Intelligent material manufacturing equipment
By designing a mixing bin and stabilizing mechanism in the intelligent material manufacturing equipment, the problem of material accumulation and agglomeration when pouring is solved, the stability of the equipment is improved, and a more efficient material mixing and production process is achieved.
Patent Information
- Application Number
- CN202510747156.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2025-09-12
AI Technical Summary
Existing smart material manufacturing equipment is prone to accumulation and agglomeration when materials are poured in, affecting the mixing effect. In addition, the equipment is not stable enough during the material preparation process, affecting production efficiency.
A smart material manufacturing device was designed, comprising a mixing chamber, a gear ring, a turbine, a turbine shaft, a first mixing impeller, and a stabilizing mechanism. These components work together to achieve adequate mixing of the material and ensure stability, preventing material accumulation and agglomeration.
It effectively prevents the problem of accumulation and agglomeration when the material is poured into the equipment, improves the mixing effect, and enhances the stability of the equipment during the material preparation process through the stabilizing mechanism, ensuring production efficiency.
Smart Images

Figure CN120618294A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of intelligent manufacturing engineering, and in particular to intelligent material manufacturing equipment. Background Art
[0002] Smart material manufacturing equipment in the field of intelligent manufacturing engineering is a type of modern equipment that integrates advanced sensing technology, artificial intelligence algorithms and automated control systems. It is designed to efficiently and accurately produce smart materials with specific functions and performance requirements. These devices usually have the ability to monitor and adjust feedback in real time. They can automatically optimize process parameters according to data changes in the production process to ensure the consistency and stability of product quality. In addition, smart material manufacturing equipment also supports personalized customization and flexible production, can quickly respond to changes in market demand, and promote the development of the manufacturing industry towards intelligence, greenness and efficiency.
[0003] At present, the production process of smart material manufacturing equipment often requires mixing different materials and stirring. During the mixing process, the materials are usually poured directly into the discharge port and stirred through the manufacturing equipment. If the materials are poured directly into the manufacturing equipment, they will accumulate and clump. Therefore, there is no mechanism in the existing technology to mix the materials in advance. Therefore, if the materials are poured into the manufacturing equipment and accumulate and clump, the mixing effect will be affected. At the same time, the equipment is not stable enough during the preparation of the materials, which affects the production and preparation of the materials. Summary of the Invention
[0004] The purpose of the present invention is to provide an intelligent material manufacturing equipment, which solves the problem that the existing technology has no mechanism for pre-mixing the materials put in, so the materials are poured into the manufacturing equipment and accumulate and clump, which affects the mixing effect. At the same time, the equipment is not stable enough during the material preparation process, which affects the production and preparation of the materials.
[0005] In order to achieve the above-mentioned object of the invention, the technical solution adopted by the present invention is:
[0006] On the manufacturing equipment body, the stirring mechanism includes a mixing chamber, a pair of leakage ports are opened on the mixing chamber, a gear ring is fixedly installed in the mixing chamber, a turbine is rotatably installed in the mixing chamber, a vortex rod is rotatably installed in the mixing chamber, the vortex rod is engaged with the turbine, a first mixing blade is rotatably installed in the mixing chamber, the first mixing blade is connected to the turbine, a rotating plate is rotatably installed on the turbine, and a gear is installed under the rotating plate.
[0007] The installation of the mixing bin facilitates the supporting effect, thereby facilitating the installation therein, which is conducive to fully crushing the materials poured into the manufacturing equipment body, and the installation of the gear ring facilitates the rotation of the gear according to the trajectory of the gear ring, thereby facilitating the sliding of the gear and providing a direction, and the installation of the turbine facilitates the rotation effect, thereby facilitating the rotation of the first mixing blade, and the rotation of the worm shaft facilitates the benefit of driving the turbine to rotate, thereby facilitating the turbine to achieve the rotational motion effect, and the installation of the first mixing blade is conducive to the preliminary mixing of the materials in the mixing bin, so that the materials will not accumulate when poured into the manufacturing equipment body, and the installation of the gear facilitates the movement of the connecting rod.
[0008] As an improvement, the gear is meshed with the gear ring, a connecting rod is installed under the gear, and a plurality of connecting frames are installed on the connecting rod.
[0009] The installation of the connecting rod facilitates the improvement of the mixing effect of the materials in the mixing bin, making the mixing more uniform, and facilitates the installation of a material mixing mechanism thereon. The installation of the connecting frame facilitates the mixing of the materials and at the same time plays a supporting role, which is conducive to the installation of a mechanism on the connecting frame that facilitates the rotation of the material mixing mechanism.
[0010] As an improvement, a support rod is installed in the connecting frame, a plurality of second mixing blades are rotatably installed on the support rod, and a plurality of stirring blades are installed on the connecting rod.
[0011] The installation of the second mixing blade facilitates the improvement of the mixing effect, so that the movement of the connecting rod drives the connecting frame to rotate the rod with the first mixing blade as the center, thereby facilitating the second mixing blade to rotate and further mix the material. The installation of the stirring blade facilitates the breaking up of lumps in the material, thereby breaking up the lumps in the material.
[0012] As an improvement, an electric motor is installed on the mixing chamber, the electric motor is connected to the worm, a control valve is installed under the mixing chamber, and a slot matching the control valve is bored on the manufacturing equipment body.
[0013] The installation of the electric motor facilitates the conversion of electrical energy into mechanical energy, thereby facilitating the rotation of the worm gear during rotation.
[0014] As an improvement, the stabilizing mechanism includes a base, a plurality of shock absorbers are installed on the base, the shock absorbers are connected to the manufacturing equipment body, and a pair of sliding brackets are fixedly installed under the manufacturing equipment body.
[0015] The installation of the base facilitates the manufacturing function, and the support of the base facilitates the installation of a mechanism thereon that is beneficial to ensuring the stability of the manufacturing equipment body. The installation of the shock absorber facilitates the absorption and alleviation of the impact force from the manufacturing equipment body, thereby enhancing the stability of the manufacturing equipment body. The installation of the sliding bracket has a supporting function, making it convenient to install a slider therein, thereby facilitating the sliding of the slider.
[0016] As an improvement, a hinged rod is hingedly installed on the shock absorber, a first spring is provided on the outer shell of the shock absorber, and a pair of sliders are slidably installed in the sliding bracket.
[0017] The installation of the hinged rod facilitates the realization of hinged movement according to the downward pressure of the manufacturing equipment body, thereby facilitating the hinged rod to push the slider. The installation of the slider is conducive to transmitting force to the second spring, thereby facilitating the second spring to buffer the force.
[0018] As an improvement, the other end of the hinged rod is hingedly mounted on a slider, and a second spring is installed between a pair of sliders.
[0019] The installation of the second spring facilitates the buffering of the force, thereby buffering the pushing force brought by the slider.
[0020] The beneficial effects of the present invention are as follows: through the setting of the corresponding mechanism, it is convenient to mix the materials poured into the manufacturing equipment in advance, thereby effectively preventing the problem of accumulation and agglomeration of the materials poured into the manufacturing equipment. At the same time, by setting the stabilizing mechanism, it is convenient to make the manufacturing equipment more stable during the process of preparing the materials, so that the preparation efficiency of the materials will not be affected. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a front cross-sectional view of an intelligent material manufacturing device of the present invention.
[0022] Figure 2 for Figure 1 Schematic diagram of the structure at point A in the middle.
[0023] Figure 3 This is a top-down cross-sectional view of a stirring mechanism of an intelligent material manufacturing device according to the present invention.
[0024] In the figure: 1. Manufacturing equipment body; 2. Stirring mechanism; 201. Mixing chamber; 202. Gear ring; 203. Turbine; 204. Turbine rod; 205. First mixing blade; 206. Rotating plate; 207. Gear; 208. Connecting rod; 209. Connecting frame; 210. Second mixing blade; 211. Stirring blade; 212. Motor; 213. Control valve; 3. Stabilizing mechanism; 301. Base; 302. Shock absorber; 303. Sliding bracket; 304. Articulated rod; 305. First spring; 306. Sliding block; 307. Second spring. DETAILED DESCRIPTION
[0025] To make the contents of the present invention more clearly understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Identical parts are denoted by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, and the terms "inward" and "outward" refer to directions toward or away from the geometric center of a particular component, respectively.
[0026] like Figures 1 to 3 As shown, on the manufacturing equipment body 1, the stirring mechanism 2 includes a mixing chamber 201, a pair of leakage ports are opened on the mixing chamber 201, a gear ring 202 is fixedly installed in the mixing chamber 201, a turbine 203 is rotatably installed in the mixing chamber 201, a vortex rod 204 is rotatably installed in the mixing chamber 201, the vortex rod 204 is engaged with the turbine 203, a first mixing impeller 205 is rotatably installed in the mixing chamber 201, the first mixing impeller 205 is connected to the turbine 203, a rotating plate 206 is rotatably installed on the turbine 203, and a gear 207 is installed under the rotating plate 206.
[0027] The installation of the mixing bin 201 facilitates the supporting effect, thereby facilitating the installation thereof, which is conducive to fully crushing the materials poured into the manufacturing equipment body 1, and the installation of the gear ring 202 facilitates the rotation of the gear 207 according to the trajectory of the gear ring 202, thereby facilitating the sliding direction of the gear 207, and the installation of the turbine 203 facilitates the rotation effect, thereby facilitating the rotation of the first mixing blade 205, and the rotation of the worm shaft 204 facilitates the benefit of driving the turbine 203 to rotate, thereby facilitating the turbine 203 to achieve the rotational motion effect, and the installation of the first mixing blade 205 facilitates the preliminary mixing of the materials in the mixing bin 201, so that the materials will not accumulate when poured into the manufacturing equipment body 1, and the installation of the gear 207 facilitates the movement of the connecting rod 208.
[0028] As an improvement, the gear 207 is meshed with the gear ring 202 , a connecting rod 208 is installed under the gear 207 , and a plurality of connecting frames 209 are installed on the connecting rod 208 .
[0029] The installation of the connecting rod 208 facilitates the improvement of the mixing effect of the materials in the mixing bin 201, making the mixing more uniform, and facilitates the installation of a material mixing mechanism thereon. The installation of the connecting frame 209 facilitates the mixing of materials and at the same time plays a supporting role, which is conducive to the installation of a mechanism on the connecting frame 209 that facilitates the rotation of the material mixing mechanism.
[0030] As an improvement, a support rod is installed in the connecting frame 209 , and a plurality of second mixing blades 210 are rotatably installed on the support rod, and a plurality of stirring blades 211 are installed on the connecting rod 208 .
[0031] The installation of the second mixing blade 210 facilitates the improvement of the mixing effect, so that the movement of the connecting rod 208 drives the connecting frame 209 to rotate the rod with the first mixing blade 205 as the center, thereby facilitating the second mixing blade 210 to rotate and further mix the material, and the installation of the stirring blade 211 facilitates the breaking up of lumps in the material, thereby breaking up the lumps in the material.
[0032] As an improvement, an electric motor 212 is installed on the mixing chamber 201, and the electric motor 212 is connected to the worm 204. A control valve 213 is installed under the mixing chamber 201, and a slot matching the control valve 213 is drilled on the manufacturing equipment body 1.
[0033] The installation of the electric motor 212 facilitates the conversion of electrical energy into mechanical energy, thereby facilitating the rotation of the worm gear 204 during rotation.
[0034] like Figure 1 As shown, the stabilizing mechanism 3 includes a base 301 , a plurality of shock absorbers 302 are mounted on the base 301 , the shock absorbers 302 are connected to the manufacturing equipment body 1 , and a pair of sliding brackets 303 are fixedly mounted under the manufacturing equipment body 1 .
[0035] The installation of the base 301 facilitates the manufacturing function, and the support of the base 301 facilitates the installation of a mechanism thereon that is beneficial to ensuring the stability of the manufacturing equipment body 1. The installation of the shock absorber 302 facilitates the absorption and alleviation of the impact force from the manufacturing equipment body 1, thereby enhancing the stability of the manufacturing equipment body 1. The installation of the sliding bracket 303 has a supporting function, which facilitates the installation of the slider 306 therein, thereby facilitating the sliding of the slider 306.
[0036] As an improvement, a hinge rod 304 is hingedly installed on the shock absorber 302 , a first spring 305 is provided on the outer shell of the shock absorber 302 , and a pair of sliders 306 are slidably installed in the sliding bracket 303 .
[0037] The installation of the hinged rod 304 facilitates the realization of hinged movement according to the downward pressure of the manufacturing equipment body 1, thereby facilitating the hinged rod 304 to push the slider 306. The installation of the slider 306 is conducive to transmitting force to the second spring 307, thereby facilitating the second spring 307 to buffer the force.
[0038] As an improvement, the other end of the hinge rod 304 is hingedly mounted on the slider 306 , and a second spring 307 is installed between the pair of sliders 306 .
[0039] The installation of the second spring 307 facilitates buffering of the force, thereby buffering the driving force brought by the slider 306 .
[0040] During use, the material is poured into the mixing bin 201, and the motor 212 is started to drive the rotation of the worm 204, so that the worm 204 will drive the rotation of the turbine 203 when it rotates, and the rotation of the turbine 203 will drive the first mixing blade 205 to initially stir the material in the mixing bin 201, and the rotation of the turbine 203 will drive the rotating plate 206 to drive the gear 207 to move on the gear ring 202 with the turbine 203 as the center, so that the gear 207 will drive the connecting rod 208 to rotate when it rotates, so that the connecting rod 208 will crush the agglomerated part in the material through the stirring blade 211 when it rotates, and at the same time, the turbine 203 will drive the first mixing blade 205 to rotate when it rotates, so that the first mixing blade 205 The stirring blade 205 will fully and evenly stir the material in the mixing bin 201, and the second mixing stirring blade 210 will rotate on the support rod according to the rotation of the connecting rod 208, thereby improving the degree of mixing of the material. By installing the control valve 213, when the control valve 213 is started, the material in the mixing bin 201 will leak into the manufacturing equipment body 1. If the manufacturing equipment body 1 shakes during stirring, it will be buffered by the shock absorber 302 and the first spring 305. At the same time, when the sliding bracket 303 is pressed down during shaking, it will drive the hinged rod 304 to be hinged, so that the hinged rod 304 will push the slider 306, and the force will be buffered by the second spring 307, thereby ensuring that the manufacturing equipment body 1 is stable when stirring the mixed material.
[0041] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention shall be included in the scope of protection of the present invention.
Claims
1. An intelligent material manufacturing device, characterized in that: include: Manufacturing equipment body (1); A stirring mechanism (2) is installed on the manufacturing equipment body (1), and the stirring mechanism (2) includes a mixing chamber (201), a pair of material leakage ports are cut on the mixing chamber (201), a gear ring (202) is fixedly installed in the mixing chamber (201), a turbine (203) is rotatably installed in the mixing chamber (201), a vortex rod (204) is rotatably installed in the mixing chamber (201), the vortex rod (204) is meshed with the turbine (203), a first mixing blade (205) is rotatably installed in the mixing chamber (201), the first mixing blade (205) is connected to the turbine (203), a rotating plate (206) is rotatably installed on the turbine (203), and a gear (207) is installed under the rotating plate (206); A stabilizing mechanism (3) is installed under the manufacturing equipment body (1).
2. The intelligent material manufacturing equipment according to claim 1, characterized in that: The gear (207) is meshed with the gear ring (202), a connecting rod (208) is installed under the gear (207), and a plurality of connecting frames (209) are installed on the connecting rod (208).
3. The intelligent material manufacturing equipment according to claim 2, characterized in that: A support rod is installed in the connecting frame (209), a plurality of second mixing blades (210) are rotatably installed on the support rod, and a plurality of stirring blades (211) are installed on the connecting rod (208).
4. The intelligent material manufacturing equipment according to claim 3, characterized in that: An electric motor (212) is installed on the mixing chamber (201), and the electric motor (212) is connected to the worm (204). A control valve (213) is installed under the mixing chamber (201), and a slot hole matching the control valve (213) is bored on the manufacturing equipment body (1).
5. The intelligent material manufacturing equipment according to claim 1, characterized in that: The stabilizing mechanism (3) comprises a base (301), a plurality of shock absorbers (302) are mounted on the base (301), the shock absorbers (302) are connected to the manufacturing equipment body (1), and a pair of sliding brackets (303) are fixedly mounted under the manufacturing equipment body (1).
6. The intelligent material manufacturing equipment according to claim 5, characterized in that: A hinge rod (304) is hingedly mounted on the shock absorber (302), a first spring (305) is provided on the outer cover of the shock absorber (302), and a pair of sliders (306) are slidably mounted in the sliding bracket (303).
7. The intelligent material manufacturing equipment according to claim 6, characterized in that: The other end of the hinge rod (304) is hingedly mounted on a slider (306), and a second spring (307) is mounted between a pair of sliders (306).