Bottle body circulating conveying equipment
By designing a detachable bottle mold assembly and a linkage adjustment drive mechanism on the circulating transmission line, the problems of traditional fixtures being unable to be reused and having poor adaptability are solved, and the reuse of bottle mold assemblies and cost reduction are achieved.
Patent Information
- Application Number
- CN202423093200.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Traditional fixtures are difficult to reuse and lack adaptability, resulting in high production costs. When the product changes, the fixtures on the entire transmission line need to be replaced, and they cannot adapt to bottles of different sizes.
The bottle mold components are designed to be reused on the circulating transmission line. The transmission line is driven synchronously or asynchronously by the linkage adjustment drive mechanism, the spacing of the bottle mold components is adjusted, and stable clamping is achieved through the detachable connection between the base and the bottle mold clamping block structure.
The bottle mold components can be reused to adapt to different bottle sizes, which reduces production costs and improves the flexibility and stability of the transmission line.
Smart Images

Figure CN223432535U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of automatic packaging, in particular to a bottle circulation conveying device. Background Art
[0002] In recent years, an increasing number of high-end daily chemical products have adopted colorful bottles, significantly elevating the product's packaging quality and gaining popularity. Due to the unique characteristics of bottles, most are round, though some are square or triangular. During the production process, bottles are transported along conveyor lines, undergoing operations such as filling, labeling, and cork pressing. During this process, the stability of the bottles on the conveyor lines must be ensured.
[0003] The bottle body can be stabilized by setting a clamp on the transmission line. The traditional clamp is fixed on the transmission line and is transmitted along the transmission line. However, the clamp is difficult to reuse, and the traditional clamp can only be used to limit the bottle body of one size and has no adaptability. When the product changes, all the clamp structures on the transmission line need to be replaced together, which greatly increases the production cost. Utility Model Content
[0004] Purpose of the utility model: In response to the problems existing in the prior art, the utility model provides a bottle body circulating conveying equipment, which sets the bottle mold assembly on the circulating transmission line, and realizes the recycling of the bottle mold following the circulating transmission line. At the same time, the bottle mold assemblies are designed to be set on different transmission lines respectively, which can be used to adjust the position between the bottle mold assemblies and further adapt to the production of different bottled products.
[0005] Technical solution: The utility model provides a bottle body circulating conveying equipment, including a frame, on which a first circulating transmission line and a second circulating transmission line are arranged in parallel, a plurality of first bottle mold assemblies are fixed at intervals on the first circulating transmission line, and a plurality of second bottle mold assemblies are fixed at intervals on the second circulating transmission line, the first bottle mold assembly and the second bottle mold assembly are arranged opposite to each other, and the bottle body is located between the first bottle mold assembly and the second bottle mold assembly.
[0006] Furthermore, the second circulating transmission line is two conveyor belts, the first circulating transmission line is arranged between the two conveyor belts of the second circulating transmission line, the center of the first bottle mold assembly is fixed on the first circulating transmission line, and the two ends of the second bottle mold assembly are respectively fixed on the two conveyor belts of the second circulating transmission line.
[0007] Furthermore, the first and second circulating transmission lines are provided with linkage adjustment drive mechanisms, which are used to synchronously drive the first and second circulating transmission lines for transmission, and the second circulating transmission line can transmit independently and thus adjust the distance between the first bottle mold assembly and the second bottle mold assembly.
[0008] Furthermore, the linkage adjustment drive mechanism includes a drive motor, an output shaft, a linkage wheel, an adjustment wheel, a linkage driven wheel, and an adjustment driven wheel. The first circulation transmission line is arranged between the adjustment wheel and the adjustment driven wheel, and the second circulation transmission line is arranged between the linkage wheel and the linkage driven wheel; the drive motor is connected to the linkage wheel through the output shaft, and the adjustment wheel and the output shaft are rotatably connected through a bearing. A locking mechanism is also provided on the adjustment wheel for locking the adjustment wheel, the linkage wheel and the output shaft.
[0009] Furthermore, the locking mechanism includes a clamping copper ring and a locking shaft. The clamping copper ring passes through the output shaft and is fixedly arranged in the adjusting wheel, and half of it is located in the linkage wheel. A threaded through hole is provided on the clamping copper ring, and an adjusting arc groove is provided on the linkage wheel. A thread is provided on the end of the locking shaft. After the locking shaft is inserted into the adjusting arc groove, it is threadedly locked with the clamping copper ring through the threaded through hole.
[0010] Furthermore, the first bottle mold assembly and the second bottle mold assembly have the same structure, including a base and a bottle mold clamp. The base and the bottle mold clamp are detachably connected, and the base facing the bottle body matches the curved surface of one side of the bottle mold clamp and are both concave inward; a pair of the first bottle mold assembly and the second bottle mold assembly have the same structure and are centrally symmetrically arranged.
[0011] Furthermore, a slide groove is provided on the surface of the base along the length direction, and a protrusion matching the slide groove is provided at the lower end of the bottle mold clamping block, and the protrusion is plugged into the slide groove.
[0012] Furthermore, one end of the slide groove extends to the edge of one end of the base, and the other end is only opened to a position between one-half and three-quarters of the length of the base, and does not extend to the edge of the other end of the base.
[0013] Furthermore, the slide groove is a T-shaped groove.
[0014] Furthermore, at least one ball spring plunger is provided in the base, the ball spring plunger is arranged opposite to the inner surface of the slide groove and the ball at the end of the ball spring plunger protrudes from the inner surface of the slide groove, and a limiting notch is provided at the corresponding position of the convex surface and the ball spring plunger.
[0015] Furthermore, a disassembly cylinder is provided on one side of the base, and a push block is provided at the execution end of the disassembly cylinder, which is arranged along the extension direction of the slide groove and the push block is opposite to the bottle mold clamping block. When the disassembly cylinder is extended, the bottle mold clamping block is pushed away from the slide groove.
[0016] Beneficial effects
[0017] 1. The utility model discloses a circulating transmission line is established on the rack, and the bottle mould assembly is arranged on the circulating transmission line, under the action of the circulating transmission line, the bottle mould assembly realizes repeated use, and the pair of bottle mould assemblies are arranged on different transmission lines respectively, so that the distance between the pair of bottle mould assemblies can be adjusted according to the transmission direction of the transmission line.
[0018] 2. The utility model discloses that the second circulating transmission line is arranged as two transmission belts and is located at the both sides of the first circulating transmission belt, so that one bottle mould assembly is fixed on the first circulating transmission belt through the middle position of the bottle mould assembly, and the other bottle mould assembly is fixed on the two transmission belts at both ends, the stability of the pair of bottle mould assemblies is kept, and the center position of the two is guaranteed, even if the size of the bottle body changes, the center position of the pair of bottle mould assemblies can be guaranteed all the time.
[0019] 3. The utility model discloses that the first circulating transmission belt and the second circulating transmission line use only a set of driving mechanism to drive, when the bottle body needs synchronous motion to be clamped, the locking mechanism is locked to the adjusting wheel, the linkage wheel and the output shaft, and the driving motor directly drives the linkage wheel and the adjusting wheel to move together, realizes the synchronous motion of the first circulating transmission line and the second circulating transmission line, when the interval between the pair of bottle mould assemblies needs to be adjusted, the locking mechanism is not locked, and the adjusting wheel is manually rotated, drives the adjusting wheel and the first circulating transmission belt on it, so that the interval between the pair of bottle mould assemblies can be adjusted, or the driving motor drives the output shaft to rotate and drives the second circulating transmission belt on the linkage wheel to rotate, so that the interval between the pair of bottle mould assemblies can be adjusted.
[0020] 4. The utility model discloses that the locking mechanism inserts the locking shaft, and the locking shaft is directly inserted into the tight copper ring, is locked through the screw, at this time, the adjusting wheel, the linkage wheel and the tight copper ring in it are locked together, so that after the linkage wheel is rotated and drives the locking shaft to rotate, the synchronous motion of the tight copper ring and the adjusting wheel is realized. In addition, the adjusting arc groove is arranged on the linkage wheel, and the locking shaft is adjusted in the adjusting arc groove of the linkage wheel, and the length of the adjusting arc groove is the adjusting range of the interval between the pair of bottle mould assemblies.
[0021] 5. The utility model discloses that the bottle mould assembly is directly detachable connected between the bottle mould clamp block and the base, and in actual use, the base can be fixed, and the bottle mould clamp block can be disassembled for cleaning and maintenance. In addition, the arc surface of the base and the bottle mould clamp block is matched, and the base and the bottle mould clamp block jointly act when the bottle mould assembly is used, clamp the bottle body or limit the bottle body in a specific position.
[0022] 6. The utility model discloses a base and bottle mould clamp block between the design through the insertion between the slide groove and the lug, connect the base with bottle mould clamp block through the insertion, convenient to install, and also convenient when disassembling, when installing the module, directly the lug together with the bottle mould clamp block on it is inserted into the slide groove, and directly the bottle mould clamp block is taken off from the slide block when disassembling, the slide groove designs T type groove, and the lug is also T type lug, and when insertion between the both is better limit.
[0023] 7. The utility model discloses a slide groove one end extends to the base one end edge, and the other end does not extend to the base other end edge, and the purpose is to limit the position of bottle mould clamp block when installing, directly through the slide groove and insert the bottle mould clamp block into the base, and push forward until push immovably, and the requirement of installing bottle mould is greatly reduced.
[0024] 8. The utility model discloses a ball spring plunger to the lug plays the limiting action, under the action of no force, the lug is difficult to fall off from the slide groove, reduces the risk in the production process, when installing the bottle mould clamp block, directly insert through the slide groove under the action of force, when reaching the limiting position, the ball spring plunger is inserted into the limiting notch and plays a certain limiting action, when disassembling, need supplementary manpower or through the dismounting cylinder and give certain force, realize the taking down of bottle mould clamp block. DRAWINGS
[0025] Figure 1 It is the whole structure schematic diagram of the utility model bottle body circulation conveying equipment;
[0026] Figure 2 It is the first circulation transmission line, second circulation transmission line and linkage adjusting drive mechanism structure schematic diagram of the utility model bottle body circulation conveying equipment;
[0027] Figure 3 It is the section view of the utility model linkage adjusting drive mechanism;
[0028] Figure 4 It is the structure schematic diagram of the utility model linkage driven wheel and adjusting driven wheel;
[0029] Figure 5 It is the adjusting arc groove structure schematic diagram of the utility model linkage wheel;
[0030] Figure 6 It is the bottle mould assembly structure schematic diagram of the utility model;
[0031] Figure 7 It is the base structure schematic diagram of the utility model bottle mould assembly;
[0032] Figure 8 It is the bottle mould clamp block structure schematic diagram of the utility model bottle mould assembly;
[0033] Figure 9This is a schematic diagram of the disassembly cylinder structure of the bottle mold assembly of the utility model;
[0034] Figure 10 This is a schematic diagram of the position structure of the bottle clamping and disassembly cylinder of the utility model.
[0035] Among them, 1-frame, 2-first circulation transmission line, 3-second circulation transmission line, 4-first bottle mold assembly, 401-base, 402-bottle mold clamp, 403-slide, 404-bump, 405-ball spring plunger, 406-limiting notch, 407-disassembly cylinder, 408-push block, 409-chamfer, 5-second bottle mold assembly, 6-bottle body, 7-linkage adjustment drive mechanism, 701-drive motor, 702-output shaft, 703-linkage wheel, 704-adjustment wheel, 705-linkage driven wheel, 706-adjustment driven wheel, 707-holding copper ring, 708-locking shaft, 709-threaded through hole, 710-adjustment arc groove. DETAILED DESCRIPTION
[0036] The present invention will be described in detail below with reference to the accompanying drawings.
[0037] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation to the present invention.
[0038] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature specified as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of this utility model, "plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.
[0039] In this utility model, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediate medium; internal communication between two components, or interaction between two components, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0040] The utility model discloses a bottle body circulating conveying equipment, comprising a frame 1, on which a first circulating transmission line 2 and a second circulating transmission line 3 are arranged in parallel, a plurality of first bottle mold assemblies 4 are fixed at intervals on the first circulating transmission line 1, a plurality of second bottle mold assemblies 5 are fixed at intervals on the second circulating transmission line 3, the first bottle mold assemblies 4 and the second bottle mold assemblies 5 are arranged opposite to each other, and a bottle body 6 is located between the first bottle mold assemblies 4 and the second bottle mold assemblies 5.
[0041] In this embodiment, the second endless conveyor line 3 consists of two conveyor belts, and the first endless conveyor line 2 is positioned between the two conveyor belts of the second endless conveyor line 3, meaning that the three endless conveyor belts are arranged in parallel. The center of the first bottle mold assembly 4 is fixed to the first endless conveyor line 2, while the ends of the second bottle mold assembly 5 are respectively fixed to the two conveyor belts of the second endless conveyor line 3. Therefore, the second bottle mold assembly 5 can follow the movement of the two conveyor belts of the second endless conveyor line 3, and the first bottle mold assembly 4 can follow the movement of the conveyor belt of the first endless conveyor line 2.
[0042] The first and second circulating transmission lines 2 and 3 are provided with driving mechanisms, which are used to synchronously drive the first and second circulating transmission lines 2 and 3 for transmission, and are also used to asynchronously drive the first and second circulating transmission lines 2 and 3 for transmission, thereby adjusting the distance between the first bottle mold assembly 4 and the second bottle mold assembly 5.
[0043] The driving mechanism is a linkage adjustment driving mechanism 7, see Figures 2-5 The linkage adjustment drive mechanism 7 includes a drive motor 701, an output shaft 702, a linkage wheel 703, an adjustment wheel 704, a linkage driven wheel 705, and an adjustment driven wheel 706. The first circulating transmission line 2 is arranged between the adjustment wheel 703 and the adjustment driven wheel 706, and the second circulating transmission line 3 is arranged between the linkage wheel 703 and the linkage driven wheel 705. The drive motor 701 is connected to the linkage wheel 703 through the output shaft 702. The adjustment wheel 704 is connected to the output shaft 702 through a bearing. The adjustment wheel 704 is also provided with a locking mechanism for locking the adjustment wheel 704 and the output shaft 702.
[0044] The locking mechanism comprises a clamping copper ring 707 and a locking shaft 708, the clamping copper ring 707 is fixedly arranged in the adjusting wheel 704 through the output shaft 702 and is located in the linkage wheel 703, a threaded hole 709 is arranged on the clamping copper ring 707, an adjusting arc groove 710 is arranged on the linkage wheel 703, and the end of the locking shaft 708 is provided with a thread, the locking shaft 708 is inserted into the adjusting arc groove 710 of the linkage wheel 703 and then is screwed into the clamping copper ring 707 through the threaded hole 709.
[0045] The bottle mold assembly discloses by the utility model, see Figures 6-9 , including base 401, bottle mold clamping block 402, base 401 with bottle mold clamping block 402 between detachable connection, the base 401 with bottle mold clamping block 402 one side face arc surface matching and all concave inward to the bottle body 6.
[0046] In the embodiment, the base 401 and the bottle mold clamping block 402 are inserted and fixed, the surface of the base 401 is provided with a sliding groove 403 along the length direction, the lower end of the bottle mold clamping block 402 is provided with a protruding block 404 matched with the sliding groove 403, and the protruding block 404 is inserted into the sliding groove 403.
[0047] In addition, in order to limit the position of the protruding block 404 during installation, one end of the sliding groove 403 extends to the edge of one end of the base 401, and the other end is only provided to the position of one half to three quarters of the length of the base 401, and does not extend to the edge of the other end of the base 401, that is, the protruding block 404 is inserted into the sliding groove 403 from one side, and is pushed forward with force, and when the protruding block 404 cannot be pushed, it is installed in place.
[0048] In the embodiment, the sliding groove 403 is designed as a T-shaped groove, and at least one ball spring plunger 405 is arranged in the base 401, the ball spring plunger 405 is arranged opposite to the inner surface of the sliding groove 403, and the ball at the tail end of the ball spring plunger 405 protrudes from the inner surface of the sliding groove 403, a limiting slot 406 is arranged on the surface of the protruding block 404 and the corresponding position of the ball spring plunger 405, and the ball spring plungers 405 are arranged in pairs, and the ball at the tail end of the ball spring plunger 405 rolls between the bottle mold clamping block 402 when the bottle mold clamping block 402 is inserted, so that the friction is reduced.
[0049] In order to facilitate the installation of the bottle mold clamping block 402 into the base 401, the position of the base 401 corresponding to the edge of the sliding groove 403 is also provided with a chamfer 409, and the chamfer 409 plays a guiding role when the bottle mold clamping block 402 is inserted.
[0050] In order to facilitate the disassembly of the bottle mold clamping block 402, a disassembly cylinder 407 is arranged on one side of the base 401, a push block 408 is arranged on the execution end of the disassembly cylinder 407, and the push block 408 is arranged along the extension direction of the sliding groove 403 and faces the bottle mold clamping block 402.
[0051] Since one end of the slide groove 403 of the present invention extends to the edge of one end of the base 401, and the other end is only opened to the position of one-half to three-quarters of the length of the base 401, and does not extend to the edge of the other end of the base 401, the disassembly cylinder 407 of the present embodiment is designed to be extended along the direction of the slide groove 403 extending to the edge of one end of the base 401 and the push block 408 is opposite to the bottle mold clamping block 402. When disassembly is required, the disassembly cylinder 407 is extended, and the bottle mold clamping block 402 slides along the slide groove 403 under the action of force until it leaves the base 401.
[0052] Working principle:
[0053] 1. First, adjust the distance between the first bottle mold assembly 4 and the second bottle mold assembly 5. Twist the locking shaft 708 to a certain angle without removing it from the clamping copper ring 707, and release the clamping state. At this time, the adjusting wheel 704 is fixed to the clamping copper ring 707, and the clamping copper ring 707 and the linkage wheel 703 are not locked and clamped. Then, rotate the adjusting wheel 704 manually or by other means. At this time, the clamping copper ring 707 drives the locking shaft 708 on it to rotate to a certain angle. The locking shaft 708 rotates within the adjustment arc groove 710. The length of the adjustment arc groove 710 of the locking shaft 708 is the adjustable distance between the first bottle mold assembly 4 and the second bottle mold assembly 5. Alternatively, the output shaft 702 is controlled by the drive motor 701 to rotate, driving the linkage wheel 703 and the second circulating output belt thereon to move. The adjustment arc groove 710 rotates with the rotation of the linkage wheel 703. The length of the adjustment arc groove 710 is the adjustable distance between the first bottle mold assembly 4 and the second bottle mold assembly 5.
[0054] 2. After the distance adjustment is completed, the locking shaft 708 is rotated to a certain angle to lock the clamping copper ring 707 between the adjusting wheel 704 and the linkage wheel 703, so that the linkage wheel 703 can rotate with the output shaft 702. At this time, the driving motor 701 is driven to drive the linkage wheel 703 and the adjusting wheel 704 to rotate together, realizing the synchronous movement of the first circulation transmission line 2 and the second circulation transmission line 3, driving the first bottle mold assembly 4 and the second bottle mold assembly 5 on the transmission line to clamp the bottle body 6 and move. After reaching the end position of the transmission line, the bottle body 6 can be unloaded through the unloading position, and the first bottle mold assembly 4 and the second bottle mold assembly 5 continue to move with the transmission line to realize reciprocating circulation and repeated use.
[0055] This description is intended to illustrate the technical concepts and features of this utility model, and is intended to enable those familiar with the art to understand and implement the content of this utility model. It is not intended to limit the scope of protection of this utility model. Any equivalent changes or modifications based on the spirit of this utility model shall be included in the scope of protection of this utility model.
Claims
1. A bottle circulation conveying device, comprising a frame (1), characterized in that: A first circulating transmission line (2) and a second circulating transmission line (3) are arranged in parallel on the frame (1); a plurality of first bottle mold assemblies (4) are fixed at intervals on the first circulating transmission line (2); a plurality of second bottle mold assemblies (5) are fixed at intervals on the second circulating transmission line (3); the first bottle mold assemblies (4) and the second bottle mold assemblies (5) are arranged opposite to each other, and the bottle body (6) is located between the first bottle mold assembly (4) and the second bottle mold assembly (5).
2. The bottle circulation conveying equipment according to claim 1, characterized in that: The second circulating transmission line (3) comprises two conveyor belts, the first circulating transmission line (2) is arranged between the two conveyor belts of the second circulating transmission line (3), the center of the first bottle mold assembly (4) is fixed on the first circulating transmission line (2), and the two ends of the second bottle mold assembly (5) are respectively fixed on the two conveyor belts of the second circulating transmission line (3).
3. The bottle circulation conveying equipment according to claim 1, characterized in that: The first circulating transmission line (2) and the second circulating transmission line (3) are provided with a linkage adjustment drive mechanism (7), the linkage adjustment drive mechanism (7) being used to synchronously drive the first circulating transmission line (2) and the second circulating transmission line (3) to transmit, and the second circulating transmission line (3) is capable of transmitting independently and thus adjusting the distance between the first bottle mold assembly (4) and the second bottle mold assembly (5).
4. The bottle circulation conveying equipment according to claim 3, characterized in that: The linkage adjustment drive mechanism (7) comprises a drive motor (701), an output shaft (702), a linkage wheel (703), an adjustment wheel (704), a linkage driven wheel (705), and an adjustment driven wheel (706); the first circulating transmission line (2) is arranged between the adjustment wheel (704) and the adjustment driven wheel (706); and the second circulating transmission line (3) is arranged between the linkage wheel (703) and the linkage driven wheel (705); the drive motor (701) is connected to the linkage wheel (703) via the output shaft (702); the adjustment wheel (704) and the output shaft (702) are rotatably connected via a bearing; and a locking mechanism is further provided on the adjustment wheel (704) for locking the adjustment wheel (704), the linkage wheel (703), and the output shaft (702).
5. The bottle circulation conveying equipment according to claim 4, characterized in that: The locking mechanism comprises a clamping copper ring (707) and a locking shaft (708); the clamping copper ring (707) passes through the output shaft (702) and is fixedly arranged in the adjusting wheel (704), with half of it located in the linkage wheel (703); a threaded through hole (709) is provided on the clamping copper ring (707); an adjusting arc groove (710) is provided on the linkage wheel (703); a thread is provided at the end of the locking shaft (708); and the locking shaft (708) is inserted into the adjusting arc groove (710) and is thread-locked with the clamping copper ring (707) through the threaded through hole (709).
6. The bottle circulation conveying equipment according to claim 1, characterized in that: The first bottle mold assembly (4) and the second bottle mold assembly (5) have the same structure. The paired first bottle mold assembly (4) and the second bottle mold assembly (5) are centrally symmetrically arranged and comprise a base (401) and a bottle mold clamping block (402). The base (401) and the bottle mold clamping block (402) are detachably connected. The side arc surfaces of the base (401) and the bottle mold clamping block (402) facing the bottle body (6) match each other and are both concave inwards.
7. The bottle circulation conveying equipment according to claim 6, characterized in that: A slide groove (403) is provided on the surface of the base (401) along the length direction, and a protrusion (404) matching the slide groove (403) is provided at the lower end of the bottle mold clamp (402), and the protrusion (404) is plugged into the slide groove (403).
8. The bottle circulation conveying equipment according to claim 7, characterized in that: One end of the slide groove (403) extends to the edge of one end of the base (401), and the other end is opened to a position between one-half and three-quarters of the length of the base (401), and does not extend to the edge of the other end of the base (401).
9. The bottle circulation conveying equipment according to claim 7, characterized in that: At least one ball spring plunger (405) is provided in the base (401), the ball spring plunger (405) is arranged opposite to the inner surface of the slide groove (403), and the ball at the end of the ball spring plunger (405) protrudes from the inner surface of the slide groove (403), and a limiting notch (406) is provided on the surface of the protrusion (404) at a position corresponding to the ball spring plunger (405).
10. The bottle circulation conveying equipment according to claim 7 or 8, characterized in that: A disassembly cylinder (407) is further provided on one side of the base (401), and a push block (408) is provided at the execution end of the disassembly cylinder (407), which is arranged along the extension direction of the chute (403) and the push block (408) is directly opposite to the bottle mold clamping block (402). When the disassembly cylinder (407) is extended, the bottle mold clamping block (402) is pushed away from the chute (403).