CN211800172U - Artificial stone raw material rapid stirrer - Google Patents

Artificial stone raw material rapid stirrer Download PDF

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Publication number
CN211800172U
CN211800172U CN201922396000.9U CN201922396000U CN211800172U CN 211800172 U CN211800172 U CN 211800172U CN 201922396000 U CN201922396000 U CN 201922396000U CN 211800172 U CN211800172 U CN 211800172U
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CN
China
Prior art keywords
screen
rotating shaft
artificial stone
guide plate
raw material
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201922396000.9U
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Chinese (zh)
Inventor
申江毛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Yixin Home Co ltd
Original Assignee
Guangdong Yixin Home Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangdong Yixin Home Co ltd filed Critical Guangdong Yixin Home Co ltd
Priority to CN201922396000.9U priority Critical patent/CN211800172U/en
Application granted granted Critical
Publication of CN211800172U publication Critical patent/CN211800172U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a rapid stirrer for artificial stone raw materials, which comprises a stirring container, a rotating shaft arranged at the center of the stirring container and a power component for driving the rotating shaft, wherein a guide vane, a screen and a guide plate are sequentially connected on the rotating shaft from top to bottom; the guide vane comprises a first connecting seat connected with the rotating shaft and a plurality of vanes arranged on the first connecting seat, and the vanes are obliquely arranged downwards; the guide plate and the screen are both provided with inverted conical side walls, and the guide plate and the screen are not in contact with the inner wall of the stirring container; and a flow guide gap is arranged between the flow guide plate and the screen mesh so that the raw materials move upwards through the flow guide gap. Implement the utility model discloses, can improve stirring effect, improve the dispersibility of raw materials.

Description

Artificial stone raw material rapid stirrer
Technical Field
The utility model relates to a agitator technical field especially relates to a rostone raw materials rapid mixing ware.
Background
The artificial stone is produced through compounding material, stirring, vacuum gelling, curing, demolding, sanding, etc. Wherein the stirring links comprise accelerator stirring, color paste stirring, filler stirring, curing agent stirring and the like. Specifically, the resin is required to be put into a stirring tank, and then the accelerant is added and uniformly stirred; then color paste is added for color mixing; the well-mixed slurry is put into powder filler, curing agent and the like to be stirred under vacuum; and finally, placing the stirred raw materials into a mold for curing and shaping.
When the accelerant stirring, the color paste stirring and the filler stirring are carried out, the raw materials need to be fully stirred so as to improve the forming quality of the artificial stone.
Disclosure of Invention
The utility model aims to solve the technical problem that a rostone raw materials rapid mixing ware is provided, can improve stirring effect, improves the dispersibility of raw materials.
In order to solve the technical problem, the utility model provides a rapid stirrer for artificial stone raw materials, which comprises a stirring container, a rotating shaft arranged at the center of the stirring container and a power assembly for driving the rotating shaft, wherein a guide vane, a screen and a guide plate are sequentially connected with the rotating shaft from top to bottom;
the guide vane comprises a first connecting seat connected with the rotating shaft and a plurality of vanes arranged on the first connecting seat, and the vanes are obliquely arranged downwards;
the guide plate and the screen are both provided with inverted conical side walls, and the guide plate and the screen are not in contact with the inner wall of the stirring container; and a flow guide gap is arranged between the flow guide plate and the screen mesh so that the raw materials move upwards through the flow guide gap.
As an improvement of the technical scheme, a plurality of blades are uniformly distributed along the circumferential direction, and the included angle between each blade and the rotating shaft is 30-60 degrees.
As an improvement of the technical scheme, at least two groups of guide vanes are arranged on the rotating shaft.
As an improvement of the technical scheme, a pull rod is arranged between the screen and the stirring container to fix the screen and the stirring container.
As an improvement of the above technical scheme, a second connecting seat is arranged on the rotating shaft;
the screen comprises a base connected with the second connecting seat and a conical screen part connected with the base; the mesh number of the conical screen part is 500-800 meshes.
As an improvement of the above technical scheme, the base is further provided with a supporting part, and the supporting part is arranged below the conical screen part;
the supporting part is fixed with the pull rod.
As an improvement of the technical scheme, a sliding block is arranged on the rotating shaft;
the guide plate includes with the fixing base that the slider is connected and be equipped with toper guide plate on the fixing base.
As an improvement of the technical scheme, a cross beam is arranged on the stirring container, and the power assembly is connected to the cross beam;
the power assembly comprises a motor base connected with the cross beam and a motor connected with the motor base.
As an improvement of the technical scheme, a discharge hole is formed in the bottom of the stirring container, and a valve is arranged on the discharge hole.
Implement the utility model discloses, following beneficial effect has:
the utility model has the advantages that the blades of the guide vane are arranged obliquely downwards, so that the liquid raw material can move downwards to pass through the screen mesh; the raw materials are collided with the guide plate after large particles are screened by the screen, the guide plate provides an upward inclined acting force for the raw materials to change the moving direction of the raw materials, so that the raw materials are turned upwards through the guide gap between the guide plate and the screen, and the raw materials are acted with the screen for many times, so that impurities can be effectively screened, and simultaneously, the agglomerated raw materials can be separated conveniently, and the dispersibility of particles in the stirred raw materials is improved.
Drawings
Fig. 1 is a schematic view of the present invention relating to a rapid mixer.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the present invention will be described in further detail with reference to the accompanying drawings. Only this statement, the utility model discloses the upper and lower, left and right, preceding, back, inside and outside etc. position words that appear or will appear in the text only use the utility model discloses an attached drawing is the benchmark, and it is not right the utility model discloses a concrete restriction.
Referring to fig. 1, the utility model provides a rapid stirrer for artificial stone raw materials, which comprises a stirring container 1, a rotating shaft 2 arranged at the center of the stirring container 1 and a power assembly 3 driving the rotating shaft 2 to rotate; the rotating shaft 2 is sequentially connected with a guide vane 4, a screen 5 and a guide plate 6 from top to bottom;
the guide vane 4 comprises a first connecting seat 41 connected with the rotating shaft 2 and a plurality of vanes 42 arranged on the first connecting seat 41, and the vanes 42 are arranged obliquely downwards;
the guide plate 6 and the screen 5 are both provided with inverted conical side walls, and the guide plate 6 and the screen 5 are not in contact with the inner wall of the stirring container 1; a flow guide gap 7 is arranged between the flow guide plate 6 and the screen 5, so that the raw materials move upwards through the flow guide gap 7.
Specifically, the power assembly 3 is started, and the rotating shaft 2 drives the guide vane 4 to rotate; since the plurality of blades 42 of the guide vane 4 are disposed obliquely downward, the liquid raw material moves downward through the screen 5; the raw materials collide with the guide plate 6 after being screened by the screen 5 to remove large particles, the guide plate 6 provides an upward inclined acting force for the raw materials to change the moving direction of the raw materials, so that the raw materials are turned upwards through the guide gap 7 between the guide plate 6 and the screen 5, the raw materials are acted with the screen 5 for many times, the stirring efficiency is improved, and the dispersibility of particles in the liquid raw materials is good. The device solves the problems that in the prior art, the bottom of the stirring container 1 is easy to precipitate, and raw materials are difficult to be fully stirred.
In order to further improve the stirring efficiency of the guide vanes 4, a plurality of vanes 42 are uniformly distributed along the circumferential direction, and the included angle between each vane 42 and the rotating shaft 2 is 30-60 degrees. In this embodiment, the guide vane 4 includes 3 vanes 42, an included angle between the vane 42 and the rotating shaft 2 is 30 ° to 60 °, and when the vane 42 rotates, the liquid raw material generates a rotational flow, and the raw material moves downward at an accelerated speed, thereby improving the stirring efficiency.
It should be noted that, when the guide vanes 4 drive the raw material to rotate, the slower the rotation speed of the raw material closer to the rotation center is, the better dispersion effect is difficult to achieve. Therefore, at least two groups of guide vanes 4 are arranged on the rotating shaft 2. Specifically, the two groups of guide vanes 4 are a first guide vane 4a and a second guide vane 4b, the first guide vane 4a is located above the second guide vane 4b, and a projection diameter of the first guide vane 4a on a horizontal plane is larger than a projection diameter of the second guide vane 4b on the horizontal plane. The second guide vane 4b can accelerate the rotation of the raw material close to the rotation center, and the stirring effect is good.
In this embodiment, the screen 5 is fixed to the agitation vessel 1. In order to prevent the screen 5 from contacting the inner side of the stirring container 1, a pull rod 8 is arranged between the screen 5 and the stirring container 1 to fix the screen 5 and the stirring container 1.
The rotating shaft 2 is provided with a second connecting seat 21, and the screen 5 comprises a base 51 connected with the second connecting seat 21 and a conical screen part 52 connected with the base 51; the mesh number of the conical screen part 52 is 500-800 meshes. Specifically, a bearing is disposed between the second connecting seat 21 and the rotating shaft 2, so that the screen 5 does not rotate along with the rotating shaft 2. The mesh number of the screen 5 is 500-800 meshes, so that large particles in the raw material are blocked at the screen 5.
In order to improve the strength of the screen 5, a support part 53 is further arranged on the base 51, and the support part 53 is arranged below the conical screen 5; the support 53 is fixed to the tie rod 8. Specifically, the support portion 53 includes a plurality of support ribs 531 connected to the base 51 and a plurality of fixing rings 532 connected to the support portion 53. The fixing ring 532 is connected to the pull rod 8.
A slide block 22 is arranged on the rotating shaft 2; the guide plate 6 comprises a fixed seat 61 connected with the sliding block 22 and a conical guide side plate 62 arranged on the fixed seat 61. The slide block 22 is slidable relative to the rotating shaft 2 to adjust the distance between the guide plate 6 and the bottom plate of the stirring container 1.
In order to facilitate the installation of the power assembly 3, a cross beam 9 is arranged on the stirring container 1, and the power assembly 3 is connected to the cross beam 9; the power assembly 3 comprises a motor base 31 connected with the cross beam 9 and a motor 32 connected with the motor base 31. Specifically, the output shaft of the motor 32 is connected to the rotating shaft 2 through a coupling 33. In order to improve the connection stability between the rotating shaft 2 and the cross beam 9, a shaft sleeve 34 is further arranged on the cross beam 9, and a bearing 35 is arranged between the shaft sleeve 34 and the rotating shaft 2.
The bottom of stirred vessel 1 is equipped with discharge gate 11, be equipped with valve 12 on the discharge gate 11. The valve 12 is controlled by a pneumatic valve 13, which pneumatic valve 13 can be controlled directly after a predetermined mixing time or by a push button to open the valve 12 for discharge.
The foregoing is a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the principle of the present invention, and these improvements and decorations are also considered as the protection scope of the present invention.

Claims (9)

1. A quick stirrer for artificial stone raw materials is characterized by comprising a stirring container, a rotating shaft arranged in the center of the stirring container and a power assembly for driving the rotating shaft, wherein a guide vane, a screen and a guide plate are sequentially connected to the rotating shaft from top to bottom;
the guide vane comprises a first connecting seat connected with the rotating shaft and a plurality of vanes arranged on the first connecting seat, and the vanes are obliquely arranged downwards;
the guide plate and the screen are both provided with inverted conical side walls, and the guide plate and the screen are not in contact with the inner wall of the stirring container; and a flow guide gap is arranged between the flow guide plate and the screen mesh so that the raw materials move upwards through the flow guide gap.
2. The artificial stone raw material rapid stirrer according to claim 1, wherein a plurality of the blades are uniformly distributed in the circumferential direction, and the included angle between the blades and the rotating shaft is 30-60 °.
3. An artificial stone raw material rapid stirrer according to claim 1 or 2, wherein at least two sets of the guide blades are provided on the rotating shaft.
4. A rapid artificial stone material mixer as defined in claim 1, wherein a tie bar is provided between the screen and the mixing container to secure the screen to the mixing container.
5. An artificial stone raw material rapid stirrer according to claim 4, wherein a second connecting seat is provided on the rotating shaft;
the screen comprises a base connected with the second connecting seat and a conical screen part connected with the base; the mesh number of the conical screen part is 500-800 meshes.
6. The artificial stone raw material rapid stirrer according to claim 5, wherein a support part is further provided on the base, the support part being provided below the conical screen part;
the supporting part is fixed with the pull rod.
7. The artificial stone raw material rapid stirrer according to claim 1, wherein a slider is provided on the rotating shaft;
the guide plate includes with the fixing base that the slider is connected and be equipped with toper guide plate on the fixing base.
8. The artificial stone raw material rapid stirrer according to claim 1, wherein a beam is provided on the stirring vessel, and the power assembly is connected to the beam;
the power assembly comprises a motor base connected with the cross beam and a motor connected with the motor base.
9. The rapid artificial stone raw material stirrer according to claim 1, wherein a discharge port is provided at the bottom of the stirring vessel, and a valve is provided at the discharge port.
CN201922396000.9U 2019-12-26 2019-12-26 Artificial stone raw material rapid stirrer Expired - Fee Related CN211800172U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922396000.9U CN211800172U (en) 2019-12-26 2019-12-26 Artificial stone raw material rapid stirrer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922396000.9U CN211800172U (en) 2019-12-26 2019-12-26 Artificial stone raw material rapid stirrer

Publications (1)

Publication Number Publication Date
CN211800172U true CN211800172U (en) 2020-10-30

Family

ID=73036049

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922396000.9U Expired - Fee Related CN211800172U (en) 2019-12-26 2019-12-26 Artificial stone raw material rapid stirrer

Country Status (1)

Country Link
CN (1) CN211800172U (en)

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20201030

CF01 Termination of patent right due to non-payment of annual fee