Heat-resistant bottle clamp capable of adapting to high-temperature environment
By designing a shell and bottle clamping plate matching structure for heat-resistant bottle clamps, tool-free quick replacement of bottle clamping plates is achieved, and heat resistance is improved. This solves the problems of easy damage and inconvenient maintenance of existing bottle clamps, and improves production efficiency and service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2026-03-27
AI Technical Summary
Existing bottle clamps have a short service life, are prone to rust, are inconvenient to maintain, and require tools to replace the bottle clamps, which affects production efficiency and costs.
A heat-resistant bottle clamp was designed, comprising a shell, bottle clamps, a fixing mechanism, a threaded rod, and a movable plate. Through the fit design between the shell and the bottle clamps, the bottle clamps can be quickly replaced without the aid of tools, and a high-temperature resistant layer is provided on the bottle clamps to improve heat resistance.
It enables quick replacement of bottle clamps and improves heat resistance, extends the service life of bottle clamps, reduces maintenance costs, and improves production efficiency.
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Figure CN224047251U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass bottle processing technical field especially relates to a kind of heat-resistant bottle pliers that can adapt to high temperature environment. BACKGROUND
[0002] Glass bottle is commonly used to contain liquid container, in the case where a variety of packaging materials surge into market, glass container still occupies an important position in beverage packaging.Glass raw material is quartz sand as main raw material, plus other auxiliary materials are melted into liquid at high temperature, then inject mould, cooling, cutting, tempering, just form glass bottle;Bottle pliers is a common tool in the process of glass bottle production and manufacturing, bottle pliers is mainly used for the clamping and transportation work of the glass bottle after forming;
[0003] The bottle pliers used at present are mostly cast by pure copper, with short service life, easy to rust, very not durable, belong to consumables, need workers frequently replace, and the cost of maintenance and replacement is higher, directly affect the productivity and benefit of factory, and the existing general bottle clamping plate is fixedly installed on the shell by fixing bolt, which leads to the dismounting process of bottle clamping plate being complicated, and the operation needs the aid of tool, if the staff forgets to carry the matching tool, the bottle clamping plate cannot be replaced conveniently, and the maintenance convenience of bottle clamping plate is greatly reduced.
[0004] Therefore, the utility model provides a kind of heat-resistant bottle pliers that can adapt to high temperature environment to solve the above problems. UTILITY MODEL CONTENTS
[0005] To solve the above technical problems, the utility model provides a kind of heat-resistant bottle pliers that can adapt to high temperature environment, which comprises two shells and a fixing mechanism.
[0006] Bottle clamping plates are inserted into the two shells, and the fixing mechanism for fixing the two bottle clamping plates is arranged on the two shells, and the contact connection is achieved between the shell and the bottle clamping plate.
[0007] The fixing mechanism comprises a piston rod, a conical rod, a sleeve, a ball and a spring, a sliding groove one is formed in each of the two shells, a piston rod is slidably connected in each of the two sliding grooves one, a conical rod is fixedly connected to one end of the piston rod, a sleeve is sleeved on the conical rod, three balls are movably connected to the sleeve, the three balls are in contact with the conical rod, and the three balls are clamped with the bottle clamping plate. The cooperation between the shell, the bottle clamping plate, the fixing mechanism, the threaded rod and the moving plate can achieve the effect of quickly replacing the bottle clamping plate without the aid of tools. Moreover, the heat resistance of the two bottle clamping plates is improved by the high-temperature-resistant layer on the two bottle clamping plates, so that the bottle pliers can adapt to high temperature environment and increase the service life.
[0008] Preferably, the sleeve is slidably connected to the piston rod, the sleeve is inserted into the bottle clamp, and a slot is opened on one side of the bottle clamp corresponding to the sleeve. Three slots are opened in the slot, and the three slots are respectively engaged with three balls. Through the interaction between the sleeve and the slot and the three balls and the three slots, the bottle clamp is limited and fixed.
[0009] Preferably, a spring is fitted on the piston rod, with both ends of the spring fixedly connected to the sleeve and the housing, respectively, so that the sleeve returns to its original shape through the elastic potential energy of the spring.
[0010] Preferably, each of the two housings has a sliding groove II, and a movable plate is slidably connected in each of the two sliding groove II to squeeze the liquid in the sliding groove II. A sealing ring I is fixedly sleeved on the movable plate, and the sealing ring I is in contact with the housing to improve the sealing performance.
[0011] Preferably, each of the two movable plates is rotatably connected to a threaded rod on one side. The two threaded rods are threadedly connected to the two housings respectively. By rotating the threaded rods, the threaded rods and housings are threadedly driven, causing the movable plates to slide within the sliding groove.
[0012] Preferably, the two housings are provided with through holes, which are respectively connected to two sliding grooves 2 and 1. Both sliding grooves 2 and 1 are filled with liquid, and the through holes facilitate the flow of liquid between sliding grooves 1 and 2.
[0013] Preferably, the sleeve is slidably connected to the shell, and a second sealing ring is fixedly sleeved on the piston rod. The second sealing ring is in contact with the shell to improve the sealing performance. Both bottle clamps are provided with a high-temperature resistant layer, which is made of graphite.
[0014] Compared with related technologies, the heat-resistant bottle clamp provided by this utility model, which can adapt to high-temperature environments, has the following beneficial effects:
[0015] This invention provides a heat-resistant bottle clamp that can adapt to high-temperature environments. Through the cooperative design of the shell, bottle clamps, fixing mechanism, threaded rod and moving plate, the bottle clamps can be quickly replaced without the need for tools. Moreover, the heat resistance of the two bottle clamps is improved by the high-temperature resistant layer on the two bottle clamps, thereby enabling the bottle clamp to adapt to high-temperature environments and increasing its service life. Attached Figure Description
[0016] Figure 1 A three-dimensional structural diagram of a heat-resistant bottle clamp that can adapt to high-temperature environments is provided for this utility model.
[0017] Figure 2 A schematic diagram of the anatomical structure of a heat-resistant bottle clamp that can adapt to high-temperature environments, provided by this utility model;
[0018] Figure 3 As Figure 2 Enlarged structural schematic view of the middle A;
[0019] Figure 4 Structural schematic view of the shell, bottle clamping plate, slot and clamping groove;
[0020] Figure 5 Fixing mechanism schematic view of the heat-resistant bottle clamp capable of adapting to high-temperature environment provided by the utility model.
[0021] Marked numbers in the figure: 1, shell; 2, bottle clamping plate; 3, fixing mechanism; 4, slot; 5, clamping groove; 6, sliding groove one; 7, sliding groove two; 8, moving plate; 9, threaded rod; 10, through hole; 31, piston rod; 32, conical rod; 33, sleeve; 34, ball; 35, spring. DETAILED DESCRIPTION
[0022] The utility model will be further described below in combination with the drawings and embodiments.
[0023] Please refer to Figures 1-5 A heat-resistant bottle clamp capable of adapting to high-temperature environment comprises two shells 1 and fixing mechanisms 3.
[0024] The two shells 1 are each inserted with a bottle clamping plate 2, and the two shells 1 are each provided with a fixing mechanism 3 for fixing the two bottle clamping plates 2, and the shells 1 and the bottle clamping plates 2 are in contact connection.
[0025] The fixing mechanism 3 comprises a piston rod 31, a conical rod 32, a sleeve 33, a ball 34 and a spring 35, the two shells 1 are each provided with a sliding groove one 6, the two sliding grooves one are each slidably connected with the piston rod 31, one end of the piston rod 31 is fixedly connected with the conical rod 32, the sleeve 33 is sleeved on the conical rod 32, three balls 34 are movably connected on the sleeve 33, the three balls 34 are in contact connection with the conical rod 32, and the three balls 34 are clamped with the bottle clamping plate 2, and through the cooperation between the shells 1, the bottle clamping plates 2, the fixing mechanisms 3, the threaded rods 9 and the moving plates 8, the bottle clamping plates 2 can be quickly replaced without the aid of tools; moreover, the heat resistance of the two bottle clamping plates 2 is improved through the high-temperature-resistant layer on the two bottle clamping plates 2, so that the bottle clamp can adapt to high-temperature environment and increase the service life.
[0026] In the present embodiment, the sleeve 33 is slidably connected with the piston rod 31, the sleeve 33 is inserted with the bottle clamping plate 2, one side of the bottle clamping plate 2 is provided with a slot 4 corresponding to the sleeve 33, three clamping grooves 5 are provided in the slot 4, and the three clamping grooves 5 are clamped with the three balls 34 respectively, so that the bottle clamping plate 2 is limited and fixed through the interaction between the sleeve 33 and the slot 4 and the three balls 34 and the three clamping grooves 5.
[0027] In the mode, the spring 35 is sleeved on the piston rod 31, the two ends of the spring 35 are fixedly connected with the sleeve 33 and the shell 1 respectively, and the sleeve 33 is restored to the original state through the elastic potential energy of the spring 35.
[0028] In the mode, the two shells 1 are provided with sliding grooves two 7, the two sliding grooves two 7 are slidably connected with the moving plates 8, the moving plates 8 are used for extruding the liquid in the sliding grooves two 7, the sealing ring one is fixedly sleeved on the moving plate 8, the sealing ring one is in contact with the shell 1, and the sealing performance is improved.
[0029] In the mode, the two moving plates 8 are rotatably connected with the threaded rods 9, the two threaded rods 9 are threadedly connected with the two shells 1 respectively, the threaded rods 9 are threadedly driven with the shells 1, and the moving plates 8 slide in the sliding grooves two 7.
[0030] In the mode, the two shells 1 are provided with through holes 10, the two through holes 10 are connected with the two sliding grooves two 7 and the sliding groove one 6 respectively, the two sliding grooves two 7 and the sliding groove one 6 are provided with liquid, and the liquid flows between the sliding groove one 6 and the sliding groove two 7 through the through holes 10.
[0031] In the mode, the sleeve 33 is slidably connected with the shell 1, the sealing ring two is fixedly sleeved on the piston rod 31, the sealing ring two is in contact with the shell 1, the sealing performance is improved, the two bottle clamp plates 2 are provided with high-temperature-resistant layers, the high-temperature-resistant layers are made of graphite, the heat resistance of the two bottle clamp plates is improved through the high-temperature-resistant layers on the two bottle clamp plates, and then the bottle clamp can adapt to a high-temperature environment, and the service life is prolonged.
[0032] The working principle of the heat-resistant bottle clamp capable of adapting to a high-temperature environment is as follows:
[0033] When the bottle clamp plate 2 needs to be disassembled and replaced, the threaded rod 9 is rotated, the threaded rod 9 is threadedly driven with the shell 1, the moving plate 8 slides to the left in the sliding groove two 7, the sleeve 33 is pulled upwards under the elastic potential energy of the spring 35, the three spheres 34 act on the bottle clamp plate 2 and move to the inside of the sleeve 33, and the three spheres 34 act on the conical rod 32, so that the conical rod 32 drives the piston rod 31 to slide upwards in the sliding groove one 6, the piston rod 31 extrudes the liquid in the sliding groove one 6 and flows into the sliding groove two 7 through the through hole 10, the sleeve 33 is separated from the slot 4 on the bottle clamp plate 2 under the action of the spring 35, the purpose of limiting the bottle clamp plate 2 is achieved, and then the bottle clamp plate 2 is pulled out of the shell 1, so that the bottle clamp plate 2 is quickly disassembled.
[0034] Afterwards, the new bottle clamp plate 2 is installed into the shell 1, and the three clamping grooves 5 of the slot 4 correspond to the sleeve 33 and the three balls 34 respectively, then, by reversely rotating the threaded rod 9, the moving plate 8 extrudes the liquid in the sliding groove two 7, flows into the sliding groove one 6 through the through hole 10, so that the pressure in the sliding groove one 6 increases, at this time, under the action of the pressure, the piston rod 31 moves downward, and the sleeve 33 is driven to move downward synchronously through the three balls 34, the spring 35 is stretched, the sleeve 33 is inserted into the slot 4, and the three balls 34 are clamped with the three clamping grooves 5 respectively, so that the effect of quickly installing the bottle clamp plate 2 is achieved.
[0035] Compared with the related art, the heat-resistant bottle clamp provided by the utility model has the following beneficial effects: the cooperation of various components can achieve the effect of quickly replacing the bottle clamp plate 2 without the aid of tools, greatly improving the convenience, and the structure is simple and convenient, and the practicality is higher.
[0036] The above is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process conversion according to the content of the utility model specification and drawings, or direct or indirect application in other related technical fields, is also included in the patent protection range of the utility model.
Claims
1. A heat-resistant bottle clamp capable of adapting to a high-temperature environment, characterized in that, It comprises two shells (1) and fixing mechanism (3); Two said shell (1) on both sides of the bottle clamp plate (2) are inserted, two said shell (1) on both sides are provided with two said bottle clamp plate (2) fixed fixing mechanism (3), through the shell (1) and bottle clamp plate (2) are connected by contact; The fixing mechanism (3) comprises a piston rod (31), a conical rod (32), a sleeve (33), a ball (34) and a spring (35), two sliding grooves (6) are formed in the two shells (1), and the piston rod (31) is slidably connected in the two sliding grooves. One end of the piston rod (31) is fixedly connected with the conical rod (32), the sleeve (33) is sleeved on the conical rod (32), three balls (34) are movably connected on the sleeve (33), the three balls (34) are in contact with the conical rod (32), and the three balls (34) are clamped with the bottle clamp plate (2).
2. The heat-resistant bottle clamp capable of adapting to a high-temperature environment according to claim 1, characterized in that, The sleeve (33) is slidably connected with the piston rod (31), and the sleeve (33) is inserted with the bottle clamp plate (2).
3. The heat-resistant bottle clamp of claim 2, wherein the heat-resistant bottle clamp is capable of being used in a high-temperature environment. The spring (35) is sleeved on the piston rod (31), and the two ends of the spring (35) are fixedly connected with the sleeve (33) and the shell (1) respectively.
4. The heat-resistant bottle clamp of claim 2, wherein, The side of the bottle clamp plate (2) is provided with an insertion slot (4) corresponding to the sleeve (33), and three clamping grooves (5) are formed in the insertion slot (4). Three said clamping grooves (5) are clamped with three said balls (34) respectively.
5. The heat-resistant bottle clamp of claim 1, wherein the heat-resistant bottle clamp is capable of being used in a high-temperature environment. Two sliding grooves (7) are formed in the two shells (1), and the moving plate (8) is slidably connected in the two sliding grooves (7). The sealing ring I is fixedly sleeved on the moving plate (8), and the sealing ring I is in contact with the shell (1).
6. The heat-resistant bottle clamp of claim 5, wherein the heat-resistant bottle clamp is capable of being used in a high-temperature environment. The side of the moving plate (8) is rotatably connected with the threaded rod (9), and the threaded rod (9) is threadedly connected with the shell (1).
7. The heat-resistant bottle clamp of claim 5, wherein the heat-resistant bottle clamp is capable of being used in a high-temperature environment. Two through holes (10) are formed in the two shells (1), and the two through holes (10) are connected with the two sliding grooves (7) and the sliding grooves (6) respectively. The two sliding grooves (7) and the sliding grooves (6) are provided with liquid.
8. The heat-resistant bottle clamp of claim 1, wherein, The sleeve (33) is slidably connected with the shell (1), the sealing ring II is fixedly sleeved on the piston rod (31), the sealing ring II is in contact with the shell (1), and the two bottle clamp plates (2) are provided with high temperature resistant layer.