CN209144012U - A kind of binodal glass snowman integrated molding equipment - Google Patents

A kind of binodal glass snowman integrated molding equipment Download PDF

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Publication number
CN209144012U
CN209144012U CN201821675058.6U CN201821675058U CN209144012U CN 209144012 U CN209144012 U CN 209144012U CN 201821675058 U CN201821675058 U CN 201821675058U CN 209144012 U CN209144012 U CN 209144012U
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China
Prior art keywords
glass
snowman
binodal
dynamic model
cover half
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CN201821675058.6U
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Chinese (zh)
Inventor
魏翔
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Jiarun Gift (pinghu) Co Ltd
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Jiarun Gift (pinghu) Co Ltd
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Abstract

The utility model discloses a kind of binodal glass snowman to be integrally formed equipment, including apparatus body, the top of apparatus body is equipped with fluid injection block, the inside of fluid injection block is embedded with filter screen, the top center of dynamic model is equipped with cover half through the bottom for being provided with liquid injection port dynamic model, the inner wall side of lower forming cavity is equipped with thermoinduction probe, the bottom of lower forming cavity is equipped with heat block, the bottom end of heat block is equipped with electromagnetic heater, the side of evaporator is equipped with condenser, the side of condenser is equipped with cooling tower, the inner tip quadrangle of apparatus body is mounted on hydraulic lifting post.The utility model falls the glass metal after melting by contaminant filter when entering molding die by the way that filter screen is arranged, it prevents from containing impurity effect quality inside molding glass snowman, it is provided with heating and cooling system simultaneously, glass is set, in slow cooling state, to prevent the excessively crisp fragmentation during transportation of glass when forming annealing.

Description

A kind of binodal glass snowman integrated molding equipment
Technical field
The utility model relates to a kind of molding equipment, in particular to a kind of binodal glass snowman is integrally formed equipment.
Background technique
It is well known that the zinc oxide that suitable reason is typically added in Glass Craft in the feed increases the toughness of product, Suitable coloring matter is added in raw material may make product coloring, copper oxide such as be added, product is in green or sea blue color: oxygen is added Magnificent cobalt coloring;Selenium powder is added to take on a red color, the amount of addition influences the depth of color, and according to glass ingredient, batch is made, is sent into glass Melting furnaces are melted, and form glass metal, then glass metal is injected in iron casting with this to glass metal plastotype, existing glass at Type equipment is easy to occur in forming process the case where impurity and causes bad, and the glass during transportation after glass is annealed Easily there is the case where fragmentation.
Utility model content
The technical problems to be solved in the utility model is to overcome the deficiencies of existing technologies, and provides a kind of binodal glass snowman one Forming equipment can accomplish the situation for avoiding causing glass product bad because of impurity in forming process, and it is rationally anti-to anneal Only there is the case where glass fragmentation faced during transportation.
In order to solve the above-mentioned technical problem, the utility model provides the following technical solution:
A kind of binodal glass snowman of the utility model is integrally formed equipment, including apparatus body, the top of the apparatus body End is equipped with fluid injection block, and the inside of the fluid injection block is embedded with filter screen, and the bottom end of the liquid injection port is equipped with dynamic model, the dynamic model Top center through being provided with liquid injection port, the inside of the dynamic model is provided with forming cavity, and the top quadrangle of the dynamic model is respectively mounted Have a limited post, the bottom of the dynamic model is equipped with cover half, and the top quadrangle of the cover half is provided with limiting slot, the cover half it is interior Portion is provided with lower forming cavity, and the inner wall side of the lower forming cavity is equipped with thermoinduction probe, the bottom installation of the lower forming cavity There is heat block, the bottom end of the heat block is equipped with electromagnetic heater, and a side surface of the cover half is equipped with control mould group, institute The outer wall side for stating cover half is equipped with evaporator, and the side of the evaporator is equipped with condenser, the side peace of the condenser Equipped with cooling tower, the inner tip quadrangle of the apparatus body is mounted on hydraulic lifting post.
As a kind of optimal technical scheme of the utility model, the evaporator is connect with cooling tower by condenser.
As a kind of optimal technical scheme of the utility model, the fluid injection block be used for inject heat melt it is deployed after glass Glass liquid, and filter screen is between fluid injection block and liquid injection port.
As a kind of optimal technical scheme of the utility model, the filter screen is mainly that tungsten wire material is made.
As a kind of optimal technical scheme of the utility model, the lower forming cavity and electromagnetic heater are connected by heat block It connects.
As a kind of optimal technical scheme of the utility model, height is higher than evaporator later for the dynamic model and cover half pressing Height, and with evaporator connect.
Compared with prior art, the beneficial effects of the utility model are as follows:
The utility model makes the glass metal after melting when entering molding die by contaminant filter by the way that filter screen is arranged Fall, prevent containing impurity effect quality inside molding glass snowman, while being provided with heating and cooling system, make glass at It is in slow cooling state when type is annealed, prevents the excessively crisp fragmentation during transportation of glass.
Detailed description of the invention
Attached drawing is used to provide a further understanding of the present invention, and constitutes part of specification, practical with this Novel embodiment is used to explain the utility model together, does not constitute limitations of the present invention.In the accompanying drawings:
Fig. 1 is the overall structure diagram of the utility model;
Fig. 2 is the water-cooled cooling operation schematic diagram of the utility model;
In figure: 1, apparatus body;2, fluid injection block;3, filter screen;4, dynamic model;5, liquid injection port;6, upper forming cavity;7, it limits Column;8, cover half;9, limiting slot;10, lower forming cavity;11, thermoinduction is popped one's head in;12, heat block;13, electromagnetic heater;14, it evaporates Device;15, condenser;16, cooling tower;17, hydraulic lifting post;18, mould group is controlled.
Specific embodiment
It is illustrated below in conjunction with preferred embodiment of the attached drawing to the utility model, it should be understood that described herein excellent It selects embodiment to be only used for describing and explaining the present invention, is not used to limit the utility model.
Wherein identical label all refers to identical component in attached drawing.
Embodiment 1
As shown in Figs. 1-2, the utility model provides a kind of binodal glass snowman integrated molding equipment, including apparatus body 1, The top of apparatus body 1 is equipped with fluid injection block 2, and the inside of fluid injection block 2 is embedded with filter screen 3, and the bottom end of liquid injection port 2 is equipped with dynamic model 4, the top center of dynamic model 4 is through liquid injection port 5 is provided with, and the inside of dynamic model 4 is provided with forming cavity 6, and the top quadrangle of dynamic model 4 is pacified Equipped with limited post 7, the bottom of dynamic model 4 is equipped with cover half 8, and the top quadrangle of cover half 8 is provided with limiting slot 9, and the inside of cover half 8 is opened There is lower forming cavity 10, the inner wall side of lower forming cavity 10 is equipped with thermoinduction probe 11, and the bottom of lower forming cavity 10, which is equipped with, to be added Heat block 12, the bottom end of heat block 12 are equipped with electromagnetic heater 13, and a side surface of cover half 8 is equipped with control mould group 18, cover half 8 Outer wall side evaporator 14 is installed, the side of evaporator 14 is equipped with condenser 15, and the side of condenser 15 is equipped with cold But the inner tip quadrangle of water tower 16, apparatus body 1 is mounted on hydraulic lifting post 17.
Further, evaporator 14 and cooling tower 16 are connect by condenser 15, and the water pipe inside evaporator 14 is by mould Heat on tool, which is taken away, is delivered to condenser 15, and the water with heat is injected cooling tower 16, cooling tower 16 by condenser 15 Water cooling is reinjected into condenser 15 later, condenser 15 reinjects cooling water in evaporator 14, to form recirculated water drop Temperature.
Fluid injection block 2 be used to inject heat melt it is deployed after glass metal, and filter screen 3 be located at fluid injection block 2 and liquid injection port 5 it Between, the glass solution after heat is melted is injected from fluid injection block 2, glass solution is carried out the impurity in glass solution by filter screen 3 Filtering, prevent molding glass snowman contain impurity cause it is bad, filtered glass solution from liquid injection port 5 flow into mold cavity Form glass solution.
Filter screen 3 is mainly that tungsten wire material is made, and tungsten is a kind of metallic element, and hardness is high, and fusing point is high, not by sky under room temperature Gas cut erosion prevents glass solution is excessively high from filter screen 3 being caused to damage.
Lower forming cavity 10 is connect with electromagnetic heater 13 by heat block 12, passes through heating after electromagnetic heater 13 is heated Block 12 heats lower forming cavity 10, and the principle for leading to heat transfer carries out the pre-heat treatment to mold.
Height is higher than the height of evaporator 14 later for dynamic model 4 and the pressing of cover half 8, and connects with evaporator 14, evaporation Device 14 and the adjoint conjunction of mold, with the temperature on this surface for taking away mold, the high temperature of mould inside is transmitted to outside, thus into Row cooling.
Specifically, dynamic model 4 passes through phase between limited post 7 and limiting slot 9 with cover half 8 by declining hydraulic lifting post 17 Fitting makes forming cavity 6 and lower forming cavity 10 form the forming cavity of glass snowman, and electromagnetic heater 13 heats, and heat is by adding The bottom that heat block 12 transfers heat to lower forming cavity 10 prevents glass solution from existing to heat to dynamic model 4 and cover half 8 Later cooling suddenly causes glass brittle to injection mold, and the top of apparatus body 1 is equipped with fluid injection block 2, for after heating Glass metal injection, heat melt after glass metal by filter screen 3 by glass solution impurity remove, it is filtered after glass Solution is injected into inside mold forming cavity from liquid injection port 5, forms glass solution, and thermoinduction probe 11 is connected to lower forming cavity 10 Inner wall is observed the temperature of mould inside by control mould group 18, the temperature of die surface is taken away by evaporator 14, because heat is transmitted Principle forming cavity inside high temperature transmitted to outside, the water pipe inside evaporator 14, which takes heat out of, is delivered to condenser 15, Cooling water is injected cooling tower 16 by condenser 15, and cooling tower 16 is being delivered to condenser 15 after water is cooled down, cold Condenser 15 again will be cooled after water be delivered to evaporator 14 to reaching cooling cycle, control can be passed through in temperature-fall period Mould group 18 carries out temperature control, so that the glass solution after forming is in the state of slow high annealing, prevents glass after cooled Cross it is crisp lead to fragmentation in transportational process, while glass snowman will guarantee that clamp is dry when being taken out from forming cavity with clamp after molding Only, glass snowman may be made to be stained with rust staining if clamp gets rusty.
Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention, it is not limited to this Utility model, although the utility model is described in detail with reference to the foregoing embodiments, for those skilled in the art For, it is still possible to modify the technical solutions described in the foregoing embodiments, or to part of technical characteristic It is equivalently replaced.Within the spirit and principle of the utility model, any modification, equivalent replacement, improvement and so on, It should be included within the scope of protection of this utility model.

Claims (6)

1. a kind of binodal glass snowman is integrally formed equipment, including apparatus body (1), which is characterized in that the apparatus body (1) Top be equipped with fluid injection block (2), the inside of the fluid injection block (2) is embedded with filter screen (3), and the bottom end of the fluid injection block (2) is pacified Equipped with dynamic model (4), through being provided with liquid injection port (5), the inside of the dynamic model (4) is provided with into the top center of the dynamic model (4) The top quadrangle of type chamber (6), the dynamic model (4) is mounted on limited post (7), and the bottom of the dynamic model (4) is equipped with cover half (8), the top quadrangle of the cover half (8) is provided with limiting slot (9), and the inside of the cover half (8) is provided with lower forming cavity (10), institute The inner wall side for stating lower forming cavity (10) is equipped with thermoinduction probe (11), and the bottom of the lower forming cavity (10) is equipped with heating The bottom end of block (12), the heat block (12) is equipped with electromagnetic heater (13), and a side surface of the cover half (8) is equipped with control The outer wall side of molding group (18), the cover half (8) is equipped with evaporator (14), and the side of the evaporator (14) is equipped with cold The side of condenser (15), the condenser (15) is equipped with cooling tower (16), the inner tip quadrangle of the apparatus body (1) It is mounted on hydraulic lifting post (17).
2. a kind of binodal glass snowman according to claim 1 is integrally formed equipment, which is characterized in that the evaporator (14) it is connect with cooling tower (16) by condenser (15).
3. a kind of binodal glass snowman according to claim 1 is integrally formed equipment, which is characterized in that the fluid injection block (2) for inject heat melt it is deployed after glass metal, and filter screen (3) is located between fluid injection block (2) and liquid injection port (5).
4. a kind of binodal glass snowman according to claim 1 is integrally formed equipment, which is characterized in that the filter screen It (3) is mainly that tungsten wire material is made.
5. a kind of binodal glass snowman according to claim 1 is integrally formed equipment, which is characterized in that the lower forming cavity (10) it is connect with electromagnetic heater (13) by heat block (12).
6. a kind of binodal glass snowman according to claim 1 is integrally formed equipment, which is characterized in that the dynamic model (4) It is higher than the height of evaporator (14) with cover half (8) pressing later height, and is connected with evaporator (14).
CN201821675058.6U 2018-10-16 2018-10-16 A kind of binodal glass snowman integrated molding equipment Active CN209144012U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821675058.6U CN209144012U (en) 2018-10-16 2018-10-16 A kind of binodal glass snowman integrated molding equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821675058.6U CN209144012U (en) 2018-10-16 2018-10-16 A kind of binodal glass snowman integrated molding equipment

Publications (1)

Publication Number Publication Date
CN209144012U true CN209144012U (en) 2019-07-23

Family

ID=67269882

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821675058.6U Active CN209144012U (en) 2018-10-16 2018-10-16 A kind of binodal glass snowman integrated molding equipment

Country Status (1)

Country Link
CN (1) CN209144012U (en)

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