Powder melting machine for rhinestone production

By designing an automated diamond drilling powder melting machine, the problems of manual feeding and powder scattering were solved, and safe and efficient operation of automated feeding and melting processes was achieved.

CN223645903UActive Publication Date: 2025-12-09JIANGXI YINFENG DIAMOND JEWELRY CO LTD
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Patent Information

Application Number
CN202520318198.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-12-09
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

In current water drill production, the powder melting process requires manual operation, which results in high labor intensity and poses a health hazard to workers due to powder scattering.

Method used

A powder melting machine for rhinestone production was designed, comprising a machine base, a powder melting mechanism, a feeding mechanism, and a powder feeding mechanism. It realizes automated feeding and powder melting, adopts a sealed hopper to prevent powder from scattering, and uses suction needles and heating elements for automated adsorption and melting.

Benefits of technology

It achieves automated material feeding, reduces the labor intensity of workers, protects workers' health, and improves processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of rhinestone production and processing, and provides a powder melting machine for rhinestone production, and the powder melting machine for rhinestone production comprises a powder melting mechanism which is arranged on a machine table and is used for adhering and melting material powder; the material pushing mechanism is arranged on the machine table and used for pushing the material powder to the powder melting mechanism; the powder feeding mechanism is arranged on the machine table, located above the material pushing mechanism and used for automatically adding material powder into the material pushing mechanism; the powder feeding mechanism is provided with a material cavity which is arranged above the material pushing mechanism and used for containing material powder and further provided with a material suction piece which is arranged on one side of the machine table, connected with the material cavity and used for conveying the material powder to the material cavity. According to the rhinestone production powder melting machine provided by the invention, the feeding mechanism capable of automatically feeding is arranged on the machine table, so that the labor intensity of workers is reduced, and the labor cost is saved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to technical fields more specifically, relate to a kind of powder melting machine for water drill production. BACKGROUND

[0002] Water drill is also known as crystal diamond, rhinestone, is a kind of accessory accessory that is cut into diamond facet by artificial crystal glass, which can be applied in clothing decoration or home decoration field.Crystal raw material is a kind of round embryo, in existing feeding process, a kind of adhesive powder is first fused into molten state by suction needle, and the molten state of the adhesive powder will be adhered to the suction needle, the molten state of the adhesive powder has certain viscosity, can stick to raw material embryo, then suction needle with viscosity is used to adsorb embryo.

[0003] In the related art, the powder melting machine needs to manually pour the adhesive powder into the powder melting machine, which is labor-intensive and consumes labor. UTILITY MODEL CONTENT

[0004] In view of the problems in the prior art, the utility model aims to provide a powder melting machine for water drill production.

[0005] To solve the above problems, the utility model adopts the following technical scheme.

[0006] Machine table;

[0007] Powder melting mechanism, set on the machine table, for sticking and melting the material powder;

[0008] Pushing mechanism, set on the machine table, for pushing the material powder to the powder melting mechanism;

[0009] Powder feeding mechanism, having a material cavity set above the pushing mechanism and used for accommodating the material powder, and having a suction element set on one side of the machine table and connected with the material cavity for feeding the material powder to the material cavity.

[0010] The technical scheme described above in the embodiment has at least the following technical effects:

[0011] Since the powder feeding mechanism is installed on the material bin, when the material powder is lacking on the machine table, the powder feeding mechanism is automatically started to add the material powder to the machine table, saving manpower.The powder feeding mechanism is installed with airtight material bin, avoiding powder spraying during feeding process, protecting the health of workers.Meanwhile, all mechanical mechanisms are automatically controlled, improving processing efficiency.

[0012] In some embodiments, the powder melting mechanism has a suction needle and a heating element set above the suction needle for heating the suction needle;The heated suction needle is used to stick and melt the material powder into molten state.

[0013] In some embodiments, the pushing mechanism has a receiving bin below the material cavity for receiving the material and having a bottom with sieve holes; and a moving element for driving the receiving bin to move linearly back and forth so that the material powder falls onto the machine table; and a pushing plate for pushing the material powder on the machine table to the melting mechanism.

[0014] In some embodiments, the material cavity is a closed cavity; and the bottom of the material cavity is provided with a pull door for discharging the material.

[0015] In some embodiments, the pull door has a closing plate movably arranged at the bottom of the material cavity; and a moving element for driving the closing plate to move.

[0016] In some embodiments, the moving element is horizontally arranged on the machine table and has an output end connected to the closing plate.

[0017] In some embodiments, the material suction element includes a conveying pipe for conveying the material powder and a jet pump for providing a jet pressure. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 Structure diagram of the water diamond production melting machine of the present application is shown in the figure;

[0019] Figure 2 Front view structure diagram of the present application is shown in the figure;

[0020] Figure 3 Sectional structure diagram of the present application is shown in the figure.

[0021] Figure legend: 01, machine table; 02, melting mechanism; 03, suction needle; 04, temperature raising element; 05, pushing mechanism; 06, receiving bin; 07, pushing plate; 08, moving element; 09, powder feeding mechanism; 10, material cavity; 11, pull door; 12, slide rail; 13, closing plate; 14, moving element; 15, pushing rod; 16, driver; 17, material suction element; 18, conveying pipe; 19, jet pump. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0023] Please refer to Figure 1The utility model provides a kind of water drill production with powder melting machine, it includes: machine table 01;Powder melting mechanism 02, it is set on machine table 01, for sticking up material powder and melt material powder;Pushing mechanism 05, it is set on machine table 01, for material powder is pushed to powder melting mechanism 02;Powder mechanism 09 has the material cavity 10 for accommodating material powder and is set above pushing mechanism 05, also have setting on one side of machine table 01 and with material cavity 10 is connected to material powder is sent to material cavity 10 with suction material piece 17.

[0024] It can be understood that material powder is powder in normal state, and it will melt into a kind of sticky molten state gel when heated.The powder melting mechanism 02 is used to melt the powder into a gel, for example, it can be resistance wire heating, induction heating, etc., but not limited to this.The pushing mechanism 05 is a component that pushes the material powder to a position where the powder melting mechanism 02 can contact, for example, it can be an electric push plate mechanism, or a vibrating material gathering mechanism, etc., but not limited to this.The powder mechanism 09 is a component that automatically pulls the material powder onto the machine table 01 and pours the material powder into the machine table 01, for example, it can be a lifting type feeding mechanism, or a vacuum suction type feeding mechanism, etc., but not limited to this.The material cavity 10 is a component for temporarily storing material powder and preventing material powder from flying, for example, it can be a square material cavity 10, or a circular material bin, etc., but not limited to this.The suction material piece 17 is a component that lifts and feeds the material powder into the material cavity 10, for example, it can use a pressure pump to suck in a vacuum way, or use a lifting platform to transport, etc., but not limited to this.

[0025] As can be seen from the above, the mechanism is provided with a powder feeding mechanism 09 for automatic feeding, the powder feeding mechanism 09 is provided with a suction material piece 17 and a material cavity 10, the suction material piece 17 can automatically suck the material powder into the material cavity 10, saving labor and reducing the labor intensity of workers.When the material powder is sucked into the material cavity 10, the material cavity 10 itself is a closed space that can prevent the material powder from flying into the air and affecting the health of workers.When the material powder in the material cavity 10 accumulates a certain amount, it is pushed to the powder melting mechanism 02 by the pushing mechanism 05, and then the powder melting mechanism 02 dips and melts the material powder.

[0026] As can be seen from the above, in some embodiments, referring to Figure 1 The powder melting mechanism 02 has a suction needle 03 and a temperature raising piece 04 arranged above the suction needle 03 for raising the temperature of the suction needle 03, and the suction needle 03 is heated to stick and melt the material powder into a molten state.

[0027] It can be understood that the suction needle 03 and the temperature raising piece 04 are components for sticking and melting powder to make the surface of the suction needle 03 sticky, and the temperature raising piece 04 is used to heat the suction needle 03 to raise the surface temperature of the suction needle 03 to a temperature sufficient to melt the powder, and after the surface temperature of the suction needle 03 is raised, the powder is melted and adhered to the surface of the suction needle 03 when the suction needle 03 below the surface of the suction needle 03 contacts the powder.

[0028] In this way, the suction needle 03 is used separately from the heating member, which facilitates the temperature rise and fall of the suction needle 03.

[0029] As can be seen, in some embodiments, referring to Figure 2 , the pushing mechanism 05 has a receiving bin 06 below the material cavity 10 and used for receiving the material powder and provided with sieve holes at the bottom; and a moving member 08 driving the receiving bin 06 to make reciprocating linear motion so that the material powder falls onto the machine table; and further comprising a pushing plate 15 for pushing the material powder on the machine table 01 to below the material melting mechanism 02.

[0030] As can be understood, the receiving bin 06 is used for receiving the material powder falling from the material cavity 10 and shaking the material powder to fall onto the machine table, so the bottom of the receiving bin should be provided with sieve holes for discharging the material. The pushing plate 07 is a component for pushing the material powder to below the material melting device, which can be a straight plate, a curved plate, etc., but is not limited thereto. The moving member 08 is a component for driving the receiving bin 06 to make reciprocating linear motion, which can be a driver 16 plus a sliding mechanism, or a driver 16 plus a rolling mechanism.

[0031] In this way, the receiving bin 06 can buffer the impact force when the material powder falls, avoiding the scattering of the material powder.

[0032] As can be seen, in some embodiments, referring to Figure 3 , the material cavity 10 is a closed cavity; one end of the material cavity 10 is provided with an opening; and the bottom of the material cavity 10 is provided with a pull-out door 11 for discharging the material. The pull-out door 11 has a movable closing plate 13 movably arranged at the bottom of the material cavity 10; and further has a moving member 14 for driving the closing plate 13 to move. The moving member 14 is horizontally arranged on the machine table 01 and the output end is connected to the closing plate 13.

[0033] As can be understood, the material cavity 10 has the function of preventing the material powder from scattering everywhere, so the material cavity 10 itself should be a closed cavity, but the material cavity 10 should be provided with an openable and closable door for discharging the material powder in the material cavity 10, which can be a rotating door with a rotating shaft in the middle, or a pull-out door 11 that can be pulled out and closed. Since the material powder will affect the operation of the rotating door, the pull-out door 11 is preferred to be used.

[0034] In this way, the material cavity 10 can not only prevent the material powder from scattering into the air and affecting the health of workers, but also serve as a storage place for temporarily storing the material powder, controlling the feeding speed of the material powder.

[0035] As can be seen, in some embodiments, referring to Figure 3 , the material suction member 17 includes a conveying pipe 18 for conveying the material powder and a jet pump 19 for providing a jet pressure for the material powder.

[0036] Understandably, the jet pump 19 pushes the powder through the conveying pipe 18 into the material chamber 10. For example, it can be a positive displacement jet pump or a diaphragm jet pump.

[0037] As can be seen from the above, when the machine is short of powder, the feeding mechanism is turned on and the feeding mechanism sucks up the powder. After the powder in the material chamber is full, the pull-out door is opened and the powder is lowered to the pushing mechanism. Then it falls from the pushing mechanism onto the machine. The pushing mechanism pushes the powder to the bottom of the melting mechanism and turns on the melting mechanism. The suction needle sticks to the powder and melts it.

[0038] The above description is merely a preferred embodiment of this utility model; however, the protection scope of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the technical scope disclosed in this utility model, based on the technical solution and its improved concept, should be included within the protection scope of this utility model.

Claims

1. A powder melting machine for diamond drilling production, characterized in that, include: Machine tool; The powder melting mechanism, located on the machine platform, is used to adhere to and melt the powder. The feeding mechanism, located on the machine platform, is used to push the powder to the melting mechanism; The powder feeding mechanism has a material cavity located above the feeding mechanism for receiving the powder, and a suction component located on one side of the machine and connected to the material cavity for feeding the powder into the material cavity.

2. The fusion powder machine for water-based rhinestone production as described in claim 1, characterized in that, The powder melting mechanism has a suction needle and a heating element disposed above the suction needle for heating the suction needle; after being heated, the suction needle is used to pick up the powder and melt the powder into a molten state.

3. The fusion powder machine for water-jet drilling production as described in claim 1, characterized in that, The feeding mechanism has a receiving bin located below the material chamber for receiving material and with a sieve hole at the bottom; a moving part that drives the receiving bin to reciprocate linear motion so that the powder falls onto the machine platform; and a feeding plate for pushing the powder on the machine platform into the area below the powder melting mechanism.

4. The pulverizing machine for water-jet drilling production as described in claim 1, characterized in that, The material chamber is a closed cavity; a pull-out door for discharging material is provided at the bottom of the material chamber.

5. A pulverizing machine for diamond drilling production as described in claim 4, characterized in that, The pull-out door has a movably mounted sealing plate at the bottom of the material chamber; it also has a moving component for driving the sealing plate to move.

6. The pulverizing machine for diamond drilling production as described in claim 5, characterized in that, The moving part is horizontally mounted on the machine platform and its output end is connected to the enclosed plate.

7. A pulverizing machine for diamond drilling production as described in claim 1, characterized in that, The suction unit includes a conveying pipe for conveying the powder and an air pump for providing powder spraying pressure.