CN211025933U - Calcium gluconate reaction unit - Google Patents
Calcium gluconate reaction unit Download PDFInfo
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- CN211025933U CN211025933U CN201921158934.2U CN201921158934U CN211025933U CN 211025933 U CN211025933 U CN 211025933U CN 201921158934 U CN201921158934 U CN 201921158934U CN 211025933 U CN211025933 U CN 211025933U
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- water pump
- heat absorption
- calcium gluconate
- retort
- reaction unit
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Abstract
The utility model discloses a calcium gluconate reaction unit belongs to calcium gluconate retort technical field, driving motor is installed to the intermediate position department at carousel top, the pivot is installed to driving motor's output, the pivot outside evenly articulates there is the puddler, the both sides at carousel top are provided with presses the depression bar, and press the depression bar to run through the retort, evenly install the slider in one side of pressing the depression bar, the one end in the puddler outside is provided with the spout of mutually supporting with the slider, L type pole is installed to the upper end of pressing depression bar one side, the intermediate position department of the inside one side of carousel installs the bobbin, the inside bottom of bobbin is provided with the spring, the slide bar is installed to the output of spring, evenly be provided with the draw-in groove of mutually supporting with the slide bar on the L type pole, the utility model discloses make its stirring more abundant, improve work efficiency.
Description
Technical Field
The utility model relates to a calcium gluconate device especially relates to a calcium gluconate reaction unit, belongs to calcium gluconate retort technical field.
Background
The calcium gluconate is white crystalline or granular powder, has melting point of 201 deg.C (decomposition), no odor, no taste, easy solubility in boiling water (20g/100ml), slight solubility in cold water (3g/100ml, 20 deg.C), insolubility in organic solvent such as ethanol or diethyl ether, and neutral aqueous solution (pH of about 6-7). The calcium gluconate is mainly used as calcium enhancer, nutrient, buffering agent, solidifying agent and chelating agent of food.
In the prior art, the reaction to calcium gluconate is usually realized by a reaction tank of a tank body, and the reaction tank in the prior art is not ideal for the stirring effect of calcium gluconate, so that a novel calcium gluconate reaction device is needed to solve the problems.
SUMMERY OF THE UTILITY MODEL
The main objective of the utility model is to provide a calcium gluconate reaction unit, open driving motor, thereby it rotates to drive the carousel, thereby make its puddler stir the reactant, through the regulation handle of pulling slide bar top intermediate position department, press down the press lever, thereby change the angle of puddler, the regulation handle is adjusted under the effect of spring tension to the pine, make its slide bar fix on L type draw-in groove on the pole once more, then stir, thereby make more abundant of its stirring, and the work efficiency is improved.
The purpose of the utility model can be achieved by adopting the following technical scheme:
the utility model provides a calcium gluconate reaction unit, includes the casing and installs the retort of the inside one side of casing, the inside of casing is equipped with heating element, the intermediate position department of retort portion installs the carousel through the bearing, the intermediate position department at carousel top installs driving motor, driving motor's output is installed the pivot, the pivot outside evenly articulates there is the puddler, the both sides at carousel top are provided with presses the depression bar, and run through the retort according to the depression bar, evenly install the slider according to one side of depression bar, the one end in the puddler outside is provided with the spout of mutually supporting with the slider, install L type pole according to the upper end of depression bar one side, the intermediate position department of the inside one side of carousel installs the bobbin, the inside bottom of bobbin is provided with the spring, the slide bar is installed to the output of spring, evenly be provided with the draw-in groove of mutually supporting with the slide bar on the L type pole, the feed inlet is installed at the top of retort, the discharge gate is installed to the bottom of retort, and.
Preferably, a sponge layer is arranged at the top of the pressing rod, an adjusting handle is arranged in the middle of the top of the sliding rod, a vacuum pump is installed on the outer side of the reaction tank, and the vacuum pump is communicated with the reaction tank.
Preferably, a heat absorption cavity is installed on one side inside the shell, a heat absorption pipe is arranged inside the heat absorption cavity, a second water pump is arranged at the top of the heat absorption cavity, a first water pump is arranged at the bottom of one side of the reaction tank and connected with the heat absorption pipe through a pipeline, and the heat absorption pipe is connected with the second water pump through a pipeline.
Preferably, a heater is installed on one side inside the heat absorption cavity, a water tank is installed on one side of the reaction tank, a heating pipe is arranged on the inner side of the reaction tank, the water tank is communicated with the heating pipe, the second water pump is communicated with the water tank, and the first water pump is communicated with the heating pipe.
Preferably, damper is installed to the bottom of retort, just damper's bottom is installed on the bottom in the casing, the universal wheel is installed to the four corners department of casing bottom, just be equipped with braking component on the universal wheel.
Preferably, the heating pipe and the heat absorbing pipe are connected to form an arch structure, a handle and a control panel are arranged on one side of the shell, and the control panel is electrically connected with the driving motor, the vacuum pump, the first water pump, the heater and the second water pump through wires.
The utility model has the advantages of:
the utility model provides a pair of calcium gluconate reaction unit opens driving motor, thereby it rotates to drive the carousel, thereby make its puddler stir the reactant, through the regulation handle of pulling slide bar top intermediate position department, press down the press ram, thereby change the angle of puddler, loose the regulation handle under the effect of spring tension, make its slide bar fix on the draw-in groove on L type pole once more, then stir, thereby make more abundant of its stirring, improve work efficiency.
Drawings
Fig. 1 is a side sectional view of a preferred embodiment of a calcium gluconate reaction unit according to the present invention;
fig. 2 is an enlarged view of a structure at a position a in accordance with a preferred embodiment of a calcium gluconate reaction unit according to the present invention;
fig. 3 is a schematic diagram of a heating tube structure of a calcium gluconate reaction device according to a preferred embodiment of the present invention.
In the figure, 1-driving motor, 2-pressing rod, 3-pipe barrel, 4-rotating shaft, 5-L type rod, 6-heating pipe, 7-vacuum pump, 8-control panel, 9-rotating disc, 10-first water pump, 11-heater, 13-heat absorption pipe, 14-heat absorption cavity, 15-second water pump, 16-shell, 17-water tank, 18-supporting rod, 19-stirring blade, 20-damping component, 21-universal wheel, 22-reaction tank, 23-spring and 24-sliding rod.
Detailed Description
In order to make the technical solutions of the present invention clearer and clearer for those skilled in the art, the present invention will be described in further detail with reference to the following embodiments and the accompanying drawings, but the embodiments of the present invention are not limited thereto.
As shown in fig. 1-3, the calcium gluconate reaction device provided in this embodiment includes a housing 16 and a reaction tank 22 installed on one side inside the housing 16, a heating component is installed inside the housing 16, a rotary table 9 is installed at an intermediate position of the reaction tank 22 through a bearing, a driving motor 1 is installed at an intermediate position of the top of the rotary table 9, a rotary shaft 4 is installed at an output end of the driving motor 1, a stirring rod 19 is uniformly hinged outside the rotary shaft 4, pressing rods 2 are arranged on two sides of the top of the rotary table 9 and penetrate through the reaction tank 22, a slider is uniformly installed on one side of the pressing rod 2, a sliding chute matched with the slider is arranged at one end outside the stirring rod 19, a L type rod 5 is installed at the upper end on one side of the pressing rod 2, a barrel 3 is installed at an intermediate position of one side inside the rotary table 9, a spring 23 is arranged at the bottom end inside the barrel 3, a sliding rod 24 is installed at an output end of the spring 23, a clamping groove matched with the sliding rod 24 is uniformly arranged on the sliding rod 5, a feeding port is installed at the top of.
Open driving motor 1 to drive carousel 9 and rotate, thereby make its puddler 19 stir the reactant, through the adjustment handle of pulling slide bar 24 top intermediate position department, press down depression bar 2, thereby change the angle of puddler 19, loosen the adjustment handle under the effect of spring 23 pull, make its slide bar 24 fix on L type bar 5 draw-in groove once more, then stir again.
In this embodiment: the top of pressing rod 2 is provided with the sponge layer, and the intermediate position department at slide bar 24 top is provided with the regulation handle to can be more comfortable when adjusting, vacuum pump 7 is installed in the outside of retort 22, and vacuum pump 7 and retort 22 intercommunication.
In this embodiment: heat absorption chamber 14 is installed to inside one side of casing 16, heat absorption chamber 14's inside is equipped with heat absorption pipe 13, heat absorption chamber 14's top is equipped with second water pump 15, the bottom of retort 22 one side is equipped with first water pump 10, first water pump 10 passes through the pipeline and is connected with heat absorption pipe 13, heat absorption pipe 13 passes through the pipeline and is connected with second water pump 15, heater 11 is installed to the inside one side in heat absorption chamber 14, water tank 17 is installed to one side of retort 22, retort 22's inboard is equipped with heating tube 6, water tank 17 and heating tube 6 intercommunication, second water pump 15 and water tank 17 intercommunication, first water pump 10 and heating tube 6 intercommunication.
Through starting first water pump 10 and second water pump 16, through second water pump 16 with the water suction of water tank 17 to the heat-absorbing pipe 13 in, through starting heater 11 to water that is located the heat-absorbing pipe 13 heats, through the inside of the water suction after first water pump 10 will heat to heating tube 6, thereby play the effect to retort 22 internal heating.
In this embodiment: the shock absorption assembly 20 is installed at the bottom of the reaction tank 22, the bottom of the shock absorption assembly 20 is installed on the bottom in the shell 16, the universal wheels 21 are installed at the four corners of the bottom of the shell 16, and the brake assembly is arranged on the universal wheels 21, so that the shock absorption effect and the effect of being convenient to move to a proper position are achieved.
In this embodiment: the heating tube 6 and the heat absorption tube 13 are connected to form an arch structure, one side of the shell 16 is provided with a handle and a control panel 8, and the control panel 8 is electrically connected with the driving motor 1, the vacuum pump 7, the first water pump 10, the heater 11 and the second water pump 15 through leads, so that the control is convenient.
As shown in fig. 1 to fig. 3, the working process of the calcium gluconate reaction device provided in this embodiment is as follows:
step 1: by opening the feed inlet cap, the feed is added to the reaction tank 22 through the feed inlet;
step 2: the water in the water tank 17 is pumped into the heat absorption pipe 13 through the second water pump 16 by starting the first water pump 10 and the second water pump 16, the water in the heat absorption pipe 13 is heated by starting the heater 11, and the heated water is pumped into the heating pipe 6 through the first water pump 10, so that the heating effect on the interior of the reaction tank 22 is achieved;
step 3, turning on the driving motor 1 to drive the turntable 9 to rotate, so that the stirring rod 19 of the turntable stirs the reactant, pulling the adjusting handle at the middle position of the top of the sliding rod 24, pressing the pressing rod 2 to change the angle of the stirring rod 19, loosening the adjusting handle under the action of the pulling force of the spring 23, so that the sliding rod 24 of the turntable is clamped on the clamping groove of the L-type rod 5 again to be fixed, and then stirring;
and 4, step 4: and finally, discharging the material by opening a valve of the discharge port.
In summary, in this embodiment, by opening the sealing cover of the feeding hole, the material is added into the reaction tank 22 through the feeding hole, by starting the first water pump 10 and the second water pump 16, the water in the water tank 17 is pumped into the heat absorbing pipe 13 through the second water pump 16, by starting the heater 11, the water in the heat absorbing pipe 13 is heated, the heated water is pumped into the heat generating pipe 6 through the first water pump 10, so as to heat the interior of the reaction tank 22, the driving motor 1 is turned on, so as to drive the rotary table 9 to rotate, so as to stir the reactant by the stirring rod 19, by pulling the adjusting handle at the middle position of the top of the sliding rod 24, the pressing rod 2 is pressed, so as to change the angle of the stirring rod 19, the adjusting handle is loosened to be clamped under the pulling force of the spring 23, so that the sliding rod 24 is fixed on the clamping groove on the L-type rod 5 again, then stirring is performed, and finally, the material is discharged by opening the valve of the discharging hole, so that the stirring is more sufficient, and the working efficiency is.
The above description is only a further embodiment of the present invention, but the scope of protection of the present invention is not limited thereto, and any person skilled in the art can replace or change the technical solution and the concept of the present invention within the scope of the present invention.
Claims (6)
1. The utility model provides a calcium gluconate reaction unit, characterized in that include casing (16) and install retort (22) of casing (16) inside one side, the inside of casing (16) is equipped with heating element, carousel (9) are installed through the bearing in the intermediate position department of retort (22) portion, driving motor (1) are installed to the intermediate position department at carousel (9) top, pivot (4) are installed to the output of driving motor (1), pivot (4) outside evenly articulates there is puddler (19), the both sides at carousel (9) top are provided with presses depression bar (2), and press depression bar (2) to run through retort (22), evenly install the slider according to one side of depression bar (2), the one end in puddler (19) outside is provided with the spout that mutually supports with the slider, press the upper end of depression bar (2) one side to install L type pole (5), the intermediate position department of carousel (9) inside one side installs bobbin (3), the inside bottom of bobbin (3) is provided with spring (23), the output of spring (23) is installed type pole (24), the last slide bar (355) and the even discharge gate (22) of installing of reaction tank (22), be equipped with the discharge gate (22) on the sealed lid (L), be equipped with the reaction tank (22) the discharge gate (22).
2. The calcium gluconate reaction unit according to claim 1, wherein: the top of the pressing rod (2) is provided with a sponge layer, the middle position of the top of the sliding rod (24) is provided with an adjusting handle, the outer side of the reaction tank (22) is provided with a vacuum pump (7), and the vacuum pump (7) is communicated with the reaction tank (22).
3. The calcium gluconate reaction unit according to claim 1, wherein: a heat absorption cavity (14) is installed on one side of the interior of the shell (16), a heat absorption pipe (13) is arranged in the heat absorption cavity (14), a second water pump (15) is arranged at the top of the heat absorption cavity (14), a first water pump (10) is arranged at the bottom of one side of the reaction tank (22), the first water pump (10) is connected with the heat absorption pipe (13) through a pipeline, and the heat absorption pipe (13) is connected with the second water pump (15) through a pipeline.
4. The calcium gluconate reaction unit according to claim 3, wherein: the heating device is characterized in that a heater (11) is installed on one side inside the heat absorption cavity (14), a water tank (17) is installed on one side of the reaction tank (22), a heating pipe (6) is arranged on the inner side of the reaction tank (22), the water tank (17) is communicated with the heating pipe (6), the second water pump (15) is communicated with the water tank (17), and the first water pump (10) is communicated with the heating pipe (6).
5. The calcium gluconate reaction unit according to claim 1, wherein: damping component (20) are installed to the bottom of retort (22), just damping component (20)'s bottom is installed on the bottom in casing (16), universal wheel (21) are installed to the four corners department of casing (16) bottom, just be equipped with braking component on universal wheel (21).
6. The calcium gluconate reaction unit according to claim 4, wherein: the heating pipe (6) and the heat absorption pipe (13) are connected to form an arch structure, a handle and a control panel (8) are arranged on one side of the shell (16), and the control panel (8) is electrically connected with the driving motor (1), the vacuum pump (7), the first water pump (10), the heater (11) and the second water pump (15) through leads.
Priority Applications (1)
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CN201921158934.2U CN211025933U (en) | 2019-07-23 | 2019-07-23 | Calcium gluconate reaction unit |
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CN201921158934.2U CN211025933U (en) | 2019-07-23 | 2019-07-23 | Calcium gluconate reaction unit |
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CN211025933U true CN211025933U (en) | 2020-07-17 |
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CN201921158934.2U Active CN211025933U (en) | 2019-07-23 | 2019-07-23 | Calcium gluconate reaction unit |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115069119A (en) * | 2022-08-19 | 2022-09-20 | 南通亨得利高分子材料科技有限公司 | Automatic temperature control mixing stirrer for viscous binder |
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2019
- 2019-07-23 CN CN201921158934.2U patent/CN211025933U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115069119A (en) * | 2022-08-19 | 2022-09-20 | 南通亨得利高分子材料科技有限公司 | Automatic temperature control mixing stirrer for viscous binder |
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