CN216367912U - A reation kettle that is used for integrated wallboard single component polyurethane of assembled to beautify seam agent - Google Patents

A reation kettle that is used for integrated wallboard single component polyurethane of assembled to beautify seam agent Download PDF

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Publication number
CN216367912U
CN216367912U CN202121619475.0U CN202121619475U CN216367912U CN 216367912 U CN216367912 U CN 216367912U CN 202121619475 U CN202121619475 U CN 202121619475U CN 216367912 U CN216367912 U CN 216367912U
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unit
cylinder
discharge hole
limiting
ring
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CN202121619475.0U
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Inventor
丁欣欣
周东珊
丁泽成
王文广
彭伟
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Zhejiang Yasha Decoration Co Ltd
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Zhejiang Yasha Decoration Co Ltd
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Abstract

The reaction kettle for the assembled integrated wallboard single-component polyurethane seam beautifying agent comprises a shell, a discharge plate arranged at the lower end of the shell, a stirring shaft arranged in the shell and used for stirring reactants, a support arranged outside the shell and used for supporting the shell, a discharge hole unit arranged on the discharge plate, a limiting cylinder unit arranged on the discharge hole unit and used for reinforcing the stirring shaft in a sleeved mode with the lower end of the stirring shaft, a limiting ring unit arranged on the outer ring surface of the discharge hole unit and used for adjusting the height of the discharge hole unit, and a support ring unit arranged at the lower end of the support and sleeved with the limiting ring unit. The utility model can achieve the aim of directly reforming the existing reaction kettle device by arranging the discharge hole unit, the limiting cylinder unit, the limiting ring unit and the support ring unit, and has the advantages of simple and compact structure, high sealing performance and good safety.

Description

A reation kettle that is used for integrated wallboard single component polyurethane of assembled to beautify seam agent
Technical Field
The utility model belongs to the technical field of reaction kettles, and particularly relates to a reaction kettle for a single-component polyurethane crack sealer for an assembled integrated wallboard.
Background
With the development of modern industrial technology, the house decoration can be manufactured in a set like the production of machines in batches, the prefabricated interior components can be transported into a blank house to be assembled, the assembly type interior decoration is already popular abroad in the early stage, and the assembly type interior decoration has high integral decoration speed and low production cost, so the assembly type interior decoration is rapidly popularized and developed at home in recent years.
Significant advantages of the modular insert include the following: firstly, the quality stability is high, all the decorative material prefabricated parts are manufactured in a production line in a factory, and the quality system of the system is controlled; secondly, the environment is protected, and all manufacturing processes are finished in a factory due to the adoption of industrial production, so that the pollution of noise, dust, decoration garbage and the like is avoided; thirdly, the construction period is shortened, and because prefabricated parts are adopted for field installation, the field construction strength is greatly reduced, and the procedures of wall plastering, toilet waterproof coating construction and the like are omitted.
The crack sealer is mainly used for covering and beautifying gaps of tiles, is filled in the gaps of the pre-treated tiles when in use, has smooth surface after being cured, can be cleaned together with the tiles, has the characteristics of permeation resistance, water resistance and mildew resistance, and can effectively prevent the gaps of the tiles from blackening. The commonly used crack sealer at present is mainly a two-component epoxy resin crack sealer, mainly comprises epoxy resin, pigment and filler and a curing agent, the epoxy resin has excellent corrosion and mildew prevention effects, and the cured epoxy resin has high hardness and scrubbing resistance, and has excellent and attractive effect as the crack sealer.
The wall decoration outside the assembled built-in kitchen and toilet also needs to adopt a factory prefabrication mode, a factory firstly coats the wallboard with a PVC film, the wallboard is directly transported to a construction site for installation and is subjected to seam beautifying treatment, the surface of a substrate at a seam beautifying position is a smooth PVC film, the adhesion between a traditional two-component epoxy seam beautifying agent and the PVC film is poor, the toughness of a cured body is poor, the displacement resistance is poor, the yellowing resistance is poor, and the stain resistance of a traditional one-component organic silicon system product is poor. The single-component polyurethane seam beautifying agent has excellent adhesive force with a PVC film, good yellowing resistance and good antifouling effect, and is the most preferable for the seam treatment of the assembled integrated wallboard.
The single-component polyurethane crack sealer needs to use a vacuum reaction kettle during preparation and needs to be stirred and mixed fully. The document with the application number of 201921271222.1 discloses a reaction kettle for producing a crack sealer, which comprises a reaction tank; the upper end of the reaction tank is provided with a stirring motor; an output shaft of the stirring motor is in transmission connection with a stirring shaft in the reaction tank through a coupler, and the upper end part of the reaction tank is respectively communicated with a first feeding pipe, a second feeding pipe and a third feeding pipe in a penetrating way; the upper end part of the reaction tank is connected with a vacuumizing device; the lower end part of the reaction tank is communicated with a vacuum discharging device in a penetrating way; two rows of stirring rods are fixed on the circumferential side surface of the stirring shaft; vertical stirring teeth are linearly arranged and fixed on the upper side of the stirring rod. However, this device has the following problems: because the jar body height of retort is higher, and the setting of drive puddler pivoted motor is in jar body upper end, and at the in-process of puddler stirring reactant, the puddler portion of the well lower part of retort is far away from the motor, and consequently the puddler position that is far away from the motor rocks the degree more greatly, and this has just led to the reactant stirring degree in the retort problem that the difference appears, and stirring tooth on the puddler can collide with the retort jar body even when serious, causes the part to damage. Moreover, with the increase of the service life of the device, the shaking degree of the stirring rod becomes more serious, and the maintenance frequency and the maintenance cost are increased.
In the prior art, a limiting rod used for limiting and fixing the lower end of the stirring rod is generally added on the inner wall of the reaction kettle, but for the existing reaction kettle device, the method needs to open the reaction tank firstly, then a worker enters the tank body to install, the implementation is difficult and heavy, and the residual reactant in the tank body has great harm to human bodies.
SUMMERY OF THE UTILITY MODEL
Aiming at the existing problems, the utility model aims to provide a reaction kettle for the assembled integrated wallboard single-component polyurethane seam beautifying agent, which can achieve the purpose of directly reforming the existing reaction kettle device by arranging a discharge hole unit, a limiting cylinder unit, a limiting ring unit and a support ring unit and has the advantages of simple and compact structure, high sealing performance and good safety.
In order to achieve the purpose, the technical scheme of the utility model is as follows:
the reaction kettle for the assembled integrated wallboard single-component polyurethane seam beautifying agent comprises a shell, a discharge plate arranged at the lower end of the shell, a stirring shaft arranged in the shell and used for stirring reactants, a support arranged outside the shell and used for supporting the shell, a discharge hole unit arranged on the discharge plate, a limiting cylinder unit arranged on the discharge hole unit and used for reinforcing the stirring shaft in a sleeved mode with the lower end of the stirring shaft, a limiting ring unit arranged on the outer ring surface of the discharge hole unit and used for adjusting the height of the discharge hole unit, and a support ring unit arranged at the lower end of the support and sleeved with the limiting ring unit.
As a further preferable aspect of the present invention, the discharge hole unit includes a discharge hole provided on the discharge plate, a cylinder provided on the discharge hole and engaged with the discharge hole, and a connection column provided on the cylinder and used for mounting the limiting cylinder unit.
As a further preferable mode of the present invention, the limiting cylinder unit includes a cylinder disposed on the connecting column and sleeved with the lower end of the stirring shaft, and balls disposed on an inner wall of the cylinder.
As a further preferred aspect of the present invention, the stopper cylinder unit further includes a buffer column portion provided at a lower end of the cylinder.
As a further preferable aspect of the present invention, the limiting ring unit includes a limiting ring disposed on the support ring unit, a radial connecting bar disposed on the limiting ring and used for connecting with the cylinder, and a sealing ring disposed on the radial connecting bar and used for sealing a gap between the cylinder and the discharge hole.
As a further preferred feature of the present invention, the retainer ring unit further includes a retainer handle provided on an outer circumferential surface of the retainer ring.
As a further preferred aspect of the present invention, the support ring unit includes a support ring disposed outside the limit ring and connected to the bracket, and a clamp ring disposed on an inner annular wall of the support ring and adapted to be engaged with the limit ring.
As a further preferred aspect of the present invention, the buffer column part includes a buffer column provided at a lower end of the cylinder, a cylinder provided on the buffer column and fitted with the buffer column, and a spring having both ends fixed to the buffer column and an inner bottom surface of the cylinder, respectively.
As a further preferable feature of the present invention, the discharge hole unit further includes a threaded section provided on an outer wall of the cylinder and adapted to be screwed with the discharge hole.
As a further preferred feature of the present invention, the support ring unit further includes an annular elastic pad provided on a lower surface of the support ring.
In conclusion, the utility model has the following beneficial effects:
the utility model can directly transform the existing reaction kettle, is used for improving the stability of the stirring shaft during working, and ensures that the reaction system is fully stirred and has good uniformity.
The utility model has the advantages of stable structure, good sealing performance, simple operation and high safety.
Drawings
FIG. 1 is a schematic diagram of the position structure of each unit when the limiting cylinder unit is sleeved with the stirring shaft.
FIG. 2 is a schematic diagram of the position structure of each unit when the limiting cylinder unit is separated from the stirring shaft.
Fig. 3 is a schematic diagram of the position structure of the limiting cylinder unit of the utility model.
FIG. 4 is a schematic diagram of the position structures of the discharge hole unit, the limiting ring unit and the support ring unit.
Fig. 5 is a top view of a stop collar unit of the present invention.
Description of the drawings: the device comprises a shell 11, a discharge plate 12, a stirring shaft 13, a support 14, a discharge hole unit 1, a discharge hole 101, a cylinder 102, a connecting column 103, a threaded section 104, a limiting cylinder unit 2, a cylinder 201, a ball 202, a buffering column part 203a, a cylinder body 203b, a spring 203c, a limiting ring unit 3, a limiting ring 301, a radial connecting strip 302, a sealing ring 303, a limiting handle 304, a support ring unit 4, a support ring 401, a clamping ring 402 and an annular elastic pad 403.
Detailed Description
Example 1
The reaction kettle for the assembled integrated wallboard single-component polyurethane crack sealer provided by the embodiment comprises a shell 11, a discharge plate 12 arranged at the lower end of the shell 11, a stirring shaft 13 arranged in the shell 11 and used for stirring a reactant, a support 14 arranged outside the shell 11 and used for supporting the shell 11, a discharge hole unit 1 arranged on the discharge plate 12, a limiting cylinder unit 2 arranged on the discharge hole unit 1 and used for reinforcing the stirring shaft 13 in a manner of being sleeved with the lower end of the stirring shaft 13, a limiting ring unit 3 arranged on the outer ring surface of the discharge hole unit 1 and used for adjusting the height of the discharge hole unit 1, and a support ring unit 4 arranged at the lower end of the support 14 and sleeved with the limiting ring unit 3, as shown in fig. 1-5.
In this embodiment, the discharge hole unit 1 is disposed on the discharge plate 12 of the existing reaction kettle, and the position of the discharge hole unit 1 on the discharge plate 12 can be adjusted by controlling the limiting ring unit 3, and the limiting cylinder unit 2 for limiting and fixing the lower end of the stirring shaft 13 is disposed at the upper end of the discharge hole unit 1 and moves along with the movement of the discharge hole unit 1, so that when the position of the discharge hole unit 1 changes, the position of the limiting cylinder unit 2 relative to the lower end of the stirring shaft 13 also changes, and therefore, in this embodiment, two states are mainly adopted: firstly, when the reaction kettle stirs materials, the discharge hole unit 1 is completely sealed, and the limiting cylinder unit 2 is sleeved at the lower end of the stirring shaft 13 to limit the stirring shaft 13, so that the lower end of the stirring shaft 13 cannot shake, and the mixing degree of the materials is ensured to be consistent; the second kind, when the reation kettle material stirring finishes carrying out the ejection of compact, discharge opening unit 1 opens completely, at this moment, spacing section of thick bamboo unit 2 still cup joint in (mixing) shaft 13 lower extreme to can not block up discharge opening unit 1, the material was followed at this moment outflow in discharge opening unit 1.
In the two working states, the limiting cylinder unit 2 can not be completely separated from the lower end of the stirring shaft 13 all the time, so that the time for alignment and installation is reduced; the limiting ring unit 3 is mainly used for applying external force to enable the discharging hole unit 1 to have two states of sealing/opening; the support ring unit 4 is used for fixing the adjusting track of the limiting ring unit 3, so that the discharge hole unit 1 is kept stable during adjustment, the adjusting distance of the limiting ring unit 3 is limited, and the situation that the limiting cylinder unit 2 is directly taken out of the kettle body due to excessive adjustment of the limiting ring unit 3 is avoided, and the time for re-installation is prolonged. The support ring unit 4 is also used for being connected with the support 14 and used for supporting the whole reaction kettle and an additional structural unit, so that the contact area is increased, and the structure of the whole reaction kettle is more stable.
The discharge hole unit 1 comprises a discharge hole 101 arranged on the discharge plate 12, a cylinder 102 arranged on the discharge hole 101 and clamped with the discharge hole 101, and a connecting column 103 arranged on the cylinder 102 and used for installing the limiting cylinder unit 2, and a thread section 104 arranged on the outer wall of the cylinder 102 and used for being screwed with the discharge hole 101.
In this embodiment, the discharge hole 101 is directly opened on the discharge plate 12, the outer diameter of the cylinder 102 is the same as the inner diameter of the discharge hole 101 to ensure the sealing performance of the reaction kettle, the connecting column 103 passes through the discharge hole 101 and extends to the right below the stirring shaft 13 for installing the limiting cylinder unit 2, and the connecting column 103 cannot influence the discharge of the material from the discharge hole 101, so the outer diameter of the connecting column 103 should be much smaller than the inner diameter of the discharge hole 101 and ensure sufficient supporting force for the limiting cylinder unit 2, the threaded section 104 is arranged on the upper annular surface of the cylinder 102 to screw the upper end of the cylinder 102 with the internal thread on the discharge hole 101, thereby ensuring that the sealing performance of the upper end of the discharge hole 101 directly contacting with the material is sufficient, and of course, the threaded section 104 can also be completely distributed on the outer annular surface of the cylinder 102, the whole cylinder 102 is screwed with the discharge hole 101 to ensure the tightness, and in the actual process, the distribution and the length of the threaded section 104 are selected according to the depth of the discharge hole 101 and the length of the cylinder 102.
The limiting cylinder unit 2 comprises a cylinder 201 which is arranged on the connecting column 103 and is sleeved with the lower end of the stirring shaft 13, and balls 202 which are arranged on the inner wall of the cylinder 201. The balls 202 are used for reducing the friction force between the stirring shaft 13 and the cylinder 201 when rotating.
In this embodiment, the length of the cylinder 201 needs to ensure that a certain distance exists between the lower end of the stirring shaft 13 and the inner bottom surface of the cylinder 201 when the cylinder 102 is completely screwed with the discharge hole 101, and when the cylinder 102 is completely separated from the discharge hole 101, the lower end of the stirring shaft 13 is partially sleeved in the cylinder 201 as it is and the cylinder 201 moving downward does not block the discharge hole 101.
The limiting ring unit 3 comprises a limiting ring 301 arranged on the supporting ring unit 4, a radial connecting strip 302 arranged on the limiting ring 301 and used for connecting with the cylinder 102, a sealing ring 303 arranged on the radial connecting strip 302 and used for sealing a gap between the cylinder 102 and the discharge hole 101, and a limiting handle 304 arranged on the outer ring surface of the limiting ring 301.
In this embodiment, the limiting ring 301 and the radial connecting strip 302 form a structure similar to a "turntable", the cylinder 102 is located at the center of the "turntable", and the limiting ring 301 is rotated to rotate the cylinder 102, so as to control the cylinder 102 to move up and down, and compared with the case that the material is easily contacted with the human body by directly rotating the cylinder 102, the "turntable" structure does not contact the human body even if the material flowing out of the discharge hole 101 during the manual rotation process, thereby greatly improving the safety; and the "carousel" configuration is more labor-efficient in rotating the cylinder 102. The sealing ring 303 is arranged on the outer ring surface of the limiting ring 301, and is not only used for further improving the sealing performance at the discharge hole 101, but also limiting the upward adjustment distance of the cylinder 102, and avoiding damage to components caused by collision and extrusion between the cylinder 201 and the lower end of the stirring shaft 13 due to excessive upward adjustment of the cylinder 102. In this embodiment, two limiting handles 304 are symmetrically disposed on the outer circumferential surface of the limiting ring 301, so as to not only save labor, but also limit the downward adjustment distance of the limiting ring 301, when the limiting handles 304 abut against the upper surface of the supporting ring unit 4, the limiting ring 301 cannot be adjusted downward, thereby preventing the cylinder 102 from being excessively adjusted downward and directly separating from the lower end of the stirring shaft 13 or blocking the discharge hole 101.
The support ring unit 4 comprises a support ring 401 arranged outside the limit ring 301 and connected with the bracket 14, a clamping ring 402 arranged on the inner annular wall of the support ring 401 and used for clamping with the limit ring 301, and an annular elastic pad 403 arranged on the lower surface of the support ring 401.
In this embodiment, the support ring 401 is sleeved outside the limit ring 301 to fix a rotation track of the limit ring 301, so as to prevent the limit ring 301 from deviating during rotation and finally causing the stirring shaft 13 to deviate, the clamp ring 402 is made of an elastic rubber material in this embodiment, so as to increase a static friction force between the clamp ring 402 and the limit ring 301, so as to share a load of the whole structure caused by gravity of a stirring material, and enhance the sealing property between the limit ring 301 and the support ring 401, so that the material flows out of the inner ring of the support ring 401 through the limit ring 301 into the collection device without remaining on the support ring 401, the annular elastic pad 403 is also made of an elastic rubber material, so as to provide a buffering force to the support ring 401, and the annular elastic pad 403 can be integrally formed with the clamp ring 402.
Example 2
The present embodiment is different from embodiment 1 in that the limiting cylinder unit 2 further includes a buffer column portion 203 provided at a lower end of the cylinder 201. The buffer column part 203 comprises a buffer column 203a arranged at the lower end of the cylinder 201, a cylinder 203b arranged on the buffer column 203a and sleeved with the buffer column 203a, and a spring 203c with two ends respectively fixed on the buffer column 203a and the inner bottom surface of the cylinder 203 b.
In this embodiment, the threaded section 104 is not disposed on the cylinder 102, so when the discharge hole 101 is opened, due to the gravity and impact force of the material, the lower end of the cylinder 201 may collide with the discharge plate 12, in order to reduce such collision wear, two buffer columns 203 are disposed, the two buffer columns 203a are symmetrically and fixedly mounted at the lower end of the cylinder 201, the cylinder 203b is disposed at the outer end of the buffer column 203a and forms a socket structure with the buffer column 203a, and the spring 203c is disposed between the two buffer columns. When the cylinder 203b contacts and presses the discharge plate 12, the pressing force is transmitted to the spring 203c, and the spring 203c compresses to convert the pressing force into elastic force, thereby restoring the spring 203c when the cylinder 203b is separated from the discharge plate 12.
The support ring unit 4 comprises a support ring 401 arranged outside the limit ring 301 and connected with the bracket 14, and a clamping ring 402 arranged on the inner annular wall of the support ring 401 and used for clamping with the limit ring 301. In this embodiment, the clamping ring 402 may be a rigid structure, and an inner circumferential surface of the clamping ring 402 is provided with threads, and an outer circumferential surface of the limiting ring 301 is provided with corresponding external threads, so that the limiting ring 301 is screwed with the supporting ring 401, so that the supporting ring unit 4 and the limiting ring unit 3 are integrated, and the supporting stability of the discharge hole unit 1 is improved.
The specific embodiments described herein are merely illustrative of the spirit of the utility model. Various modifications or additions may be made to the described embodiments or alternatives may be employed by those skilled in the art without departing from the spirit or ambit of the utility model as defined in the appended claims.

Claims (10)

1. A reaction kettle for an assembled integrated wallboard single-component polyurethane crack sealer comprises a shell (11), a discharge plate (12) arranged at the lower end of the shell (11), a stirring shaft (13) arranged in the shell (11) and used for stirring reactants, and a bracket (14) arranged outside the shell (11) and used for supporting the shell (11), the stirring device is characterized by further comprising a discharge hole unit (1) arranged on the discharge plate (12), a limiting barrel unit (2) arranged on the discharge hole unit (1) and used for reinforcing the stirring shaft (13) in a manner of being sleeved with the lower end of the stirring shaft (13), a limiting ring unit (3) arranged on the outer annular surface of the discharge hole unit (1) and used for adjusting the height of the discharge hole unit (1), and a support ring unit (4) arranged at the lower end of the support (14) and sleeved with the limiting ring unit (3).
2. The reaction kettle for the assembled integrated wallboard single-component polyurethane crack sealer according to claim 1, wherein the discharge hole unit (1) comprises a discharge hole (101) arranged on the discharge plate (12), a cylinder (102) arranged on the discharge hole (101) and clamped with the discharge hole (101), and a connecting column (103) arranged on the cylinder (102) and used for installing the limiting cylinder unit (2).
3. The reaction kettle for the assembled integrated wallboard single-component polyurethane crack sealer according to claim 2, wherein the limiting cylinder unit (2) comprises a cylinder (201) arranged on the connecting column (103) and sleeved with the lower end of the stirring shaft (13), and balls (202) arranged on the inner wall of the cylinder (201).
4. The reaction kettle for the assembled integrated wallboard single-component polyurethane crack sealer as claimed in claim 3, wherein the limiting cylinder unit (2) further comprises a buffer column part (203) arranged at the lower end of the cylinder (201).
5. The reaction kettle for the assembled integrated wallboard single-component polyurethane crack sealer according to claim 3, wherein the limiting ring unit (3) comprises a limiting ring (301) arranged on the supporting ring unit (4), a radial connecting strip (302) arranged on the limiting ring (301) and used for being connected with the cylinder (102), and a sealing ring (303) arranged on the radial connecting strip (302) and used for sealing a gap between the cylinder (102) and the discharge hole (101).
6. The reaction kettle for the assembled integrated wallboard single-component polyurethane crack sealer as claimed in claim 5, wherein the limiting ring unit (3) further comprises a limiting handle (304) arranged on the outer ring surface of the limiting ring (301).
7. The reaction kettle for assembled integrated wallboard single-component polyurethane caulking compound according to claim 5, wherein the support ring unit (4) comprises a support ring (401) arranged outside the limiting ring (301) and connected with the bracket (14), and a clamping ring (402) arranged on the inner annular wall of the support ring (401) and used for clamping with the limiting ring (301).
8. The reaction kettle for the assembled integrated wallboard single-component polyurethane crack sealer according to claim 4, wherein the buffering column part (203) comprises a buffering column (203 a) arranged at the lower end of the cylinder (201), a barrel body (203 b) arranged on the buffering column (203 a) and sleeved with the buffering column (203 a), and a spring (203 c) with two ends fixed on the buffering column (203 a) and the inner bottom surface of the barrel body (203 b).
9. The reaction kettle for the assembled integrated wallboard single-component polyurethane crack sealer according to claim 2, wherein the discharge hole unit (1) further comprises a threaded section (104) arranged on the outer wall of the cylinder (102) and used for being screwed with the discharge hole (101).
10. The reaction kettle for assembled integrated wallboard single-component polyurethane sealant according to claim 7, wherein the support ring unit (4) further comprises an annular elastic pad (403) arranged on the lower surface of the support ring (401).
CN202121619475.0U 2021-07-16 2021-07-16 A reation kettle that is used for integrated wallboard single component polyurethane of assembled to beautify seam agent Active CN216367912U (en)

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Application Number Priority Date Filing Date Title
CN202121619475.0U CN216367912U (en) 2021-07-16 2021-07-16 A reation kettle that is used for integrated wallboard single component polyurethane of assembled to beautify seam agent

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Application Number Priority Date Filing Date Title
CN202121619475.0U CN216367912U (en) 2021-07-16 2021-07-16 A reation kettle that is used for integrated wallboard single component polyurethane of assembled to beautify seam agent

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113385122A (en) * 2021-07-16 2021-09-14 浙江亚厦装饰股份有限公司 A reation kettle that is used for integrated wallboard gap of assembled to handle with beautiful seam agent of single component polyurethane

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113385122A (en) * 2021-07-16 2021-09-14 浙江亚厦装饰股份有限公司 A reation kettle that is used for integrated wallboard gap of assembled to handle with beautiful seam agent of single component polyurethane
CN113385122B (en) * 2021-07-16 2023-07-18 浙江亚厦装饰股份有限公司 A reation kettle that is used for assembled integrated wallboard gap to handle with one-component polyurethane seam-beautifying agent

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