Seamless transition structure for entering and exiting inspection machine
By designing a seamless transition structure and utilizing a combination of longitudinal beams, chain tracks, sprockets, and chains, the problem of bottle collision damage caused by poor transition in glass bottle inspection devices was solved, achieving seamless transport and efficient inspection of glass bottles.
Patent Information
- Application Number
- CN202520713678.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-16
AI Technical Summary
Existing glass bottle detection devices have problems such as bottles getting stuck on the transition parts during the transition process, leading to collisions, knocking over, damage, or scratches, and cannot achieve a seamless transition.
Design a seamless transition structure including multiple longitudinal beams and chain tracks to achieve seamless transport of glass bottles through sprockets and chains. Utilize the seamless overlap between the sprockets and chains, combined with protective plates and guides, to ensure a smooth transition of the bottles.
This achieves seamless connection between the glass bottles and the inspection machine and conveyor line, avoiding bottle tipping and collision damage caused by uneven transition, and improving inspection efficiency and accuracy.
Smart Images

Figure CN223950105U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass bottle detection device technical field, specifically to a seamless transition structure of into and out of inspection machine. BACKGROUND
[0002] In the production process of glass bottle, in order to detect whether the finished glass bottle exists crack and other defects, the glass bottle needs to be inspected, in order to improve the inspection efficiency and the accuracy of inspection result, the prior art scheme generally adopts comprehensive inspection machine to detect the crack of glass bottle.
[0003] But the existing transition mode cannot realize seamless transition, there will be transition plate and other transition components between the transport line of bottle and the conveying line of comprehensive inspection machine, the bottle will stay in the position of transition plate, and collision and bottle falling of the next bottle are prone to occur, and the bottle body is prone to scratch and scratch. SUMMARY
[0004] In order to solve the defects in the prior art, the utility model provides a seamless transition structure of into and out of inspection machine, which is realized by the following technical scheme:
[0005] A seamless transition structure of into and out of inspection machine, comprising a first longitudinal beam, a fourth longitudinal beam, a second longitudinal beam and a third longitudinal beam fixedly connected together through a plurality of first cross beams, a third chain channel is installed between the first longitudinal beam and the fourth longitudinal beam, a first chain channel is installed between the second longitudinal beam and the third longitudinal beam, a second chain channel is installed between the first end of the second longitudinal beam and the first end of the fourth longitudinal beam, and the third chain channel and the second chain channel are seamlessly overlapped, and the second chain channel and the first chain channel are seamlessly overlapped.
[0006] A first rotating shaft is installed between the first end of the first longitudinal beam and the first end of the third longitudinal beam, a fifth sprocket and a sixth sprocket are fixedly installed on the first rotating shaft, a third rotating shaft is installed between the second end of the first longitudinal beam and the second end of the third longitudinal beam, a second sprocket and a third sprocket are fixedly installed on the third rotating shaft, the third sprocket and the fourth sprocket are connected through a first chain, and the second sprocket and the sixth sprocket are connected through a second chain, a third chain channel is installed between the first chain and the second chain, a rotatable fourth rotating shaft is further installed between the first end of the first longitudinal beam and the first end of the second longitudinal beam, the fourth rotating shaft is located on the side of the first rotating shaft close to the third rotating shaft, and a seventh sprocket is fixedly installed on the fourth rotating shaft, the seventh sprocket is connected with an eighth sprocket through a third chain, a second chain channel is fixedly installed on the third chain, and the eighth sprocket is fixedly installed on the first rotating shaft and located between the second longitudinal beam and the fourth longitudinal beam.
[0007] The first end of the first longitudinal beam and the first end of the second longitudinal beam are fixedly installed with a first protective plate for protecting the first protective plate from the third shaft.
[0008] The second longitudinal beam and the fourth longitudinal beam are fixedly installed with a second protective plate for protecting the second chain from the first shaft.
[0009] The second end of the first longitudinal beam and the second end of the second longitudinal beam are further installed with a rotatable second shaft; the second shaft is located on the side of the third shaft close to the first shaft, the fourth sprocket is fixedly installed on the second shaft, the fourth sprocket is connected with the first sprocket through the fourth chain, the fourth chain is fixedly installed on the third chain, the first sprocket is fixedly installed on the third shaft and located between the second longitudinal beam and the third longitudinal beam.
[0010] The fourth chain and the first chain are seamlessly overlapped, and the fourth chain and the third chain are seamlessly overlapped.
[0011] The third shaft is drivenly connected with the motor.
[0012] The utility model technical scheme has the following advantages:
[0013] The inspection machine conveying line and the customer conveying line are seamlessly connected, the glass bottle is smoothly transferred, and problems such as bottle overturning, collision and damage of the glass bottle caused by unsmooth bottle transition are avoided. BRIEF DESCRIPTION OF DRAWINGS
[0014] In order to more clearly illustrate the specific embodiment of the utility model or the technical scheme in the prior art, the following will briefly introduce the drawings needed to be used in the specific embodiment or the prior art description, and obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.
[0015] Figure 1 It is a structural schematic diagram of the utility model;
[0016] Figure 2 It is a top view schematic diagram of the utility model;
[0017] Figure 3 It is a bottom view schematic diagram of the utility model.
[0018] In the figure, 1 - the first longitudinal beam, 2 - the first rotating shaft, 3 - the first protective plate, 4 - the second longitudinal beam, 5 - the third longitudinal beam, 6 - the first chain channel, 7 - the second chain channel, 8 - the second protective plate, 9 - the third chain channel, 10 - the first support, 11 - the third protective plate, 12 - the first cross beam, 13 - the fourth protective plate, 14 - the motor, 15 - the speed reducer, 16 - the first sensor, 17 - the second support, 18 - the support, 19 - the second cross beam, 20 - the stud, 21 - the sleeve, 22 - the inner tube, 23 - the fourth longitudinal beam, 24 - the second rotating shaft, 25 - the first carrier roller, 26 - the third rotating shaft, 27 - the first sprocket, 28 - the second sprocket, 29 - the third sprocket, 30 - the fourth sprocket, 31 - the fifth sprocket, 32 - the sixth sprocket, 33 - the second carrier roller, 34 - the fourth rotating shaft, 35 - the seventh sprocket, 36 - the eighth sprocket, 37 - the connecting seat. DETAILED DESCRIPTION
[0019] The technical solutions of the utility model will be described clearly and completely below in combination with the drawings. Obviously, the described embodiments are 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 protection scope of the utility model.
[0020] In the description of the utility model, it should be noted that the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as limiting the utility model in indicating or implying that the modules or elements must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation of the utility model. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0021] In the description of the utility model, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0022] In addition, the technical features involved in different embodiments of the utility model described below can be combined with each other as long as they do not conflict with each other.
[0023] As shown in the accompanying drawings Figure 1As shown, the utility model provides a seamless transition structure of access to the testing machine, including mutually parallel first longitudinal beam 1, fourth longitudinal beam 23, second longitudinal beam 4, third longitudinal beam 5, and the four longitudinal beams are fixedly connected together through a plurality of first cross beams 12.
[0024] The both ends of first cross beam 12 are fixedly connected with the both ends of first longitudinal beam 1 and third longitudinal beam 5 through bolt, and fourth longitudinal beam 23 and second longitudinal beam 4 are fixedly installed on the top of first cross beam 12 through bolt.
[0025] Fourth longitudinal beam 23 is located between second longitudinal beam 4 and first longitudinal beam 1.
[0026] First end of first longitudinal beam 1 and first end of third longitudinal beam 5 are installed with first rotating shaft 2, and the both ends of first rotating shaft 2 are rotatably matched with first longitudinal beam 1 and second longitudinal beam 4 through bearing seat respectively. Figure 1 And as shown in the drawings, Figure 2 The both ends of first rotating shaft 2 are respectively out of first longitudinal beam 1 and second longitudinal beam 4, and then rotatably matched with corresponding bearing seat.
[0027] Fourth longitudinal beam 23 and third longitudinal beam 5 are located above first rotating shaft 2.
[0028] First rotating shaft 2 is fixedly installed with fifth sprocket 31 and sixth sprocket 32.
[0029] Fifth sprocket 31 and sixth sprocket 32 are located between first longitudinal beam 1 and fourth longitudinal beam 23.
[0030] Second end of first longitudinal beam 1 and second end of third longitudinal beam 5 are installed with third rotating shaft 26, and the both ends of third rotating shaft 26 are rotatably matched with first longitudinal beam 1 and second longitudinal beam 4 through bearing seat respectively. Figure 1 And as shown in the drawings, Figure 2 The both ends of third rotating shaft 26 are respectively out of first longitudinal beam 1 and second longitudinal beam 4, and then rotatably matched with corresponding bearing seat.
[0031] Third rotating shaft 26 is fixedly installed with first sprocket 27, second sprocket 28 and third sprocket 29, wherein second sprocket 28 and third sprocket 29 are located between first longitudinal beam 1 and fourth longitudinal beam 23, and first sprocket 27 is located between second longitudinal beam 4 and third longitudinal beam 5.
[0032] One end of third rotating shaft 26 is connected with the output end of speed reducer 15 through coupling after out of corresponding bearing seat, and the input end of speed reducer 15 is fixedly connected with the output end of motor 14.
[0033] In the embodiment, the first end of speed reducer 15 is fixedly installed on the first end of connecting frame through bolt, and the second end of connecting frame is fixedly installed on first longitudinal beam 1 through bolt.
[0034] The third sprocket 29 and the fourth sprocket 30 are connected by a first chain, and the second sprocket 28 and the sixth sprocket 32 are connected by a second chain.
[0035] A third chain guide 9 is installed between the first chain and the second chain.
[0036] As shown in the accompanying drawings, a fourth rotating shaft 34 is installed between the first end of the first longitudinal beam 1 and the first end of the second longitudinal beam 4. Figure 3 The fourth rotating shaft 34 is parallel to the first rotating shaft 2 and located on the side of the first rotating shaft 2 close to the third rotating shaft 26.
[0037] A seventh sprocket 35 is fixedly installed on the fourth rotating shaft 34, and the seventh sprocket 35 is connected with an eighth sprocket 36 through a third chain, and a second chain guide 7 is fixedly installed on the third chain. That is, the second chain guide 7 is installed between the first end of the second longitudinal beam 4 and the first end of the fourth longitudinal beam 23.
[0038] The eighth sprocket 36 is fixedly installed on the first rotating shaft 2 and located between the second longitudinal beam 4 and the fourth longitudinal beam 23.
[0039] As shown in the accompanying drawings, a first protective plate 3 is fixedly installed between the first end of the first longitudinal beam 1 and the first end of the second longitudinal beam 4. Figure 2 The first protective plate 3 is used to protect the second chain guide 7 and the third chain guide 9 away from the third rotating shaft 26.
[0040] A second protective plate 8 is fixedly installed between the second longitudinal beam 4 and the fourth longitudinal beam 23, and the second protective plate 8 is used to protect the second chain guide 7 away from the first rotating shaft 2.
[0041] As shown in the accompanying drawings, a second rotating shaft 24 is installed between the second end of the first longitudinal beam 1 and the second end of the second longitudinal beam 4. Figure 3 The second rotating shaft 24 is parallel to the third rotating shaft 26 and located on the side of the third rotating shaft 26 close to the first rotating shaft 2.
[0042] A fourth sprocket 30 is fixedly installed on the second rotating shaft 24, and the fourth sprocket 30 is connected with a first sprocket 27 through a fourth chain, and a fourth chain guide is fixedly installed on the third chain. That is, the fourth chain guide is installed between the second end of the second longitudinal beam 4 and the second end of the fourth longitudinal beam 23.
[0043] A fourth protective plate 13 is fixedly installed between the second end of the first longitudinal beam 1 and the second end of the second longitudinal beam 4.
[0044] A third protective plate 11 is fixedly installed between the second longitudinal beam 4 and the fourth longitudinal beam 23, and the third protective plate 11 is used to protect the fourth chain guide away from the first rotating shaft 2.
[0045] The first chain track 6 is installed between the second longitudinal beam 4 and the third longitudinal beam 5.
[0046] As shown in the accompanying drawings, two guide members are required to be installed on the second longitudinal beam 4 during use in the present embodiment, and each of the guide members is installed on the second longitudinal beam 4 through a fixing rod. Figure 2
[0047] Each of the guide members has an inclined portion, and the inclined portion is inclined from the third chain track 9 to the first chain track 6.
[0048] One of the guide members is installed on the second chain track 7 away from the first rotating shaft 2, and is used for guiding the bottle to be detected from the first chain track 6 to the third chain track 9.
[0049] The other guide member is installed on the fourth chain track away from the third rotating shaft 26, and is used for guiding the bottle to be detected from the third chain track 9 to the first chain track 6.
[0050] The second support 17 is bolted on the side of the first longitudinal beam 1 away from the fourth longitudinal beam 23, the first support 10 is bolted on the side of the fourth longitudinal beam 23 away from the first longitudinal beam 1, and the first support 10 and the second support 17 are located on the same straight line.
[0051] The first support 10 and the second support 17 are respectively used for mounting the transmitting end and the receiving end of the second sensor.
[0052] As shown in the accompanying drawings, the bottom of the first longitudinal beam 1 and the bottom of the fourth longitudinal beam 23 are bolted with the connecting seat 37, that is, the two ends of the connecting seat 37 are fixedly connected with the bottom of the first longitudinal beam 1 and the bottom of the fourth longitudinal beam 23 through bolts. Figure 1 Figure 3 The two ends of the connecting seat 37 are both installed with the first sensor 16, and the first longitudinal beam 1 and the fourth longitudinal beam 23 are both provided with through holes matched with the first sensor 16. The first sensor 16 is used for detecting the inclination of the third chain track 9.
[0053] The first end of the first longitudinal beam 1 and the first end of the third longitudinal beam 5, and the second end of the first longitudinal beam 1 and the second end of the third longitudinal beam 5 are both bolted with the third transverse beam.
[0054] The bottom of the third transverse beam is bolted with the inner tube 22, and the end of the inner tube 22 away from the third transverse beam is sleeved in the first end of the sleeve tube 21.
[0055] The bottom of the third transverse beam is bolted with the inner tube 22, and the end of the inner tube 22 away from the third transverse beam is sleeved in the first end of the sleeve tube 21.
[0056] The inner tube 22 is provided with a first limiting hole, the sleeve 21 is provided with a second limiting hole matched with the first limiting hole, and the first limiting hole and the second limiting hole are connected through a limiting bolt, that is, the limiting bolt penetrates the inner tube 22 and the sleeve 21.
[0057] The bottom of the sleeve 21 is fixedly connected with the middle position of the top of the second cross beam 19. The two ends of the second cross beam 19 are provided with third limiting holes, a stud 20 is installed in the third limiting hole, and two nuts are installed on the stud 20; the two nuts are respectively located at the top and the bottom of the second cross beam 19 and abut against the second cross beam 19.
[0058] The bottom of the stud 20 is fixedly installed with a support 18.
[0059] The adjacent two chain tracks are seamlessly overlapped.
[0060] In the embodiment, the first chain track 6 is a production line chain track, and the second chain track 7, the third chain track 9 and the fourth chain track are detection machine chain tracks.
[0061] A plurality of second supporting rollers 33 supporting the first chain track 6 are installed between the second longitudinal beam 4 and the third longitudinal beam 5; a plurality of first supporting rollers 25 supporting the second chain track 7 and the fourth chain track are installed between the second longitudinal beam 4 and the fourth longitudinal beam 23; and a plurality of third supporting rollers supporting the third chain track 9 are installed between the fourth longitudinal beam 23 and the first longitudinal beam 1.
[0062] Obviously, the above embodiment is only an example for clearly illustrating, and does not limit the implementation. For ordinary skilled in the art, other different forms of changes or variations can be made on the basis of the above description. Here, all the implementation is not required and cannot be exhausted. The obvious changes or variations derived therefrom are still within the protection scope of the utility model.
Claims
1. A seamless transition structure into and out of an inspection machine, characterized by: The first longitudinal beam (1), the fourth longitudinal beam (23), the second longitudinal beam (4) and the third longitudinal beam (5) are fixedly connected together by a plurality of first cross beams (12), a third chain track (9) is installed between the first longitudinal beam (1) and the fourth longitudinal beam (23), a first chain track (6) is installed between the second longitudinal beam (4) and the third longitudinal beam (5), and a second chain track (7) is installed between the first end of the second longitudinal beam (4) and the first end of the fourth longitudinal beam (23), and the third chain track (9) and the second chain track (7) and the first chain track (6) are seamlessly overlapped.
2. The seamless transition to and from an inspection machine of claim 1, wherein: A first rotating shaft (2) is installed between the first end of the first longitudinal beam (1) and the first end of the third longitudinal beam (5), a fifth sprocket (31) and a sixth sprocket (32) are fixedly installed on the first rotating shaft (2), a third rotating shaft (26) is installed between the second end of the first longitudinal beam (1) and the second end of the third longitudinal beam (5), a second sprocket (28) and a third sprocket (29) are fixedly installed on the third rotating shaft (26), the third sprocket (29) and a fourth sprocket (30) are connected by a first chain, the second sprocket (28) and the sixth sprocket (32) are connected by a second chain, a third chain track (9) is installed between the first chain and the second chain, a rotatable fourth rotating shaft (34) is further installed between the first end of the first longitudinal beam (1) and the first end of the second longitudinal beam (4), the fourth rotating shaft (34) is located on the side of the first rotating shaft (2) close to the third rotating shaft (26) and is fixedly installed with a seventh sprocket (35), the seventh sprocket (35) is connected with an eighth sprocket (36) through a third chain, the second chain track (7) is fixedly installed on the third chain, the eighth sprocket (36) is fixedly installed on the first rotating shaft (2) and is located between the second longitudinal beam (4) and the fourth longitudinal beam (23).
3. The seamless transition to and from an inspection machine of claim 2, wherein: A first protective plate (3) is fixedly installed between the first end of the first longitudinal beam (1) and the first end of the second longitudinal beam (4) for protecting one end of the second chain track (7) and the third chain track (9) away from the third rotating shaft (26).
4. The seamless transition to and from an inspection machine of claim 3, wherein: A second protective plate (8) is fixedly installed between the second longitudinal beam (4) and the fourth longitudinal beam (23) for protecting one end of the second chain track (7) away from the first rotating shaft (2).
5. The seamless transition to and from an inspection machine of claim 4, wherein: A rotatable second rotating shaft (24) is further installed between the second end of the first longitudinal beam (1) and the second end of the second longitudinal beam (4), the second rotating shaft (24) is located on the side of the third rotating shaft (26) close to the first rotating shaft (2), a fourth sprocket (30) is fixedly installed on the second rotating shaft (24), the fourth sprocket (30) is connected with a first sprocket (27) through a fourth chain, the fourth chain track is fixedly installed on the third chain, the first sprocket (27) is fixedly installed on the third rotating shaft (26) and is located between the second longitudinal beam (4) and the third longitudinal beam (5).
6. The seamless transition to and from an inspection machine of claim 5, wherein: The fourth chain track and the first chain track (6) and the fourth chain track and the third chain track (9) are seamlessly overlapped.
7. The seamless transition to and from an inspection machine of claim 6, wherein: The third rotating shaft (26) is drivingly connected with a motor (14).