CN216419040U - Controllable flow preparation facilities of metatitanic acid ester modifier - Google Patents

Controllable flow preparation facilities of metatitanic acid ester modifier Download PDF

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CN216419040U
CN216419040U CN202122559691.7U CN202122559691U CN216419040U CN 216419040 U CN216419040 U CN 216419040U CN 202122559691 U CN202122559691 U CN 202122559691U CN 216419040 U CN216419040 U CN 216419040U
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pipe
conveying pipe
preparation
flow
conveyer pipe
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席日勇
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Anhui Boiling Point New Material Co ltd
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Anhui Boiling Point New Material Co ltd
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Abstract

The utility model provides a controllable flow preparation facilities of metatitanic acid ester modifier, include: the device comprises a cylinder cover, a first motor, a first delivery pipe, a flow control mechanism and a second delivery pipe; the cylinder cover is arranged at the upper end of the preparation cylinder, and a thermometer and a pressure gauge are respectively arranged on the left side and the right side of the front part of the upper end surface of the cylinder cover; the first motor is arranged in the middle of the upper end of the cylinder cover, and the first conveying pipe is of a detachable structure; the second conveying pipe is arranged on the discharging box. The utility model discloses in mainly be connected with first conveyer pipe, flow control mechanism and second conveyer pipe between preparation section of thick bamboo and play workbin, flow control mechanism installs between first conveyer pipe and second conveyer pipe, when carrying liquid raw and other materials, detects the transport flow to and the technical control delivery capacity, both can be through manual control, can also carry out the electrical property and control, it is more convenient nimble to use, conveniently dispose raw and other materials more accurate errorlessly, with the quality of guarantee preparation product.

Description

Controllable flow preparation facilities of metatitanic acid ester modifier
Technical Field
The utility model relates to a metatitanic acid ester modifier preparation technical field, concretely relates to metatitanic acid ester modifier controllable flow preparation facilities.
Background
Reference CN201620419569.6 discloses a device for preparing titanate modifier with controllable flow, in the specification, the reference includes a mixing tank, a temperature control device, a stirring timing device, a raw material conveying port, a raw material conveying pipe, a flowmeter and a flow controller, a temperature control device is arranged on the left side of the mixing tank, a stirring timing device is arranged at the center of the top of the mixing tank, the top of the mixing tank is provided with a raw material conveying port which is connected with a raw material conveying pipe, the right end of the raw material conveying pipe is provided with a flowmeter which is connected with a flow controller, the raw material conveying pipe comprises a first conveying pipe, a second conveying pipe and a third conveying pipe, the flowmeter comprises a first flowmeter, a second flowmeter and a third flowmeter, the first delivery pipe is provided with a first flowmeter, the second delivery pipe is provided with a second flowmeter, and the third delivery pipe is provided with a third flowmeter ". However, the raw material conveying pipe in the comparison file is inconvenient for workers to carry out manual and electric control and synchronous control on conveying flow, the flow meter is too many in statistics, the flow data result can be obtained through multiple times of calculation, more time and energy can be consumed, and the use is inconvenient and flexible.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects in the prior art, a titanate modifier flow control preparation device is provided so as to solve the problems that a raw material conveying pipe in a comparison file is inconvenient for workers to manually and electrically control and synchronously control conveying flow, the flow meter is too many in statistics, flow data results can be obtained through multiple calculations, more time and energy can be consumed, and the use is inconvenient and flexible.
In order to achieve the above object, a titanate modifier flow-controllable preparation device is provided, which comprises: the device comprises a cylinder cover, a first motor, a first delivery pipe, a flow control mechanism and a second delivery pipe;
the left part of the cylinder cover is provided with a first feeding hole, and the right part of the cylinder cover is provided with a second feeding hole;
the first motor is arranged in the middle of the upper end of the cylinder cover, and a protective cover is arranged at the lower part of the first motor;
the first conveying pipe is connected to the cylinder cover and is of a detachable structure;
the second conveying pipe is arranged on the discharging box and is of a detachable structure;
the flow control mechanism is arranged between the first conveying pipe and the second conveying pipe, and the flow control mechanism is connected with the first conveying pipe and the second conveying pipe in a split mode;
furthermore, the lower extreme of first motor is connected with first (mixing) shaft, and the upper portion cover of first (mixing) shaft is put in the protection casing to the left and right sides of the lower part body of rod of first (mixing) shaft all is provided with first stirring rake, and first (mixing) shaft is revolution mechanic.
Further, flow control mechanism is provided with the fourth conveyer pipe, and the upper portion of fourth conveyer pipe is provided with the upper tube seat to the lower part of fourth conveyer pipe is provided with the lower tube seat, install intelligent flow statistics table on the upper tube seat, and be provided with display screen and control panel on the leading flank of intelligent flow statistics table.
Further, be provided with the top board under the lower tube seat, the top board all is fixed with the dead lever in the left and right sides two, and the lower extreme of dead lever fixes on the bottom board, install the connecting axle between the middle part of top board and bottom board, the ooff valve is installed to the upper end of connecting axle, and the ooff valve of the upper end of connecting axle is located the fourth conveyer pipe middle part to the connecting axle sleeve is put in the axle sleeve pipe, and the lower end of connecting axle installs the hand wheel, first belt pulley is installed to the lower part of connecting axle, and installs the installation cover on the second conveyer pipe, and the second motor is installed to the left part of installation cover, is provided with the second belt pulley under the second motor, and the transmission is connected with first belt between second belt pulley and the first belt pulley.
Furthermore, the left part of the upper end face of the discharge box is provided with an upper port, a third delivery pipe is connected below the upper port, a first water suction pump is installed on the lower pipe body of the second delivery pipe, the lower end of the second delivery pipe is installed on the upper port, and the second delivery pipe is communicated with the discharge box.
Further, the right part of the front side face of the discharging box is provided with an inlet and an outlet, electromagnetic control valves are installed on the inlet and the outlet, the four corners outside the discharging box are provided with protection plates, the lower ends of the protection plates are fixed on the base, and the lower end face of the base is provided with four groups of first supporting feet.
Further, be provided with the interlayer in the casing of preparation section of thick bamboo, and the interlayer installs many circles of heat conduction stick to the lower extreme of preparation section of thick bamboo is provided with the feed opening, and in the lower port of feed opening accesss to output channel, and output channel's outer end was provided with the discharge gate, the bottom outward flange of preparation section of thick bamboo is provided with four groups of second supporting legss, and the bottom of second supporting legss is provided with the callus on the sole.
The beneficial effects of the utility model reside in that:
1. the utility model discloses in mainly be connected with first conveyer pipe, flow control mechanism and second conveyer pipe between preparation section of thick bamboo and play workbin, flow control mechanism installs between first conveyer pipe and second conveyer pipe, when carrying liquid raw and other materials, detects the transport flow to and the technical control delivery capacity, both can be through manual control, can also carry out the electrical property and control, it is more convenient nimble to use, conveniently dispose raw and other materials more accurate errorlessly, with the quality of guarantee preparation product.
2. The utility model discloses the flow that the last tube socket on well flow control mechanism upper portion and intelligent flow statistics table set up the liquid raw and other materials that are used for in the real-time supervision fourth conveyer pipe to guarantee accurate transport, avoid carrying too much or too little, relatively influence the quality of the product that prepares.
3. The utility model discloses well play workbin is used for storing the required liquid raw materials of preparation product, because liquid raw materials does not well weigh, so install flow control mechanism between pipeline, install monitoring and control to guarantee the accuracy of conveying capacity.
Drawings
Fig. 1 is a schematic front view of an embodiment of the present invention;
fig. 2 is a schematic view of a flow control mechanism according to an embodiment of the present invention;
FIG. 3 is a schematic view of the internal structure of the discharging box according to the embodiment of the present invention;
FIG. 4 is a schematic view of the inner structure of the preparation cylinder according to the embodiment of the present invention;
fig. 5 is a schematic structural view of a preparation cartridge housing according to an embodiment of the present invention.
In the figure: 1. a cylinder cover; 10. a first feed port; 11. a thermometer; 12. a second feed port; 13. a pressure gauge; 2. a first motor; 20. a protective cover; 21. a first stirring shaft; 22. a first stirring paddle; 3. a first delivery pipe; 4. a flow control mechanism; 40. a fourth delivery pipe; 41. an upper pipe seat; 42. an intelligent flow statistical table; 420. a display screen; 421. a control panel; 43. a lower tube seat; 430. a shaft sleeve; 431. a lower fixing plate; 432. a hand wheel; 433. a connecting shaft; 434. a first pulley; 435. an upper fixing plate; 436. fixing the rod; 5. a second delivery pipe; 50. installing a sleeve; 51. a second motor; 52. a second pulley; 53. a first belt; 54. a first water pump; 6. a discharging box; 60. an inlet; 61. an outlet; 62. an upper port; 63. a third delivery pipe; 64. a protection plate; 65. a base; 66. a first supporting leg; 7. preparing a barrel; 70. an interlayer; 71. a heat conducting rod; 72. a feeding port; 73. an output channel; 74. a discharge port; 75. a second support leg; 76. a foot pad.
Detailed Description
The following description of the embodiments of the present invention is provided for illustrative purposes, and other advantages and effects of the present invention will be readily apparent to those skilled in the art from the disclosure herein. The present invention can also be implemented or applied through other different specific embodiments, and various details in the present specification can be modified or changed based on different viewpoints and applications without departing from the spirit of the present invention.
Fig. 1 is the utility model discloses front view schematic diagram, fig. 2 are the utility model discloses a flow control mechanism sets up the schematic diagram, fig. 3 is the utility model discloses a go out workbin inner structure schematic diagram, fig. 4 do the utility model discloses a preparation section of thick bamboo inner structure schematic diagram and fig. 5 are the embodiment of the utility model discloses a preparation section of thick bamboo shell structure schematic diagram.
Referring to fig. 1 to 5, the utility model provides a controllable flow preparation facilities of metatitanic acid ester modifier, include: the device comprises a cylinder cover 1, a first motor 2, a first delivery pipe 3, a flow control mechanism 4 and a second delivery pipe 5; the barrel cover 1 is arranged at the upper end of the preparation barrel 7, a thermometer 11 and a pressure gauge 13 are respectively arranged on the left side and the right side of the front part of the upper end face of the barrel cover 1, a first feeding hole 10 is arranged on the left part of the barrel cover 1, and a second feeding hole 12 is arranged on the right part of the barrel cover 1; the first motor 2 is arranged in the middle of the upper end of the cylinder cover 1, and the lower part of the first motor 2 is provided with a protective cover 20; the first conveying pipe 3 is connected to the cylinder cover 1, and the first conveying pipe 3 is of a detachable structure; the second conveying pipe 5 is arranged on the discharging box 6, and the second conveying pipe 5 is of a detachable structure; flow control mechanism 4 is installed between first conveyer pipe 3 and second conveyer pipe 5, and the split connection between flow control mechanism 4 and first conveyer pipe 3, second conveyer pipe 5.
In this embodiment, the lower end of the first motor 2 is connected with a first stirring shaft 21, the upper portion of the first stirring shaft 21 is sleeved in the protective cover 20, the left and right sides of the lower rod body of the first stirring shaft 21 are provided with first stirring paddles 22, and the first stirring shaft 21 is of a rotating structure.
As an embodiment of preferred, the utility model discloses in mainly be connected with first conveyer pipe 3, flow control mechanism 4 and second conveyer pipe 5 between preparation section of thick bamboo 7 and play workbin 6, flow control mechanism 4 installs between first conveyer pipe 3 and second conveyer pipe 5, when carrying liquid raw and other materials, detect the delivery flow to and the technological control delivery capacity, both can be through manual control, can also carry out the electrical control, it is more convenient nimble to use, it is more accurate errorless to conveniently dispose raw and other materials, in order to ensure the quality of preparing the product.
In the present embodiment, the flow control mechanism 4 is provided with a fourth delivery pipe 40, an upper pipe seat 41 is provided on an upper portion of the fourth delivery pipe 40, a lower pipe seat 43 is provided on a lower portion of the fourth delivery pipe 40, an intelligent flow rate statistics meter 42 is mounted on the upper pipe seat 41, and a display screen 420 and a control panel 421 are provided on a front side surface of the intelligent flow rate statistics meter 42.
As a preferred embodiment, the utility model discloses the setting of the upper tube socket 41 and the intelligent flow statistics table 42 on well flow control mechanism 4 upper portion is used for the flow of the liquid raw and other materials of carrying in the real-time supervision fourth conveyer pipe 40 to guarantee accurate transport, avoid carrying too much or too little, relatively influence the quality of the product of preparing.
In this embodiment, an upper fixing plate 435 is disposed below the lower tube seat 43, fixing rods 436 are fixed to the left and right portions of the upper fixing plate 435, the lower ends of the fixing rods 436 are fixed to the lower fixing plate 431, a connecting shaft 433 is installed between the middle portions of the upper fixing plate 435 and the lower fixing plate 431, a switch valve is installed at the upper end of the connecting shaft 433, the switch valve at the upper end of the connecting shaft 433 is located in the middle of the fourth conveying tube 40, the connecting shaft 433 is sleeved in the shaft sleeve 430, a handwheel 432 is installed at the lower end of the connecting shaft 433, a first belt pulley 434 is installed at the lower portion of the connecting shaft 433, an installation sleeve 50 is installed on the second conveying tube 5, a second motor 51 is installed at the left portion of the installation sleeve 50, a second belt pulley 52 is disposed below the second motor 51, and a first belt 53 is connected between the second belt pulley 52 and the first belt pulley 434 in a transmission manner.
As a better embodiment, an upper fixing plate 435 and a lower fixing plate 431 are arranged below a lower pipe seat 43 arranged at the lower part of the flow control mechanism 4, a connecting shaft 433 is arranged between the upper fixing plate and the lower fixing plate, the control valve can be opened by rotating the connecting shaft 433 by 90 degrees, the valve can be closed by continuing to rotate by 90 degrees, and by repeating the steps of opening by rotating 90 degrees for a single time and closing by rotating 90 degrees for a double time, the operation is simple and convenient.
In this embodiment, an upper port 62 is provided at the left part of the upper end surface of the discharging box 6, a third delivery pipe 63 is connected below the upper port 62, a first suction pump 54 is installed on the lower pipe body of the second delivery pipe 5, the lower end of the second delivery pipe 5 is installed on the upper port 62, and the second delivery pipe 5 and the discharging box 6 are communicated; the right part of the front side surface of the discharging box 6 is provided with an inlet 60 and an outlet 61, the inlet 60 and the outlet 61 are respectively provided with an electromagnetic control valve, the four corners outside the discharging box 6 are respectively provided with a protection plate 64, the lower end of the protection plate 64 is fixed on a base 65, and the lower end surface of the base 65 is provided with four groups of first supporting feet 66.
As an embodiment of preferred, the utility model discloses well play workbin 6 is used for storing the required liquid raw materials of preparation product, because liquid raw materials does not well weigh, so install flow control mechanism between pipeline, install monitoring and control to guarantee the accuracy of conveying capacity.
The utility model discloses can effectively solve the raw materials conveyer pipe in the comparison document and make things convenient for the staff to carry out manual and electronic control synchro control and transport flow, it is too much to make statistics of the flowmeter, need just reach flow data result through many times of calculation, can consume more time and energy, use the problem inconvenient nimble, the utility model discloses well main be connected with first conveyer pipe between preparation section of thick bamboo and play workbin, flow control mechanism and second conveyer pipe, flow control mechanism installs between first conveyer pipe and second conveyer pipe, when carrying liquid raw and other materials, detect the transport flow to and the technological control delivery capacity, both can also can carry out the electrical control through manual control, use more convenient nimble, conveniently dispose raw and other materials more accurate errorlessly, with the quality of guarantee preparation product.

Claims (7)

1. A titanate modifier controllable flow preparation facilities which characterized in that includes: the device comprises a cylinder cover (1), a first motor (2), a first conveying pipe (3), a flow control mechanism (4) and a second conveying pipe (5);
the device comprises a barrel cover (1) and a preparation barrel (7), wherein the barrel cover is arranged at the upper end of the preparation barrel (7), a thermometer (11) and a pressure gauge (13) are respectively arranged on the left side and the right side of the front part of the upper end surface of the barrel cover (1), a first feeding hole (10) is formed in the left part of the barrel cover (1), and a second feeding hole (12) is formed in the right part of the barrel cover (1);
the first motor (2) is arranged in the middle of the upper end of the cylinder cover (1), and a protective cover (20) is arranged at the lower part of the first motor (2);
the first conveying pipe (3) is connected to the cylinder cover (1), and the first conveying pipe (3) is of a detachable structure;
the second conveying pipe (5) is arranged on the discharging box (6), and the second conveying pipe (5) is of a detachable structure;
and the flow control mechanism (4) is arranged between the first conveying pipe (3) and the second conveying pipe (5), and the flow control mechanism (4) is connected with the first conveying pipe (3) and the second conveying pipe (5) in a split mode.
2. The titanate modifier controllable flow preparation facilities of claim 1, characterized in that, the lower extreme of first motor (2) is connected with first (mixing) shaft (21), and the upper portion cover of first (mixing) shaft (21) is put in protection casing (20), and the left and right sides of the lower part body of rod of first (mixing) shaft (21) all is provided with first stirring rake (22), and first (mixing) shaft (21) is revolution mechanic.
3. The titanate ester modifier controllable flow preparation facilities of claim 1, characterized in that, flow control mechanism (4) is provided with fourth conveyer pipe (40), and the upper portion of fourth conveyer pipe (40) is provided with upper tube seat (41), and the lower part of fourth conveyer pipe (40) is provided with lower tube seat (43), install intelligent flow statistics table (42) on upper tube seat (41), and be provided with display screen (420) and control panel (421) on the leading flank of intelligent flow statistics table (42).
4. The titanate modifier controllable flow preparation device according to claim 3, wherein an upper fixing plate (435) is arranged below the lower tube seat (43), fixing rods (436) are fixed at both the left and right parts of the upper fixing plate (435), the lower ends of the fixing rods (436) are fixed on the lower fixing plate (431), a connecting shaft (433) is installed between the middle parts of the upper fixing plate (435) and the lower fixing plate (431), a switch valve is installed at the upper end of the connecting shaft (433), the switch valve at the upper end of the connecting shaft (433) is located at the middle part inside the fourth delivery pipe (40), the connecting shaft (433) is sleeved in a shaft sleeve (430), a hand wheel (432) is installed at the lower end of the connecting shaft (433), a first belt pulley (434) is installed at the lower part of the connecting shaft (433), and a mounting sleeve (50) is installed on the second delivery pipe (5), the left part of installation cover (50) is installed second motor (51), is provided with second belt pulley (52) under second motor (51), and the transmission is connected with first belt (53) between second belt pulley (52) and first belt pulley (434).
5. The titanate ester modifier controllable flow preparation facilities of claim 1, characterized in that, the upper end face left part of ejection of compact case (6) is provided with upper port (62), is connected with third conveyer pipe (63) under upper port (62), install first suction pump (54) on the lower part body of second conveyer pipe (5), and the lower extreme of second conveyer pipe (5) is installed on upper port (62), and the setting of being linked together between second conveyer pipe (5) and ejection of compact case (6).
6. The controllable flow preparation facilities of titanate modifier of claim 1, characterized in that, the front side right part of ejection of compact case (6) is provided with import (60) and export (61), all installs solenoid electric valve on import (60) and export (61), and ejection of compact case (6) outside four corners all is provided with guard plate (64), and the lower extreme of guard plate (64) is fixed on base (65), and the lower terminal surface of base (65) is provided with four sets of first supporting legs (66).
7. The titanate modifier controllable flow preparation device according to claim 1, characterized in that an interlayer (70) is arranged in the casing of the preparation cylinder (7), the interlayer (70) is provided with a plurality of circles of heat conducting rods (71), the lower end of the preparation cylinder (7) is provided with a feed opening (72), the lower port of the feed opening (72) leads into the output channel (73), the outer end of the output channel (73) is provided with a discharge opening (74), the outer edge of the bottom of the preparation cylinder (7) is provided with four groups of second supporting legs (75), and the bottom end of the second supporting legs (75) is provided with a foot pad (76).
CN202122559691.7U 2021-10-25 2021-10-25 Controllable flow preparation facilities of metatitanic acid ester modifier Active CN216419040U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122559691.7U CN216419040U (en) 2021-10-25 2021-10-25 Controllable flow preparation facilities of metatitanic acid ester modifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122559691.7U CN216419040U (en) 2021-10-25 2021-10-25 Controllable flow preparation facilities of metatitanic acid ester modifier

Publications (1)

Publication Number Publication Date
CN216419040U true CN216419040U (en) 2022-05-03

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Application Number Title Priority Date Filing Date
CN202122559691.7U Active CN216419040U (en) 2021-10-25 2021-10-25 Controllable flow preparation facilities of metatitanic acid ester modifier

Country Status (1)

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CN (1) CN216419040U (en)

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