Sulflurane suspension homogenizing system
By designing a sucraloaluminum suspension homogenization system with quantitative pouring function and sealing mechanism, the problem of the existing system lacking quantitative ingredients is solved, and the accurate measurement and automatic homogenization of raw materials are achieved, and the operation efficiency and raw material utilization are improved.
Patent Information
- Application Number
- CN202422153061.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The existing sucralfate suspension homogenization system lacks the function of quantitative ingredients and requires additional measuring equipment to measure raw materials, which is troublesome to operate.
A sucraloaluminum suspension homogenization system including a homogenized cylinder, a liquid inlet assembly and a sealing mechanism is designed. Quantitative pouring is achieved through the scale display of the liquid inlet assembly, and the raw materials adhered to the inner wall of the liquid inlet cylinder are scraped off through the sealing mechanism to avoid waste.
The quantitative ingredients and automatic homogenization of the sucraloluminum suspension raw materials are achieved, avoiding waste of raw materials and making operation more convenient.
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Figure CN222956250U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of sucralfate suspension, in particular to a sucralfate suspension homogenization system. Background Art
[0002] Sucralfate suspension is used for chronic gastritis and relieving stomachache, heartburn (heartburn), and acid regurgitation caused by excessive gastric acid.
[0003] The authorized patent with the application number 202310269459.0, in which the sucralfate oral suspension contains sucralfate, cation exchange resin, sodium alginate, xanthan gum and preservatives. The particle size of the composite particles of sucralfate and ion exchange resin is D90 = 10 - 50μm, preferably D90 = 20 - 40μm.
[0004] When mixing and homogenizing the raw materials of sucralfate suspension, such as sodium alginate, xanthan gum and sucralfate, etc., the above - mentioned comparative document needs to use a sucralfate suspension homogenization system. However, the existing sucralfate suspension homogenization system does not have a quantitative batching function. It is necessary to separately take measuring equipment to measure the raw materials of sucralfate suspension such as sodium alginate, xanthan gum and sucralfate, and then pour them into the homogenization system, which is very troublesome.
[0005] Therefore, we make improvements on this and propose a sucralfate suspension homogenization system. Content of the Utility Model
[0006] In order to solve the above - mentioned technical problems, the utility model provides the following technical solutions:
[0007] The sucralfate suspension homogenization system of the utility model includes a homogenization cylinder. The upper end of the homogenization cylinder is fixedly installed with a liquid inlet assembly, and the lower end of the liquid inlet assembly penetrates through the upper end of the homogenization cylinder and extends into the interior of the homogenization cylinder. Four support legs are fixedly installed at the lower end of the homogenization cylinder in an annular array. A drain pipe is fixedly communicated with the middle position of the lower end surface of the homogenization cylinder, and a switch valve is installed on the drain pipe;
[0008] Among them, the liquid inlet assembly includes a liquid inlet cylinder. A liquid outlet pipe is installed at the middle position of the lower end of the liquid inlet cylinder, and a liquid outlet valve is installed on the liquid outlet pipe. The lower end of the liquid outlet pipe penetrates through the upper end of the homogenization cylinder and extends into the interior of the homogenization cylinder. A transparent observation window is fixedly installed at the front end of the liquid inlet cylinder, and a scale indication parallel to the vertical direction is set on the transparent observation window.
[0009] As a preferred technical solution of the utility model, the upper end of the liquid inlet cylinder is an open - mouth setting, and a sealing mechanism is installed at the open - mouth of the upper end of the liquid inlet cylinder.
[0010] As a preferred technical solution of the present utility model, the sealing mechanism includes a first positioning plate. There are two first positioning plates, and the two first positioning plates are symmetrically and fixedly installed at the upper edge position of the liquid inlet cylinder. A first installation through hole is opened at one end of the two first positioning plates close to each other;
[0011] A vertically arranged first installation shaft is movably inserted into the first installation through hole. The upper end of the first installation shaft is fixedly installed with a first limiting plate. The first limiting plate is attached to the upper end of the first positioning plate. The lower ends of the two first installation shafts are symmetrically and rotatably installed on the upper end of the installation plate ring. The side end face of the installation plate ring is slidably attached to the inner wall of the liquid inlet cylinder in the vertical direction.
[0012] As a preferred technical solution of the present utility model, a liquid inlet is opened at the middle position of the installation plate ring, and an installation plate is installed in the liquid inlet. A handle is fixedly installed at the middle position of the upper end face of the installation plate;
[0013] Two second positioning plates are symmetrically and fixedly installed at the upper end of the installation plate. A second installation through hole is opened at one end of the two second positioning plates away from each other. Two second installation shafts are symmetrically and rotatably installed at the upper end of the installation plate ring. The upper ends of the second installation shafts penetrate through the second installation through holes and are fixedly connected with second limiting plates. The second limiting plates are attached to the upper end faces of the second positioning plates.
[0014] As a preferred technical solution of the present utility model, a driving shaft is fixedly installed at the lower end of the liquid outlet pipe. The upper end of the liquid outlet pipe is fixedly communicated with the lower end of the liquid inlet cylinder. The liquid outlet pipe is rotationally connected to the liquid inlet cylinder through a bearing, and a sealing rubber ring is arranged between the liquid outlet pipe and the liquid inlet cylinder;
[0015] A plurality of liquid outlet holes are arranged in an annular array on the bottom side end face of the liquid outlet pipe. A plurality of homogenizing rods are fixedly installed in an annular array on the side end face of the driving shaft.
[0016] As a preferred technical solution of the present utility model, a motor is fixedly installed on the upper end face of the homogenizing cylinder. The lower end of the output shaft of the motor penetrates through the upper end of the homogenizing cylinder and is mechanically linked with the liquid outlet pipe through a driving box.
[0017] As a preferred technical solution of the present utility model, the driving box is fixedly connected to the inner wall of the homogenizing cylinder. The driving box is located above the liquid outlet hole. The liquid outlet pipe penetrates through the driving box. The lower end of the output shaft of the motor penetrates through the upper end of the driving box and extends into the interior of the driving box. Transmission wheels are fixedly sleeved on both the output shaft of the motor and the liquid outlet pipe. The two transmission wheels are connected by a transmission belt. The transmission wheels and the transmission belt are both located inside the driving box.
[0018] The beneficial effects of the present utility model are:
[0019] 1. This sucralfate suspension homogenization system can limit the installation plate ring in the vertical direction through the first limiting plate. Rotate the first limiting plate through the first installation shaft to be parallel to the first installation through - opening, and then the first limiting plate can be removed from the first installation through - opening, thus completing the separation of the installation plate ring and the first positioning plate. Then, lower the installation plate ring so that the side end face of the installation plate ring can scrape off the sucralfate suspension raw material adhering to the inner wall of the liquid inlet cylinder, avoiding waste of the sucralfate suspension raw material.
[0020] 2. This sucralfate suspension homogenization system can seal the liquid inlet through the installation plate. Rotate the second limiting plate to a position parallel to the second installation through - opening through the second installation shaft, and then lift the installation plate through the handle to separate the installation plate from the installation plate ring. Then, the staff can pour the sucralfate suspension raw material into the liquid inlet cylinder through the liquid inlet, and quantitatively pour the sucralfate suspension raw material through the scale indication on the liquid inlet cylinder, achieving the effect of quantitative batching.
[0021] 3. This sucralfate suspension homogenization system, by starting the motor, the motor can drive the liquid outlet pipe to rotate through the transmission wheel and the transmission belt, and then drive the drive shaft to rotate. The rotating drive shaft can automatically homogenize the sucralfate suspension raw material through the homogenizing rod.
[0022] The utility model can achieve automatic homogenization, and has a quantitative batching function. Moreover, during batching, it can scrape off the sucralfate suspension raw material adhering to the inner wall of the liquid inlet cylinder, avoiding waste of the sucralfate suspension raw material, and has better practicability. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The drawings are used to provide further understanding of the utility model, and constitute a part of the specification. Together with the embodiments of the utility model, they are used to explain the utility model, and do not constitute a limitation to the utility model. In the drawings:
[0024] Figure 1 is the front - side structure schematic diagram of the sucralfate suspension homogenization system of the utility model;
[0025] Figure 2 is the back - side structure schematic diagram of the sucralfate suspension homogenization system of the utility model;
[0026] Figure 3 is the structure schematic diagram of the liquid inlet assembly in the sucralfate suspension homogenization system of the utility model;
[0027] Figure 4 is the partial structure sectional view of the liquid inlet assembly in the sucralfate suspension homogenization system of the utility model;
[0028] Figure 5 is the front - side structure schematic diagram of the liquid inlet cylinder in the sucralfate suspension homogenization system of the utility model;
[0029] Figure 6 It is a side view of the partial structure of the sucralfate suspension homogenization system of the present utility model.
[0030] In the figure: 1, homogenization cylinder; 2, liquid inlet assembly; 3, drain pipe; 4, switch valve;
[0031] 201, liquid inlet cylinder; 202, mounting plate ring; 203, handle; 204, mounting plate; 205, motor; 206, drive box; 207, homogenization rod; 208, drive shaft; 209, scale indication; 210, transmission belt; 211, liquid outlet pipe; 212, first positioning plate; 213, first limiting plate; 214, first installation through hole; 215, first installation shaft. Specific embodiments
[0032] The following is a description of the preferred embodiments of the present utility model with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustration and explanation of the present utility model, and are not used to limit the present utility model.
[0033] Embodiment: As Figure 1-2 shown, the sucralfate suspension homogenization system of the present utility model includes a homogenization cylinder 1. A liquid inlet assembly 2 is fixedly installed at the upper end of the homogenization cylinder 1. The lower end of the liquid inlet assembly 2 penetrates through the upper end of the homogenization cylinder 1 and extends into the interior of the homogenization cylinder 1. Four support legs are fixedly installed at the lower end of the homogenization cylinder 1 in an annular array. A drain pipe 3 is fixedly communicated with the middle position of the lower end surface of the homogenization cylinder 1. A switch valve 4 is installed on the drain pipe 3;
[0034] Among them, as Figure 3 shown, the liquid inlet assembly 2 includes a liquid inlet cylinder 201. A liquid outlet pipe 211 is installed at the middle position of the lower end of the liquid inlet cylinder 201. A liquid outlet valve is installed on the liquid outlet pipe 211. The lower end of the liquid outlet pipe 211 penetrates through the upper end of the homogenization cylinder 1 and extends into the interior of the homogenization cylinder 1. A transparent observation window is fixedly installed at the front end of the liquid inlet cylinder 201, and a scale indication 209 parallel to the vertical direction is set on the transparent observation window.
[0035] Through the liquid inlet assembly 2, raw materials of sucralfate suspension such as sodium alginate, xanthan gum, and sucralfate can be quantitatively poured into the homogenization cylinder 1, and the homogenization cylinder 1 can homogenize and mix the raw materials of sucralfate suspension to obtain sucralfate suspension.
[0036] In this embodiment, as Figure 3-4 shown, the upper end of the liquid inlet cylinder 201 is open, and a sealing mechanism is installed at the open upper end of the liquid inlet cylinder 201.
[0037] The sealing mechanism can seal the open upper end of the liquid inlet cylinder 201, and can scrape off the raw materials of sucralfate suspension adhering to the inner wall of the liquid inlet cylinder 201.
[0038] As shown Figure 5-6 in the figure, the sealing mechanism includes a first positioning plate 212. There are two first positioning plates 212, and the two first positioning plates 212 are symmetrically and fixedly installed at the upper edge position of the liquid inlet cylinder 201. A first installation through hole 214 is opened at one end of the two first positioning plates 212 close to each other; a vertically arranged first installation shaft 215 is movably inserted into the first installation through hole 214. A first limit plate 213 is fixedly installed at the upper end of the first installation shaft 215. The first limit plate 213 is attached to the upper end of the first positioning plate 212. The lower ends of the two first installation shafts 215 are symmetrically and rotatably installed at the upper end of the installation plate ring 202. The side end face of the installation plate ring 202 is slidably attached to the inner wall of the liquid inlet cylinder 201 in the vertical direction.
[0039] The installation plate ring 202 can be limited in the vertical direction through the first limit plate 213. Rotate the first limit plate 213 through the first installation shaft 215 to be parallel to the first installation through hole 214, and then the first limit plate 213 can be moved out of the first installation through hole 214, thereby completing the separation of the installation plate ring 202 from the first positioning plate 212. Then move the installation plate ring 202 downward so that the side end face of the installation plate ring 202 can scrape off the sucralfate suspension raw material adhered to the inner wall of the liquid inlet cylinder 201.
[0040] An inlet is opened at the middle position of the installation plate ring 202, and an installation plate 204 is installed in the inlet. A sealing rubber pad is arranged between the installation plate 204 and the inlet. A handle 203 is fixedly installed at the middle position of the upper end face of the installation plate 204; two second positioning plates are symmetrically and fixedly installed at the upper end of the installation plate 204. A second installation through hole is opened at one end of the two second positioning plates away from each other. Two second installation shafts are symmetrically and rotatably installed at the upper end of the installation plate ring 202. The upper end of the second installation shaft penetrates through the second installation through hole and is fixedly connected with a second limit plate. The second limit plate is attached to the upper end face of the second positioning plate.
[0041] The inlet can be sealed through the installation plate 204. Rotate the second limit plate through the second installation shaft to a position parallel to the second installation through hole, and then lift the installation plate 204 through the handle 203 to separate the installation plate 204 from the installation plate ring 202. Then the staff can pour the sucralfate suspension raw material into the liquid inlet cylinder 201 through the inlet. The quantitative pouring of the sucralfate suspension raw material is realized through the scale indication 209 on the liquid inlet cylinder 201. Open the liquid outlet valve, and the sucralfate suspension raw material can flow into the interior of the liquid inlet cylinder 201 along the liquid outlet pipe 211 and the liquid outlet.
[0042] As shown Figure 3-4As shown, a drive shaft 208 is fixedly installed at the lower end of the liquid outlet pipe 211. The upper end of the liquid outlet pipe 211 is fixedly communicated with the lower end of the liquid inlet cylinder 201. The liquid outlet pipe 211 is rotationally connected to the liquid inlet cylinder 201 through a bearing, and a sealing rubber ring is arranged between the liquid outlet pipe 211 and the liquid inlet cylinder 201.
[0043] A plurality of liquid outlet openings are formed in a circular array on the bottom side end face of the liquid outlet pipe 211, and a plurality of homogenizing rods 207 are fixedly installed in a circular array on the side end face of the drive shaft 208.
[0044] A motor 205 is fixedly installed on the upper end face of the homogenizing cylinder 1. The lower end of the output shaft of the motor 205 penetrates through the upper end of the homogenizing cylinder 1 and is mechanically linked to the liquid outlet pipe 211 through a drive box 206.
[0045] The drive box 206 is fixedly connected to the inner wall of the homogenizing cylinder 1. The drive box 206 is located above the liquid outlet opening. The liquid outlet pipe 211 penetrates through the drive box 206. The lower end of the output shaft of the motor 205 penetrates through the upper end of the drive box 206 and extends into the interior of the drive box 206. Transmission wheels are fixedly sleeved on both the output shaft of the motor 205 and the liquid outlet pipe 211. The two transmission wheels are connected by a transmission belt 210. The transmission wheels and the transmission belt 210 are all located inside the drive box 206.
[0046] By starting the motor 205, the motor 205 can drive the liquid outlet pipe 211 to rotate through the transmission wheels and the transmission belt 210, and then drive the drive shaft 208 to rotate. The rotating drive shaft 208 can homogenize the aluminum sulfate suspension raw material through the homogenizing rods 207. After homogenization is completed, the switch valve 4 can be opened, and the aluminum sulfate suspension can flow out through the drain pipe 3.
[0047] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. Sucralfate suspension homogenization system, characterized in that: The homogenizing cylinder (1) comprises a liquid inlet assembly (2) fixedly mounted on the upper end of the homogenizing cylinder (1), and the lower end of the liquid inlet assembly (2) penetrates the upper end of the homogenizing cylinder (1) and extends into the interior of the homogenizing cylinder (1), and four supporting legs are fixedly mounted in a circular array on the lower end of the homogenizing cylinder (1), and a liquid discharge pipe (3) is fixedly connected to the middle of the lower end surface of the homogenizing cylinder (1), and a switch valve (4) is mounted on the liquid discharge pipe (3); The liquid inlet assembly (2) comprises a liquid inlet cylinder (201), a liquid outlet pipe (211) is installed at the middle of the lower end of the liquid inlet cylinder (201), a liquid outlet valve is installed on the liquid outlet pipe (211), the lower end of the liquid outlet pipe (211) passes through the upper end of the homogenizing cylinder (1) and extends to the interior of the homogenizing cylinder (1), a transparent observation window is fixedly installed at the front end of the liquid inlet cylinder (201), and a scale indication (209) arranged parallel to the vertical direction is arranged on the transparent observation window.
2. The sucralfate suspension homogenizing system according to claim 1, characterized in that: The upper end of the liquid inlet cylinder (201) is open, and a sealing mechanism is installed at the open upper end of the liquid inlet cylinder (201).
3. The sucralfate suspension homogenizing system according to claim 2, characterized in that: The sealing mechanism comprises a first positioning plate (212), wherein two first positioning plates (212) are provided, and the two first positioning plates (212) are symmetrically fixedly installed at the upper edge of the liquid inlet cylinder (201), and the two first positioning plates (212) are provided with a first installation opening (214) at one end close to each other; A vertically arranged first installation shaft (215) is movably inserted in the first installation opening (214); a first limit plate (213) is fixedly installed on the upper end of the first installation shaft (215); the first limit plate (213) is fitted on the upper end of the first positioning plate (212); the lower ends of the two first installation shafts (215) are symmetrically rotatably mounted on the upper end of the installation plate ring (202); and the side end surface of the installation plate ring (202) is slidably fitted with the inner wall of the liquid inlet cylinder (201) in the vertical direction.
4. The sucralfate suspension homogenizing system according to claim 3, characterized in that: A liquid inlet is provided in the middle of the mounting plate ring (202), and a mounting plate (204) is installed in the liquid inlet. A handle (203) is fixedly installed in the middle of the upper end surface of the mounting plate (204); Two second positioning plates are symmetrically fixedly mounted on the upper end of the mounting plate (204), and the two second positioning plates are each provided with a second mounting opening at one end away from each other. Two second mounting shafts are symmetrically rotatably mounted on the upper end of the mounting plate ring (202), and the upper ends of the second mounting shafts pass through the second mounting openings and are fixedly connected to a second limiting plate, which is fitted on the upper end surface of the second positioning plate.
5. The sucralfate suspension homogenizing system according to claim 4, characterized in that: A driving shaft (208) is fixedly mounted on the lower end of the liquid outlet pipe (211), the upper end of the liquid outlet pipe (211) is fixedly connected to the lower end of the liquid inlet cylinder (201), the liquid outlet pipe (211) is rotatably connected to the liquid inlet cylinder (201) via a bearing, and a sealing rubber ring is provided between the liquid outlet pipe (211) and the liquid inlet cylinder (201); The bottom side end surface of the liquid outlet pipe (211) is provided with a plurality of liquid outlets in a circular array, and the side end surface of the driving shaft (208) is fixedly provided with a plurality of homogenizing rods (207) in a circular array.
6. The sucralfate suspension homogenizing system according to claim 5, characterized in that: A motor (205) is fixedly mounted on the upper end surface of the homogenizing cylinder (1); the lower end of the output shaft of the motor (205) passes through the upper end of the homogenizing cylinder (1) and is mechanically linked to the liquid outlet pipe (211) through a drive box (206).
7. The sucralfate suspension homogenizing system according to claim 6, characterized in that: The drive box (206) is fixedly connected to the inner wall of the homogenizing cylinder (1); the drive box (206) is located above the liquid outlet; the liquid outlet pipe (211) passes through the drive box (206); the lower end of the output shaft of the motor (205) passes through the upper end of the drive box (206) and extends into the interior of the drive box (206); a transmission wheel is fixedly mounted on the output shaft of the motor (205) and the liquid outlet pipe (211); the two transmission wheels are connected via a transmission belt (210); and the transmission wheel and the transmission belt (210) are both located inside the drive box (206).
Citation Information
Patent Citations
Sucralfate oral suspension and preparation method thereof
CN116098863A