A rotary pushing device based on lightweight glass bottle and can annealing
By using the alternating support technology of the rotary pushing device, the problem of frictional deformation of glass bottles under temperature differences is solved, realizing efficient and damage-free glass bottle transfer, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202510811821.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-18
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2045-06-18
AI Technical Summary
In the existing technology, during the transfer of freshly blown glass bottles from the mold to the metal conveyor belt, the temperature difference causes the bottom to rub against the platform and the conveyor belt, which can easily cause slight deformation and affect product quality.
By employing an alternating support method, a rotary pushing device driven by a hydraulic component is placed directly on a metal transmission belt to support the glass bottle. Through the cooperation of hydraulic channels and sliding parts, the glass bottle is alternately supported, reducing the friction distance.
This solution addresses the issue of frictional deformation at the bottom of glass bottles, improves production efficiency, ensures that glass bottles are not damaged during heat treatment, and enhances product quality.
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Figure CN120309162B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of blown glass production, and particularly relates to a rotary pushing device based on light-weight glass bottle annealing. BACKGROUND
[0002] Glass bottles belong to light-weight glass, and in the production process, first, raw materials are put into a crucible kiln, and after being heated and melted, the raw materials are converted into uniform and bubble-free liquid glass to meet the subsequent forming requirements; then, through specific forming technology, the uniform and bubble-free liquid glass is put into a mold to be converted into a glass bottle product of a required shape; then, the glass bottle product is taken out from the mold horizontally and vertically, and is placed on a rotating pushing device for transferring, so that the rotating pushing device pushes the glass bottle product to a metal transmission belt, and then the metal transmission belt transports the glass bottle product to an annealing device for annealing and quenching; through annealing and quenching, the glass structure is adjusted, the glass bottle is heat treated to eliminate or generate internal stress, phase separation or crystallization phenomenon of the glass bottle, and the structure state of the glass bottle is adjusted; at the end of the glass bottle production line, the quality of the glass bottle is strictly checked, and once unqualified glass bottles are found, the unqualified glass bottles are automatically blown away through a special airflow system to ensure the quality of the product.
[0003] In the prior art, after the mechanical arm clamps the glass bottle product from the mold to the platform of the rotating pushing device, the rotating pushing device pushes the glass bottle product from the platform to the metal transmission belt moving at a slow speed, and during this period, the bottom of the glass bottle product rubs against the platform and the surface of the metal transmission belt; since the glass bottle product is just blown out from the mold, the temperature of the bottom is higher than that of the top, and the hardness of the bottom is relatively soft, which appears red in vision, so the glass bottle needs to wait for the bottom to be cooled and the hardness to rise before being pushed to the metal transmission belt, otherwise the bottom will be slightly deformed due to long-distance friction.
[0004] The above information disclosed in the background section is only used to strengthen the understanding of the background of the present disclosure, and therefore it can include information that does not constitute prior art known to those of ordinary skill in the art. SUMMARY
[0005] The purpose of the present application is to design a pushing device that no longer pushes the just-blown glass bottle to slide and rub on the platform to the metal transmission belt, but directly puts the glass bottle on the metal transmission belt in an alternating support manner, so as to solve the above-mentioned deficiencies in the prior art.
[0006] In order to achieve the above object, the present application provides the following technical scheme: A rotary pushing device based on light weight glass bottle and can annealing, used for moving the glass bottle just taken out from the mold to the metal transmission belt, comprising a hydraulic assembly, a rotating assembly installed at the bottom of the hydraulic assembly for driving the rotation of the hydraulic assembly, a pushing assembly installed at the output end of the rotating assembly, the pushing assembly comprising a mounting plate detachably connected with the output end of the hydraulic assembly, a hydraulic channel opened in the mounting plate, a lifting plate vertically and slidingly installed at the top of the inner cavity of the hydraulic channel, a sliding piece slidingly installed on the lifting plate along the length direction, and a plurality of first support strips fixedly installed at the bottom of the sliding piece, the glass bottle being located at the top of the first support strips, the lifting plate penetrating through the top of the mounting plate and being slidingly connected with the mounting plate, the sliding piece being inserted into the hydraulic channel to block and separate the top and bottom of the hydraulic channel, the top of the hydraulic channel supporting the lifting plate with liquid, and a plurality of second support strips fixedly installed on the metal transmission belt in an array;
[0007] By inserting into the second support strip to follow the horizontal movement when the top surface of the first support strip is higher than the top surface of the second support strip, and then descending to the first support strip top surface lower than the second support strip top surface, the second support strip supports the glass bottle and then the first support strip is extracted.
[0008] Preferably, a piston groove slidingly connected with the sliding piece is opened in the mounting plate, the hydraulic channel comprises a lifting channel opened at the top of the mounting plate, a first channel and a second channel opened at the middle of the mounting plate, and a liquid discharge channel opened at the bottom of the mounting plate, the piston groove and the lifting channel are in communication with the first channel, the piston groove and the liquid discharge channel are in communication with the second channel, and the liquid and the lifting plate are located in the lifting channel.
[0009] Preferably, the sliding piece comprises a sliding block slidingly installed with the lifting plate, a connecting rod fixedly installed at one side of the sliding block, a piston rod fixedly installed at the end of the connecting rod, and a first piston and a second piston fixedly installed on the piston rod, the first piston and the second piston are slidingly connected with the piston groove, the piston rod penetrates through one end of the mounting plate and is slidingly connected with the mounting plate, and the first support strips are fixedly installed at the bottom of the sliding block.
[0010] Preferably, when the lifting channel, the first channel, the second channel, the liquid discharge channel and the piston groove are in communication, the first piston and the second piston are respectively located at both sides of the second channel.
[0011] Preferably, one end of the first channel close to the second channel and one end of the second channel close to the first channel are in the same plane.
[0012] Preferably, the second piston contacts the end of the piston groove, the first piston blocks the second channel but does not block the first channel, the hydraulic channel further comprises a liquid inlet channel formed in the mounting plate and communicated with the piston groove.
[0013] Preferably, a water pump and a water tank are mounted on the hydraulic assembly, a liquid inlet pipe is fixedly installed between the liquid inlet channel and the output end of the water pump, an electromagnetic valve is installed on the liquid inlet pipe, a liquid outlet pipe is installed between the liquid outlet channel and the input end of the water tank, and a water pipe is fixedly installed between the input end of the water pump and the output end of the water tank.
[0014] Preferably, a limiting strip is fixedly installed at the bottom of the mounting plate, the sliding block comprises a vertical plate slidably connected with the mounting plate, a top plate fixedly connected with the top of the vertical plate, a first clamping strip fixedly connected with one side of the top plate, a bottom plate fixedly connected with the bottom of the vertical plate, and a second clamping strip fixedly connected with one side of the bottom plate, the top plate and the first clamping strip are attached to the lifting plate, and the second clamping strip is slidably connected with the limiting strip.
[0015] Preferably, a protective plate is fixedly installed on one side of the vertical plate.
[0016] Preferably, a chamfer is formed at opposite ends of the first support strip and the second support strip.
[0017] In the above technical solution, the present application provides technical effects and advantages:
[0018] 1. The present application improves the pusher in the prior art and adds a second support strip to the metal transmission belt, so that after the mechanical arm places the just blown glass bottle on the stationary first support strip, the first support strip is inserted into the second support strip and moves horizontally when the top surface of the first support strip is higher than the top surface of the second support strip, the height of the first support strip is gradually lowered during the movement, the second support strip supports the glass bottle, and then the first support strip is pulled out of the second support strip, completing the alternate support of the glass bottle, without pushing the glass bottle on the platform to slide along a 90° arc to the metal transmission belt as in the prior art, thereby solving the problem of long-distance wear of the bottom of the glass bottle.
[0019] 2. The present application designs the hydraulic channel and the sliding member, so that the first support strip can automatically lower a certain height while moving horizontally when following the second support strip, thereby completing the alternate support, and after the first support strip is pulled out of the second support strip, liquid is pumped into the lifting channel by the water pump, so that the first support strip can be reset at the horizontal position and the vertical height.
[0020] 3、Meanwhile, the sliding block is designed to make the sliding block contact the top surface of the mounting plate when moving vertically on the lifting plate and the mounting plate, so as to no longer descend, and to make the sliding block no longer ascend after contacting the bottom surface of the limiting strip, thereby preventing the lifting plate from being completely ejected from the mounting plate;
[0021] 4、Compared with the moving mode of the glass bottle being pushed from the platform to the metal transmission belt in the prior art, the alternating support is used, so that the friction distance of the glass bottle is small, and the glass bottle can be placed on the metal transmission belt first, and is cooled in the process of moving to the annealing device, so that the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.
[0023] Figure 1 is a schematic diagram of the overall structure of the present application;
[0024] Figure 2 is a first partial perspective view of the present application;
[0025] Figure 3 is a second partial perspective view of the present application;
[0026] Figure 4 is a schematic diagram of the first support strip and the second support strip not being connected of the present application;
[0027] Figure 5 is a schematic diagram of the internal structure of the mounting plate of the present application;
[0028] Figure 6 is a schematic diagram of the first support strip and the second support strip being connected of the present application;
[0029] Figure 7 is a side view of the sliding block of the present application.
[0030] BRIEF DESCRIPTION OF DRAWINGS
[0031] 1, glass bottle; 2, metal transmission belt; 3, hydraulic assembly; 4, rotating assembly; 5, pushing assembly; 5a, mounting plate; 5b, hydraulic channel; 5b1, lifting channel; 5b2, first channel; 5b3, second channel; 5b4, liquid discharge channel; 5b5, liquid inlet channel; 5c, lifting plate; 5d, sliding piece; 5d1, sliding block; 5d1a, vertical plate; 5d1b, top plate; 5d1c, first clamping strip; 5d1d, bottom plate; 5d1e, second clamping strip; 5d2, connecting rod; 5d3, piston rod; 5d4, first piston; 5d5, second piston; 5e, first supporting strip; 6, second supporting strip; 7, piston groove; 8, water pump; 9, water tank; 10, liquid inlet pipe; 11, electromagnetic valve; 12, liquid discharge pipe; 13, water pipe; 14, limiting strip; 15, protective plate; 16, chamfer. DETAILED DESCRIPTION
[0032] In order for those skilled in the art to better understand the technical solutions in the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0033] In order to better understand the above technical solutions, the above technical solutions will be described in detail below in combination with the drawings in the specification and specific embodiments.
[0034] The present application provides a rotating pushing device based on lightweight glass bottle and can, as shown in Figures 1-7 The present application provides a rotating pushing device based on lightweight glass bottle and can, as shown in
[0035] The installation plate 5a is fixedly installed at the output end of the rotating assembly 4, and the installation plate 5a is provided with a lifting channel 5b1, a first channel 5b2 communicated with the lifting channel 5b1, a piston groove 7 communicated with the first channel 5b2, a second channel 5b3 communicated with the piston groove 7, a liquid inlet channel 5b5, and a liquid outlet channel 5b4 communicated with the second channel 5b3, and these channels jointly form a hydraulic channel 5b. The lifting plate 5c penetrating through the installation plate 5a is vertically and slidingly installed in the lifting channel 5b1, and the lifting plate 5c is supported by the liquid in the lifting channel 5b1 in the initial state. The first piston 5d4 and the second piston 5d5 are respectively slidingly installed in the piston groove 7, and the first piston 5d4 and the second piston 5d5 are fixedly installed on the piston rod 5d3. The piston rod 5d3 and the piston groove 7 have a gap, and the liquid can flow in the gap. The piston rod 5d3 penetrates through one side of the installation plate 5a and is slidingly connected with the installation plate 5a at the end away from the second piston 5d5. The connecting rod 5d2 is fixedly installed at the end of the piston rod 5d3. The sliding block 5d1 horizontally slidingly connected with the lifting plate 5c is fixedly installed at the end of the connecting rod 5d2. The sliding block 5d1, the connecting rod 5d2, the piston rod 5d3, the first piston 5d4, and the second piston 5d5 jointly form a sliding member 5d sliding on the lifting plate 5c. A plurality of first support strips 5e arranged in an array are fixedly installed at the bottom of the sliding block 5d1 to form a platform in the prior art for supporting the glass bottle 1.The installation plate 5a, the hydraulic channel 5b, the lifting plate 5c, the sliding piece 5d and the first support strip 5e jointly constitute the pushing assembly 5, meanwhile a plurality of arrayed second support strips 6 are fixedly installed on the metal transmission strip, and a chamfer 16 is formed at the opposite end of the first support strip 5e and the second support strip 6, when the glass bottle 1 is placed on the first support strip 5e by the mechanical arm, the rotating assembly 4 drives the hydraulic assembly 3 to rotate 90° or other angles first, so that the first support strip 5e keeps parallel with the second support strip 6, at this time, the top surface of the first support strip 5e is higher than the top surface of the second support strip 6, the output shaft of the hydraulic assembly 3 is elongated, drives the installation plate 5a, the sliding piece 5d and the first support strip 5e to insert into the second support strip 6, the first support strip 5e will move together with the second support strip 6, thereby drives the sliding piece 5d to move, the sliding block 5d1 in the sliding piece 5d will move on the lifting plate 5c, the sliding block 5d1 will drive the connecting rod 5d2, the connecting rod 5d2 will drive the piston rod 5d3 to withdraw from the installation plate 5a, the piston rod 5d3 drives the first piston 5d4 and the second piston 5d5 to move, at this time, the lifting channel 5b1, the first channel 5b2, the second channel 5b3, the liquid discharge channel 5b4 and the piston groove 7 are communicated, the first piston 5d4 and the second piston 5d5 are respectively located at the two sides of the second channel 5b3, and the end of the first channel 5b2 close to the second channel 5b3 and the end of the second channel 5b3 close to the first channel 5b2 are in the same plane, when the first piston 5d4 no longer blocks the first channel 5b2, the first channel 5b2 and the second channel 5b3 are communicated, the liquid in the lifting channel 5b1 will pass through the first channel 5b2, the piston groove 7, the second channel 5b3 and enter the liquid discharge channel 5b4 under the gravity of the lifting plate 5c and other components, the lifting plate 5c will be lowered, thereby drives the glass bottle 1 to be lowered through the sliding block 5d1 and the first support strip 5e, when the top surface of the first support strip 5e is lower than the top surface of the second support strip 6, the second support strip 6 supports the glass bottle 1, at this time, the output shaft of the hydraulic assembly 3 is shortened, withdraws the first support strip 5e from the second support strip 6, at this time, the glass bottle 1 will move to the annealing and quenching device together with the second support strip 6 and the metal transmission belt 2 to be heat treated;
[0036] In order to reset the first support bar 5e, we install a water pump 8 and a water tank 9 on the hydraulic assembly 3, fix a water pipe 13 between the output end of the water tank 9 and the input end of the water pump 8, install a liquid inlet pipe 10 between the output end of the water pump 8 and the liquid inlet channel 5b5, and install an electromagnetic valve 11 on the liquid inlet pipe 10. At the same time, a liquid outlet pipe 12 is installed between the liquid outlet channel 5b4 and the input end of the water tank 9. When the second piston 5d5 is in contact with the end of the piston groove 7, the first piston 5d4 blocks the second channel 5b3 but does not block the first channel 5b2. At this time, the water pump 8 pumps the water in the water tank 9 into the liquid inlet channel 5b5 through the liquid inlet pipe 10. The water pushes the first piston 5d4 through the gap between the piston rod 5d3 and the piston groove 7. The first piston 5d4 drives the piston rod 5d3, which in turn drives the connecting rod 5d2, which drives the sliding block 5d1 to move horizontally on the lifting plate 5c to reset. When the first piston 5d4 blocks the second channel 5b3 and the second piston 5d5 is in contact with the end of the piston groove 7, the water enters the lifting channel 5b1 through the first channel 5b2, lifting the lifting plate 5c to reset the height;
[0037] We fix a limiting strip 14 on the bottom of the mounting plate 5a, and make the sliding block 5d1 include a vertical plate 5d1a connected with the mounting plate 5a, a top plate 5d1b fixedly connected to the top of the vertical plate 5d1a, a first clamping strip 5d1c fixedly connected to one side of the top plate 5d1b, a bottom plate 5d1d fixedly connected to the bottom of the vertical plate 5d1a, and a second clamping strip 5d1e fixedly connected to one side of the bottom plate 5d1d. The top plate 5d1b and the first clamping strip 5d1c are in contact with the lifting plate 5c, and the second clamping strip 5d1e is in sliding connection with the limiting strip 14. When the second clamping strip 5d1e comes into contact with the limiting strip 14, the lifting plate 5c cannot continue to rise, and the water pump 8 is closed. In order to prevent the glass bottle 1 from suddenly changing from a static state to a moving state on the first support bar 5e, we fix a protective plate 15 on one side of the vertical plate 5d1a. The liquid in the liquid outlet pipe 12 can flow into the water tank 9 under the action of gravity, only a certain height difference needs to be designed, or the water tank 9 can be placed at a lower height than the sliding member 5d;
[0038] The water pump 8 used in this device is preferably of the type that injects liquid at the output end or discharges from the input end. If not used, a branch pipe is installed on the liquid inlet pipe 10 near the end of the liquid inlet channel 5b5. Another electrically controlled valve is also installed on the branch pipe, and the end of the branch pipe is fixedly connected to the water inlet end of the water tank 9. In this way, when the electromagnetic valve 11 is closed and the electrically controlled valve is open, the first piston 5d4 can pump the liquid in the liquid inlet channel 5b5 into the water tank 9 through the electrically controlled valve and the branch pipe;
[0039] The overall workflow of the device: the mechanical arm first clamps the just blown glass bottle 1 to the stationary first support bar 5e, then the rotating assembly 4 drives the hydraulic assembly 3 to rotate to the first support bar 5e perpendicular to the metal transmission belt 2, at this time the electromagnetic valve 11 is opened, and the top surface of the first support bar 5e is higher than the top surface of the second support bar 6, then the output shaft of the hydraulic assembly 3 is elongated, so that the first support bar 5e is inserted into the slowly moving second support bar 6, because the first support bar 5e cooperates with the second support bar 6 through the chamfer 16, the first support bar 5e is easily inserted into the second support bar 6 to follow the metal transmission belt 2 to move, the first support bar 5e will drive the sliding piece 5d to move on the lifting plate 5c, thereby driving the piston rod 5d3 to make the lifting channel 5b1, the first channel 5b2, the piston groove 7, the second channel 5b3 and the liquid discharge channel 5b4 communicate, so that the lifting plate 5c and the components installed above are under the action of gravity The liquid in the lifting channel 5b1 is pressed into the liquid discharge pipe 12 and enters the water tank 9, when the top surface of the first support bar 5e is lower than the top surface of the second support bar 6, the second support bar 6 supports the glass bottle 1, the hydraulic assembly 3 drives the first support bar 5e to be extracted from the second support bar 6, then the water pump 8 is started to pump the liquid in the water tank 9 into the liquid inlet channel 5b5, thereby using the liquid to drive the lifting plate 5c and the first piston 5d4 to reset, so that the sliding piece 5d is reset, and finally the electromagnetic valve 11 is closed.
[0040] Importantly, it should be noted that the configurations and arrangements of the present application shown in the various exemplary embodiments are merely illustrative. Although only a few embodiments have been described in detail in this disclosure, those skilled in the art who review this disclosure will readily appreciate that many modifications are possible (e.g., variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters (e.g., temperatures, pressures, etc.), mounting arrangements, use of materials, colors, orientations, etc.) without materially departing from the novel teachings and advantages of the subject matter described in this application.
Claims
1. A rotary pushing device based on lightweight glass bottle annealing, used to move a glass bottle (1) just taken out of the mold onto a metal conveyor belt (2), comprising a hydraulic assembly (3), a rotating assembly (4) for driving the hydraulic assembly (3) to rotate is mounted at the bottom of the hydraulic assembly (3), and a pushing assembly (5) is mounted at the output end of the rotating assembly (4), characterized in that: The push assembly (5) includes a mounting plate (5a) detachably connected with the output end of the hydraulic assembly (3), a hydraulic passage (5b) formed in the mounting plate (5a), a lifting plate (5c) vertically and slidingly installed at the top of the hydraulic passage (5b), a sliding piece (5d) slidingly installed on the lifting plate (5c) along the length direction, and a plurality of first support strips (5e) fixedly installed at the bottom of the sliding piece (5d) and arranged in an array, the glass bottle (1) being located at the top of the first support strips (5e), the lifting plate (5c) penetrating through the top of the mounting plate (5a) and being slidingly connected with the mounting plate (5a), the sliding piece (5d) being inserted into the hydraulic passage (5b) to block and separate the top and bottom of the hydraulic passage (5b), the top of the hydraulic passage (5b) having liquid to support the lifting plate (5c), and a plurality of second support strips (6) fixedly installed on the metal transmission belt (2) and arranged in an array; The mounting plate (5a) is provided with a piston groove (7) slidingly connected with the sliding piece (5d), the hydraulic passage (5b) includes a lifting passage (5b1) formed at the top of the mounting plate (5a), a first passage (5b2) and a second passage (5b3) formed at the middle of the mounting plate (5a), and a liquid discharge passage (5b4) formed at the bottom of the mounting plate (5a), the piston groove (7) and the lifting passage (5b1) are both in communication with the first passage (5b2), the piston groove (7) and the liquid discharge passage (5b4) are both in communication with the second passage (5b3), the liquid and the lifting plate (5c) are both located in the lifting passage (5b1), the sliding piece (5d) no longer blocks the first passage (5b2) after being horizontally moved to a predetermined distance in the piston groove (7), and the liquid flows from the lifting passage (5b1) into the liquid discharge passage (4) to lower the height of the lifting plate (5c); The first support strips (5e) are inserted into the second support strips (6) to be horizontally moved together with the second support strips (6) when the top surface of the first support strips (5e) is higher than the top surface of the second support strips (6), then the first support strips (5e) are pulled out after the second support strips (6) support the glass bottle (1) when the top surface of the first support strips (5e) is lower than the top surface of the second support strips (6).
2. A rotary pusher device based on lightening glass bottle and can annealing according to claim 1, characterized in that: The sliding piece (5d) includes a sliding block (5d1) slidingly installed with the lifting plate (5c), a connecting rod (5d2) fixedly installed at one side of the sliding block (5d1), a piston rod (5d3) fixedly installed at the end of the connecting rod (5d2), and a first piston (5d4) and a second piston (5d5) fixedly installed on the piston rod (5d3), the first piston (5d4) and the second piston (5d5) being both slidingly connected with the piston groove (7), the piston rod (5d3) penetrating through one end of the mounting plate (5a) and being slidingly connected with the mounting plate (5a), the piston rod (5d3) having a gap with the piston groove (7), and the first support strips (5e) being fixedly installed at the bottom of the sliding block (5d1).
3. A rotary pusher device based on lightening glass bottle and can annealing according to claim 2, characterized in that: The first piston (5d4) and the second piston (5d5) are respectively located on two sides of the second channel (5b3) when the lifting channel (5b1), the first channel (5b2), the second channel (5b3), the liquid discharge channel (5b4) and the piston groove (7) are communicated.
4. The rotary pusher device based on light glass bottle and can annealing according to claim 2, characterized in that: The first channel (5b2) is close to one end of the second channel (5b3), and the end of the second channel (5b3) close to the first channel (5b2) is in the same plane.
5. The rotary pusher device based on light glass bottle and can annealing according to claim 2, characterized in that: The first piston (5d4) blocks the second channel (5b3) but does not block the first channel (5b2) when the second piston (5d5) contacts the end of the piston groove (7), and the hydraulic channel (5b) further comprises a liquid inlet channel (5b5) formed in the mounting plate (5a), wherein the liquid inlet channel (5b5) is communicated with the piston groove (7).
6. A rotary pusher device for annealing of light weight glass bottles and jars according to claim 5, characterized in that: The hydraulic assembly (3) is provided with a water pump (8) and a water tank (9), the liquid inlet channel (5b5) and the output end of the water pump (8) are fixedly provided with a liquid inlet pipe (10), the liquid inlet pipe (10) is provided with an electromagnetic valve (11), the liquid discharge channel (5b4) and the input end of the water tank (9) are provided with a liquid discharge pipe (12), and the input end of the water pump (8) and the output end of the water tank (9) are fixedly provided with a water pipe (13).
7. A rotary pusher device for annealing of light weight glass bottles and jars based on claim 2, characterized in that: The mounting plate (5a) is fixedly provided with a limiting strip (14) at the bottom, the sliding block (5d1) comprises a vertical plate (5d1a) slidably connected with the mounting plate (5a), a top plate (5d1b) fixedly connected with the top of the vertical plate (5d1a), a first clamping strip (5d1c) fixedly connected with one side of the top plate (5d1b), a bottom plate (5d1d) fixedly connected with the bottom of the vertical plate (5d1a), and a second clamping strip (5d1e) fixedly connected with one side of the bottom plate (5d1d), wherein the top plate (5d1b) and the first clamping strip (5d1c) are attached to the lifting plate (5c), and the second clamping strip (5d1e) is slidably connected with the limiting strip (14).
8. A rotary pusher device for annealing of light weight glass bottles and jars according to claim 7, characterized in that: The vertical plate (5d1a) is fixedly provided with a protective plate (15) on one side.
9. A rotary pusher device based on lightweight glass bottle and can annealing according to claim 1, characterized in that: The first support strip (5e) and the second support strip (6) are both provided with a chamfer (16) at opposite ends.
Citation Information
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