CN211217140U - A quick centrifugal device for chemical reagent production usefulness - Google Patents

A quick centrifugal device for chemical reagent production usefulness Download PDF

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Publication number
CN211217140U
CN211217140U CN201922115943.XU CN201922115943U CN211217140U CN 211217140 U CN211217140 U CN 211217140U CN 201922115943 U CN201922115943 U CN 201922115943U CN 211217140 U CN211217140 U CN 211217140U
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CN
China
Prior art keywords
motor
distributed
belt
chemical reagent
reagent production
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Expired - Fee Related
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CN201922115943.XU
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Chinese (zh)
Inventor
徐梦达
刘同溢
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Tianjin Xiyage Biotechnology Co ltd
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Tianjin Xiyage Biotechnology Co ltd
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Priority to CN201922115943.XU priority Critical patent/CN211217140U/en
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Abstract

The utility model discloses a quick centrifugal device for chemical reagent production usefulness, including frame, telescopic link and second bearing frame, the one end sub-unit connection of frame has the overflow mouth, and the other end sub-unit connection of frame has the solid flow mouth, the upper portion of frame is connected with the housing, and the inside distribution of housing has the rotary drum, the second bearing frame is connected in pushing away the other end of material spiral, and the opposite side distribution of second bearing frame has differential mechanism, differential mechanism's opposite side distributes and has the second belt, and the lower extreme of second belt is connected with the second motor. This a quick centrifugal device for chemical reagent production usefulness is provided with telescopic link and pole setting, can highly adjust this centrifugal device for make things convenient for staff's operation, and this centrifugal device still is provided with first motor and second motor, make and have dual drive, make to accelerate centrifugal speed greatly, improved staff's work efficiency.

Description

A quick centrifugal device for chemical reagent production usefulness
Technical Field
The utility model relates to a centrifugal device technical field specifically is a quick centrifugal device for chemical reagent production usefulness.
Background
Centrifuges are machines that utilize centrifugal force to separate components of a mixture of liquid and solid particles or liquid and liquid. The centrifuge is mainly used for separating solid particles from liquid in suspension or separating two liquids which have different densities and are insoluble with each other in emulsion (for example, separating cream from milk), and can also be used for discharging liquid in wet solid, for example, drying wet clothes by using a washing machine, and a centrifugal device is also frequently used in the production of chemical reagents, so that a quick centrifugal device for the production of the chemical reagents is needed.
Centrifugal device on the market is fixed knot structure mostly, can not adjust centrifugal device's height, brings inconvenience for the staff, and most centrifugal device all is provided with a motor and carries out the transmission for centrifugal speed is too slow, has brought troublesome problem for the staff, and for this reason, we propose a quick centrifugal device who is used for chemical reagent production usefulness.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a quick centrifugal device for chemical reagent production usefulness to solve the centrifugal device on the market that proposes in the above-mentioned background art most all be fixed knot structure, can not highly adjust centrifugal device, bring inconvenience for the staff, and most centrifugal device all is provided with a motor and carries out the transmission, makes centrifugal speed slow excessively, has brought troublesome problem for the staff.
In order to achieve the above object, the utility model provides a following technical scheme: a quick centrifugal device for chemical reagent production comprises a rack, a telescopic rod and a second bearing seat, wherein the lower part of one end of the rack is connected with an overflow port, the lower part of the other end of the rack is connected with a solid flow port, the upper part of the rack is connected with a housing, a rotary drum is distributed in the housing, the upper part of one end of the rotary drum is connected with a slag discharge port, a material pushing spiral is distributed in the middle of the rotary drum, material distributing ports are distributed in the middle of the material pushing spiral, a first bearing seat is distributed at one end of the material pushing spiral, the telescopic rod is connected to the lower end of the first bearing seat, a nut is connected to one side of the lower end of the telescopic rod, the lower end of the telescopic rod is connected with a vertical rod, the lower end of the vertical rod is connected with a bottom block, a feed port is distributed, and the lower extreme of first motor is connected with the motor cabinet, second bearing frame is connected in pushing away the other end of material spiral, and the opposite side of second bearing frame distributes and has differential mechanism, the opposite side of differential mechanism distributes and has the second belt, and the lower extreme of second belt is connected with the second motor.
Preferably, the rotary drum forms a rotating structure through the space between the pushing spiral and the first bearing seat, and the rotary drum is symmetrically distributed about a horizontal central axis of the pushing spiral.
Preferably, the telescopic link passes through to constitute adjustable structure between nut and the pole setting, and pole setting and telescopic link distribute in same vertical line.
Preferably, the first motor forms a flexible transmission structure with the pushing spiral through the first belt, and the first motor and the pushing spiral are distributed in a parallel rotating mode.
Preferably, a welding integrated structure is formed between the motor base and the telescopic rod, and the motor base and the telescopic rod are distributed in a parallel manner.
Preferably, the second motor forms a flexible transmission structure with the differential through a second belt, and the second motor and the differential are distributed in a parallel manner.
Compared with the prior art, the beneficial effects of the utility model are that: the rapid centrifugal device for producing the chemical reagent is provided with the telescopic rod and the vertical rod, the height of the centrifugal device can be adjusted, so that the operation of workers is facilitated, and the centrifugal device is further provided with the first motor and the second motor, so that double transmission is realized, the centrifugal speed is greatly increased, and the working efficiency of the workers is improved;
the rotary structure is formed between the rotary drum and the first bearing seat through the pushing spiral, so that the chemical reagent is conveniently centrifuged, and the centrifugal effect is better;
this a quick centrifugal device for chemical reagent production usefulness is provided with flexible transmission structure, and first motor makes the transmission effect better through first belt and pushing away and constitute flexible transmission structure between the material spiral, has reduced the loss of kinetic energy, constitutes welding integration structure between motor cabinet and the telescopic link for the device's structure is more firm, reduces the vibrations that the during operation produced.
Drawings
FIG. 1 is a schematic front view of the present invention;
FIG. 2 is a schematic top view of the present invention;
fig. 3 is a schematic side view of the present invention.
In the figure: 1. a frame; 2. an overflow port; 3. a solid flow port; 4. a housing; 5. a drum; 6. a slag discharge port; 7. pushing material to spiral; 8. a material distributing port; 9. a first bearing housing; 10. a telescopic rod; 11. a nut; 12. erecting a rod; 13. a bottom block; 14. a feed inlet; 15. a first belt; 16. a first motor; 17. a motor base; 18. A second bearing housing; 19. a differential mechanism; 20. a second belt; 21. a second motor.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: a rapid centrifugal device for chemical reagent production comprises a machine frame 1, an overflow port 2, a solid flow port 3, a cover shell 4, a rotary drum 5, a slag discharge port 6, a pushing spiral 7, a material distribution port 8, a first bearing seat 9, an expansion link 10, a nut 11, an upright rod 12, a bottom block 13, a material inlet 14, a first belt 15, a first motor 16, a motor seat 17, a second bearing seat 18, a differential mechanism 19, a second belt 20 and a second motor 21, wherein the lower part of one end of the machine frame 1 is connected with the overflow port 2, the lower part of the other end of the machine frame 1 is connected with the solid flow port 3, the upper part of the machine frame 1 is connected with the cover shell 4, the rotary drum 4 is internally distributed with the rotary drum 5, the slag discharge port 6 is connected to the upper part of the rotary drum 5, the pushing spiral 7 is distributed in the rotary drum 5, the material distribution port 8 is distributed in the pushing spiral 7, the rotary drum 5 forms a rotary structure between the pushing spiral 7 and the first bearing seat 9, the rotary drum 5 is symmetrically distributed about a horizontal central axis of the pushing spiral 7, and the rotary drum 5 forms a rotary structure between the pushing spiral 7 and the first bearing seat 9 so as to facilitate centrifugal treatment of chemical reagents and achieve a better centrifugal effect;
the telescopic rod 10 is connected to the lower end of the first bearing seat 9, one side of the lower end of the telescopic rod 10 is connected with the nut 11, the lower end of the telescopic rod 10 is connected with the upright rod 12, the lower end of the upright rod 12 is connected with the bottom block 13, the telescopic rod 10 forms an adjustable structure through the nut 11 and the upright rod 12, the upright rod 12 and the telescopic rod 10 are distributed on the same vertical line, and the telescopic rod 10 forms an adjustable structure through the nut 11 and the upright rod 12, so that the height of the whole device can be conveniently adjusted, and an operator can conveniently operate the device;
a feed port 14 is distributed on the other side of the first bearing block 9, a first belt 15 is distributed on one side of the feed port 14, a first motor 16 is connected to the lower end of the first belt 15, a motor base 17 is connected to the lower end of the first motor 16, a flexible transmission structure is formed between the first motor 16 and the pushing spiral 7 through the first belt 15, the first motor 16 and the pushing spiral 7 are distributed in a parallel rotating mode, a welding integrated structure is formed between the motor base 17 and the telescopic rod 10, the motor base 17 and the telescopic rod 10 are distributed in a parallel mode, the first motor 16 enables a better transmission effect through the flexible transmission structure formed between the first belt 15 and the pushing spiral 7, the loss of kinetic energy is reduced, and the welding integrated structure is formed between the motor base 17 and the telescopic rod 10, so that the device is more stable in structure and reduces vibration generated during working;
the second bearing seat 18 is connected to the other end of the pushing spiral 7, a differential 19 is distributed on the other side of the second bearing seat 18, a second belt 20 is distributed on the other side of the differential 19, the lower end of the second belt 20 is connected with a second motor 21, the second motor 21 forms a flexible transmission structure with the differential 19 through the second belt 20, the second motor 21 and the differential 19 are distributed in a parallel mode, the second motor 21 forms a flexible transmission structure with the differential 19 through the second belt 20, the centrifugal speed of the device is increased, and chemical reagents can be rapidly centrifuged.
The working principle is as follows: to this kind of a quick centrifugal device for chemical reagent production usefulness, at first adjust the height of whole device, during the regulation, firstly unscrew nut 11, then upwards draw the telescopic link 10, when reaching suitable height again with nut 11 fixed can, and telescopic link 10 constitutes adjustable structure through nut 11 and pole setting 12 between make to be convenient for adjust the height of whole device, it is more convenient when making operating personnel operate, then send into chemical reagent in rotary drum 5 through feed inlet 14, make to push away material spiral 7 and rotate the centrifugation under the drive of first motor 16 and second motor 21, and first motor 16 makes the transmission better through first belt 15 and pushing away the flexible transmission structure of formation between the material spiral 7, the kinetic energy loss has been reduced, make centrifugal effect better.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A quick centrifugation device for chemical reagent production usefulness, includes frame (1), telescopic link (10) and second bearing frame (18), its characterized in that: the improved garbage bin is characterized in that the lower portion of one end of the rack (1) is connected with an overflow port (2), the lower portion of the other end of the rack (1) is connected with a solid flow port (3), the upper portion of the rack (1) is connected with a housing (4), rotary drums (5) are distributed in the housing (4), the upper portion of one end of each rotary drum (5) is connected with a slag discharge port (6), pushing screws (7) are distributed in the middle of each rotary drum (5), material distributing ports (8) are distributed in the middle of each pushing screw (7), first bearing seats (9) are distributed at one ends of the pushing screws (7), telescopic rods (10) are connected to the lower ends of the first bearing seats (9), nuts (11) are connected to one sides of the lower ends of the telescopic rods (10), the lower ends of the telescopic rods (10) are connected with upright rods (12), bottom blocks (13) are connected to the lower ends of the, and one side of feed inlet (14) distributes and has first belt (15), the lower extreme of first belt (15) is connected with first motor (16), and the lower extreme of first motor (16) is connected with motor cabinet (17), second bearing frame (18) are connected in the other end that pushes away material spiral (7), and the opposite side of second bearing frame (18) distributes and have differential mechanism (19), the opposite side of differential mechanism (19) distributes and has second belt (20), and the lower extreme of second belt (20) is connected with second motor (21).
2. A rapid centrifugation device for chemical reagent production according to claim 1, characterized in that: the rotary drum (5) forms a rotating structure through the space between the pushing spiral (7) and the first bearing seat (9), and the rotary drum (5) is symmetrically distributed about the horizontal central axis of the pushing spiral (7).
3. A rapid centrifugation device for chemical reagent production according to claim 1, characterized in that: the adjustable structure is formed between the telescopic rod (10) and the vertical rod (12) through the nut (11), and the vertical rod (12) and the telescopic rod (10) are distributed on the same vertical line.
4. A rapid centrifugation device for chemical reagent production according to claim 1, characterized in that: the first motor (16) and the pushing spiral (7) form a flexible transmission structure through the first belt (15), and the first motor (16) and the pushing spiral (7) are distributed in a parallel rotating mode.
5. A rapid centrifugation device for chemical reagent production according to claim 1, characterized in that: the motor base (17) and the telescopic rod (10) form a welding integrated structure, and the motor base (17) and the telescopic rod (10) are distributed in a parallel manner.
6. A rapid centrifugation device for chemical reagent production according to claim 1, characterized in that: the second motor (21) and the differential (19) form a flexible transmission structure through a second belt (20), and the second motor (21) and the differential (19) are distributed in a parallel manner.
CN201922115943.XU 2019-12-02 2019-12-02 A quick centrifugal device for chemical reagent production usefulness Expired - Fee Related CN211217140U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922115943.XU CN211217140U (en) 2019-12-02 2019-12-02 A quick centrifugal device for chemical reagent production usefulness

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922115943.XU CN211217140U (en) 2019-12-02 2019-12-02 A quick centrifugal device for chemical reagent production usefulness

Publications (1)

Publication Number Publication Date
CN211217140U true CN211217140U (en) 2020-08-11

Family

ID=71927633

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922115943.XU Expired - Fee Related CN211217140U (en) 2019-12-02 2019-12-02 A quick centrifugal device for chemical reagent production usefulness

Country Status (1)

Country Link
CN (1) CN211217140U (en)

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Granted publication date: 20200811