Automatic reactor for preparing 2-amino adenosine

By designing an automated reactor and utilizing the coordinated operation of hydraulic structures and gear systems, the problem of low efficiency in extruding 2-aminoadenosine powder into tablets was solved, achieving a highly efficient transport and tableting process.

CN223559158UActive Publication Date: 2025-11-18JIANGSU XINDERUI PHARM TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422830928.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-11-18
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

The current production process of 2-aminoadenosine involves low efficiency in extruding the powder into tablets, making rapid tableting impossible.

Method used

An automated reactor was designed, comprising a transport structure and a rotation structure, which utilizes a hydraulic structure and a gear system to work together to achieve efficient transport and tableting of 2-aminoadenosine.

Benefits of technology

The design of an automated reactor enabled efficient transport and tableting of 2-aminoadenosine, improving production efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223559158U_ABST
    Figure CN223559158U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of 2-amino adenosine preparation, in particular to an automatic reactor for 2-amino adenosine preparation, which comprises a transmission structure and a rotating structure, the upper end of a first connecting plate in the transmission structure is connected with a second supporting rod through a bolt, and the upper end of the second supporting rod is connected with a hydraulic structure through a bolt. A hydraulic rod is movably connected into the hydraulic structure, gear racks are welded to the two sides of the hydraulic rod, the two sides of a first connecting plate in the conveying structure are hollow to form second grooves, second connecting plates in the rotating structure are connected into the second grooves through bolts, and the second connecting plates can be connected with a conveying belt through the first grooves; a conveying belt can convey-amino adenosine, the-amino adenosine can be tableted through hollow second grooves in the two sides of a first connecting plate, a second connecting plate and a hydraulic rod movably connected with the interior of a hydraulic structure, and a first half gear and a second half gear can rotate up and down through gear strips welded to the two sides of the hydraulic rod.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to 2 -amino adenosine preparation technical field, specifically is a kind of 2-amino adenosine preparation is used with automatic reactor. BACKGROUND

[0002] 2-amino adenosine is a kind of nucleoside compound. Its chemical structure is mainly composed of adenine and ribose two parts, and there is an amino group (-NH2) on the 2 carbon atom of ribose. Adenosine itself is formed by adenine (a nitrogen-containing base) connected to ribose (a five-carbon sugar) by glycosidic bond, and 2-amino adenosine is modified with amino group at specific position of ribose on this basis.

[0003] However, part of the powder of the existing 2-amino adenosine needs to be extruded into tablets during production, but the efficiency of the staff is low when extruding 2-amino adenosine into tablets, so that 2-amino adenosine cannot be quickly tableted.

[0004] Therefore, in order to solve the above problems, a kind of 2-amino adenosine preparation is used with automatic reactor is provided. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a kind of 2-amino adenosine preparation is used with automatic reactor, to solve the problem that the existing 2-amino adenosine in prior art mentioned in the above background art needs to be extruded into tablets during production, but the efficiency of the staff is low when extruding 2-amino adenosine into tablets, so that 2-amino adenosine cannot be quickly tableted.

[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of- amino adenosine preparation is used with automatic reactor, comprising: transmission structure and rotation structure, first connecting plate upper end in transmission structure is bolted with second support rod, the upper end of the second support rod is bolted with hydraulic structure, the hydraulic structure is movably connected with hydraulic rod inside, the gear strip is welded on the both sides of the hydraulic rod, the both sides of the first connecting plate in transmission structure are hollow into second recess, the second recess is bolted with the second connecting plate in rotation structure inside, the second connecting plate one side is connected with first gear using rotating rod, the first gear one side is bolted with first belt groove, the first belt groove is movably connected with first belt inside, the first belt lower end is sleeved in the second belt groove inside.

[0007] Preferably, the base inside the transmission structure is hollow into a first recess, and the first recess is bolted with a transmission belt.

[0008] Preferably, the base upper end is bolted with a first support rod, the first support rod upper end is bolted with the first connecting plate lower end, and the first connecting plate both sides are hollow into a second recess.

[0009] Preferably, the first connecting plate upper end is bolted with the second support rod, the second support rod upper end is bolted with the hydraulic structure, the hydraulic structure interior is movably connected with the hydraulic rod, the hydraulic rod two sides are welded with the gear strip, and the gear strip lower end is bolted with the hydraulic head.

[0010] Preferably, the second connecting plate one side in the rotating structure is connected with the first gear through the rotating rod, the first gear outer side is movably connected with the second gear, the second gear lower end is bolted with the first driving motor, the first gear one side is bolted with the first belt groove, the first belt groove interior is movably connected with the first belt, the first belt lower end is movably connected with the second belt groove, and the second belt groove inner side is connected with the conveying belt.

[0011] Preferably, the second gear outer side is movably connected with the first half gear, the first half gear two sides are bolted with the third support rod, the first connecting plate upper end one side in the conveying structure is bolted with the fourth support rod, the fourth support rod inner side is bolted with the second half gear, the second half gear outer side is movably connected with the third gear, and the third gear lower end is bolted with the second motor.

[0012] Preferably, the third gear outer side is movably connected with the fourth gear, the fourth gear inner side is connected with the third connecting plate through the rotating rod, the fourth gear one side is bolted with the third belt groove, the third belt groove interior is sleeved with the second belt, the second belt lower end is sleeved in the fourth belt groove, the fourth belt groove outer side is sleeved with the third belt, and the third belt one side is sleeved with the fifth belt groove.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] 1. The utility model discloses a base, first recess, conveying belt, first support rod, first connecting plate, second recess, second support rod, hydraulic structure, hydraulic rod, gear strip and hydraulic head are set up, the first recess can be connected with the conveying belt 103, the hydraulic groove is bolted on the conveying belt outer side, the 2 - amino adenosine is received and is transmitted through the hydraulic groove, the second recess hollow in the first connecting plate two sides can be connected with the second connecting plate, the hydraulic rod movably connected in the hydraulic structure can be pressed into the - amino adenosine, the gear strip welded on the hydraulic rod two sides can make the first half gear and the second half gear rotate up and down, and the - amino adenosine is pressed through the hydraulic rod up and down movement.

[0015] 2. The utility model discloses a second connecting plate, first gear, second gear, first drive motor, first belt groove, first belt, second belt groove, first half gear, third support rod, fourth support rod, second half gear, third gear, second motor, fourth gear, third connecting plate, third belt groove, second belt, fourth belt groove, third belt and fifth belt groove are provided with, and the first half gear can be rotated through the second gear of first gear outside swing joint, and the hydraulic rod can be driven to move upwards through the first half gear, and the second gear can be rotated through the first drive motor of second gear lower end connection, and first belt groove can make first belt rotate second belt groove through first gear one side connection, and the transmission belt can be made second belt groove can drive to rotate through second belt groove inside and transmission belt connection, and the second half gear can drive the hydraulic rod to move downwards when rotating through the third gear and make the second half gear rotate, and first half gear and second half gear can be supported through third support rod and fourth support rod, and fourth gear can rotate third belt groove, make second belt drive fourth belt groove to rotate in third belt groove inside, and third belt can make fifth belt groove through fourth belt groove, make transmission belt inside connection rotate fifth belt groove. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is structure perspective schematic drawing for the utility model;

[0017] Figure 2 It is structure perspective schematic drawing for the utility model rotation structure;

[0018] Figure 3 It is structure perspective schematic drawing for the utility model;

[0019] Figure 4 It is structure side view schematic drawing for the utility model;

[0020] Figure 5 It is structure perspective schematic drawing for the utility model hydraulic rod.

[0021] In the figure: 1, transmission structure; 101, base; 102, first groove; 103, transmission belt; 104, first support rod; 105, first connecting plate; 106, second groove; 107, second support rod; 108, hydraulic structure; 109, hydraulic rod; 110, gear strip; 111, hydraulic head; 2, rotating structure; 201, second connecting plate; 202, first gear; 203, second gear; 204, first drive motor; 205, first belt groove; 206, first belt; 207, second belt groove; 208, first half gear; 209, third support rod; 210, fourth support rod; 211, second half gear; 212, third gear; 213, second motor; 214, fourth gear; 215, third connecting plate; 216, third belt groove; 217, second belt; 218, fourth belt groove; 219, third belt; 220, fifth belt groove. DETAILED DESCRIPTION

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

[0023] Please refer to Figures 1-5 An embodiment provided by the utility model:

[0024] The utility model discloses an automatic reactor for 2-aminoadenosine preparation, which comprises a transmission structure 1 and a rotating structure 2, the upper end of the first connecting plate 105 in the transmission structure 1 is connected with the second support rod 107 through bolts, the upper end of the second support rod 107 is connected with the hydraulic structure 108 through bolts, the hydraulic rod 109 is movably connected in the hydraulic structure 108, gear strips 110 are welded on the two sides of the hydraulic rod 109, the two sides of the first connecting plate 105 in the transmission structure 1 are hollowed into the second grooves 106, the second connecting plate 201 in the rotating structure 2 is connected in the second grooves 106 through bolts, one side of the second connecting plate 201 is connected with the first gear 202 through a rotating rod, one side of the first gear 202 is connected with the first belt groove 205 through bolts, the first belt groove 205 is movably connected with the first belt 206, and the lower end of the first belt 206 is sleeved into the second belt groove 207.

[0025] Further, the inside of the base 101 in the transmission structure 1 is hollowed into the first grooves 102, the transmission belt 103 is connected in the first grooves 102 through bolts, the first grooves 102 are used to be connected with the transmission belt 103, the outside of the transmission belt 103 is connected with the hydraulic groove through bolts, and the hydraulic groove is used to accommodate and transmit 2-aminoadenosine.

[0026] Further, the upper end of the base 101 is bolted to the first support rod 104, the upper end of the first support rod 104 is bolted to the lower end of the first connecting plate 105, the two sides of the first connecting plate 105 are hollowed into the second groove 106, and the two sides of the first connecting plate 105 are hollowed into the second groove 106 for the second connecting plate 201.

[0027] Further, the upper end of the first connecting plate 105 is bolted to the second support rod 107, the upper end of the second support rod 107 is bolted to the hydraulic structure 108, the hydraulic rod 109 is movably connected inside the hydraulic structure 108, the gear strips 110 are welded on both sides of the hydraulic rod 109, the hydraulic head 111 is bolted to the lower end of the gear strips 110, the second support rod 107 is used to support the hydraulic structure 108, the hydraulic rod 109 movably connected inside the hydraulic structure 108 is used to compress 2-aminoadenosine tablets, and the gear strips 110 welded on both sides of the hydraulic rod 109 are used to make the first half gear 208 and the second half gear 211 rotate up and down, driving the hydraulic rod 109 to move up and down to compress 2-aminoadenosine tablets.

[0028] Further, the second connecting plate 201 in the rotating structure 2 is connected to the first gear 202 on one side through a rotating rod, the second gear 203 is movably connected outside the first gear 202, the first drive motor 204 is bolted to the lower end of the second gear 203, the first belt groove 205 is bolted to one side of the first gear 202, the first belt 206 is movably connected inside the first belt groove 205, the second belt groove 207 is movably connected to the lower end of the first belt 206, and the second belt groove 207 is connected to the transmission belt 103 on the inner side. The second gear 203 movably connected outside the first gear 202 is used to rotate the first half gear 208, the first half gear 208 is used to drive the hydraulic rod 109 to move upwards, the first drive motor 204 connected to the lower end of the second gear 203 is used to rotate the second gear 203, the first belt groove 205 connected to one side of the first gear 202 is used to make the first belt 206 rotate the second belt groove 207, and the second belt groove 207 connected to the transmission belt 103 on the inner side is used to make the second belt groove 207 drive the transmission belt 103 to rotate.

[0029] Further, the second gear 203 is movably connected with the first half gear 208, the first half gear 208 is bolted with the third support rod 209 on both sides, the fourth support rod 210 is bolted with the first connecting plate 105 on one side of the upper end, the fourth support rod 210 is bolted with the second half gear 211 on the inner side, the second half gear 211 is movably connected with the third gear 212, the third gear 212 is bolted with the second motor 213 on the lower end, the third gear 212 is used to rotate the second half gear 211 so that the second half gear 211 can drive the hydraulic rod 109 to move downward when rotating, and the third support rod 209 and the fourth support rod 210 are used to support the first half gear 208 and the second half gear 211.

[0030] Further, the third gear 212 is movably connected with the fourth gear 214, the fourth gear 214 is movably connected with the third connecting plate 215 on the inner side through the rotating rod, the fourth gear 214 is bolted with the third belt groove 216 on one side, the second belt 217 is sleeved in the third belt groove 216, the second belt 217 is sleeved in the fourth belt groove 218 on the lower end, the fourth belt groove 218 is movably connected with the third belt 219 on the outer side, the third belt 219 is movably connected with the fifth belt groove 220 on one side, and the fourth gear 214 is used to rotate the third belt groove 216 so that the second belt 217 in the third belt groove 216 drives the fourth belt groove 218 to rotate, the fourth belt groove 218 is used to drive the third belt 219 to drive the fifth belt groove 220 so that the transmission belt 213 connected with the inner side of the fifth belt groove 220 rotates.

[0031] Working principle: when using, first start the first drive motor 204 to make the first drive motor 204 rotate the upper end connected second gear 203, the second gear 203 is connected to the first half gear 208 on the rotating outside, make the first half gear 208 drive the hydraulic rod 109 to move up, when the second gear 203 rotates, the first gear 202 on the other side is also driven by the second gear 203 to rotate, the first gear 202 drives the first belt groove 205 to rotate, so that the first belt groove 205 rotates the second belt groove 207 connected with the outer side, the second belt groove 207 drives the transmission belt 103 to rotate, when the hydraulic rod 109 moves up, start the second motor 213, so that the second motor 213 rotates the third gear 212 connected with the upper end, the third gear 212 drives the second half gear 211 and the fourth gear 214 connected with both sides when rotating, the second half gear 211 drives the hydraulic rod 109 to move down when rotating, the 2-aminoadenosine placed in the hydraulic groove connected with the outside of the transmission belt 103 is pressed into a tablet, the fourth gear 214 drives the third belt groove 216 connected with one side to rotate, so that the third belt groove 216 rotates the fourth belt groove 218 connected with the lower end with the outer side, the fourth belt groove 218 drives the third belt 219 connected with the outer side to rotate when rotating, so that the third belt 219 drives the fifth belt groove 220 connected with the other side to rotate, the fifth belt groove 220 drives the transmission belt 103 connected with the inner side to rotate when rotating, so that the 2-aminoadenosine can be transmitted.

[0032] The above is only the preferred embodiment of the present application, and does not limit the present application in any form; any ordinary technical personnel in the industry can implement the present application according to the above description and the drawings; however, any equivalent changes, modifications and evolution made by the skilled in the art without departing from the technical scheme of the present application, using the above disclosed technical content, are equivalent embodiments of the present application; at the same time, any equivalent changes, modifications and evolution of the above embodiments according to the essential technology of the present application, are still within the protection scope of the technical scheme of the present application.

Claims

1. An automated reactor for 2-amino- adenosine production, comprising: Transmission structure (1) and rotating structure (2), characterized in that: the first connecting plate (105) in the transmission structure (1) is bolted to the upper end of the second support rod (107), the upper end of the second support rod (107) is bolted to the hydraulic structure (108), the hydraulic structure (108) is movably connected to the hydraulic rod (109) inside, the hydraulic rod (109) is welded to the gear strip (110) on both sides, the first connecting plate (105) in the transmission structure (1) is hollowed into the second groove (106) on both sides, the second groove (106) is bolted to the second connecting plate (201) in the rotating structure (2) inside, the second connecting plate (201) is connected to the first gear (202) on one side by a rotating rod, the first gear (202) is bolted to the first belt groove (205) on one side, the first belt groove (205) is movably connected to the first belt (206) inside, the first belt (206) is sleeved into the second belt groove (207) inside.

2. The automated reactor for the preparation of 2-amino-adenosine according to claim 1, characterized in that: The base (101) in the transmission structure (1) is hollowed into the first groove (102) inside, and the first groove (102) is bolted to the transmission belt (103) inside.

3. An automated reactor for the preparation of 2-amino- adenosine according to claim 2, characterized in that: The base (101) is bolted to the first support rod (104) on the upper end, the first support rod (104) is bolted to the lower end of the first connecting plate (105) on the upper end, and the first connecting plate (105) is hollowed into the second groove (106) on both sides.

4. The automated reactor for the preparation of 2-amino- adenosine according to claim 3, characterized by the fact that: The first connecting plate (105) is bolted to the second support rod (107) on the upper end, the hydraulic rod (109) is welded to the gear strip (110) on both sides, and the gear strip (110) is bolted to the hydraulic head (111) on the lower end.

5. The automated reactor for the preparation of 2-amino- adenosine according to claim 1, characterized by the fact that: The second connecting plate (201) in the rotating structure (2) is connected to the first gear (202) on one side by a rotating rod, the first gear (202) is movably connected to the second gear (203) outside, the second gear (203) is bolted to the first drive motor (204) on the lower end, the first belt (206) is movably connected to the second belt groove (207) on the lower end, and the second belt groove (207) is connected to the transmission belt (103) inside.

6. An automated reactor for the preparation of 2-amino- adenosine according to claim 5, characterized by the fact that: The second gear (203) is movably connected to the first half gear (208) outside, the first half gear (208) is bolted to the third support rod (209) on both sides, the first connecting plate (105) in the transmission structure (1) is bolted to the fourth support rod (210) on the upper end on one side, the fourth support rod (210) is bolted to the second half gear (211) inside, the second half gear (211) is movably connected to the third gear (212) outside, and the third gear (212) is bolted to the second motor (213) on the lower end.

7. An automated reactor for the preparation of 2-amino- adenosine according to claim 6, characterized by the fact that: The third gear (212) is movably connected with a fourth gear (214) outside, the fourth gear (214) is movably connected with a third connecting plate (215) inside through a rotating rod, the fourth gear (214) is movably connected with a third belt groove (216) inside through a bolt, the second belt (217) is sleeved into the third belt groove (216) inside, the second belt (217) is sleeved into a fourth belt groove (218) outside, the fourth belt groove (218) is movably connected with a third belt (219) outside, and the third belt (219) is movably connected with a fifth belt groove (220) inside.