CN209302761U - A kind of new type of continuous temperature control reaction kettle - Google Patents

A kind of new type of continuous temperature control reaction kettle Download PDF

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Publication number
CN209302761U
CN209302761U CN201822175838.0U CN201822175838U CN209302761U CN 209302761 U CN209302761 U CN 209302761U CN 201822175838 U CN201822175838 U CN 201822175838U CN 209302761 U CN209302761 U CN 209302761U
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CN
China
Prior art keywords
port
bolted
casing
spring
damping device
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Expired - Fee Related
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CN201822175838.0U
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Chinese (zh)
Inventor
杜鹃
梁萍
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Jiangxi Tianyi Spices Co Ltd
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Jiangxi Tianyi Spices Co Ltd
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Priority to CN201822175838.0U priority Critical patent/CN209302761U/en
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Abstract

The utility model discloses a kind of new type of continuous temperature control reaction kettles, its structure includes casing, shaft coupling, motor, feed opening, sealing cover, control cabinet, display screen, switch key, circumscripted power line, support leg, discharge nozzle, rotation axis, driven shaft, second shaft coupling, agitating paddle, heating tube, temperature sensor, circuit board, microprocessor, first port, second port, third port, 4th port, damping device, vibration device and the second damping device, by being provided with vibration device in the middle part of rotation axis, vibration is generated by the vibrating motor in vibration device, agitating paddle is vibrated, agitating paddle is set to carry out Vibratory Mixing, increase the mixing efficiency of raw material, and damping device and the second damping device are respectively provided in the driven shaft bottom end of vibration device top and agitating paddle, the mixing effect for increasing raw material is reached Rate, and damping is carried out to the component other than agitating paddle, prevent entire reaction kettle from vibrating the beneficial effect for causing noise excessive.

Description

A kind of new type of continuous temperature control reaction kettle
Technical field
The utility model relates to reaction kettle technical fields, and in particular to a kind of new type of continuous temperature control reaction kettle.
Background technique
The broad understanding of reaction kettle has the container physically or chemically reacted, is designed by the structure to container and is matched with parameter It sets, realizes the mixed function for heating, evaporation, cooling and the low high speed that technique requires, but existing reaction kettle can not be to inside The control of temperature new type of continuous, therefore a kind of reaction kettle of continuous temperature control is had developed, but the reaction kettle of the prior art is to raw material Mixing it is uneven, keep stirring efficiency low.
Utility model content
(1) technical problems to be solved
In order to overcome the shortage of prior art, it is proposed that a kind of new type of continuous temperature control reaction kettle, to solve the prior art Reaction kettle is uneven to the mixing of raw material, the problem for keeping stirring efficiency low, has reached the mixing efficiency for increasing raw material, and Damping is carried out to the component other than agitating paddle, prevents entire reaction kettle from vibrating the beneficial effect for causing noise excessive.
(2) technical solution
The utility model is achieved through the following technical solutions: the utility model proposes a kind of reactions of new type of continuous temperature control Kettle: including casing, shaft coupling, motor, feed opening, sealing cover, control cabinet, display screen, switch key, circumscripted power line, support Foot, discharge nozzle, rotation axis, driven shaft, second shaft coupling, agitating paddle, heating tube, temperature sensor, circuit board, microprocessor, First port, second port, third port, the 4th port, damping device, vibration device and the second damping device, the casing Top the center point and shaft coupling carry out insertion cooperation, and are locked by bolt and shaft coupling, and the feed opening is in Circular tube shaped is set to casing top end face apart from five centimeters of right side edge in 30-degree angle downwards from left to right, and passes through weldering Tin is welded with casing, and the feed opening top inner side is threadedly coupled with sealing cover, and passes through sealing ring and sealing Lid is sealed processing, and the casing front end face right side central is bolted with control cabinet, control cabinet front end face top Portion and display screen carry out insertion cooperation, and control cabinet front end face bottom and switch key carry out insertion cooperation, the control cabinet Grafting is carried out by anti-coil and circumscripted power line in the middle part of rear end, casing bottom end edge is provided with threaded hole, and leads to It crosses bolt to be threadedly coupled with support leg, the casing bottom end carries out screw thread apart from 20 centimeters of right side edge and discharge nozzle Connection, the shaft coupling runs through casing top middle portion, and inner lower edge is bolted with rotation axis, the rotation axis bottom End is bolted with damping device, and the damping device bottom end is bolted with vibration device, the vibration device Center bottom is bolted with driven shaft, and top carries out grafting, the axis on the inside of the driven shaft Basolateral and bearing Outer lower end is held to be bolted with the second damping device, second damping device bottom end and internal side of shell center bottom into Row is bolted, and the driven shaft outer lower end is welded with agitating paddle, and the casing internal left and right sides is and heating tube Insertion cooperation is carried out, and is locked by bolt and heating tube, the casing internal top is apart from left side edge ten Centimeters are bolted with temperature sensor, and the control cabinet middle inside is embedded in circuit board, and passes through spiral shell Bolt is locked with circuit board, carries out insertion cooperation, the circuit board with microprocessor in the middle part of the circuit board front end face Left side is from top to bottom respectively arranged with first port, second port, third port and the 4th port, and the damping device is by outer Shell, the first spring, piston plate, limited block, strut, second spring and bottom plate composition, the shell inside are carried out with the first spring Insertion, and the first spring is welded by scolding tin and top on the inside of shell, first spring bottom end and piston plate top It is bolted, is welded with limited block on the outside of the piston plate, the limited block outside and interior of shell or so two Side is embedded in, and the piston plate center bottom is bolted with strut, is covered on the outside of the strut with second spring It connects, the second spring top is welded with housing top end, and the second spring and strut bottom end are carried out with bottom plate top Welding, the bottom plate bottom end are bolted with vibration device top, and the housing top end is bolted with rotation axis, The vibration device is made of vibrating motor, fixed plate, the first connecting plate and the second connecting plate, at left and right sides of the vibrating motor It is bolted with fixed plate, first connecting plate is inverted U shape shape, and carries out on the outside of bottom end and inside and fixed plate Grafting, and be locked by bolt and fixed plate outer tip end, the fixed plate outer lower end and the second connecting plate Inside top is bolted, and second connecting plate bottom end is bolted with driven shaft, and the circumscripted power line is opened Close button and display screen difference microprocessor electrical connection, the microprocessor is electrically connected by first port with motor, described micro- Processor is electrically connected by second port with heating tube, and the microprocessor is electrically connected by third port with vibrating motor, institute Microprocessor is stated to be electrically connected by the 4th port with temperature sensor.
Further, there are four the switch key is respectively provided with.
Further, the damping device is consistent with the second damping device structure.
Further, it there are two the heating tube is respectively provided with, is respectively arranged at left and right sides of casing internal bottom end.
Further, there are three the agitating paddle is respectively provided with, using driven shaft as the angle distribution of 120 degree of center of circle interval.
Further, there are two the limited block is respectively provided with, be respectively arranged at left and right sides of piston plate, and in shell It is embedded at left and right sides of portion.
Further, first spring is extension spring, and upper and lower ends are provided with connecting plate.
Further, the second spring is compressed spring.
Further, the model TYPE series mini vibrating motor of the vibrating motor.
Further, the model WRM-101 Series Temperature Transmitters of the temperature sensor.
(3) beneficial effect
The utility model compared with the existing technology, has the advantages that
1) reaction kettle, for the solution prior art is uneven to the mixing of raw material, the problem for keeping stirring efficiency low, By being provided with vibration device in the middle part of rotation axis, vibration is generated by the vibrating motor in vibration device, agitating paddle is carried out Vibration makes agitating paddle carry out Vibratory Mixing, increases the mixing efficiency of raw material, and in vibration device top and agitating paddle Driven shaft bottom end is respectively provided with damping device and the second damping device, has reached the mixing efficiency for increasing raw material, and to stirring It mixes the component other than paddle and carries out damping, prevent entire reaction kettle from vibrating the beneficial effect for causing noise excessive.
Detailed description of the invention
Upon reading the detailed description of non-limiting embodiments with reference to the following drawings, other spies of the utility model Sign, objects and advantages will become more apparent upon:
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the casing internal structural schematic diagram of the utility model;
Fig. 3 is the board structure of circuit schematic diagrames of the utility model;
Fig. 4 is the damping device structural schematic diagram of the utility model;
Fig. 5 is the vibration device structural schematic diagram of the utility model;
Fig. 6 is the circuit block diagram of the utility model.
In figure: casing -1, shaft coupling -2, motor -3, feed opening -4, sealing cover -5, control cabinet -6, display screen -7, switch Key -8, circumscripted power line -9, support leg -10, discharge nozzle -11, rotation axis -12, damping device -13, vibration device -14, from Moving axis -15, second shaft coupling -16, the second damping device -17, agitating paddle -18, heating tube -19, temperature sensor -20, circuit Plate -21, microprocessor -22, first port -23, second port -24, third port -25, the 4th port -26, shell -131, One spring -132, piston plate -133, limited block -134, strut -135, second spring -136, bottom plate -137, vibrating motor -141, Fixed plate -142, the first connecting plate -143, the second connecting plate -144.
Specific embodiment
In the technical program:
Damping device 13, vibration device 14, the second damping device 17, shell 131, the first spring 132, piston plate 133, limit Position block 134, strut 135, second spring 136, bottom plate 137, vibrating motor 141, fixed plate 142, the first connecting plate 143, second Connecting plate 144 is that the utility model contains the innovative component of essence.
Casing 1, shaft coupling 2, motor 3, feed opening 4, sealing cover 5, control cabinet 6, display screen 7, switch key 8, external electricity Source line 9, support leg 10, discharge nozzle 11, rotation axis 12, driven shaft 15, second shaft coupling 16, agitating paddle 18, heating tube 19, temperature Sensor 20, circuit board 21, microprocessor 22, first port 23, second port 24, third port 25, the 4th port 26 are real The existing essential connectivity component of technical solutions of the utility model.
In order to make the purpose of the utility model, technical solutions and advantages more clearly understood, below in conjunction with attached drawing and implementation Example, the present invention will be further described in detail.It should be appreciated that specific embodiment described herein is only used to explain The utility model is not used to limit the utility model.
Fig. 1, Fig. 2, Fig. 3, Fig. 4 and 5 and Fig. 6 are please referred to, the utility model provides a kind of new type of continuous temperature control reaction kettle: packet Include casing 1, shaft coupling 2, motor 3, feed opening 4, sealing cover 5, control cabinet 6, display screen 7, switch key 8, circumscripted power line 9, Support leg 10, discharge nozzle 11, rotation axis 12, driven shaft 15, second shaft coupling 16, agitating paddle 18, heating tube 19, temperature sensor 20, circuit board 21, microprocessor 22, first port 23, second port 24, third port 25, the 4th port 26, damping device 13, vibration device 14 and the second damping device 17,1 top the center point of casing and shaft coupling 2 carry out insertion cooperation, and pass through spiral shell Bolt is locked with shaft coupling 2, and feed opening 4 is cylindrical, is set to 1 top of casing in 30-degree angle downwards from left to right Identity distance is welded from five centimeters of right side edge, and by scolding tin with casing 1,4 top inner side of feed opening and sealing cover 5 into Row is threadedly coupled, and is sealed processing by sealing ring and sealing cover 5,1 front end face right side central of casing and control cabinet 6 into Row is bolted, and carries out insertion cooperation, 6 front end face bottom of control cabinet and switch key with display screen 7 at the top of 6 front end face of control cabinet 8 carry out insertion cooperation, pass through anti-coil and the progress grafting of circumscripted power line 9,1 bottom end edge of casing in the middle part of 6 rear end of control cabinet It is provided with threaded hole, and is threadedly coupled by bolt with support leg 10,1 bottom end of casing is apart from 20 centimetres of right side edge Place is threadedly coupled with discharge nozzle 11, and shaft coupling 2 runs through 1 top middle portion of casing, and inner lower edge and rotation axis 12 carry out It is bolted, 12 bottom end of rotation axis is bolted with damping device 13, and 13 bottom end of damping device and vibration device 14 carry out It is bolted, 14 center bottom of vibration device is bolted with driven shaft 15, in 15 Basolateral of driven shaft and bearing 16 Side top carries out grafting, and 16 outer lower end of bearing is bolted with the second damping device 17,17 bottom end of the second damping device It is bolted in the middle part of 1 inner lower edge of casing, 15 outer lower end of driven shaft is welded with agitating paddle 18, inside casing 1 The left and right sides carries out insertion cooperation with heating tube 19, and is locked by bolt with heating tube 19, inside casing 1 Top is bolted apart from ten centimeters of left side edge with temperature sensor 20,6 middle inside of control cabinet and circuit board 21 Be embedded in, and be locked with circuit board 21 by bolt, in the middle part of 21 front end face of circuit board and microprocessor 22 into Row insertion cooperation, the left side of circuit board 21 are from top to bottom respectively arranged with first port 23, second port 24, third port 25 and the Four ports 26, damping device 13 is by shell 131, the first spring 132, piston plate 133, limited block 134, strut 135, second spring 136 and bottom plate 137 form, the inside of shell 131 is embedded in the first spring 132, and the first spring 132 by scolding tin with outside 131 inside top of shell is welded, and 132 bottom end of the first spring is bolted with 133 top of piston plate, outside piston plate 133 Side is welded with limited block 134, and 134 outside of limited block is embedded in the 131 inside left and right sides of shell, piston plate 133 Center bottom is bolted with strut 135, and 135 outside of strut is socketed with second spring 136, and second spring 136 is pushed up End is welded with 131 top of shell, and second spring 136 and 135 bottom end of strut are welded with 137 top of bottom plate, bottom plate 137 bottom ends are bolted with 14 top of vibration device, and 131 top of shell is bolted with rotation axis 12, vibration dress It sets 14 to be made of vibrating motor 141, fixed plate 142, the first connecting plate 143 and the second connecting plate 144, vibrating motor 141 or so Two sides are bolted with fixed plate 142, and the first connecting plate 143 is inverted U shape shape, and bottom end and inside and fixed plate 142 outsides carry out grafting, and are locked by bolt and 142 outer tip end of fixed plate, 142 outer lower end of fixed plate It being bolted with 144 inside top of the second connecting plate, 144 bottom end of the second connecting plate is bolted with driven shaft 15, Circumscripted power line 9, switch key 8 and display screen 7 are distinguished microprocessor 22 and are electrically connected, microprocessor 22 by first port 23 with Motor 3 is electrically connected, and microprocessor 22 is electrically connected by second port 24 with heating tube 19, and microprocessor 22 passes through third port 25 It is electrically connected with vibrating motor 141, microprocessor 22 is electrically connected by the 4th port 26 with temperature sensor 20.
Wherein, there are four the switch key 8 is respectively provided with, respectively to motor 3, heating tube 19, temperature sensor 20 and vibration Dynamic motor 141 is controlled respectively.
Wherein, the damping device 13 is consistent with 17 structure of the second damping device, is conducive to the generation of vibrating motor 141 Vibration carries out damping.
Wherein, it there are two the heating tube 19 is respectively provided with, is respectively arranged at left and right sides of 1 inner bottom of casing, is conducive to Casing 1 is internally heated.
Wherein, there are three the agitating paddle 18 is respectively provided with, it is the angle distribution of 120 degree of center of circle interval with driven shaft 15, is conducive to Reaction raw materials in reaction kettle are stirred.
Wherein, there are two the limited block 134 is respectively provided with, 133 left and right sides of piston plate, and and shell are respectively arranged at The 131 inside left and right sides are embedded in, and are conducive to limit piston plate 133, are prevented piston plate 133 from carrying out rotation.
Wherein, first spring 132 is extension spring, and upper and lower ends are provided with connecting plate, are conducive to work Seben 133 is stretched, and lower pulling force when to vibration buffers.
Wherein, the second spring 136 is compressed spring, and the lifting force degree generated when being conducive to vibration buffers.
Wherein, the model TYPE series mini vibrating motor of the vibrating motor 141, oscillation intensity is big, service life It is long.
Wherein, the model WRM-101 Series Temperature Transmitters of the temperature sensor 20, sensing precisely, sense speed Fastly.
It is that vibrating motor 141 at armature spindle both ends respectively installs one group of adjustable eccentric block described in this patent, using axis and partially The centrifugal force that heart block high speed rotation generates obtains exciting force, and vibrating motor vibration frequency range is big, only exciting force and power Mechanicalness noise could be reduced by tying in, and temperature sensor 20 refers to the sensing that can be experienced temperature and be converted into usable output signal Device, temperature sensor is the core of temperature measuring instrument, various in style, can be divided into contact and non-contact by measurement method Formula two major classes are divided into two class of thermal resistance and thermocouple according to sensor material and electron component characteristic.
Working principle: before use, being first placed in reaction kettle on user desired position by support leg 1, so Circumscripted power line 9 is attached with external power supply afterwards, control instruction is sent by pressing switch key 8, passes through microprocessor 22 carry out data calculating, pass through the first port 23 on circuit board 21, second port 24,26 pairs of the 4th port of third port 25 electricity Machine 3, heating tube 19, vibrating motor 141 and temperature sensor 20 are controlled respectively, and then start machine, when in use, first Sealing cover 5 is opened, the raw material that will carry out mixed reaction pours into casing 1 from feed opening 4, and control motor 3 generates power and passes through Output shaft drives the rotation axis 12 of 2 bottom end of shaft coupling to be rotated clockwise, and then drives the agitating paddle 18 in 15 outside of driven shaft It is rotated, and is provided with damping device 13 and vibration device 14 in 12 bottom end of rotation axis, pass through the vibration in vibration device 14 Dynamic motor 141 generates vibration, generates vibration to driven shaft 15 by the second connecting plate 144, and then vibrate to agitating paddle 18, So that agitating paddle 18 is being carried out Vibratory Mixing, increases the mixing efficiency of raw material, and at 15 bottom of 14 top of vibration device and driven shaft End is respectively provided with damping device 14 and the second damping device 17, and in vibration, by 135 stress of strut, the first spring 132 is to draw Spring is stretched, lower pulling force when to vibration buffers, and second spring 136 is compressed spring, the lifting force degree generated when to vibration It is buffered, and then carries out damping, and damping device 13 is consistent with 17 structure of the second damping device, to the portion other than agitating paddle Part carries out damping, prevents entire reaction kettle vibration from causing noise excessive, and control heating tube 19 and generate high temperature, in casing 1 It is heated, so that the mixed raw material inside casing 1 is carried out heating reaction, and pass through the temperature in 20 degree of casings 1 of temperature sensing It is detected, microprocessor 22 is transmitted to by the 4th port 26, data calculating is carried out by microprocessor 22, and then to heating The heating temperature of pipe 19 is controlled, and carries out continuous temperature control to the temperature in casing 1, and carry out temperature by display screen 7 and show Show, so that raw material is discharged from discharge nozzle 11 by opening the valve of 11 bottom end of discharge nozzle after completion of the reaction in mixture, complete former The mixture reaction of material.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above, for For those skilled in the art, it is clear that the present invention is not limited to the details of the above exemplary embodiments, and without departing substantially from this In the case where the spirit or essential attributes of utility model, the utility model can be realized in other specific forms.Therefore, no matter From the point of view of which point, the present embodiments are to be considered as illustrative and not restrictive, and the scope of the utility model is by institute Attached claim rather than above description limit, it is intended that will fall within the meaning and scope of the equivalent elements of the claims All changes are embraced therein.It should not treat any reference in the claims as limiting related right It is required that.
In addition, it should be understood that although this specification is described in terms of embodiments, but not each embodiment is only wrapped Containing an independent technical solution, this description of the specification is merely for the sake of clarity, and those skilled in the art should It considers the specification as a whole, the technical solutions in the various embodiments may also be suitably combined, forms those skilled in the art The other embodiments being understood that.

Claims (8)

1. a kind of new type of continuous temperature control reaction kettle, including casing (1), shaft coupling (2), motor (3), feed opening (4), sealing cover (5), control cabinet (6), display screen (7), switch key (8), circumscripted power line (9), support leg (10), discharge nozzle (11), rotation Axis (12), driven shaft (15), second shaft coupling (16), agitating paddle (18), heating tube (19), temperature sensor (20), circuit board (21), microprocessor (22), first port (23), second port (24), third port (25) and the 4th port (26), feature It is: further includes damping device (13), vibration device (14) and the second damping device (17), casing (1) top the center point Insertion cooperation is carried out with shaft coupling (2), and is locked by bolt with shaft coupling (2), the feed opening (4) is in circle Tubulose is set to casing (1) top end face apart from five centimeters of right side edge in 30-degree angle downwards from left to right, and passes through weldering Tin is welded with casing (1), and feed opening (4) top inner side is threadedly coupled with sealing cover (5), and passes through sealing Circle is sealed processing with sealing cover (5), and casing (1) the front end face right side central is bolted with control cabinet (6), institute It states and carries out insertion cooperation with display screen (7) at the top of control cabinet (6) front end face, control cabinet (6) the front end face bottom is pressed with switch Key (8) carries out insertion cooperation, and control cabinet (6) the rear end middle part carries out grafting by anti-coil and circumscripted power line (9), described Casing (1) bottom end edge is provided with threaded hole, and is threadedly coupled by bolt with support leg (10), the casing (1) bottom end is threadedly coupled apart from 20 centimeters of right side edge with discharge nozzle (11), and the shaft coupling (2) runs through casing (1) top middle portion, and inner lower edge is bolted with rotation axis (12), rotation axis (12) bottom end and damping device (13) it is bolted, damping device (13) bottom end is bolted with vibration device (14), the vibration device (14) center bottom is bolted with driven shaft (15), and top carries out on the inside of driven shaft (15) Basolateral and bearing Grafting, the bearing outer lower end are bolted with the second damping device (17), the second damping device (17) bottom end It being bolted with casing (1) inner lower edge middle part, driven shaft (15) outer lower end is welded with agitating paddle (18), The internal left and right sides of the casing (1) carries out insertion cooperation with heating tube (19), and by bolt and heating tube (19) into Row is locked, and casing (1) inner tip carries out bolt company apart from ten centimeters of left side edge and temperature sensor (20) It connects, control cabinet (6) middle inside is embedded in circuit board (21), and is locked by bolt with circuit board (21) It is fixed, carry out insertion cooperation in the middle part of circuit board (21) front end face with microprocessor (22), on the left of the circuit board (21) by First port (23), second port (24), third port (25) and the 4th port (26), the damping are respectively arranged under Device (13) is by shell (131), the first spring (132), piston plate (133), limited block (134), strut (135), second spring (136) it forms, is embedded on the inside of the shell (131) with the first spring (132), and the first spring with bottom plate (137) (132) it is welded by scolding tin and top on the inside of shell (131), the first spring (132) bottom end and piston plate (133) are pushed up End is bolted, and is welded with limited block (134) on the outside of the piston plate (133), on the outside of the limited block (134) It is embedded in the internal left and right sides of shell (131), piston plate (133) center bottom and strut (135) carry out bolt company It connects, is socketed on the outside of the strut (135) with second spring (136), second spring (136) top and shell (131) Top is welded, and the second spring (136) and strut (135) bottom end are welded with bottom plate (137) top, the bottom Plate (137) bottom end is bolted with vibration device (14) top, and shell (131) top and rotation axis (12) carry out spiral shell It tethers and connects, the vibration device (14) is by vibrating motor (141), fixed plate (142), the first connecting plate (143) and the second connection Plate (144) composition, vibrating motor (141) left and right sides are bolted with fixed plate (142), first connection Plate (143) is inverted U shape shape, and grafting is carried out on the outside of bottom end and inside and fixed plate (142), and passes through bolt and fixed plate (142) outer tip end is locked, on the inside of fixed plate (142) outer lower end and the second connecting plate (144) top into Row is bolted, and the second connecting plate (144) bottom end is bolted with driven shaft (15), the circumscripted power line (9), Switch key (8) and display screen (7) microprocessor (22) electrical connection respectively, the microprocessor (22) pass through first port (23) It is electrically connected with motor (3), the microprocessor (22) is electrically connected by second port (24) with heating tube (19), the micro process Device (22) is electrically connected by third port (25) with vibrating motor (141), and the microprocessor (22) passes through the 4th port (26) It is electrically connected with temperature sensor (20).
2. a kind of new type of continuous temperature control reaction kettle according to claim 1, it is characterised in that: the switch key (8) is equal There are four settings.
3. a kind of new type of continuous temperature control reaction kettle according to claim 1, it is characterised in that: the damping device (13) with Second damping device (17) structure is consistent.
4. a kind of new type of continuous temperature control reaction kettle according to claim 1, it is characterised in that: the heating tube (19) is all provided with There are two setting, it is respectively arranged at left and right sides of casing (1) inner bottom.
5. a kind of new type of continuous temperature control reaction kettle according to claim 1, it is characterised in that: the agitating paddle (18) is all provided with It is the angle distribution of 120 degree of center of circle interval with driven shaft (15) there are three setting.
6. a kind of new type of continuous temperature control reaction kettle according to claim 1, it is characterised in that: the limited block (134) is equal There are two settings, is respectively arranged at left and right sides of piston plate (133), and is embedded in the internal left and right sides of shell (131).
7. a kind of new type of continuous temperature control reaction kettle according to claim 1, it is characterised in that: first spring (132) For extension spring, and upper and lower ends are provided with connecting plate.
8. a kind of new type of continuous temperature control reaction kettle according to claim 1, it is characterised in that: the second spring (136) For compressed spring.
CN201822175838.0U 2018-12-24 2018-12-24 A kind of new type of continuous temperature control reaction kettle Expired - Fee Related CN209302761U (en)

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CN201822175838.0U CN209302761U (en) 2018-12-24 2018-12-24 A kind of new type of continuous temperature control reaction kettle

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Application Number Priority Date Filing Date Title
CN201822175838.0U CN209302761U (en) 2018-12-24 2018-12-24 A kind of new type of continuous temperature control reaction kettle

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111495311A (en) * 2020-04-29 2020-08-07 沈阳工业大学 Horizontal continuous precipitation reaction device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111495311A (en) * 2020-04-29 2020-08-07 沈阳工业大学 Horizontal continuous precipitation reaction device

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Granted publication date: 20190827

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