Stable conveying equipment for natural perfume production

By introducing the linkage design of the limiting component and the baffle component in the conveying equipment, the bottle jam problem was solved, the automatic regularization and bottle jam prevention functions were realized, the automation level of the assembly line and the adaptability of the equipment were improved, and the breakage rate of the packaging bottles was reduced.

CN120664308AInactive Publication Date: 2025-09-19JIANGXI SIPAISI PERFUME CHEM
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Patent Information

Application Number
CN202511139791.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-14
Publication Date
2025-09-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing conveying equipment used in natural flavor production is prone to bottle jamming during the regularization process, resulting in a low degree of automation in the assembly line and difficulty in adapting to the conveying needs of packaging bottles of different specifications.

Method used

The linkage design of the limiting component and the baffle component is adopted. The channel width and the baffle position are automatically adjusted through pressure sensing. The adjustment component detects the bottle diameter to achieve automatic bottle straightening and bottle jam prevention.

Benefits of technology

It improves the automation level of the production line, reduces the downtime caused by bottle jams, enhances the versatility and conveying efficiency of the equipment, and reduces the breakage rate of packaged bottles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses stable conveying equipment based on natural perfume production, which comprises a conveying belt body and a supporting bracket for mounting the conveying belt body, a supporting block is arranged above the supporting bracket, a limiting assembly is arranged on the conveying belt body, and a baffle assembly for blocking a rear packaging bottle is arranged on the supporting bracket. A first pushing assembly is arranged between the limiting assembly and the baffle assembly, an adjusting assembly is arranged on the supporting block, and a second pushing assembly is arranged between the adjusting assembly and the limiting assembly. According to the packaging bottle conveying device, through the gradually-changing width design of the limiting assembly, the packaging bottles can be automatically guided to be conveyed in a single-line mode; when the bottles are clamped, the limiting assembly can automatically adjust the width of the channel through pressure induction, the clamped bottles are loosened and pass one by one, meanwhile, the limiting assembly is matched with the first pushing assembly to drive the baffle assembly to block the rear bottles, secondary clamping is avoided, manual intervention is not needed in the whole process, and the automation level of an assembly line is greatly improved.
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Description

Technical Field

[0001] The present invention mainly relates to the technical field of conveying equipment for spice production, and specifically relates to a stable conveying equipment for natural spice production. Background Art

[0002] In the production of natural flavors, flavorings are typically packaged in rigid glass or plastic bottles. These bottles are then transported via conveyor equipment to the next steps, such as labeling and boxing. Because subsequent steps (such as labeling) require individual bottles to be processed sequentially, conveyor equipment is required to organize the scattered bottles into a single, orderly conveyor line.

[0003] However, existing conveying equipment has significant flaws during the sorting process: because bottles are made of rigid materials and are prone to uneven spacing and positional offsets during conveyance, two or more bottles often enter the sorting channel side by side (the channel width only allows a single bottle to pass through), leading to bottle jams. Traditional processing methods rely on manual sorting or mechanical grippers to remove excess bottles, which not only interrupts the continuity of the production line and reduces production efficiency by 30%-50%, but can also cause bottle breakage due to improper operation. Furthermore, the mechanical gripper's position calibration must match the specific bottle shape, making it difficult to adapt to the conveying needs of bottles of different specifications. This poor versatility increases equipment commissioning costs. Therefore, there is an urgent need for a stable conveying device that can automatically sort, prevent bottle jams, and accommodate bottles of multiple specifications. Summary of the Invention

[0004] The technical solution of the present invention solves the technical problem proposed in the above background technology that when the existing conveying equipment transports the packaging bottles in an orderly manner to a line and a bottle is stuck, a packaging bottle is taken away by manual or mechanical grippers and placed in the front for re-transportation, resulting in a low degree of automation of the assembly line operation.

[0005] The technical solution adopted by the present invention to solve the above technical problems is: A stable conveying device for natural flavor production includes a conveyor belt body and a support bracket for mounting the conveyor belt body, a support block is provided above the support bracket, a limiting component for regularly arranging packaging bottles in a line is provided on the conveyor belt body, and the limiting component is used to prevent bottles from getting stuck during transportation, a baffle component for blocking packaging bottles at the rear is provided on the support bracket, a first pushing component is provided between the limiting component and the baffle component, an adjusting component for placing conveyed packaging bottle samples is provided on the support block, and the adjusting component is used to adjust the position of the baffle body in the limiting component and the baffle component, and a second pushing component is provided between the adjusting component and the limiting component.

[0006] Preferably, the limiting assembly includes a limiting bracket, which is hinged on a side support bracket, and a connecting bracket is slidably connected to the limiting bracket. An adjustment block is provided at one end of the connecting bracket away from the limiting bracket, and a limiting lever is provided at one end of the adjusting block away from the connecting bracket.

[0007] Preferably, a mounting bracket is fixedly mounted on the limiting bracket, an electric telescopic rod is provided on the mounting bracket, a fixing block is provided at the lower end of the electric telescopic rod, the fixing block is affixed to one side of the adjusting block, and a slope is provided on the side where the fixing block affixes to the adjusting block.

[0008] Preferably, the connecting bracket and the limiting baffle are both provided with a first connecting plate on one side close to the adjusting block, and a second connecting plate is provided on both sides of the adjusting block. A first telescopic sleeve is provided between the first connecting plate and the second connecting plate, and a first spring is provided on the first telescopic sleeve.

[0009] Preferably, the baffle assembly includes a first movable plate, the first movable plate is arranged in a hole on one side of the supporting bracket, a second piston rod is fixedly installed on one side of the first movable plate, the second piston rod is inserted into the inner cavity opened in the supporting bracket at one end away from the first movable plate, a limiting rod is provided in the hole of the supporting bracket, the first movable plate is slidably connected to the limiting rod, a second spring is sleeved on the limiting rod, a third piston rod is inserted into the inner cavity opened in the first movable plate, a third spring is sleeved on the third piston rod, and a baffle body is fixedly installed on the third piston rod.

[0010] Preferably, the first pushing assembly includes a first liquid storage tube, which is arranged on a mounting bracket, a first piston rod is inserted into one end of the first liquid storage tube, and the first piston rod is fixedly connected to the adjusting block at one end away from the first liquid storage tube, and the first liquid storage tube is connected to the inner cavity of the support bracket through a first connecting tube.

[0011] Preferably, the adjustment component includes a placement table, which is arranged on a support block, a slider is slidably connected to the support block, a clamping block is provided on the slider, a linkage rod is provided between the slider and the placement table, and a fourth piston rod is fixedly installed on one side of the slider, the fourth piston rod is inserted into the inner cavity opened on the support block, and the inner cavity opened in the support block is connected to the inner cavity of the first movable plate through a second connecting pipe.

[0012] Preferably, a second liquid storage tube is provided on the support block, a support rod is inserted into the second liquid storage tube, the support rod is fixedly connected to the bottom of the placement table at one end away from the second liquid storage tube, and a fourth spring is sleeved on the support rod and the second liquid storage tube.

[0013] Preferably, a second movable plate is provided inside the support block, a second telescopic sleeve is provided between the second movable plate and the support block, a fifth spring is provided on the second telescopic sleeve, a one-way clamping block is provided on the side of the second movable plate close to the placement table, and docking blocks are provided on both sides of the placement table close to the second movable plate, the docking blocks are fitted with the one-way clamping block, and a handle is provided on the second movable plate.

[0014] Preferably, the second pushing assembly includes a third liquid storage tube, the third liquid storage tube is arranged on the supporting bracket, a fifth piston rod is inserted into one end of the third liquid storage tube, the fifth piston rod is fixedly connected to the limiting lever at one end away from the third liquid storage tube, a sixth spring is sleeved on the fifth piston rod and the third liquid storage tube, and the third liquid storage tube is connected to the second liquid storage tube through a third connecting tube.

[0015] Compared with the existing technology, the beneficial effects of the present invention are: through the gradual width design of the limiting component, the packaging bottles can be automatically guided into single-line transportation; when a bottle is stuck, the limiting component can automatically adjust the channel width through pressure sensing, so that the stuck bottles are loosened and pass one by one, and at the same time cooperate with the first pushing component to drive the baffle component to block the bottles behind to avoid secondary jamming. No manual intervention is required throughout the process, which greatly improves the automation level of the assembly line.

[0016] The adjustment component can automatically detect the bottle diameter by placing the bottle sample, and synchronously adjust the channel width of the limiting component and the blocking position of the baffle component through the linkage structure such as the second pushing component and the connecting pipe. It can adapt to the conveying needs of bottles of different specifications without manual debugging, thereby enhancing the versatility of the equipment.

[0017] During the bottle jam processing process, the linkage response time of the limiting component and the baffle component is short, which can quickly restore the conveying order and reduce the downtime caused by bottle jams. Through the cooperation of the limiting component and the baffle component, not only the conveying efficiency can be improved, but also the bottle breakage rate can be reduced because the bottle clamping method is not used.

[0018] The present invention will be explained in detail below with reference to the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the front three-dimensional structure of the present invention; Figure 2 This is a schematic diagram of the side three-dimensional structure of the present invention; Figure 3 This is a schematic diagram of the three-dimensional structure of the present invention from a top view; Figure 4 This is a schematic diagram of the back three-dimensional structure of the present invention; Figure 5 This is a schematic diagram of the internal structure of the support block of the present invention; Figure 6 This is a schematic diagram of the cross-sectional structure of the support block of the present invention; Figure 7 This is a schematic diagram of the cross-sectional structure of the support bracket of the present invention; Figure 8 for Figure 7 A in the middle is an enlarged structural diagram; Figure 9 This is a schematic diagram of the front three-dimensional structure of the limiting bracket of the present invention; Figure 10 This is a schematic diagram of the three-dimensional structure of the back side of the limiting bracket of the present invention; Figure 11 This is a schematic cross-sectional structural diagram of the regulating block of the present invention; Figure 12 This is a schematic diagram of the cross-sectional structure of the push plate of the present invention; The following are marked in the figure: 1. Conveyor belt body; 11. Support bracket; 12. Support block; 2. Limiting assembly; 211. Limiting bracket; 212. Connecting bracket; 213. Limiting bar; 214. Adjusting block; 215. Mounting bracket; 216. First telescopic sleeve; 217. First spring; 218. First connecting plate; 219. Second connecting plate; 220. Electric telescopic rod; 221. Fixing block; 3. First pushing assembly; 31. First liquid storage tube; 32. First piston rod; 33. First connecting tube; 4. Baffle assembly; 41. First movable plate; 42. Second piston rod; 43. Limiting rod; 44. Second spring; 45. Third piston rod; 46. Third spring; 47. Baffle body; 5. Adjustment assembly; 511. Placement table; 512. Slider; 513. Clamping block; 514. Linkage rod; 515. Second liquid storage tube; 516. Support rod; 517. Fourth spring; 518. Fourth piston rod; 519. Second movable plate; 520. One-way clamping block; 521. Second telescopic sleeve; 522. Fifth spring; 523. Handle; 524. Docking block; 525. Second connecting pipe; 6. Second pushing assembly; 61. Third connecting pipe; 62. Third liquid storage pipe; 63. Fifth piston rod; 64. Sixth spring. DETAILED DESCRIPTION

[0020] To facilitate understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. Several embodiments of the present invention are given in the drawings. However, the present invention can be implemented in different forms and is not limited to the embodiments described in the text. On the contrary, these embodiments are provided to make the content disclosed in the present invention more thorough and comprehensive.

[0021] Please refer to the attached Figures 1-12 A stable conveying equipment for natural spice production includes a conveyor belt body 1 and a support bracket 11 for installing the conveyor belt body 1, a support block 12 is arranged above the support bracket 11, and a limiting component 2 for regularly arranging the packaging bottles in a line is provided on the conveyor belt body 1, and the limiting component 2 is used to prevent the packaging bottles from getting stuck during transportation, a baffle component 4 for blocking the packaging bottles at the rear is provided on the support bracket 11, a first pushing component 3 is provided between the limiting component 2 and the baffle component 4, an adjusting component 5 for placing the conveyed packaging bottle sample is provided on the support block 12, and the adjusting component 5 is used to adjust the position of the baffle body 47 in the limiting component 2 and the baffle component 4, and a second pushing component 6 is provided between the adjusting component 5 and the limiting component 2.

[0022] The specific operation process of the present invention is as follows: place the packaging bottle sample above the adjustment component 5, and clamp and fix the packaging bottle sample through the adjustment component 5. At this time, the adjustment component 5 will detect the size of the packaging bottle sample, and the adjustment component 5 adjusts the position of the baffle body 47 when clamping the packaging bottle. At the same time, the adjustment component 5 adjusts the position of the limiting component 2 through the second pushing component 6, so that only one packaging bottle can pass through the front end of the limiting component 2, so that the packaging bottles are arranged in a line; after the adjustment component 5 fixes the packaging bottle sample, the packaging bottle packaged with natural spices is transported to the conveyor belt body 1. At this time, the packaging bottle is at the widest part of the limiting component 2. As the conveyor belt body 1 transports the packaging bottle, the packaging bottle goes deep into the limiting component 2. At this time, the limiting component 2 begins to slowly narrow until it reaches only one packaging bottle. When the bottles pass through the place where only one bottle passes, the limiting component 2 will organize the bottles into a line for transportation. When two bottles are stuck side by side in the place where only one bottle passes, pressure sensors are provided at the corresponding places of the limiting component 2 and the supporting bracket 11. When both pressure sensors have sufficient pressure, it means that the two bottles are stuck side by side. At this time, the limiting component 2 will make space for the two bottles to loosen, allowing one bottle to be transported through the limiting component 2. At the same time, the limiting component 2 will push the baffle component 4 through the first adjusting component 5, and block the rear bottle through the extended baffle body. After the stuck bottle is transported away, the other bottle is pushed back to the conveying route by the limiting component 2, and the baffle component 4 will be reset. At this time, the bottle body returns to the normal conveying state.

[0023] Please refer to Figure 9 The limiting component 2 includes a limiting bracket 211, which is hinged on a side support bracket 11. A connecting bracket 212 is slidably connected to the limiting bracket 211. An adjusting block 214 is provided at one end of the connecting bracket 212 away from the limiting bracket 211, and a limiting lever 213 is provided at one end of the adjusting block 214 away from the connecting bracket 212.

[0024] The second pushing component 6 pushes the limiting block rod 213, and the limiting block rod 213 drives the limiting bracket 211 and the adjusting block 214 to move forward. The limiting bracket 211 and the supporting bracket 11 are displaced by rotation. The adjusting block 214 and the limiting bracket 211 are connected by the connecting bracket 212. The connecting bracket 212 compensates for the rotation angle adjustment position of the limiting bracket 211 by stretching. The adjusting block 214 and the limiting block rod 213 maintain linear horizontal movement. The conveyance of the packaging bottles is restricted by adjusting the distance between the limiting block rod 213 and the opposite supporting bracket 11, so that only one packaging bottle can pass through at a time when the packaging bottles move between the supporting bracket 11 and the limiting block rod 213, so that the entire packaging bottles are conveyed in one line.

[0025] Please refer to Figures 9-11 A mounting bracket 215 is fixedly installed on the limiting bracket 211, and an electric telescopic rod 220 is provided on the mounting bracket 215. A fixing block 221 is provided at the lower end of the electric telescopic rod 220, and the fixing block 221 is attached to one side of the adjusting block 214, and an inclined surface is provided on the side where the fixing block 221 and the adjusting block 214 are attached. A first connecting plate 218 is provided on the side of the connecting bracket 212 and the limiting baffle close to the adjusting block 214, and a second connecting plate 219 is provided on both sides of the adjusting block 214. A first telescopic sleeve rod 216 is provided between the first connecting plate 218 and the second connecting plate 219, and a first spring 217 is sleeved on the first telescopic sleeve rod 216.

[0026] Pressure sensors are provided at corresponding positions of the connecting bracket 212 and the supporting bracket 11 (one of the pressure sensors is provided on the inner side of the connecting bracket 212, that is, on the side for conveying the packaging bottles, and the pressure sensor on the supporting bracket 11 is provided on the opposite side of the connecting bracket 212, also on the side for conveying the packaging bottles). Two electric telescopic rods 220 are provided on the mounting bracket 215, and one pressure sensor transmits a signal to one electric telescopic rod 220. When the packaging bottles are conveyed normally without getting stuck, only one pressure sensor is subjected to pressure at a time, so that only one electric telescopic rod 220 will be retracted. However, at this time, there is still one electric telescopic rod 220 pushing the fixed block 221 to lock the adjustment block 214. When the packaging bottles are conveyed and get stuck, the two packaging bottles will press down on the two pressure sensors (because the adjustment position of the limiting component 2 is adjusted according to the diameter of the packaging bottles, and the pressure sensors always maintain the same lateral position, and the displacement changes are the spacing. Therefore, each time the limiting component 2 is adjusted, the position of the pressure sensors is when the two bottles are stuck). The two pressure sensors simultaneously transmit electrical signals to the electric telescopic rod 220. At this time, the two electric telescopic rods 220 are retracted at the same time. The two fixed blocks 221 both contact the lock of the adjustment block 214. The pressure generated by the two bottles side by side will push the adjustment block 214 backward. The adjustment block 214 makes some space. At this time, the bottles on this side of the adjustment block 214 will be squeezed into this space, allowing the bottles on the other side to be transported away first, and then the other side will be transported away. When the bottles on one side are conveyed away, the pressure on the adjusting block 214 is released, and the squeezed first spring 217 begins to rebound and reset. The first spring 217 drives the adjusting block 214 to rebound and reset and return the bottles to the conveying path for conveying. At this time, the pressure on the pressure sensor is also released, and the electric telescopic rod 220 drives the fixed block 221 to move downward. Even if the first spring 217 does not completely reset the adjusting block 214, the contact between the inclined surface of the fixed block 221 and the adjusting block 214 will push the adjusting block 214 to reset and lock the adjusting block 214 again.

[0027] Please refer to Figure 10 and Figure 12The baffle assembly 4 includes a first movable plate 41, which is arranged in a hole on one side of the support bracket 11, and a second piston rod 42 is fixedly installed on one side of the first movable plate 41. The end of the second piston rod 42 away from the first movable plate 41 is inserted into the inner cavity of the support bracket 11, and a limiting rod 43 is provided in the hole of the support bracket 11. The first movable plate 41 is slidably connected to the limiting rod 43, and a second spring 44 is sleeved on the limiting rod 43. The inner cavity opened on the first movable plate 41 is inserted with a third piston rod 45, and the third piston rod 45 is sleeved with a third spring 46, and the baffle body 47 is fixedly installed on the third piston rod 45. The first pushing assembly 3 includes a first liquid storage tube 31, which is arranged on the mounting bracket 215, and one end of the first liquid storage tube 31 is inserted with the first piston rod 32, and the end of the first piston rod 32 away from the first liquid storage tube 31 is fixedly connected to the adjusting block 214, and the first liquid storage tube 31 is connected to the inner cavity of the support bracket 11 through the first connecting tube 33.

[0028] When the adjusting block 214 moves backward, the adjusting block 214 will push the first piston rod 32 backward, and the first piston rod 32 is inserted into the inner part of the first liquid storage tube 31. The first piston rod 32 is plugged into the first liquid storage tube 31 at one end and is provided with a piston. Hydraulic oil is provided inside the first liquid storage tube 31, and the inner cavity of the support bracket 11 is also provided with hydraulic oil. The hydraulic oil in the first liquid storage tube 31 is squeezed through the first connecting pipe 33 and transported into the inner cavity of the support bracket 11. The second piston rod 42 is plugged into the inner cavity of the support bracket 11 at one end and is also provided with a piston. The hydraulic oil pushes the second piston rod 42 forward, and the second piston rod 42 drives the first movable plate 41 forward and compresses the second spring 44. The forward movement of the first movable plate 41 drives the baffle body 47 to extend out of the hole of the support bracket 11. The baffle body 47 is inserted between the conveyed bottles to block the rear bottles, so that the rear bottles cannot continue to be conveyed. When the adjusting block 214 is reset, the second spring 44 will also drive the first movable plate 41 to reset.

[0029] Please refer to Figure 5 and Figure 6 The adjusting component 5 includes a placing table 511, which is arranged on the supporting block 12, and a slider 512 is slidably connected to the supporting block 12, and a clamping block 513 is provided on the slider 512. A linkage rod 514 is provided between the slider 512 and the placing table 511, and a fourth piston rod 518 is fixedly installed on one side of the slider 512. The fourth piston rod 518 is inserted into the inner cavity opened on the supporting block 12, and the inner cavity opened in the supporting block 12 is connected to the inner cavity of the first movable plate 41 through a second connecting pipe 525. A second liquid storage tube 515 is provided on the supporting block 12, and a support rod 516 is inserted into the second liquid storage tube 515. The support rod 516 is fixedly connected to the bottom of the placing table 511 at one end away from the second liquid storage tube 515, and a fourth spring 517 is sleeved on the support rod 516 and the second liquid storage tube 515.

[0030] The bottle sample is placed on the placement table 511 and pressed up and down. The placement table 511 is hinged to one end of the linkage rod 514, and the other end of the linkage rod 514 is hinged to the slider 512. When the placement table 511 moves down, the linkage rod 514 will pull the sliders 512 on both sides to move inward, and the sliders 512 on both sides drive the clamping blocks 513 to move inward. When the clamping blocks 513 on both sides fit the two sides of the bottle, the placement table 511 and the clamping blocks 513 detect the diameter of the bottle. The fourth piston rod 518 is inserted into one end of the inner cavity of the support block 12 and a piston is provided. Hydraulic oil is provided inside the inner cavity of the support block 12 and the inner cavity of the first movable plate 41. When the slider 512 moves inward, it will pull the fourth piston rod 518 forward. At this time, the inner cavity of the support block 12 will make more space, and the third piston rod 45 is inserted into the inner cavity of the first movable plate 41 A piston is also provided inside. At this time, the hydraulic oil in the inner cavity of the first movable plate 41 can be squeezed into the inner cavity of the support block 12. Under the pull of the third spring 46, the third piston rod 45 inserts into the inner cavity of the first movable plate 41. The hydraulic oil in the inner cavity of the first movable plate 41 is transported into the inner cavity of the support block 12 through the second connecting pipe 525. The third piston rod 45 pulls the baffle body 47 forward, and detects the diameter of the packaging bottle through the clamping block 513, and then adjusts the position of the baffle body 47 so that when the baffle body 47 is extended, it can be inserted into the gap between the two packaging bottles. The end of the baffle body 47 inserted between the packaging bottles can be set to a pointed end, so that the baffle body 47 can be easily inserted between the two packaging bottles. The second connecting pipe 525 is provided with a sufficient length to allow the first movable plate 41 to be stretched when it is displaced.

[0031] Please refer to Figures 1-6 The second movable plate 519 is provided with a second movable plate 519 inside the support block 12, and a second telescopic sleeve rod 521 is provided between the second movable plate 519 and the support block 12, and a fifth spring 522 is sleeved on the second telescopic sleeve rod 521. A one-way block 520 is provided on the side of the second movable plate 519 close to the placing platform 511, and docking blocks 524 are provided on both sides of the placing platform 511 close to the second movable plate 519, and the docking blocks 524 are fitted with the one-way block 520. A handle 523 is provided on the second movable plate 519. The second pushing assembly 6 includes a third liquid storage tube 62, which is provided on the supporting bracket 11. A fifth piston rod 63 is inserted into one end of the third liquid storage tube 62. The end of the fifth piston rod 63 away from the third liquid storage tube 62 is fixedly connected to the limiting block rod 213. A sixth spring 64 is sleeved on the fifth piston rod 63 and the third liquid storage tube 62. The third liquid storage tube 62 and the second liquid storage tube 515 are connected through the third connecting tube 61.

[0032] When the placing platform 511 moves down, the placing platform 511 will drive the supporting rod 516 to insert into the inner part of the second liquid storage tube 515, and the supporting rod 516 is plugged into the second liquid storage tube 515. A piston is provided at one end of the second liquid storage tube 515. At this time, the fourth spring 517 is also compressed, and the docking blocks 524 on both sides of the placing platform 511 will continue to push the one-way clamping blocks 520 on both sides. The one-way clamping blocks 520 are set to be triangular, and the inclined surface is opened on the upper side. When the docking block 524 moves down, the docking block 524 can push the second movable plate 519 to move backward through the inclined surface of the one-way clamping block 520. At this time, the second movable plate 519 cannot lock the docking block 524 through the one-way clamping block 520. The fifth spring 522 and the second telescopic sleeve rod 521 continue to compress and stretch. When the clamping block 513 fits the two sides of the packaging bottle, the placing platform 511 can no longer press down, and the placing platform 511 is released at this time. The fourth spring 517 begins to rebound and reset without the downward pressure, but at this time the docking block 524 moves up and is fixed on the plane at the bottom of the one-way block 520. At this time, the docking block 524 can no longer push the one-way block 520 to move backward. At this time, the one-way block 520 is locked to the docking block 524, and the placement platform 511 is fixed (when unlocking is required, pull the two handles 523 outward to separate the one-way block 520 from the docking block 524, and the fourth spring 517 can drive the placement platform 511 to rise and reset). During the downward movement, the support rod 516 will squeeze the hydraulic oil in the inner cavity of the second liquid storage tube 515, and transport it into the inside of the third liquid storage tube 62 through the third connecting tube 61, and the fifth piston rod 63 is inserted into one end of the third liquid storage tube 62 and is provided with a piston. The fifth piston rod 63 is pushed forward by the hydraulic oil, and the fifth piston rod 63 pushes the limiting block 213 forward, and the sixth spring 64 is stretched.

[0033] The above description of the present invention is exemplified in conjunction with the accompanying drawings. It is obvious that the specific implementation of the present invention is not limited to the above-mentioned method. As long as such non-substantial improvements are made using the method concept and technical solution of the present invention, or the concept and technical solution of the present invention are directly applied to other occasions without improvement, they are all within the scope of protection of the present invention.

Claims

1. A stable conveying device for natural flavor production, comprising a conveyor belt body (1) and a support bracket (11) for mounting the conveyor belt body (1), wherein a support block (12) is provided above the support bracket (11), and characterized in that: The conveyor belt body (1) is provided with a limiting component (2) for arranging the packaging bottles in a line, and the limiting component (2) is used to prevent the packaging bottles from being stuck during transportation. The support bracket (11) is provided with a baffle component (4) for blocking the packaging bottles at the rear. A first pushing component (3) is provided between the limiting component (2) and the baffle component (4). The support block (12) is provided with an adjusting component (5) for placing the conveyed packaging bottle sample, and the adjusting component (5) is used to adjust the position of the baffle body (47) in the limiting component (2) and the baffle component (4). A second pushing component (6) is provided between the adjusting component (5) and the limiting component (2).

2. The stable conveying device for natural flavor production according to claim 1, characterized in that: The limiting assembly (2) comprises a limiting bracket (211), the limiting bracket (211) being hinged to a side support bracket (11), a connecting bracket (212) being slidably connected to the limiting bracket (211), an adjusting block (214) being provided at one end of the connecting bracket (212) away from the limiting bracket (211), and a limiting blocking rod (213) being provided at one end of the adjusting block (214) away from the connecting bracket (212).

3. The stable conveying device for natural flavor production according to claim 2, characterized in that: A mounting bracket (215) is fixedly mounted on the limiting bracket (211), an electric telescopic rod (220) is provided on the mounting bracket (215), a fixing block (221) is provided at the lower end of the electric telescopic rod (220), the fixing block (221) is attached to one side of the adjusting block (214), and an inclined surface is provided on the side where the fixing block (221) and the adjusting block (214) are attached.

4. The stable conveying device for natural flavor production according to claim 3, characterized in that: A first connecting plate (218) is provided on the connecting bracket (212) and the limiting baffle on a side close to the adjusting block (214), and a second connecting plate (219) is provided on both sides of the adjusting block (214). A first telescopic sleeve (216) is provided between the first connecting plate (218) and the second connecting plate (219), and a first spring (217) is sleeved on the first telescopic sleeve (216).

5. The stable conveying device for natural flavor production according to claim 4, characterized in that: The baffle assembly (4) includes a first movable plate (41), the first movable plate (41) is arranged in a hole on one side of the support bracket (11), a second piston rod (42) is fixedly installed on one side of the first movable plate (41), and the second piston rod (42) is inserted into the inner cavity of the support bracket (11) at one end away from the first movable plate (41), a limiting rod (43) is provided in the hole of the support bracket (11), the first movable plate (41) is slidably connected to the limiting rod (43), a second spring (44) is sleeved on the limiting rod (43), a third piston rod (45) is inserted into the inner cavity of the first movable plate (41), a third spring (46) is sleeved on the third piston rod (45), and a baffle body (47) is fixedly installed on the third piston rod (45).

6. The stable conveying device for natural flavor production according to claim 1, characterized in that: The first pushing assembly (3) includes a first liquid storage tube (31), the first liquid storage tube (31) is arranged on the mounting bracket (215), a first piston rod (32) is inserted into one end of the first liquid storage tube (31), and the end of the first piston rod (32) away from the first liquid storage tube (31) is fixedly connected to the adjustment block (214), and the first liquid storage tube (31) is connected to the inner cavity of the support bracket (11) through a first connecting tube (33).

7. The stable conveying device for natural flavor production according to claim 6, characterized in that: The adjustment component (5) includes a placement table (511), the placement table (511) is set on the support block (12), a slider (512) is slidably connected to the support block (12), a clamping block (513) is set on the slider (512), a linkage rod (514) is set between the slider (512) and the placement table (511), and a fourth piston rod (518) is fixedly installed on one side of the slider (512), and the fourth piston rod (518) is inserted into the inner cavity opened on the support block (12), and the inner cavity opened on the support block (12) is connected to the inner cavity of the first movable plate (41) through a second connecting pipe (525).

8. The stable conveying device for natural flavor production according to claim 7, characterized in that: A second liquid storage tube (515) is provided on the support block (12), a support rod (516) is plugged into the second liquid storage tube (515), and one end of the support rod (516) away from the second liquid storage tube (515) is fixedly connected to the bottom of the placement table (511), and a fourth spring (517) is sleeved on the support rod (516) and the second liquid storage tube (515).

9. The stable conveying device for natural flavor production according to claim 8, characterized in that: A second movable plate (519) is provided inside the support block (12), a second telescopic sleeve (521) is provided between the second movable plate (519) and the support block (12), a fifth spring (522) is sleeved on the second telescopic sleeve (521), a one-way clamping block (520) is provided on the side of the second movable plate (519) close to the placement table (511), docking blocks (524) are provided on both sides of the placement table (511) close to the second movable plate (519), the docking blocks (524) are in contact with the one-way clamping block (520), and a handle (523) is provided on the second movable plate (519).

10. The stable conveying device for natural flavor production according to claim 1, characterized in that: The second pushing assembly (6) includes a third liquid storage tube (62), the third liquid storage tube (62) is arranged on the support bracket (11), one end of the third liquid storage tube (62) is plugged with a fifth piston rod (63), the end of the fifth piston rod (63) away from the third liquid storage tube (62) is fixedly connected to the limiting block rod (213), the fifth piston rod (63) and the third liquid storage tube (62) are sleeved with a sixth spring (64), and the third liquid storage tube (62) and the second liquid storage tube (515) are connected through a third connecting tube (61).