CN211677732U - Waterproof agent raw material reaction heating device in water-based gloss oil - Google Patents

Waterproof agent raw material reaction heating device in water-based gloss oil Download PDF

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Publication number
CN211677732U
CN211677732U CN201922501261.2U CN201922501261U CN211677732U CN 211677732 U CN211677732 U CN 211677732U CN 201922501261 U CN201922501261 U CN 201922501261U CN 211677732 U CN211677732 U CN 211677732U
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stainless steel
barrel
steel inner
inner barrel
sealing
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CN201922501261.2U
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Chinese (zh)
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周斌
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Jiaxing Ruile New Material Technology Co ltd
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Jiaxing Ruile New Material Technology Co ltd
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Abstract

The utility model relates to a waterproof agent raw materials reaction heating device in waterborne gloss oil. It has solved the unfavorable washing scheduling problem of current reactor. A reaction heating device for a raw material of a waterproof agent in water-based gloss oil comprises an outer barrel, a stainless steel inner barrel is installed in the outer barrel, a gap is reserved between the outer bottom of the stainless steel inner barrel and the inner bottom of the outer barrel, an annular gap is reserved between the outer wall of the stainless steel inner barrel and the inner wall of the outer barrel, the upper end of the stainless steel inner barrel is located below the upper end of the outer barrel, the axial lead of the outer barrel coincides with the axial lead of the stainless steel inner barrel, the upper end of the stainless steel inner barrel is connected with the upper end of the inner wall of the outer barrel through a conical barrel, a heating assembly is wound on the outer wall of the stainless steel inner barrel, a stirring rod with the upper end extending into the stainless steel inner barrel is connected to the inner bottom of the outer barrel, the stirring rod is connected with a servo motor, and a discharge pipe with. The application has the advantages that: is convenient to clean.

Description

Waterproof agent raw material reaction heating device in water-based gloss oil
Technical Field
The utility model belongs to the technical field of machinery, especially, relate to a waterproof agent raw materials reaction heating device in aqueous gloss oil.
Background
The preparation method of the water-proofing agent in the water-based gloss oil comprises the step of placing raw materials into a reaction container, heating and boiling, wherein the raw materials comprise paraffin, white oil, white beeswax, carnauba wax, stearic acid, water, morpholine and the like.
It needs urge the raw materials to stir at the heating process in current reaction vessel, and current stirring all is from last down inserting in reaction vessel, and this kind of reaction vessel needs the top side to set up the pan feeding mouth, and the puddler forms occupying of upper portion space, the inside clearance of reaction vessel of not being convenient for.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the above-mentioned problem, provide a can solve the waterproof agent raw materials reaction heating device in aqueous gloss oil of above-mentioned technical problem.
In order to achieve the above purpose, the utility model adopts the following technical proposal:
the utility model provides a waterproofing agent raw materials reaction heating device in aqueous gloss oil includes outer bucket, the upper end of outer bucket is uncovered, install interior stainless steel bucket in outer bucket, the outer bottom of interior stainless steel bucket leaves the clearance with the interior bottom of outer bucket, the outer wall of interior stainless steel bucket leaves annular gap with the inner wall of outer bucket, the upper end of interior stainless steel bucket is located the upper end below of outer bucket, and the axial lead of outer bucket and the coincidence of the axial lead of interior stainless steel bucket, the upper end of interior stainless steel bucket is connected through the inner wall upper end of a toper section of thick bamboo and outer bucket, the outer wall of interior stainless steel bucket is surrounded and is had heating element, be connected with the puddler that the upper end stretched into interior stainless steel bucket and between puddler and the interior stainless steel bucket sealing connection at the interior bottom of outer bucket, puddler lower extreme and servo motor are connected, be connected with the discharge pipe that.
Further, the inner bottom of the outer barrel is provided with a vertical barrel, the upper end of the vertical barrel is supported on the lower bottom of the stainless steel inner barrel, the center of the bottom of the outer barrel is provided with a through hole communicated with the vertical barrel, and the stirring rod penetrates through the through hole and the vertical barrel and is connected with the vertical barrel in a sealing mode.
Further, the inner wall of the vertical cylinder is a tapered hole.
Furthermore, a conical sealing sleeve which is fixed in the circumferential direction is arranged in the vertical cylinder, and the stirring rod penetrates through the conical sealing sleeve.
Further, the bottom of the stainless steel inner barrel is provided with a mounting hole, the upper end of the conical sealing sleeve is connected with a cylindrical sealing sleeve, the cylindrical sealing sleeve extends into the mounting hole, and the stirring rod penetrates through the cylindrical sealing sleeve.
Furthermore, a sealing linkage disk is arranged on the stirring rod and positioned at the upper end of the columnar sealing sleeve, an annular sealing bulge is arranged on the outer edge of the lower surface of the sealing linkage disk, an annular sealing groove for clamping the annular sealing bulge is formed in the inner bottom of the stainless steel inner barrel, a sealing gasket is arranged at the bottom of the annular sealing groove, the annular sealing bulge is clamped in the annular sealing groove, and the lower end face of the annular sealing bulge is in contact with the sealing gasket.
Furthermore, the upper end of the columnar sealing sleeve extends into the stainless steel inner barrel, a plane bearing sleeved on the outer side of the upper end of the columnar sealing sleeve is arranged in the annular sealing protrusion, the lower surface of the plane bearing is contacted with the inner bottom of the stainless steel inner barrel, and the upper surface of the plane bearing is contacted with the lower surface of the sealing linkage disk.
Furthermore, a plurality of raised strips which are uniformly distributed on the circumference are arranged on the inner wall of the conical barrel.
Further, a top cover is hinged to the top of the outer barrel.
Further, the heating component is any one of an electric heating rod or a steam heating pipe.
Compared with the prior art, the waterproof agent raw material reaction heating device in the water-based gloss oil has the advantages that: open the top cap, then can add the raw materials that need add simultaneously to the stainless steel in the bucket, improved pan feeding efficiency, secondly, the lower of puddler is put can be convenient for the inside clearance in the stainless steel, has improved the practicality of equipment.
Drawings
FIG. 1 is a schematic view of the structure provided in the present reaction heating apparatus.
Fig. 2 is an enlarged schematic view of a portion a in fig. 1.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
As shown in FIG. 1, a reaction heating apparatus for a raw material of a water repellent in an aqueous varnish includes an outer tub a1 having an open upper end of an outer tub a 1.
At least three supporting legs are arranged at the bottom of the outer barrel a 1.
Secondly, the inner bottom of the outer barrel a1 is an arc concave surface which can facilitate the concentration of the inner overflow matter to the lower part by itself.
A top cover a10 is hinged on the top of the outer barrel a 1.
A stainless steel inner barrel a2 is arranged in the outer barrel a1, a gap is reserved between the outer bottom of the stainless steel inner barrel a2 and the inner bottom of the outer barrel a1, and a plurality of support rods which are distributed in a circumferential inclined mode are connected to the outer bottom of the stainless steel inner barrel a 2.
An annular gap is reserved between the outer wall of the stainless steel inner barrel a2 and the inner wall of the outer barrel a1, the upper end of the stainless steel inner barrel a2 is positioned below the upper end of the outer barrel a1, the upper end of the stainless steel inner barrel a2 is prevented from being higher than the outer barrel a1 to be unfavorable for heat preservation between the stainless steel inner barrel a2 and the outer barrel a1, and the axial lead of the outer barrel a1 is overlapped with the axial lead of the stainless steel inner barrel a 2.
The coincidence of the axes may facilitate the arrangement of the heating assembly in the annular gap.
The upper end of the stainless steel inner barrel a2 is connected with the upper end of the inner wall of the outer barrel a1 through a cone barrel a3, a heating component a4 is surrounded on the outer wall of the stainless steel inner barrel a2, and the heating component a4 is any one of an electric heating rod or a steam heating pipe.
The inner wall of the conical cylinder a3 is provided with a plurality of convex strips a31 which are evenly distributed on the circumference. The convex strips a31 are used to improve wear resistance.
As shown in fig. 1 and 2, a stirring rod a5 with an upper end extending into the stainless steel inner barrel a2 is connected to the inner bottom of the outer barrel a1, the stirring rod a5 is hermetically connected with the stainless steel inner barrel a2, and the lower end of the stirring rod a5 is connected with a servo motor a 6.
The bottom of the stainless steel inner barrel a2 is connected with a discharge pipe a21 whose outer end penetrates the side wall of the outer barrel a 1. A manual control valve is installed on the discharge pipe a 21.
Further, a vertical cylinder a11 is provided at the inner bottom of the outer tub a1, the upper end of the vertical cylinder a11 is supported at the lower bottom of the stainless steel inner tub a2, a through hole a12 communicating with the vertical cylinder a11 is provided at the center of the bottom of the outer tub a1, the stirring rod a5 penetrates through the through hole a12 and the vertical cylinder a11, and the stirring rod a5 and the vertical cylinder a11 are hermetically connected.
A bearing is arranged between the through hole a12 and the stirring rod a5, and the rotation stability of the stirring rod a5 is ensured.
The inner wall of the vertical cylinder a11 is a tapered hole. This structure can further improve the sealing property of the inner wall of the vertical cylinder a11 when receiving the gravity from the top to the bottom
Next, a circumferentially fixed conical sealing sleeve a13 is provided in the vertical cylinder a11, and the stirring rod a5 penetrates the conical sealing sleeve a 13. The cooperation of the conical sealing sleeve a13 and the conical hole can ensure the tightness between the two, and secondly, the conical sealing sleeve a13 realizes the circumferential fixed connection with the vertical cylinder a11 through at least one radial screw which radially penetrates through the vertical cylinder a 11.
The bottom of the stainless steel inner barrel a2 is provided with a mounting hole, the upper end of the conical sealing sleeve a13 is connected with a column-shaped sealing sleeve a14, the column-shaped sealing sleeve a14 extends into the mounting hole, and the stirring rod a5 penetrates through the column-shaped sealing sleeve a 14.
A sealing linkage disk a51 positioned at the upper end of a column-shaped sealing sleeve a14 is arranged on a stirring rod a5, the sealing linkage disk a51 is horizontally distributed, the sealing linkage disk a51 is connected with the stirring rod in a welding mode, an annular sealing protrusion a52 is arranged on the outer edge of the lower surface of the sealing linkage disk a51, an annular sealing groove a22 into which the annular sealing protrusion a52 is clamped is arranged at the inner bottom of the stainless steel inner barrel a2, a sealing gasket a23 is arranged at the bottom of the annular sealing groove a22, the annular sealing protrusion a52 is clamped in the annular sealing groove a22, and the lower end face of the annular sealing protrusion a52 is in contact with the sealing gasket a 23.
The annular seal protrusion a52 forms a sealing action of enlarging a contact area with the annular seal groove a22, and at the same time, the sealing performance can be further improved by using the seal gasket a 23.
The upper end of the column-shaped sealing sleeve a14 extends into the stainless steel inner barrel a2, a plane bearing a53 sleeved outside the upper end of the column-shaped sealing sleeve a14 is arranged in the annular sealing protrusion a52, the lower surface of the plane bearing a53 is contacted with the inner bottom of the stainless steel inner barrel a2, and the upper surface of the plane bearing a53 is contacted with the lower surface of the sealing linkage disk a 51.
The plane bearing a53 can further ensure the stability of the rotation of the stirring rod.
Open top cap a10, then can add the raw materials that need to add simultaneously to the interior bucket a2 of stainless steel, improved pan feeding efficiency, secondly, the lower clearance of putting of puddler can be convenient for interior bucket a2 of stainless steel inside, has improved the practicality of equipment.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (10)

1. A reaction heating device for a waterproof agent raw material in water-based varnish comprises an outer barrel (a1), the upper end of the outer barrel (a1) is open, and is characterized in that a stainless steel inner barrel (a2) is installed in the outer barrel (a1), a gap is reserved between the outer bottom of the stainless steel inner barrel (a2) and the inner bottom of the outer barrel (a1), an annular gap is reserved between the outer wall of the stainless steel inner barrel (a2) and the inner wall of the outer barrel (a1), the upper end of the stainless steel inner barrel (a2) is positioned below the upper end of the outer barrel (a1), the axial lead of the outer barrel (a1) and the axial lead of the stainless steel inner barrel (a2) are overlapped, the upper end of the stainless steel inner barrel (a2) is connected with the upper end of the inner wall of the stainless steel outer barrel (a1) through a3), a heating assemblies (a4) are encircled on the outer wall of the stainless steel inner barrel (a2), a1) is connected with an inner barrel (a) with an inner stirring rod (a 585) which extends into the stainless steel inner barrel (a2) and is connected with a5 a stirring rod (, the lower end of the stirring rod (a5) is connected with the servo motor (a6), and the bottom of the stainless steel inner barrel (a2) is connected with a discharge pipe (a21) the outer end of which penetrates through the side wall of the outer barrel (a 1).
2. The reaction heating apparatus for the raw material of the water repellent agent in the aqueous varnish according to claim 1, wherein a vertical cylinder (a11) is provided at the inner bottom of the outer tub (a1), the upper end of the vertical cylinder (a11) is supported at the lower bottom of the stainless steel inner tub (a2), a through hole (a12) communicating with the vertical cylinder (a11) is provided at the center of the bottom of the outer tub (a1), the stirring rod (a5) penetrates through the through hole (a12) and the vertical cylinder (a11) and the stirring rod (a5) and the vertical cylinder (a11) are hermetically connected.
3. The apparatus for reacting and heating a raw material for a water repellent agent in an aqueous varnish as claimed in claim 2, wherein the inner wall of the vertical cylinder (a11) is a tapered hole.
4. The reaction heating device for the water repellent raw material in the water-based gloss oil is characterized in that a conical sealing sleeve (a13) fixed in the circumferential direction is arranged in the vertical cylinder (a11), and the stirring rod (a5) penetrates through the conical sealing sleeve (a 13).
5. The reaction heating device for the water repellent raw material in the water base gloss oil as claimed in claim 4, characterized in that the bottom of the stainless steel inner barrel (a2) is provided with a mounting hole, the upper end of the conical sealing sleeve (a13) is connected with a column-shaped sealing sleeve (a14), the column-shaped sealing sleeve (a14) extends into the mounting hole, and the stirring rod (a5) penetrates through the column-shaped sealing sleeve (a 14).
6. The reaction heating device for the water repellent raw material in the water base varnish according to claim 5, wherein a sealing linking disk (a51) positioned at the upper end of a cylindrical sealing sleeve (a14) is arranged on the stirring rod (a5), an annular sealing protrusion (a52) is arranged at the outer edge of the lower surface of the sealing linking disk (a51), an annular sealing groove (a22) for the annular sealing protrusion (a52) to be clamped into is arranged at the inner bottom of the stainless steel inner barrel (a2), a sealing gasket (a23) is arranged at the groove bottom of the annular sealing groove (a22), the annular sealing protrusion (a52) is clamped into the annular sealing groove (a22), and the lower end face of the annular sealing protrusion (a52) is in contact with the sealing gasket (a 23).
7. The reaction heating apparatus for the water repellent raw material in aqueous varnish as claimed in claim 6, wherein the upper end of the cylindrical sealing boot (a14) is extended into the stainless steel inner barrel (a2), a flat bearing (a53) fitted around the outer side of the upper end of the cylindrical sealing boot (a14) is provided in the annular sealing protrusion (a52), the lower surface of the flat bearing (a53) is in contact with the inner bottom of the stainless steel inner barrel (a2), and the upper surface of the flat bearing (a53) is in contact with the lower surface of the sealing interlocking disk (a 51).
8. The apparatus for heating a water repellent material in an aqueous varnish as claimed in claim 1, wherein a plurality of ribs (a31) are provided on the inner wall of the tapered tube (a3) and are uniformly distributed circumferentially.
9. The apparatus for heating a water repellent material reaction in an aqueous varnish according to claim 1, wherein a top cover (a10) is hinged to the top of the outer tub (a 1).
10. The apparatus as claimed in claim 1, wherein the heating element (a4) is any one of an electric heating rod or a steam heating tube.
CN201922501261.2U 2019-12-31 2019-12-31 Waterproof agent raw material reaction heating device in water-based gloss oil Active CN211677732U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922501261.2U CN211677732U (en) 2019-12-31 2019-12-31 Waterproof agent raw material reaction heating device in water-based gloss oil

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922501261.2U CN211677732U (en) 2019-12-31 2019-12-31 Waterproof agent raw material reaction heating device in water-based gloss oil

Publications (1)

Publication Number Publication Date
CN211677732U true CN211677732U (en) 2020-10-16

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922501261.2U Active CN211677732U (en) 2019-12-31 2019-12-31 Waterproof agent raw material reaction heating device in water-based gloss oil

Country Status (1)

Country Link
CN (1) CN211677732U (en)

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