Osteogenin tablet component detection device
By using a combination of heating coils and heat collecting blocks in the osteometer sheet detection device to provide centralized heating, the problem that osteometer sheet components are not easy to decompose in low temperature environments is solved, and more accurate and complete component analysis is achieved.
Patent Information
- Application Number
- CN202421335592.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-12
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-06-12
AI Technical Summary
The existing osteotin tablet detection device cannot effectively decompose the components of osteotin tablets under low temperature environments, resulting in incomplete component analysis and affecting the analysis effect.
An osteotin sheet composition detection device is designed, including a detection table, a console, a crucible assembly and a grinding assembly. By combining the heating coil and the heat collecting block, centralized heating is provided, allowing the crucible assembly to quickly heat and evenly heat the osteogenic sheets to ensure that its components can be completely decomposed.
By uniformly heating the osteogen tablets, the problem that its components are not easy to decompose in low temperature environments is solved, the accuracy and completeness of component analysis are improved, and the detection results are improved.
Smart Images

Figure CN223006022U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of detection devices, in particular to a detection device for the components of osteotin tablets. Background Art
[0002] Osteotin tablets are drugs used to supplement the calcium needed by the human body and help prevent osteoporosis. Its main components include various amino acids, calcium carbonate, hyaluronic acid, vitamin D3, etc. When detecting the components of osteotin tablets, corresponding detection devices are usually required to extract the components of osteotin tablets through steps such as grinding and dissolving. In the existing detection devices, during the detection process, only osteotin tablets are usually ground simply. Since some components in osteotin tablets are not easily decomposed in a low-temperature environment, it is easy to cause incomplete analysis of the components of osteotin tablets, thereby affecting the analysis effect. Therefore, we propose a detection device for the components of osteotin tablets to solve the problems raised above. Content of the Utility Model
[0003] In order to overcome the problem that in the existing detection devices, during the detection process, only osteotin tablets are usually ground simply. Since some components in osteotin tablets are not easily decomposed in a low-temperature environment, it is easy to cause incomplete analysis of the components of osteotin tablets, thereby affecting the analysis effect.
[0004] The technical solution of the utility model is: a detection device for the components of osteotin tablets, which includes a detection table, a control console, a crucible assembly and a grinding assembly; the detection table includes a table body and a support ring. A heating groove is opened at the center of the upper end of the table body. Inside the heating groove, there is a crucible assembly for containing the osteotin tablets to be detected. The crucible assembly includes a pot body and a heating base. A detection groove is opened inside the pot body. Inside the detection groove, there is a grinding assembly for grinding the osteotin tablets. The grinding assembly includes a column and an arc-shaped grinding sheet.
[0005] Preferably, through the combination of a heating coil and a heat collecting block, after the staff puts the crucible assembly into the heating groove, the heat collecting block concentrates the heat of the heating coil and supplies it to the crucible assembly, so as to quickly heat the pot body, enabling it to quickly decompose the osteotin tablets. The entire pot body is evenly heated through multiple groups of auxiliary heat conduction rings, so as to prevent the osteotin tablets in the detection groove from being incompletely decomposed due to uneven heating, thereby affecting the detection results. Through the combination of a holding handle and a limiting ring, after the decomposition of the osteotin tablets is completed, the staff can hold the holding handle to introduce the decomposed osteotin tablets in the detection groove into a spectral detector for component analysis.
[0006] Preferably, the support ring is located at the upper edge of the heating groove. A heating coil is provided at the bottom of the heating groove, and a heat collecting block is provided at the center of the heating coil. Installation grooves are provided at the upper corners of the table body, and an installation seat is provided at the front end of the table body. A connection groove is provided at the center of the connection seat. By combining the heating coil and the heat collecting block, after the crucible assembly is placed in the heating groove by the staff, the heat of the heating coil is concentrated and supplied to the crucible assembly through the heat collecting block, so that the pot body can be quickly heated, and the bone element tablets can be rapidly decomposed.
[0007] Preferably, the heating base is located at the center of the lower end of the pot body. A limiting ring is provided at the upper edge of the pot body, and multiple groups of auxiliary heat conducting rings are sleeved on the outer end of the pot body. By combining the pot body, the heating base and multiple groups of auxiliary heat conducting rings, the heating base can supply the heat of the heat collecting block transmission rod to multiple groups of auxiliary heat conducting rings, and the entire pot body is uniformly heated by multiple groups of auxiliary heat conducting rings, thereby preventing the bone element tablets in the detection groove from being incompletely decomposed due to uneven heating, which affects the detection results.
[0008] Preferably, multiple groups of auxiliary heat conducting rings are evenly distributed on the outer end of the pot body. A connection block is provided at the outer end of the limiting ring, and a holding handle is provided at the upper end of the connection block. By combining the holding handle and the limiting ring, after the decomposition of the bone element tablets is completed, the staff can hold the holding handle to introduce the decomposed bone element tablets in the detection groove into the spectroscopic detector for component analysis.
[0009] Preferably, a connection pile is provided below the column. The lower end of the connection pile extends into the installation groove. A first-level connection seat is provided at the upper end of the column, a driver is provided at the upper end of the first-level connection seat, a cross bar is provided at the outer end of the first-level connection seat, and the other end of the cross bar extends above the crucible assembly. By combining the column and the cross bar, after the connection pile is inserted into the installation groove by the column, the column and the cross bar can support and fix the entire grinding assembly.
[0010] Preferably, a transmission rod is provided below the other end of the cross bar. The lower end of the transmission rod extends into the detection groove. A second-level connection seat is provided at the lower end of the transmission rod. A rotating shaft is provided between the transmission rod and the second-level connection seat. The transmission rod and the second-level connection seat are movably connected through the rotating shaft. Multiple groups of reinforcing rods are provided around the outer end of the second-level connection seat. A fixing rod is provided at the center of the lower end of the second-level connection seat. The arc-shaped grinding sheet is located at the other end of the reinforcing rod, and the lower end of the arc-shaped grinding sheet extends to the outer end of the fixing rod. By combining the reinforcing rod and the fixing rod, the arc-shaped grinding sheet can be fixedly attached to the bottom edge of the detection chamber through the reinforcing rod and the fixing rod. The driver drives the rotating shaft to drive the arc-shaped grinding sheet to rotate, so as to grind the bone element tablets in the detection chamber.
[0011] Preferably, a digital display screen is provided on the surface of the control panel. On one side of the digital display screen, there are multiple groups of control buttons. At the rear end of the digital display screen, there is a connection block. One end of the connection block extends into the connection slot. The combination of the digital display screen and multiple groups of control buttons enables the staff to control the operation of each component through the multiple groups of control buttons, and at the same time, display the grinding data through the digital display screen.
[0012] The beneficial effects of the present utility model:
[0013] 1. Through the combination of the heating coil and the heat collecting block, after the crucible assembly is placed in the heating tank by the staff, the heat collecting block concentrates the heat of the heating coil and supplies it to the crucible assembly, so as to quickly supply heat to the pot body, enabling it to quickly decompose the osteopontin tablets. The whole pot body is evenly heated by multiple groups of auxiliary heat conduction rings, thus avoiding incomplete decomposition of the osteopontin tablets in the detection tank due to uneven heating, which affects the detection results. Through the combination of the holding handle and the limiting ring, after the decomposition of the osteopontin tablets is completed, the staff can hold the holding handle to introduce the decomposed osteopontin tablets in the detection tank into the spectral detector for component analysis.
[0014] 2. Through the combination of the vertical column and the cross bar, after the connecting pile is inserted into the installation slot by the vertical column, the vertical column and the cross bar can support and fix the whole grinding assembly. Through the combination of the strengthening rod and the fixing rod, the arc-shaped grinding sheet can be fixed to the bottom edge of the detection chamber by fitting the strengthening rod and the fixing rod. The arc-shaped grinding sheet is driven to rotate by the drive shaft driven by the driver, so as to grind the osteopontin tablets in the detection chamber. The combination of the digital display screen and multiple groups of control buttons enables the staff to control the operation of each component through the multiple groups of control buttons, and at the same time, display the grinding data through the digital display screen, solving the problem that in the existing detection device, during the detection process, usually only the osteopontin tablets are simply ground. Due to some components in the osteopontin tablets being not easily decomposed at low temperature, it is easy to cause incomplete component analysis of the osteopontin tablets, thus affecting the analysis effect. Description of the Drawings
[0015] Figure 1 It is a schematic diagram of the overall structure of the present utility model;
[0016] Figure 2 It is a schematic diagram of the detection table of the present utility model;
[0017] Figure 3 It is a schematic diagram of the detection crucible of the present utility model;
[0018] Figure 4 It is a schematic diagram of the grinding assembly of the present utility model.
[0019] Description of the reference numerals in the drawings: 1. Detection table; 101. Table body; 102. Installation groove; 103. Heating groove; 104. Support ring; 105. Heating coil; 106. Heat collecting block; 107. Mounting seat; 108. Connection groove; 2. Control console; 201. Control panel; 202. Control button; 203. Digital display screen; 3. Crucible assembly; 301. Limit ring; 302. Pot body; 303. Detection groove; 304. Auxiliary heat conduction ring; 305. Heating base; 306. Connection block; 307. Holding handle; 4. Grinding assembly; 401. Connection pile; 402. Column; 403. First-level connection seat; 404. Driver; 405. Cross bar; 406. Transmission rod; 407. Rotating shaft; 408. Second-level connection seat; 409. Reinforcing rod; 410. Arc-shaped grinding piece; 411. Fixed rod. Detailed implementation manners
[0020] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0021] Please refer to Figure 1-2 , the present utility model provides an embodiment: a device for detecting the components of osteotin tablets, including a detection table 1, a control console 2, a crucible assembly 3 and a grinding assembly 4; the detection table 1 includes a table body 101 and a support ring 104, a heating groove 103 is opened at the center of the upper end of the table body 101, and a crucible assembly 3 for containing the osteotin tablets to be detected is arranged inside the heating groove 103. The crucible assembly 3 includes a pot body 302 and a heating base 305. A detection groove 303 is opened inside the pot body 302, and a grinding assembly 4 for grinding the osteotin tablets is arranged inside the detection groove 303. The grinding assembly 4 includes a column 402 and an arc-shaped grinding piece 410.
[0022] Please continue to refer to Figure 1-2, in this embodiment, the support ring 104 is located at the upper edge of the heating tank 103. A heating coil 105 is provided at the bottom of the heating tank 103, and a heat collecting block 106 is provided at the center of the heating coil 105. Installation grooves 102 are formed at the upper corners of the table body 101, and an installation seat 107 is provided at the front end of the table body 101. A connection groove 108 is formed at the center of the connection seat. By combining the heating coil 105 and the heat collecting block 106, after the crucible assembly 3 is placed into the heating tank 103 by the staff, the heat of the heating coil 105 is concentrated and supplied to the crucible assembly 3 through the heat collecting block 106, so that the pot body 302 can be quickly heated, enabling it to rapidly decompose the bone element tablets. A digital display screen 203 is provided on the surface of the control panel 201, and a plurality of groups of control buttons 202 are provided on one side of the digital display screen 203. A connection block 306 is provided at the rear end of the digital display screen 203, and one end of the connection block 306 extends into the connection groove 108. By combining the digital display screen 203 and the plurality of groups of control buttons 202, the staff can control the operation of each component through the plurality of groups of control buttons 202, and at the same time, the grinding data is displayed through the digital display screen 203.
[0023] Please refer to Figure 1-3 , in this embodiment, the heating base 305 is located at the lower center of the pot body 302. A limiting ring 301 is provided at the upper edge of the pot body 302, and a plurality of groups of auxiliary heat conduction rings 304 are sleeved outside the pot body 302. By combining the pot body 302, the heating base 305 and the plurality of groups of auxiliary heat conduction rings 304, the heating base 305 can supply the heat of the heat collecting block 106 transmission rod 406 to the plurality of groups of auxiliary heat conduction rings 304, and the entire pot body 302 is evenly heated through the plurality of groups of auxiliary heat conduction rings 304, thereby preventing the bone element tablets in the detection tank 303 from being incompletely decomposed due to uneven heating, which affects the detection results. The plurality of groups of auxiliary heat conduction rings 304 are evenly distributed outside the pot body 302. A connection block 306 is provided at the outer end of the limiting ring 301, and a holding handle 307 is provided at the upper end of the connection block 306. By combining the holding handle 307 and the limiting ring 301, after the decomposition of the bone element tablets is completed by the staff, the decomposed bone element tablets in the detection tank 303 can be grasped by the holding handle and introduced into the spectral detector for component analysis.
[0024] Please refer to Figure 1-4, in this embodiment, a connecting pile 401 is provided below the column 402. The lower end of the connecting pile 401 extends into the interior of the installation groove 102. An upper-level connecting seat 403 is provided at the upper end of the column 402. A driver 404 is provided at the upper end of the upper-level connecting seat 403. A cross bar 405 is provided at the outer end of the upper-level connecting seat 403. The other end of the cross bar 405 extends above the crucible assembly 3. By combining the column 402 with the cross bar 405, after the connecting pile 401 is inserted into the installation groove 102 through the column 402, the column 402 and the cross bar 405 can support and fix the entire grinding assembly 4. A transmission rod 406 is provided below the other end of the cross bar 405. The lower end of the transmission rod 406 extends into the interior of the detection groove 303. A lower-level connecting seat 408 is provided at the lower end of the transmission rod 406. A rotating shaft 407 is provided between the transmission rod 406 and the lower-level connecting seat 408. The transmission rod 406 and the lower-level connecting seat 408 are movably connected through the rotating shaft 407. A plurality of groups of reinforcing rods 409 are provided around the outer end of the lower-level connecting seat 408. A fixing rod 411 is provided at the center of the lower end of the lower-level connecting seat 408. The arc-shaped grinding piece 410 is located at the other end of the reinforcing rod 409. The lower end of the arc-shaped grinding piece 410 extends to the outer end of the fixing rod 411. By combining the reinforcing rod 409 with the fixing rod 411, the arc-shaped grinding piece 410 can be fixedly attached to the bottom edge of the detection chamber through the reinforcing rod 409 and the fixing rod 411. The driver 404 drives the rotating shaft 407 to drive the arc-shaped grinding piece 410 to rotate, thereby grinding the osteoid tablets in the detection chamber.
[0025] During operation, the staff first places the pot body 302 into the heating groove 103 of the detection table 1. Then, after inserting the connecting pile 401 into the installation groove 102 through the column 402, the column 402 and the cross bar 405 can support and fix the entire grinding assembly 4. By combining the reinforcing rod 409 with the fixing rod 411, the arc-shaped grinding piece 410 can be fixedly attached to the bottom edge of the detection chamber through the reinforcing rod 409 and the fixing rod 411.
[0026] Then, a certain amount of osteoid tablets and decomposition solution are placed into the pot body 302. The heat of the heating coil 105 is concentratedly supplied to the crucible assembly 3 through the heat collecting block 106, so as to quickly supply heat to the pot body 302. Then, the heating base 305 supplies the heat of the heat collecting block 106 to a plurality of groups of auxiliary heat conducting rings 304. The entire pot body 302 is evenly heated through the plurality of groups of auxiliary heat conducting rings 304. Then, the driver 404 drives the rotating shaft 407 to drive the arc-shaped grinding piece 410 to rotate, grinding the osteoid tablets in the detection chamber and quickly decomposing the osteoid tablets.
[0027] According to the above steps, the staff first place the pot body 302 into the heating tank 103, and then insert the connecting pile 401 of the upright column 402 into the installation groove 102, so that the arc-shaped grinding piece 410 can be fixed to the bottom edge of the detection chamber by fitting with the fixing rod 411 through the reinforcing rod 409. Then, a certain amount of bone element tablets and decomposition solution are placed into the pot body 302, and the pot body 302 is quickly heated by the heat collecting block 106 and the heating coil 105, so that the heating base 305 uniformly heats the entire pot body 302 through multiple groups of auxiliary heat conduction rings 304. Then, the driver 404 drives the rotating shaft 407 to drive the arc-shaped grinding piece 410 to rotate, grinding the bone element tablets in the detection chamber, and quickly decomposing the bone element tablets.
[0028] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments, and various changes can be made without departing from the gist of the present invention within the scope of knowledge possessed by those skilled in the art.
Claims
1. A bone mineral tablet component detection device, comprising a detection table (1); characterized in that: The invention also comprises a control console (2), a crucible assembly (3) and a grinding assembly (4); the detection platform (1) comprises a platform body (101) and a support ring (104); a heating groove (103) is provided at the center of the upper end of the platform body (101); a crucible assembly (3) for containing a bone matrix to be detected is provided inside the heating groove (103); the crucible assembly (3) comprises a pot body (302) and a heating base (305); a detection groove (303) is provided inside the pot body (302); a grinding assembly (4) for grinding a bone matrix is provided inside the detection groove (303); the grinding assembly (4) comprises a column (402) and an arc-shaped grinding sheet (410).
2. A bone mineral tablet component detection device according to claim 1, characterized in that: The support ring (104) is located at the upper edge of the heating groove (103), a heating coil (105) is provided at the bottom of the heating groove (103), a heat collecting block (106) is provided at the center of the heating coil (105), a mounting groove (102) is provided at the upper corner of the platform (101), a mounting seat (107) is provided at the front end of the platform (101), and a connecting groove (108) is provided at the center of the connecting seat.
3. The bone mineral tablet component detection device according to claim 1, characterized in that: The heating base (305) is located at the center of the lower end of the pot body (302), a limiting ring (301) is provided at the upper edge of the pot body (302), and a plurality of auxiliary heat-conducting rings (304) are sleeved on the outer end of the pot body (302).
4. The bone mineral tablet component detection device according to claim 3, characterized in that: A plurality of groups of auxiliary heat-conducting rings (304) are evenly distributed on the outer end of the pot body (302); a connecting block (306) is provided on the outer end of the limiting ring (301); and a gripping handle (307) is provided on the upper end of the connecting block (306).
5. The bone mineral tablet component detection device according to claim 1, characterized in that: A connecting pile (401) is provided below the column (402), the lower end of the connecting pile (401) extends to the inside of the mounting groove (102), a primary connecting seat (403) is provided at the upper end of the column (402), a driver (404) is provided at the upper end of the primary connecting seat (403), a cross bar (405) is provided at the outer end of the primary connecting seat (403), and the other end of the cross bar (405) extends to the top of the crucible assembly (3).
6. The bone mineral tablet component detection device according to claim 1, characterized in that: A transmission rod (406) is provided below the other end of the crossbar (405), the lower end of the transmission rod (406) extends into the interior of the detection slot (303), a secondary connection seat (408) is provided at the lower end of the transmission rod (406), a rotating shaft (407) is provided between the transmission rod (406) and the secondary connection seat (408), the transmission rod (406) and the secondary connection seat (408) are movably connected via the rotating shaft (407), a plurality of groups of reinforcing rods (409) are provided around the outer end of the secondary connection seat (408), a fixing rod (411) is provided at the center of the lower end of the secondary connection seat (408), an arc-shaped grinding sheet (410) is located at the other end of the reinforcing rod (409), and the lower end of the arc-shaped grinding sheet (410) extends to the outer end of the fixing rod (411).
7. The bone mineral tablet component detection device according to claim 1, characterized in that: A digital display screen (203) is provided on the surface of the control panel (201), a plurality of control buttons (202) are provided on one side of the digital display screen (203), a connection block (306) is provided at the rear end of the digital display screen (203), and one end of the connection block (306) extends into the interior of the connection slot (108).