Bottle-making rank machine with heat insulation function

By installing movable baffles and fixed heat insulation covers on the machine, the problem of burns to operators caused by high-temperature radiation from the glass solution is solved, achieving a safe and efficient maintenance process and adapting to the production needs of different types of glass bottles.

CN223674500UActive Publication Date: 2025-12-16GUIZHOU HUAXING GLASS CO LTD
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Patent Information

Application Number
CN202520034875.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-12-16
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

During the glass bottle production process and the maintenance of the lathe, the high temperature radiation from the molten glass poses a risk of burns to operators, and existing technologies are unable to effectively insulate against the heat.

Method used

Movable baffles and fixed heat insulation covers are installed on the production line. The baffles block the heat radiation from the modules, and the adjustable heat insulation device isolates the heat of the initial modules, thus adapting to the production needs of different types of glass bottles.

Benefits of technology

It effectively isolates the high-temperature radiation of the glass solution, preventing burns to operators, improving maintenance efficiency and safety, and reducing equipment costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a bottle making rank machine with a heat insulation function, which comprises a main body, a primary module, a forming module and a conveyor belt, the primary module and the forming module are arranged on the main body, the conveyor belt is arranged on one side of the main body provided with the forming module, the upper end face of the conveyor belt is flush with the upper end face of the main body, and the primary module is composed of a plurality of primary module devices side by side. The forming module is composed of a plurality of forming devices side by side, two supporting rods are further arranged on the main body, a sliding rod is arranged at the tops of the two supporting rods, the sliding rod is sleeved with a slidable sleeve, and a baffle is arranged at the lower end of the sleeve. The heat insulation device can effectively block high temperature generated by glass solution, avoids body injuries such as scalding of personnel in the operation process, can be adjusted according to the maintenance position, can achieve the purpose of effective heat insulation, can reduce the complexity of the whole structure of the device, achieves the heat insulation function of a finished module of a whole ranked machine, and improves the production efficiency of the ranked machine. The device is suitable for producing and processing different types of glass bottles.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to glass bottle production and manufacturing equipment field, concretely relates to a bottle making line machine with heat insulation function. BACKGROUND

[0002] Glass is a kind of inorganic nonmetallic material with excellent performance, has good light transmittance, chemical stability and hardness, therefore the container of glass material is most suitable for packing food, medicine, chemical article etc., various glass bottles are widely used in various fields.The manufacture of glass bottle is to melt glass production raw material into liquid state through high-temperature furnace, and is blown into shape through initial mould forming and mould forming process on the line machine.

[0003] The process of making glass bottle by line machine is mature, and the production of glass bottle is fully automated, a line machine can generate multiple glass bottles simultaneously and the production speed is fast, and due to the particularity of glass production line, the production of glass bottle is 24 hours without stop, otherwise, stopping furnace and restarting will cause a large amount of production cost waste, in this case, the production of line machine is also 24 hours without stop, even if the quality of the used line machine is very good, in the long-term use process, the line machine will be damaged due to various reasons such as wear, impact and mechanical fatigue, especially the initial mould and mould forming process part, because the action is larger, it is more prone to damage, therefore, it is necessary to pay attention to maintenance.

[0004] When maintaining the line machine, only a single mechanical module has a problem, therefore, maintenance is carried out without stopping, such as oiling work, manual operation is carried out by personnel standing on the side of the line machine using tools, and the glass solution has a high temperature, the temperature of the glass solution will be directly radiated to the operator's body when manual oiling maintenance is carried out, the personnel will be scalded due to high temperature after operating for a period of time, and due to the structure and use requirements of the line machine, the line machine cannot be used in a closed manner, therefore, it is necessary to study the technology capable of blocking the high temperature of the glass solution during maintenance of the line machine. UTILITY MODEL CONTENTS

[0005] The utility model provides a bottle making line machine with heat insulation function, by setting movable baffle and fixed heat shield on the line machine, the heat of glass solution is prevented from being directly radiated to the maintenance personnel, and personal safety is prevented from being infringed.

[0006] The utility model provides a bottle making line machine with heat insulation function, which is composed of a main body, a preliminary mold group, a forming mold group and a conveying belt. The main body is the main part of the line machine. The preliminary mold group and the forming mold group are responsible for the preliminary molding and forming molding of glass bottles respectively. The preliminary mold group and the forming mold group are installed on the main body to realize the forming function of glass bottles. The conveying belt is installed on the side of the main body so that the upper end surface of the conveying belt is flush with the upper end surface of the main body. The formed glass bottles are conveyed to the next process through the conveying belt. The preliminary mold group is composed of multiple preliminary mold devices arranged side by side. The forming mold group is composed of multiple forming mold devices arranged side by side to simultaneously perform multiple bottle making operations. To realize the heat insulation function, two support rods are installed on the upper end surface of the main body. The two support rods are vertically installed on the side of the conveying belt so that the two support rods are located on the two sides of the forming mold group. A sliding rod is fixed on the top of the two support rods, and a sleeve is sleeved on the sliding rod so that the sleeve can freely slide on the sliding rod. A baffle is installed on the lower end of the sleeve. The position of the baffle is changed by moving the sleeve. The heat of the forming mold group is blocked by the baffle.

[0007] To block the heat of the preliminary mold group, a support is installed on the main body. The position of the support is located on the side of the preliminary mold group. A heat shield composed of a horizontal plate and a vertical plate is installed on the support. The vertical plate is vertically installed on the support, and the horizontal plate is vertically connected to the upper end of the vertical plate so that the horizontal plate faces the preliminary mold group. The heat generated by the preliminary mold group is blocked by the vertical plate and the horizontal plate.

[0008] Since the line machine needs to be adjusted according to different types of glass bottles, the heat insulation device is designed to be adjustable. A sliding sleeve is installed on each end of the sliding rod so that the two sliding sleeves are freely slidably sleeved on the two support rods. Multiple vertically arranged fixing holes are provided on the side of the support rod. Screw holes are opened on the same side of the sliding sleeve and the fixing hole. Fixed bolts are threadedly connected to the screw holes so that the fixed bolts can be inserted into the fixing holes. The height of the fixed sliding rod can be adjusted by the fixed bolts to adjust the position of the baffle.

[0009] To quickly position and fix the position of the baffle during work, multiple clamping blocks are provided on the sliding rod. The position of the clamping block corresponds to the forming mold device. A sliding groove is opened on the side of the sleeve. The sliding groove penetrates through both sides of the sleeve. The sliding groove allows the clamping block to pass through. A clamping groove is opened on the middle upper side of the sliding groove so that the clamping block is clamped into the clamping groove. The position of the baffle is fixed by the clamping block entering the sliding groove and being clamped into the clamping groove, avoiding displacement during work.

[0010] To facilitate the operation of the baffle, the clamping groove is designed to ensure that the angle of the baffle is perpendicular to the horizontal plane when the clamping block is clamped into the clamping groove.

[0011] To facilitate the installation of the heat shield, multiple heat shields are provided so that the number and position of the heat shields correspond to the preliminary mold devices one by one. The multiple heat shields form an integrated heat insulation device.

[0012] The bottle making line machine with the heat insulation function can effectively block the high temperature generated by the glass solution when the line machine is maintained, the high temperature generated by the mold forming group is directly radiated to the human body by the baffle, and the baffle can be adjusted according to the maintenance position in the use process, so that the purpose of effective heat insulation is achieved, the overall structure complexity of the device is reduced, the heat insulation function of the mold forming group of the whole line machine can be realized by using one baffle, the height can be adjusted, different models of glass bottle production and processing are adapted, the high temperature of the primary mold group can be effectively blocked by the heat shield, the heat shield is arranged in units, the installation efficiency and the maintenance efficiency are greatly improved, meanwhile, the personnel is prevented from being squeezed into the line machine by mistake to be hurt, and double protection is achieved. The utility model can be retrofitted on the basis of the existing line machine, the safety performance is improved, and the equipment cost is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0013] The utility model will be further explained in detail in combination with the drawings.

[0014] Figure 1 It is primary mold group one side structure schematic diagram of the utility model;

[0015] Figure 2 It is struts and slide rod local structure schematic diagram;

[0016] Figure 3 It is slide rod and baffle local exploded view schematic diagram;

[0017] Figure 4 It is slide rod and baffle side structure schematic diagram;

[0018] Figure 5 It is primary mold group one side structure schematic diagram of the utility model;

[0019] As shown in the figure: 1-main body;2-primary mold group;3-mold forming group;4-conveyer belt;5-strut;6-slide rod;7-sleeve;8-baffle;9-bracket;10-cross plate;11-vertical plate;12-sliding sleeve;13-fixing hole;14-fixing bolt;15-clamp block;16-sliding groove;17-clamp slot. DETAILED DESCRIPTION

[0020] In order to further explain the concept of the utility model, the specific embodiment of the utility model will be further explained in combination with the drawings as follows: Embodiment one

[0021] The application discloses a bottle making line with heat insulation function. The line is a common model line in the prior art, which mainly comprises a main body 1, a preliminary mold group 2 and a mold forming group 3. The main body 1 is the main structure of the line and has specific functions required for preparing glass bottles, such as glass liquid injection, cutting and air blowing. The preliminary mold group 2 and the mold forming group 3 are respectively composed of a plurality of preliminary mold devices and mold forming devices. The preliminary mold group 2 and the mold forming group 3 are used to realize the preliminary mold forming and mold forming functions of the glass bottles, so as to realize the complete bottle making function. The bottle making technology and the specific structure of the line both belong to the prior art, and thus will not be described in detail. A conveying belt 4 is arranged on the side of the mold forming group 3. The glass bottles are conveyed to the next process through the conveying belt 4, such as shown in the figure. Figure 1

[0022] Two metal rods are taken as supporting rods 5. A row of fixed holes 13 is drilled on the side of the supporting rods 5 along the axial direction. The two supporting rods 5 are vertically welded on the main body 1 of the line, so that the supporting rods 5 are located on the side of the transmission belt, and the mold forming group 3 is located between the two supporting rods 5. A metal long rod is taken as a sliding rod 6, and the length of the sliding rod 6 is equal to the spacing of the two supporting rods 5. A metal cylinder with the same diameter as the sliding rod 6 is taken as a sleeve 7. A sliding groove 16 is opened on the side of the sleeve 7 along the axial direction of the sleeve 7. Then, a clamping groove 17 is opened on the upper side of the middle part of the sliding groove 16, so that the upper end side wall of the clamping groove 17 extends to the top end of the sleeve 7. A plurality of metal blocks are taken. The size of the metal blocks can freely pass through the clamping groove 17 and the sliding groove 16. The metal blocks are welded according to the corresponding positions of the mold forming devices of the mold forming group 3, so that the metal blocks are equally distributed on the upper end surface of the sliding rod 6 as clamping blocks 15. Two metal cylinders with the same diameter as the supporting rods 5 are taken as sliding sleeves 12. The two sliding sleeves 12 are vertically welded on the two ends of the sliding rod 6. Screw holes are opened on the side of the sliding sleeves 12, and fixed bolts 14 are installed in the screw holes. The sliding sleeves 12 on the two ends of the sliding rod 6 are respectively sleeved on the supporting rods 5. The fixed bolts 14 on the sliding sleeves 12 are inserted into the fixed holes 13 to fix the position of the sliding rod 6, as shown in the figure. Figure 2 Then, a metal baffle 8 is taken. The size and shape of the baffle 8 are determined according to the height of the sliding rod 6 and the width of the mold forming device, so that the baffle 8 can completely shield a single mold forming device, as shown in the figure. Figure 3 Figure 4 Example 2

[0023] ​​​On the basis of the embodiment one, the bracket 9 is installed on the main body 1, the bracket 9 is located at the side of the initial mould set 2, according to the width and height of the single initial mould device, two metal plates are taken as the horizontal plate 10 and the vertical plate 11, wherein the width of the vertical plate 11 is consistent with the width of the initial mould device, the height is higher than the initial mould device, the width of the horizontal plate 10 is consistent with the width of the initial mould device, the length is determined according to the use condition, then the vertical plate 11 is perpendicular to the horizontal plate 10 and is welded, the L shape is formed, then the vertical plate 11 is fixed on the bracket 9 by using the bolt, the horizontal plate 10 is located above the vertical plate 11 and faces the initial mould device, the heat shield is formed. Figure 5 As shown in the figure.

[0024] When the daily maintenance of the row machine is carried out, the baffle 8 is lifted obliquely upwards until the clamping block 15 and the sliding groove 16 are in the same straight line, then the baffle 8 is moved, the baffle 8 is moved along the sliding rod 6 to the front of the mould device which needs to be maintained, then the clamping groove 17 on the sleeve 7 is moved to correspond to the clamping block 15 in front of the mould device, then the baffle 8 is put down, the sleeve 7 is synchronously rotated in the process of putting down the baffle 8, the clamping block 15 is clamped into the clamping groove 17, the fixing of the position of the baffle 8 is completed, since the clamping groove 17 extends to the top end of the sleeve 7, the baffle 8 can be blocked in front of the mould device in the vertical way, at this time, the maintenance of the mould device can be carried out. When the height of the baffle 8 needs to be adjusted, the fixing bolts 14 of the sleeves 7 on both sides are loosened, then the sliding rod 6 is lifted to the expected height, the fixing bolts 14 are re-tightened and inserted into the fixing holes 13.

[0025] The heat shield arranged on the side of the main body 1 of the initial mould set 2 can effectively block the heat emitted by the initial mould set 2 from spreading, and can avoid that the hands of the personnel are accidentally inserted into the row machine in the working process, so that the extrusion injury is caused, and the double protection effect is achieved.

[0026] The above only describes the preferred embodiments of the utility model, and does not limit the utility model, for the person skilled in the art, various changes and changes can be made, any modification, equivalent replacement, improvement and the like made by using the utility model should be included in the protection scope of the utility model.

Claims

1. A bottle making line with heat insulation function, comprising a main body (1), a preliminary mold group (2), a forming mold group (3) and a conveying belt (4), the preliminary mold group (2) and the forming mold group (3) are arranged on the main body (1), the conveying belt (4) is arranged on one side of the main body (1) where the forming mold group (3) is installed, the upper end surface of the conveying belt (4) is flush with the upper end surface of the main body (1), the preliminary mold group (2) is composed of multiple preliminary mold devices arranged side by side, and the forming mold group (3) is composed of multiple forming mold devices arranged side by side, characterized in that: The main body (1) is also provided with support rods (5), the number of the support rods (5) is two, the two support rods (5) are vertically arranged on the upper end surface of the main body (1) on the side of the conveying belt (4), the two support rods (5) are respectively located on the two sides of the mold forming group (3), a slide rod (6) is arranged on the top of the two support rods (5), a sleeve (7) which can slide is sleeved on the slide rod (6), a baffle (8) is arranged on the lower end of the sleeve (7). ​ 2. The bottle-making line according to claim 1, characterized in that: The main body (1) is also provided with a support (9), the support (9) is located on the side of the preliminary mold group (2), a heat shield is arranged on the support (9), the heat shield comprises a horizontal plate (10) and a vertical plate (11), the vertical plate (11) is vertically connected to the support (9), and the horizontal plate (10) is vertically arranged on the upper end of the vertical plate (11) and faces the preliminary mold group (2).

3. The bottle-making line according to claim 2, characterized in that: The slide rod (6) is provided with a sliding sleeve (12) at both ends, the two sliding sleeves (12) are respectively sleeved on the two support rods (5) in a slidable manner, a vertical fixing hole (13) is arranged on the side of the support rod (5), a screw hole is arranged on the same side of the sliding sleeve (12) and the fixing hole (13), and a fixing bolt (14) is threadedly connected on the screw hole, the fixing bolt (14) can be inserted into the fixing hole (13).

4. The bottle-making line according to claim 3, characterized in that: A plurality of clamping blocks (15) are arranged on the slide rod (6), the clamping blocks (15) correspond to the mold forming devices one by one, a sliding groove (16) which penetrates through both sides is formed on the side of the sleeve (7), a clamping groove (17) is formed on the upper side of the middle of the sliding groove (16), and the clamping blocks (15) can be clamped into the sliding groove (16) and the clamping groove (17).

5. The bottle-making line according to claim 4, characterized in that: When the clamping blocks (15) are clamped into the clamping grooves (17), the baffle (8) is perpendicular to the horizontal plane.

6. The bottle-making line according to claim 5, characterized in that: The number of the heat shields is multiple, and the number and position of the heat shields correspond to the preliminary mold devices one by one.