging tank, and the temperature detector will detect the temperature of the raw materials. When the temperature of the raw materials is low, the heating coil will increase the heating temperature, and the detection is multiple times. When the temperature is moderate next time, the heating temperature will be lowered, thereby avoiding long-term high-temperature heating and resulting in waste of electricity.
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Description

Technical Field

[0001] The invention relates to the technical field of grinding aid production, in particular to environmentally friendly alcohol amine grinding aid production and processing equipment. Background Art

[0002] Grinding aids are produced by adding a variety of liquid raw materials and mixing them with soluble powders. However, soluble powders are greatly affected by temperature during mixing. When the temperature is low, the powder is difficult to dissolve, which leads to a longer mixing time. Especially in winter, heating coils are usually used to heat the powder to ensure mixing efficiency.

[0003] However, the temperature in winter cannot be controlled, so the temperature in the mixing drum will change after the raw materials and powder are added. In order to ensure the mixing efficiency, the heating temperature is kept at a higher level, which will lead to a waste of electricity, and a lower temperature will lead to a longer mixing time. At the same time, since the temperature in the mixing drum cannot be kept uniform, the time required for mixing is also different, and it is impossible to know when the mixing will be completed. At this time, in order to mix completely, the mixing time will be extended, resulting in lower production efficiency. Summary of the Invention

[0004] In order to overcome the disadvantages that heating is required to prepare grinding aids in winter, and a high heating temperature will lead to a waste of electricity, while a low heating temperature will lead to a prolonged stirring time, the present invention provides an environmentally friendly alcoholamine grinding aid production and processing equipment.

[0005] The technical solution of the present invention is: an environmentally friendly alcohol amine grinding aid production and processing equipment, including a support frame, a mixing drum, a cover, a discharge valve, a stirring assembly and a heating assembly; the support frame is fixedly connected to the mixing drum; the upper part of the mixing drum is screwed with a cover; the lower part of the mixing drum is fixedly connected to the discharge valve; the mixing drum is connected to a stirring assembly for stirring; the support frame and the mixing drum are jointly connected to a heating assembly for heating the mixing drum; the equipment also includes a hollow connecting drum, a DD motor, a rotating drum, an air bag, a charging tank and a temperature detector; the upper part of the mixing drum is fixedly connected to the middle Empty connecting cylinder; the stirring assembly is connected to DD motor 1; the rotating part of DD motor 1 is fixedly connected to the rotating cylinder, and the rotating cylinder is connected to the hollow connecting cylinder; an air bag is fixedly connected to the inside of the hollow connecting cylinder; a charging tank is fixedly connected to the lower part of the air bag; another air bag is fixedly connected to the lower part of the charging tank; another charging tank is fixedly connected to the lower part of the other air bag; the upper charging tank has at least seven air inlets; a discharge port is provided on each side of the front of the hollow connecting cylinder, and a feed port 2 is provided on each side of the front of the rotating cylinder; a temperature detector is installed at the discharge port below the hollow connecting cylinder.

[0006] More preferably, the stirring assembly includes a motor, a rotating roller and a stirring blade; the motor is installed at the lower part of the stirring drum; the stirring drum is rotatably connected to the rotating roller, the rotating roller is set to be hollow, the upper part of the rotating roller is connected to the DD motor 1, and the rotating drum is located inside the rotating roller; the motor output shaft is fixedly connected to the rotating roller; the rotating roller is fixedly connected to at least nine stirring blades; a feed port 1 is opened on each side of the rotating roller, and each feed port 2 is located next to the corresponding feed port.

[0007] More preferably, the heating assembly includes a heating coil and a circular insulation plate; the heating coil is fixedly connected to the right part of the support frame; the heating coil is sleeved on the mixing drum; and the circular insulation plate is fixedly connected to the outer side of the mixing drum.

[0008] More preferably, a pushing assembly is also included, and the hollow connecting cylinder and the charging tank are jointly connected with a pushing assembly for pushing the inspected raw materials back into the mixing cylinder; the pushing assembly includes a fixed block, a push rod 1, a push block 1, a push block 2 and a spring; a fixed block is fixedly connected to each of the two sides of the front of the hollow connecting cylinder; each fixed block is fixedly connected to a push rod 1; each telescopic part of the push rod 1 is fixedly connected to a push block 1; each push block 1 is located in a discharge port; each charging tank is slidably connected to a push block 2; each push block 2 is connected to the corresponding charging tank by a spring.

[0009] More preferably, each pusher block has at least six air jets on its front side.

[0010] More preferably, a drying assembly is further included, and the mixing drum is connected to a drying assembly for drying the powder; the drying assembly includes a charging drum, a fixing plate 1, a push rod 2, a circular block, a cover 2, a driving assembly, a baffle plate, a vent pipe, a DD motor 2, a push plate and an air delivery assembly; the upper part of the mixing drum is fixedly connected to a charging drum, and the charging drum is provided with a plurality of powder outlets; the upper part of the charging drum is fixedly connected to a fixing plate 1; the fixing plate 1 is fixedly connected to a push rod 2; the telescopic part of the push rod 2 is fixedly connected to the circular block; the circular block is located at the loading drum Inside the barrel; a second cover is screwed onto the upper part of the circular block; a driving assembly is connected to the loading barrel; the driving assembly is connected to a baffle plate, which has several connecting ports, and the driving assembly is used to drive the baffle plate to rotate; the baffle plate is fixedly connected to a vent pipe; the mixing drum and the circular insulation plate are commonly connected to an air supply assembly for supplying air to the vent pipe; a second DD motor is fixedly connected to the upper part of the vent pipe; the second DD motor is fixedly connected to a pusher plate, which has an air supply groove, which is connected to the vent pipe; the pusher plate is provided with a plurality of air injection grooves.

[0011] More preferably, it further includes an electric baffle; the electric baffle is installed on the upper part of the ventilation pipe, the ventilation pipe is provided with at least eight air outlets 1, and the electric baffle is provided with at least eight air outlets 2.

[0012] More preferably, the gas delivery assembly includes an air pump, an air inlet pipe, an air outlet pipe and a connecting block; the air pump is fixedly connected to the upper part of the circular insulation plate; the air inlet of the air pump is connected to the air inlet pipe; the air inlet pipe is located inside the circular insulation plate; the air outlet of the air pump is connected to the air outlet pipe; the air outlet pipe is fixedly connected to the connecting block, and the connecting block is slidably connected to the baffle plate; the connecting block cooperates with the ventilation pipe.

[0013] More preferably, a water delivery component is also included, and the hollow connecting cylinder and the circular block are jointly connected with a water delivery component for delivering the stirred raw materials into the charging barrel, and the water delivery component includes a water pump, a water inlet pipe and a water outlet pipe; a water pump is installed on the upper part of the circular block; the water inlet of the water pump is connected to the water inlet pipe, and the water inlet pipe is connected to the hollow connecting cylinder; the water outlet of the water pump is connected to the water outlet pipe, and the water outlet pipe is located in the charging barrel.

[0014] More preferably, a sponge is further included; the sponge is fixedly connected to the water outlet pipe.

[0015] Beneficial effects

[0016] The raw materials in the mixing drum flow into the discharge port through the charging tank. The temperature detector will detect the temperature of the raw materials. When the temperature of the raw materials is low, the heating coil will increase the heating temperature. The detection is repeated multiple times. When the temperature is moderate next time, the heating temperature will be lowered, thereby avoiding long-term high-temperature heating and resulting in waste of electricity.

[0017] The raw materials in the upper and lower parts of the mixing drum are respectively flowed into the corresponding discharge ports through two charging tanks, and then observed to see if they are qualified, so as to avoid inspection errors caused by only observing part of the raw materials;

[0018] The gas squeezes the push block 2 downward, causing the push block 2 to move downward and squeeze the spring, causing the spring to be compressed. At the same time, the push block 2 will squeeze the raw materials in the charging tank downward, causing the raw materials in the charging tank to be squeezed out from the feed port 2 and the feed port 1, and then the raw materials will be discharged back into the mixing drum, thereby avoiding the reduction of raw materials in the mixing drum after some raw materials are taken out, resulting in the poor effect of the produced grinding aid. When the push block 2 drops, the rotating drum will slowly rotate back to its original position, and at this time the air jet is connected to the feed port 2, thereby causing the gas to be ejected from the air jet, and the raw materials located in the feed port 2 area will be ejected, thereby avoiding residual raw materials in the feed port 2 when the rotating drum turns to its original position, resulting in insufficient discharge of raw materials. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic structural diagram of the environmentally friendly alcoholamine grinding aid production and processing equipment of the present invention;

[0020] Figure 2 A cross-sectional view of the first partial structure of the environmentally friendly alcoholamine grinding aid production and processing equipment disclosed in the present invention;

[0021] Figure 3A second partial structural cross-sectional view of the environmentally friendly alcoholamine grinding aid production and processing equipment disclosed in the present invention;

[0022] Figure 4 This is a schematic diagram of the combined structure of the hollow connecting cylinder, DD motor 1, rotating cylinder, air bag, charging tank and pushing assembly disclosed in the environmentally friendly alcoholamine grinding aid production and processing equipment of the present invention;

[0023] Figure 5 This is a schematic diagram of the first structure of the pusher assembly disclosed in the environmentally friendly alcoholamine grinding aid production and processing equipment of the present invention;

[0024] Figure 6 This is a schematic diagram of the second structure of the pusher assembly disclosed in the environmentally friendly alcoholamine grinding aid production and processing equipment of the present invention;

[0025] Figure 7 This is a schematic diagram of the combined structure of the hollow connecting cylinder, the second pushing block and the spring disclosed in the environmentally friendly alcoholamine grinding aid production and processing equipment of the present invention;

[0026] Figure 8 A partial structural cross-sectional view of a first type of drying component disclosed in the environmentally friendly alcoholamine grinding aid production and processing equipment of the present invention;

[0027] Figure 9 This is a partial structural cross-sectional view of the second type of drying component disclosed in the environmentally friendly alcohol amine grinding aid production and processing equipment of the present invention.

[0028] Marked in the figure: 1-support frame, 2-mixing drum, 3-lid 1, 4-discharge valve, 5-motor, 6-rotating roller, 7-mixing blade, 8-heating coil, 9-circular insulation plate, 101-hollow connecting cylinder, 102-DD motor 1, 103-rotating drum, 104-air bag, 105-charging tank, 106-temperature detector, 111-fixed block, 112-push rod 1, 113-push block 1, 114-push block 2, 115-spring, 201-charging drum, 202-fixed plate 1, 203-push rod 2, 204-circular block, 205-lid 2, 206-blocking plate, 207-ventilation Tube, 208-DD motor 2, 209-push plate, 2010-fixed plate 2, 2011-DD motor 3, 211-air pump, 212-air inlet pipe, 213-air outlet pipe, 214-connecting block, 221-electric baffle, 301-water pump, 302-water inlet pipe, 303-water outlet pipe, 304-sponge, 6a-feed port 1, 101a-discharge port, 103a-feed port 2, 105a-air inlet, 114a-jet port, 201a-powder outlet, 206a-connecting port, 207a-air outlet 1, 209a-air transmission trough, 209b-jet trough, 221a-air outlet 2. DETAILED DESCRIPTION

[0029] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.

[0030] Example 1

[0031] An environmentally friendly alcohol amine grinding aid production and processing equipment, such as Figure 1-Figure 7 As shown, it includes a support frame 1, a mixing drum 2, a cover 3, a discharge valve 4, a stirring assembly and a heating assembly; the support frame 1 is fixedly connected to the mixing drum 2; the cover 3 is screwed onto the upper part of the mixing drum 2; the discharge valve 4 is fixedly connected to the lower part of the mixing drum 2; the mixing drum 2 is connected to the stirring assembly; the support frame 1 and the mixing drum 2 are commonly connected to the heating assembly;

[0032] It also includes a hollow connecting cylinder 101, a DD motor 102, a rotating cylinder 103, an air bag 104, a charging tank 105 and a temperature detector 106; the middle part of the upper side of the mixing cylinder 2 is fixedly connected with the hollow connecting cylinder 101; the stirring assembly is connected to the DD motor 102; the rotating part of the DD motor 102 is fixedly connected to the rotating cylinder 103, and the rotating cylinder 103 is connected to the hollow connecting cylinder 101; an air bag 104 is fixedly connected to the upper side of the hollow connecting cylinder 101; a charging tank 105 is fixedly connected to the lower part of the air bag 104; another air bag 104 is fixedly connected to the lower part of the charging tank 105; the lower part of the other air bag 104 is fixedly connected to another charging tank 105; the charging tank 105 above is fixedly connected to the upper part. 5 is provided with seven air inlets 105a, through which the gas in the upper airbag 104 enters the lower airbag 104, thereby pushing the charging tank 105 below to move downward; a discharge port 101a is respectively provided on the upper front side and the rear front side of the hollow connecting cylinder 101, and a second feed port 103a is respectively provided on the upper front side and the lower front side of the rotating cylinder 103. The raw materials in the mixing drum 2 enter the charging tank 105 through the stirring assembly and the second feed port 103a, and then the charging tank 105 rises to allow the raw materials in the charging tank 105 to enter the discharge port 101a; a temperature detector 106 is installed at the discharge port 101a below the hollow connecting cylinder 101.

[0033] The stirring assembly includes a motor 5, a rotating roller 6 and a stirring blade 7; the motor 5 is installed at the lower part of the stirring drum 2; the stirring drum 2 is rotatably connected to the rotating roller 6, the rotating roller 6 is set to be hollow, the upper part of the rotating roller 6 is connected to the DD motor 102, and the rotating drum 103 is located inside the rotating roller 6; the output shaft of the motor 5 is fixedly connected to the rotating roller 6; the rotating roller 6 is fixedly connected to nine stirring blades 7; a feed port 16a is respectively opened on the upper and lower sides of the rotating roller 6, and each feed port 103a is located next to the corresponding feed port 16a.

[0034] The heating assembly includes a heating coil 8 and a circular insulation plate 9; the heating coil 8 is fixedly connected to the right side of the support frame 1; the heating coil 8 is sleeved on the mixing drum 2; a circular insulation plate 9 is fixedly connected to the outside of the mixing drum 2, and the hot air generated by the heating coil 8 after heating is insulated by the circular insulation plate 9.

[0035] It also includes a pushing assembly, and the hollow connecting tube 101 and the charging tank 105 are commonly connected to the pushing assembly; the pushing assembly includes a fixed block 111, a push rod 112, a push block 113, a push block 2 114 and a spring 115; a fixed block 111 is fixedly connected to the front upper side and the front lower side of the hollow connecting tube 101; each fixed block 111 is fixedly connected to a push rod 112; each telescopic part of each push rod 112 is fixedly connected to a push block 113; each push block 113 is located in a discharge port 101a; each charging tank 105 is slidably connected to a push block 2 114; each push block 2 114 is connected to the corresponding charging tank 105 with a spring 115.

[0036] Six air jets 114 a are formed on the upper front portion of each second pusher block 114 . When the second pusher block 114 descends, gas is ejected from the remaining raw materials through the air jets 114 a .

[0037] The specific working steps are:

[0038] Before working, connect the external air supply device to the hollow connecting tube 101, connect the external collection device to the discharge valve 4, and use the external air supply device to supply air into the hollow connecting tube 101, so that the air bag 104 is in a downward expansion state, and then move the charging tank 105 to the corresponding feeding port 2 103a;

[0039] Then, the mixing raw materials are poured into the mixing drum 2 through the cover 3, and then the motor 5 drives the mixing blade 7 to rotate clockwise from a top view through the rotating roller 6, thereby stirring the raw materials. In winter or when the temperature is low, the mixing drum 2 is heated by the heating coil 8, thereby heating the raw materials to prevent the powder from being difficult to dissolve.

[0040] During the stirring process, the rotating roller 6 drives the rotating drum 103 to rotate together through the DD motor 102, thereby keeping the feed port 2 103a and the feed port 1 6a disconnected. When detection is required, the DD motor 102 drives the rotating drum 103 to rotate counterclockwise 90 degrees from a top-down perspective, so that the feed port 2 103a is connected with the feed port 1 6a. At this time, the raw materials in the mixing drum 2 enter the charging tank 105 from the feed port 1 6a and the feed port, and then the external air supply equipment sucks air into the hollow connecting cylinder 101, and then sucks out the gas in the airbag 104, so that the airbag 104 contracts and drives the charging tank 105 to rise. Before the external air supply equipment sucks air, the DD motor 102 drives the rotating drum 103 to rotate 90 degrees counterclockwise from a top-down perspective, so that the feed port 2 103a is connected with the feed port 1 6a. The rotating drum 103 rotates back to its original position, so that the second feed port 103a is no longer connected to the first feed port 6a, thereby preventing the raw materials in the mixing drum 2 from entering the rotating drum 103 after the charging tank 105 rises. When the upper charging tank 105 rises and aligns with the lower discharge port 101a, the external air supply equipment stops sucking air, thereby stopping the upper charging tank 105 from rising, and the raw materials in the charging tank 105 will flow into the discharge port 101a. The temperature detector 106 will detect the temperature of the raw materials. When the temperature of the raw materials is low, the heating coil 8 will increase the heating temperature. The detection is multiple times. When the temperature is moderate next time, the heating temperature will be lowered, thereby avoiding long-term high-temperature heating, which leads to waste of electricity.

[0041] After the inspection is completed, the push rod 112 pushes the pushing block 113 to move backward, thereby pushing the raw materials in the discharge port 101a back into the charging tank 105, and then the external air supply equipment supplies air to the hollow connecting cylinder 101 again, so that the air bag 104 expands downward again, thereby causing the charging tank 105 to return to its original position, and then the DD motor 102 drives the rotating cylinder 103 to rotate 90 degrees counterclockwise from a top view, thereby causing the feed port 2 103a and the feed port 16a to reconnect. The air bag 104 is connected again, and the external air supply device will continue to supply air. At this time, the air bag 104 has expanded to its limit, thereby increasing the air pressure in the air bag 104. As the air pressure in the air bag 104 increases, the gas in the air bag 104 will press the push block 114 downward, causing it to move downward and squeeze the spring 115, causing the spring 115 to be compressed. At the same time, the push block 114 will press the raw materials in the charging tank 105 downward, thereby causing the raw materials in the charging tank 105 to be fed from the feed port 103a and the feed port 103b. The raw materials in the charging tank 105 are squeezed out from the feeding port 1 6a, and then the raw materials in the charging tank 105 are discharged back into the mixing drum 2, so as to avoid the reduction of the raw materials in the mixing drum 2 after taking out part of the raw materials, resulting in the poor effect of the produced grinding aid. When the pushing block 2 114 descends, the DD motor 102 drives the rotating drum 103 to slowly rotate back to its original position. During this process, the feeding port 2 103a and the feeding port 1 6a will also be in a connected state, and at this time the air jet 114a is connected to the feeding port 2 103a, and the feeding port 1 The gas is ejected from the jet port 114a, thereby ejecting the raw materials located in the area of ​​the second feed port 103a, to prevent the raw materials from remaining in the second feed port 103a when the rotating cylinder 103 rotates back to its original position, resulting in insufficient discharge of the raw materials. It should be noted that the gas in the upper air bag 104 will enter the lower air bag 104 through the air inlet 105a, thereby causing the lower air bag 104 and the charging tank 105 to move up and down with the upper air bag 104 and the charging tank 105;

[0042] When it is necessary to observe whether the raw material mixing is qualified, the external air supply device will continue to inhale, so that the upper charging tank 105 moves to the upper discharge port 101a, and the lower charging tank 105 moves to the lower discharge port 101a. Before the upper charging tank 105 moves to the lower discharge port 101a, the push rod 112 will push the push block 113 to block the lower discharge port 101a, thereby preventing the raw materials in the upper charging tank 105 from flowing into the lower discharge port 101a. When the lower loading tank 105 moves to the lower discharge port 101a, the pushing block 113 moves back to its original position, thereby causing the raw materials in the lower loading tank 105 to flow into the lower discharge port 101a, and the raw materials in the upper loading tank 105 to flow into the upper discharge port 101a, and then the two raw materials are observed to see whether they are qualified, and the raw materials in the upper and lower parts are taken out for observation, thereby avoiding the detection error caused by only part of the raw materials being mixed evenly;

[0043] After the stirring is completed, the discharge valve 4 is opened and the stirred raw materials are taken away through an external collection device.

[0044] Example 2

[0045] Based on Example 1, Figure 3 and Figure 8-Figure 9 As shown, it also includes a drying component, and the mixing drum 2 is connected to the drying component; the drying component includes a charging drum 201, a fixing plate 202, a push rod 203, a circular block 204, a cover 205, a driving component, a baffle plate 206, a vent pipe 207, a DD motor 208, a push plate 209 and an air delivery component; the charging drum 201 is fixedly connected to the right side of the upper part of the mixing drum 2, and the charging drum 201 is provided with a plurality of powder outlets 201a; the upper part of the charging drum 201 is fixedly connected to a fixing plate 202; the fixing plate 202 is fixedly connected to a push rod 203; the telescopic part of the push rod 203 is fixedly connected to the circular block 204; the circular block 204 Located inside the charging barrel 201; a second cover 205 is screwed onto the right side of the upper part of the circular block 204; a driving assembly is connected to the charging barrel 201; the driving assembly is connected to a baffle plate 206, which is provided with a plurality of connecting ports 206a; the baffle plate 206 is fixedly connected to a vent pipe 207; the mixing drum 2 and the circular insulation plate 9 are commonly connected to an air delivery assembly; a second DD motor 208 is fixedly connected to the upper part of the vent pipe 207; the second DD motor 208 is fixedly connected to a pushing plate 209, which is provided with an air delivery groove 209a, which is connected to the vent pipe 207; the pushing plate 209 is provided with a plurality of air jet grooves 209b.

[0046] It also includes an electric baffle 221; an electric baffle 221 is installed on the outer side of the upper part of the vent pipe 207, the vent pipe 207 has eight air outlet 1s 207a, and the electric baffle 221 has eight air outlet 2s 221a. The electric baffle 221 rotates to connect the air outlet 2 221a with the air outlet 1 207a, so that the gas is ejected from the air outlet 2 221a, thereby scattering the powder discharged downward.

[0047] The driving assembly includes a second fixing plate 2010 and a third DD motor 2011 ; the internal bolts of the mixing drum 2 are connected with the second fixing plate 2010 ; the second fixing plate 2010 is fixedly connected with the third DD motor 2011 , and the third DD motor 2011 is connected to the baffle plate 206 .

[0048] The gas delivery assembly includes an air pump 211, an air inlet pipe 212, an air outlet pipe 213 and a connecting block 214; the air pump 211 is fixedly connected to the upper right part of the circular insulation plate 9; the air inlet 105a of the air pump 211 is connected to the air inlet pipe 212; the air inlet pipe 212 is located inside the circular insulation plate 9; the air outlet of the air pump 211 is connected to the air outlet pipe 213; the air outlet pipe 213 is fixedly connected to the connecting block 214, and the connecting block 214 is slidably connected to the baffle plate 206; the connecting block 214 cooperates with the vent pipe 207.

[0049] The specific working steps are:

[0050] During the stirring process, when powder needs to be added to the raw materials, the powder is first poured into the charging barrel 201 through the second cover 205. At this time, the air pump 211 extracts part of the hot air in the circular insulation plate 9 through the air inlet pipe 212, and discharges it into the vent pipe 207 through the air outlet pipe 213 and the connecting block 214. Then, it is discharged to the air delivery groove 209a through the vent pipe 207, and finally ejected from the air injection groove 209b, thereby preheating the powder in the charging barrel 201, thereby preventing the powder from being overcooled and requiring a long time to dissolve, thereby increasing the production time. When the hot air is ejected, the second DD motor 208 drives the push plate 209 to rotate counterclockwise from a top-down perspective, thereby pushing the powder, so that the powder can be heated evenly, and avoid some powder from not being heated;

[0051] When powder needs to be added again, DD motor three 2011 drives the baffle plate 206 to rotate counterclockwise when viewed from above, so that the powder outlet 201a is connected with the connecting port 206a, thereby discharging the powder. At this time, the electric baffle 221 rotates counterclockwise when viewed from above, so that the air outlet 1 207a and the air outlet 2 221a are in a connected state, so that the gas in the vent pipe 207 is ejected from the air outlet 2 221a, thereby scattering the discharged powder to avoid the occurrence of powder agglomeration.

[0052] Example 3

[0053] Based on Example 2, Figure 3 and Figure 8 As shown, a water delivery component is also included. The hollow connecting cylinder 101 and the circular block 204 are commonly connected to the water delivery component, and the water delivery component includes a water pump 301, a water inlet pipe 302 and a water outlet pipe 303; the water pump 301 is installed on the left side of the upper part of the circular block 204; the water inlet of the water pump 301 is connected to the water inlet pipe 302, and the water inlet pipe 302 is connected to the hollow connecting cylinder 101; the water outlet of the water pump 301 is connected to the water outlet pipe 303, and the water outlet pipe 303 is located in the loading cylinder 201.

[0054] A sponge 304 is also included; the sponge 304 is fixedly connected to the water outlet pipe 303, and the sponge 304 prevents the powder in the charging barrel 201 from entering the water outlet pipe 303.

[0055] The specific working steps are:

[0056] After the powder is discharged, some of the powder will adhere to the charging barrel 201, resulting in the discharge amount of the powder not being in line with the demand, and further resulting in poor effect of the produced grinding aid. Therefore, after the powder is discharged, when the external air supply equipment inhales air to make the charging tank 105 rise to the highest point, and then the DD motor 102 drives the rotating drum 103 to rotate, so that the raw materials enter the rotating drum 103, and then the water pump 301 is turned on, so that the water pump 301 discharges the raw materials in the rotating drum 103 from the water outlet pipe 303 into the charging barrel 201 through the water inlet pipe 302, so that the powder remaining in the charging barrel 201 is taken away by the raw materials, thereby avoiding powder residue, and the raw materials entering the charging barrel 201 are re-discharged into the mixing barrel 2 through the powder outlet 201a and the connecting port 206a;

[0057] When the raw materials are discharged, the second push rod 203 pushes the circular block 204 downward to scrape off the powder attached to the inner wall of the charging barrel 201. When the lower part of the circular block 204 is in contact with the push plate 209, the DD motor 208 drives the push plate 209 to rotate, and at the same time, gas is ejected from the push plate 209, so that the push plate 209 scrapes off the powder attached to the circular block 204, and the gas ejected from the push plate 209 blows the powder and raw materials remaining in the charging barrel 201, causing the remaining powder and raw materials to fall into the mixing barrel 2 through the powder outlet 201a and the connecting port 206a, thereby preventing powder and raw materials from remaining in the charging barrel 201 and affecting the effect of the produced grinding aid.

[0058] When the raw materials are delivered, the external air supply device supplies air to the air bag 104, which in turn expands the air bag 104 and pushes the charging tank 105 down, so that the charging tank 105 squeezes out the raw materials in the rotating drum 103, preventing the raw materials in the rotating drum 103 from being mixed.

[0059] It should be noted that when hot air is ejected from the jet slot 209b to preheat the powder in the charging barrel 201, the powder will fly, causing the powder in the charging barrel 201 to enter the water pump 301 through the water outlet pipe 303, thereby causing problems with the water pump 301. Therefore, the sponge 304 is used to intercept the powder to prevent the powder from entering the water pump 301. When the water pump 301 inputs the raw material into the charging barrel 201, the raw material will flush the sponge 304, thereby flushing the powder in the sponge 304 back into the charging barrel 201.

[0060] The above embodiments are intended only to illustrate the technical concepts and features of the present invention. Their purpose is to enable those skilled in the art to understand the contents of the present invention and implement them accordingly. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications made in accordance with the spirit of the present invention are intended to be covered by the scope of protection of the present invention.

Claims

1. An environmentally friendly alcohol amine grinding aid production and processing equipment, comprising a support frame (1), a mixing drum (2), a cover (3), a discharge valve (4), a stirring assembly and a heating assembly; the support frame (1) is fixedly connected to the mixing drum (2); the upper part of the mixing drum (2) is screwed with the cover (3); the lower part of the mixing drum (2) is fixedly connected to the discharge valve (4); the mixing drum (2) is connected to a stirring assembly for stirring; the support frame (1) and the mixing drum (2) are commonly connected to a heating assembly for heating the mixing drum (2); characterized in that, The mixing drum (2) is fixedly connected to the hollow connecting drum (101), a DD motor (102), a rotating drum (103), an air bag (104), a charging tank (105) and a temperature detector (106); the upper portion of the mixing drum (2) is fixedly connected to the hollow connecting drum (101); the mixing assembly is connected to the DD motor (102); the rotating portion of the DD motor (102) is fixedly connected to the rotating drum (103), and the rotating drum (103) is connected to the hollow connecting drum (101); an air bag (104) is fixedly connected to the interior of the hollow connecting drum (101); the lower portion of the air bag (104) is fixedly connected to the rotating drum (103); the rotating drum (103) is connected to the hollow connecting drum (101); the rotating drum (103) is ... rotating drum (103); the rotating drum (103) is connected to the rotating drum (101); the rotating drum (103) is connected to the rotating drum (103); the rotating drum (103) is connected to the rotating drum (103); the rotating drum (103) is connected to the rotating drum (103); the rotating drum (103) is connected to the rotating drum (103); the rotating drum (103) is connected to the rotating drum (103); the rotating drum (103) is connected to the rotating drum (103); the rotating drum (1 A charging tank (105) is connected; another air bag (104) is fixedly connected to the lower part of the charging tank (105); another charging tank (105) is fixedly connected to the lower part of the other air bag (104); the upper charging tank (105) is provided with at least seven air inlets (105a); a discharge port (101a) is provided on both sides of the front of the hollow connecting cylinder (101), and a second feed port (103a) is provided on both sides of the front of the rotating cylinder (103); a temperature detector (106) is installed at the discharge port (101a) below the hollow connecting cylinder (101); The invention also includes a pushing assembly, wherein the hollow connecting cylinder (101) and the charging tank (105) are connected together with a pushing assembly for pushing the raw materials after detection back into the mixing cylinder (2); the pushing assembly includes a fixed block (111), a push rod (112), a push block (113), a push block (2) and a spring (115); a fixed block (111) is fixedly connected to both sides of the front of the hollow connecting cylinder (101); each fixed block (111) is fixedly connected to a push rod (112); each push rod (112) is fixedly connected to a push block (113) at its telescopic part; each push block (113) is located in a discharge port (101a); each charging tank (105) is slidably connected to a push block (114); each push block (114) is connected to the corresponding charging tank (105) by a spring (115).

2. The environmentally friendly alcoholamine grinding aid production and processing equipment according to claim 1, characterized in that: The stirring assembly includes a motor (5), a rotating roller (6) and stirring blades (7); the motor (5) is installed at the lower part of the stirring drum (2); the stirring drum (2) is rotatably connected to the rotating roller (6), the rotating roller (6) is set to be hollow, the upper part of the rotating roller (6) is connected to the DD motor (102), and the rotating drum (103) is located in the rotating roller (6); the output shaft of the motor (5) is fixedly connected to the rotating roller (6); the rotating roller (6) is fixedly connected to at least nine stirring blades (7); a feed port (1) (6a) is opened on each side of the rotating roller (6), and each feed port (103a) is located next to the corresponding feed port (6a).

3. The environmentally friendly alcoholamine grinding aid production and processing equipment according to claim 1, characterized in that: The heating assembly comprises a heating coil (8) and a circular heat-insulating plate (9); the heating coil (8) is fixedly connected to the right side of the support frame (1); the heating coil (8) is sleeved on the mixing drum (2); and the circular heat-insulating plate (9) is fixedly connected to the outer side of the mixing drum (2).

4. The environmentally friendly alcoholamine grinding aid production and processing equipment according to claim 1, characterized in that: Each pusher block 2 (114) has at least six air jet ports (114a) on its front side.

5. The environmentally friendly alcoholamine grinding aid production and processing equipment according to claim 1, characterized in that: The invention also includes a drying component, wherein the mixing drum (2) is connected to a drying component for drying the powder; the drying component includes a loading drum (201), a fixing plate (202), a push rod (203), a circular block (204), a cover (205), a driving component, a material blocking plate (206), a vent pipe (207), a DD motor (208), a push plate (209) and an air supply component; the upper portion of the mixing drum (2) is fixedly connected to the loading drum (201), and the loading drum (201) is provided with a plurality of powder outlets (201a); the upper portion of the loading drum (201) is fixedly connected to the fixing plate (202); the fixing plate (202) is fixedly connected to the push rod (203); the telescopic portion of the push rod (203) is fixedly connected to the circular block (204); the circular block (204) is located in the loading drum (201); The upper portion of the shaping block (204) is screwed with a second cover (205); a driving assembly is connected to the inner portion of the charging barrel (201); the driving assembly is connected to a baffle plate (206), the baffle plate (206) is provided with a plurality of communication ports (206a), and the driving assembly is used to drive the baffle plate (206) to rotate; the baffle plate (206) is fixedly connected to a vent pipe (207); the mixing barrel (2) and the circular insulation plate (9) are commonly connected to an air supply assembly for supplying air to the vent pipe (207); a second DD motor (208) is fixedly connected to the upper portion of the vent pipe (207); the second DD motor (208) is fixedly connected to a pushing plate (209), the pushing plate (209) is provided with an air supply groove (209a), and the air supply groove (209a) is communicated with the vent pipe (207); the pushing plate (209) is provided with a plurality of air injection grooves (209b).

6. The environmentally friendly alcoholamine grinding aid production and processing equipment according to claim 5, characterized in that: It also includes an electric baffle (221); the electric baffle (221) is installed on the upper part of the ventilation pipe (207); the ventilation pipe (207) is provided with at least eight first air outlets (207a); and the electric baffle (221) is provided with at least eight second air outlets (221a).

7. The environmentally friendly alcoholamine grinding aid production and processing equipment according to claim 5, characterized in that: The gas transmission assembly includes an air pump (211), an air inlet pipe (212), an air outlet pipe (213) and a connecting block (214); the air pump (211) is fixedly connected to the upper part of the circular heat-insulating plate (9); the air inlet (105a) of the air pump (211) is connected to the air inlet pipe (212); the air inlet pipe (212) is located inside the circular heat-insulating plate (9); the air outlet of the air pump (211) is connected to the air outlet pipe (213); the air outlet pipe (213) is fixedly connected to the connecting block (214), and the connecting block (214) is slidably connected to the material blocking plate (206); the connecting block (214) is matched with the vent pipe (207).

8. The environmentally friendly alcoholamine grinding aid production and processing equipment according to claim 7, characterized in that: The invention also includes a water delivery component. The hollow connecting cylinder (101) and the circular block (204) are connected to a water delivery component for delivering the stirred raw materials into the charging cylinder (201). The water delivery component includes a water pump (301), a water inlet pipe (302) and a water outlet pipe (303). The water pump (301) is installed on the upper part of the circular block (204). The water inlet of the water pump (301) is connected to the water inlet pipe (302), and the water inlet pipe (302) is connected to the hollow connecting cylinder (101). The water outlet of the water pump (301) is connected to the water outlet pipe (303), and the water outlet pipe (303) is located in the charging cylinder (201).

9. The environmentally friendly alcoholamine grinding aid production and processing equipment according to claim 8, characterized in that: It also includes a sponge (304); the sponge (304) is fixedly connected to the water outlet pipe (303).

Citation Information

Patent Citations

  • Automatic blending and dosing equipment convenient for sampling detection of concentration of liquid medicine

    CN114425256A

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    CN115805035A