Glycerin production and preparation device
By designing a glycerol production and modulation device including a mixing structure, a crushing structure and a conveying structure, the problem of difficulty in efficient sampling and modulation of glycerol in the prior art is solved, and the full mixing and modulation of glycerol and the preparation material is achieved, and the production efficiency and mixing effect are improved.
Patent Information
- Application Number
- CN202421812551.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-07-30
AI Technical Summary
It is difficult for existing glycerol production and modulation devices to effectively sample glycerol in different layers at the same time instantly, resulting in inaccurate sample comparison effect and affecting production efficiency.
A glycerol production and modulation device including a mixing structure, a crushing structure and a conveying structure is designed. The mixing structure uses an asynchronous motor to drive the stirring shaft and stirring leaves to achieve full mixing of glycerol and the prepared materials. The crushing structure uses a rotating electric machine to drive the cutting edge to chop solid glycerin, and the conveying structure heats water through the heating chamber to promote contact between the glycerin and the hot water and increase the rate of mixing and melting.
Full mixing and modulation of glycerol and the prepared materials is achieved, mixing effect and production efficiency are improved, and temperature control is ensured during the glycerol preparation process.
Smart Images

Figure CN222841982U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glycerol production, in particular to a glycerol production modulation device. Background Art
[0002] Glycerin is a colorless, transparent, odorless, viscous liquid. It can be dissolved in water in any proportion and is widely used in the cosmetics industry, food industry, and pharmaceutical industry. It is often used as a moisturizer, humectant, moisture absorbent, lubricant, etc. The production and preparation of glycerin requires mixing glycerin with other substances, such as mixing it with distilled water to prepare glycerin products with different water contents.
[0003] The existing glycerin production and modulation device needs to be equipped with a sampling device to adjust and improve production efficiency. Although the existing device can sample or sample different depths in sequence, it cannot effectively sample different layers of glycerin at the same time, and the sample comparison effect is not accurate enough, which is not convenient for adjusting production effects and improving production efficiency.
[0004] For example, a glycerin production and modulation device disclosed in Chinese patent CN219424200U has a kettle body and a kettle cover arranged on the top of the kettle body, a cylinder is vertically arranged inside the kettle body, the cylinder passes through the kettle cover and is fixedly connected to it, a number of collecting bottles are evenly arranged inside the cylinder, and the several collecting bottles are fixedly connected to a strip-shaped mounting block and symmetrically arranged on both sides thereof, and the strip-shaped mounting block is matched with the cylinder for pulling and sliding; a feed pipe is arranged on the top of the collecting bottle, a discharge pipe is arranged at the bottom of the collecting bottle, and an opening and closing mechanism for controlling the simultaneous opening and closing of several feed pipe ports is arranged on the strip-shaped mounting block. Glycerin of different layers can be sampled instantly and simultaneously, the sampling is richer, detection and comparison are convenient, and it is conducive to improving production efficiency.
[0005] However, when glycerin is prepared in the prior art, since the existing stored glycerin is usually solid glycerin, the glycerin needs to be melted during the preparation process to facilitate the mixing of glycerin with other items.
[0006] For this reason we urgently need to provide a kind of glycerol production modulation device. Utility Model Content
[0007] The purpose of the utility model is to provide a glycerin production and modulation device to solve the problem that when glycerin is modulated in the prior art proposed in the above background technology, since the existing stored glycerin is usually solid glycerin, the glycerin needs to be melted during the mixing process to facilitate the mixing and modulation of glycerin with other items.
[0008] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a glycerol production and modulation device, comprising a support leg, a mixing structure is installed on the top of the support leg, a crushing structure is installed on the top of the mixing structure, and a conveying structure is connected to the left side of the mixing structure.
[0009] The mixing structure comprises a barrel body discharge unit and a mixing unit, and the mixing unit is arranged inside and on the top of the barrel body discharge unit.
[0010] The mixing unit includes an asynchronous motor, an output end of the asynchronous motor is connected to a transmission member, a stirring shaft is connected inside the transmission member, a heating tube 1 is installed inside the stirring shaft, a connector is connected to the top of the heating tube 1, a stirring blade is installed in the middle of the outer surface of the stirring shaft, an upper wheel is installed on the outer surface of the stirring shaft near the top, and a lower wheel is installed at the bottom of the stirring shaft.
[0011] Preferably, the barrel body discharge unit comprises a mixing barrel, a circular hole is opened in the middle of the bottom surface of the mixing barrel near the right end, a discharge pipe is installed inside the circular hole, and a valve is installed on the outer surface of the discharge pipe.
[0012] Preferably, the bottom surface of the asynchronous motor is detachably connected to the middle of the top surface of the mixing barrel, the outer surface of the stirring shaft is connected to the inside of the mounting hole opened in the middle of the top surface of the mixing barrel through a sealed bearing near the top, the bottom surface of the mixing barrel is fixedly connected to the top of the support leg, and the bottom surface of the connector is rotatably connected to the top of the stirring shaft. Inclined stirring blades are installed on the outer surfaces of the upper wheel and the lower wheel, and the stirring blades installed on the outer surfaces of the upper wheel and the lower wheel are installed at a mirror angle, the transmission parts are a worm and a worm wheel, the worm and the worm wheel are meshed and connected, the worm is connected to the output end of the asynchronous motor, and the inside of the worm wheel is connected to the stirring shaft.
[0013] Preferably, the crushing structure includes a feed pipe, a crushing box is installed at the top of the feed pipe, a protective cover is installed on the top of the crushing box, a feed trough is installed in the middle of the front of the crushing box, a rotating motor is installed in the middle of the right side of the crushing box, and a cutting blade is connected to the output end of the rotating motor.
[0014] Preferably, the bottom end of the feed pipe is connected to the inside of a rectangular hole opened in the middle of the top surface of the mixing barrel near the front, the feed trough is arranged at the bottom of a rectangular through hole opened in the middle of the front of the crushing box, and the cutting blade is arranged inside the crushing box. A plurality of cutting blade arrays are installed inside the crushing box,
[0015] Preferably, the conveying structure includes a water inlet pipe, the right end of the water inlet pipe is connected to a water tank, a heating chamber is installed at the bottom of the water tank, a heating tube 2 is installed inside the heating chamber, a water pump is installed on the top surface of the water tank, and the output end of the water pump is connected to the conveying pipe.
[0016] Preferably, the delivery pipe is connected to a circular hole in the middle of the left side of the outer surface of the mixing barrel near the top end at one end away from the water pump, and the water pump input end is connected to a connection hole in the middle of the top surface of the water tank near the left end through a water pipe. The water inlet pipe is connected to the water tank through the pump body at one end away from the water tank to deliver water to the inside of the water tank.
[0017] Compared with the prior art, the beneficial effects of the utility model are:
[0018] 1. The glycerin production modulation device, through the setting of the mixing structure, uses an asynchronous motor to drive the transmission part, the stirring shaft, the stirring blade, the upper wheel and the lower wheel to rotate, uses the upper wheel and the lower wheel to carry out liquid flow counter-flow, and the stirring blade has a breaking effect, so that the glycerin and the prepared materials can be fully mixed, and a heating tube is installed inside the stirring shaft to ensure the temperature during the modulation and mixing process and ensure the mixing effect.
[0019] 2. The glycerin production and modulation device, through the setting of the crushing structure and the conveying structure, uses a rotating motor to drive the cutting blade to rotate so as to chop the solid glycerin, and then uses the heating pipe 2 inside the heating bin to heat the water inside the water tank, so as to facilitate the contact between small pieces of glycerin and hot water, thereby increasing the rate of mixing and melting. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the overall structure of the appearance of the utility model;
[0021] Figure 2 It is a schematic diagram of the internal structure of the utility model;
[0022] Figure 3 This is an enlarged view of the internal structure of the crushing structure of the utility model;
[0023] Figure 4 It is an enlarged view of the internal structure of the hybrid structure of the utility model;
[0024] Figure 5 It is an enlarged view of the internal structure of the hybrid structure driving structure of the utility model;
[0025] Figure 6 It is an enlarged view of the internal structure of the conveying structure of the utility model.
[0026] In the figure: 1, supporting leg; 101, mixing barrel; 102, discharge pipe; 103, valve; 104, asynchronous motor; 105, transmission member; 106, stirring shaft; 107, heating tube 1; 108, connector; 109, stirring blade; 110, upper wheel; 111, lower wheel; 201, feeding pipe; 202, crushing box; 203, protective cover; 204, feeding trough; 205, rotating motor; 206, cutting blade; 301, water inlet pipe; 302, water tank; 303, heating bin; 304, heating tube 2; 305, water pump; 306, conveying pipe. DETAILED DESCRIPTION
[0027] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0028] See also Figure 1-Figure 6 , the utility model provides a technical solution:
[0029] Embodiment 1:
[0030] A glycerin production and modulation device comprises a support leg 1, a mixing structure is installed on the top of the support leg 1, a crushing structure is installed on the top of the mixing structure, and a conveying structure is connected to the left side of the mixing structure.
[0031] The mixing structure includes a barrel discharge unit and a mixing unit. The mixing unit is arranged inside and on the top of the barrel discharge unit. The mixing unit includes an asynchronous motor 104. The output end of the asynchronous motor 104 is connected to a transmission member 105. The transmission member 105 is connected to a stirring shaft 106. A heating tube 107 is installed inside the stirring shaft 106. A connector 108 is connected to the top of the heating tube 107. A stirring blade 109 is installed in the middle of the outer surface of the stirring shaft 106. An upper wheel 110 is installed near the top of the outer surface of the stirring shaft 106. A lower wheel 111 is installed at the bottom of the stirring shaft 106. The barrel discharge unit includes a mixing barrel 101. A circular hole is opened in the middle of the bottom surface of the mixing barrel 101 near the right end. A discharge pipe 102 is installed inside the circular hole. A valve 103 is installed on the outer surface of the discharge pipe 102.
[0032] The bottom surface of the asynchronous motor 104 is detachably connected to the middle part of the top surface of the mixing barrel 101, the outer surface of the stirring shaft 106 is connected to the inside of the mounting hole opened in the middle part of the top surface of the mixing barrel 101 through a sealed bearing near the top, the bottom surface of the mixing barrel 101 is fixedly connected to the top of the support leg 1, and the bottom surface of the connecting head 108 is rotatably connected to the top of the stirring shaft 106.
[0033] By setting up the mixing structure, the asynchronous motor 104 is used to drive the transmission member 105, the stirring shaft 106, the stirring blade 109, the upper wheel 110, and the lower wheel 111 to rotate, and the upper wheel 110 and the lower wheel 111 are used to offset the liquid flow, and the stirring blade 109 has a breaking effect, so that the glycerin and the formulated materials can be fully mixed, and a heating tube 107 is installed inside the stirring shaft 106 to ensure the temperature during the modulation and mixing process, thereby ensuring the mixing effect.
[0034] After the glycerin is crushed and a proper amount of hot water is added for modulation, the asynchronous motor 104 is started to drive the transmission member 105 for transmission, and the output end of the asynchronous motor 104 drives the worm to rotate, and the meshing connection between the worm and the worm wheel is utilized to make the worm drive the worm wheel and the stirring shaft 106 to rotate, thereby the stirring shaft 106, the stirring blade 109, the upper wheel 110, and the lower wheel 111 are used to rotate synchronously, and the stirring blades installed in a mirror image of the upper wheel 110 and the lower wheel 111 are used to form a liquid flow counter-attack, and at the same time, the stirring blade 109 installed in the middle of the stirring shaft 106 can be used to further stir the mixed liquid, and the through-hole groove opened by the stirring blade 109 can be used to break up the finely crushed glycerin solids or solid lumps in the mixed liquid, so as to achieve a better mixing effect. In the mixing process, the connector 108 is started to heat the heating tube 107, so as to ensure the temperature of the mixed liquid inside the mixing barrel 101, thereby ensuring the mixing effect of glycerin and the material.
[0035] Embodiment 2:
[0036] On the basis of the first embodiment, the crushing structure includes a feed pipe 201, a crushing box 202 is installed at the top of the feed pipe 201, a protective cover 203 is installed on the top of the crushing box 202, a feed trough 204 is installed in the middle of the front of the crushing box 202, a rotating motor 205 is installed in the middle of the right side of the crushing box 202, and a cutting blade 206 is connected to the output end of the rotating motor 205. The bottom end of the feed pipe 201 is connected to the inside of a rectangular hole opened in the middle of the top surface of the mixing barrel 101 near the front, the feed trough 204 is set at the bottom of the rectangular through hole opened in the middle of the front of the crushing box 202, and the cutting blade 206 is set inside the crushing box 202.
[0037] The delivery structure includes a water inlet pipe 301, the right end of which is connected to a water tank 302, a heating chamber 303 is installed at the bottom of the water tank 302, a heating pipe 304 is installed inside the heating chamber 303, a water pump 305 is installed on the top surface of the water tank 302, and a delivery pipe 306 is connected to the output end of the water pump 305. The delivery pipe 306 is connected to the inner part of a circular hole opened in the middle of the left side of the outer surface of the mixing barrel 101 near the top through the water pipe, and the input end of the water pump 305 is connected to the inner part of a connecting hole opened in the middle of the top surface of the water tank 302 near the left end through the water pipe.
[0038] By setting up the crushing structure and the conveying structure, the solid glycerin can be chopped by using the rotating motor 205 to drive the cutting blade 206 to rotate, and then the heating tube 2 304 inside the heating chamber 303 is used to heat the water inside the water tank 302, so that small pieces of glycerin can come into contact with hot water and increase the mixing and melting rate.
[0039] Solid glycerin is placed into the crushing box 202 through the feed trough 204, and the rotating motor 205 is started to drive the cutting blade 206 to rotate, so that the solid glycerin is chopped up to make it easier to blend and adjust. The chopped glycerin enters the mixing barrel 101 through the feed pipe 201, and water is injected into the water tank 302 through the water inlet pipe 301. Then, the heating pipe 2 304 installed in the heating chamber 303 is started to heat the water, so as to heat the water in the water tank 302. After heating, the hot water is pumped by the water pump 305 and transported into the mixing barrel 101 through the delivery pipe 306, and the hot water is used to melt the glycerin, which is convenient for the subsequent adjustment of the glycerin.
[0040] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the statement "comprise a ..." do not exclude the presence of other identical elements in the process, method, article or device including the elements.
Claims
1. A glycerol production and modulation device, comprising a support leg (1), characterized in that: A mixing structure is installed on the top of the support leg (1), a crushing structure is installed on the top of the mixing structure, and a conveying structure is connected to the left side of the mixing structure; The mixing structure includes a barrel discharge unit and a mixing unit, and the mixing unit is arranged inside and on the top of the barrel discharge unit; The mixing unit comprises an asynchronous motor (104), the output end of the asynchronous motor (104) is connected to a transmission member (105), the transmission member (105) is internally connected to a stirring shaft (106), a heating tube (107) is installed inside the stirring shaft (106), the top of the heating tube (107) is connected to a connector (108), a stirring blade (109) is installed in the middle of the outer surface of the stirring shaft (106), an upper wheel (110) is installed near the top of the outer surface of the stirring shaft (106), and a lower wheel (111) is installed at the bottom of the stirring shaft (106).
2. A glycerol production and modulation device according to claim 1, characterized in that: The barrel discharge unit comprises a mixing barrel (101), a circular hole is opened in the middle of the bottom surface of the mixing barrel (101) near the right end, a discharge pipe (102) is installed inside the circular hole, and a valve (103) is installed on the outer surface of the discharge pipe (102).
3. A glycerol production and modulation device according to claim 2, characterized in that: The bottom surface of the asynchronous motor (104) is detachably connected to the middle of the top surface of the mixing barrel (101); the outer surface of the stirring shaft (106) is connected to the inside of a mounting hole provided in the middle of the top surface of the mixing barrel (101) through a sealing bearing near the top; the bottom surface of the mixing barrel (101) is fixedly connected to the top of the supporting leg (1); and the bottom surface of the connecting head (108) is rotatably connected to the top of the stirring shaft (106).
4. A glycerol production and modulation device according to claim 1, characterized in that: The crushing structure comprises a feed pipe (201), a crushing box (202) is installed at the top of the feed pipe (201), a protective cover (203) is installed on the top of the crushing box (202), a feed trough (204) is installed in the middle of the front of the crushing box (202), a rotating motor (205) is installed in the middle of the right side of the crushing box (202), and a cutting blade (206) is connected to the output end of the rotating motor (205).
5. A glycerol production and modulation device according to claim 4, characterized in that: The bottom end of the feed pipe (201) is connected to the inside of a rectangular hole opened in the middle of the top surface of the mixing barrel (101) near the front, the feed trough (204) is arranged at the bottom of a rectangular through hole opened in the middle of the front of the crushing box (202), and the cutting blade (206) is arranged inside the crushing box (202).
6. A glycerol production and modulation device according to claim 1, characterized in that: The conveying structure comprises a water inlet pipe (301), the right end of the water inlet pipe (301) is connected to a water tank (302), a heating chamber (303) is installed at the bottom of the water tank (302), a heating pipe 2 (304) is installed inside the heating chamber (303), a water pump (305) is installed on the top surface of the water tank (302), and the output end of the water pump (305) is connected to a conveying pipe (306).
7. A glycerol production and modulation device according to claim 6, characterized in that: The delivery pipe (306) has one end away from the water pump (305) and a circular hole opened in the middle of the left side of the outer surface of the mixing barrel (101) near the top, and the input end of the water pump (305) is connected to the connection hole opened in the middle of the top surface of the water tank (302) near the left end through a water pipe.
Citation Information
Patent Citations
Glycerin production and preparation device
CN219424200U