Domestic glass product forced cooling bottle clamping rack
By designing a high-pressure cooling clamp bottle holder, pressurized gas is used to rapidly cool the inside and outside of the glass bottle, solving the problem of slow cooling in existing clamp bottle holders and improving the cooling rate of the glass bottle and the efficiency of subsequent processing.
Patent Information
- Application Number
- CN202520200819.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-08
AI Technical Summary
The existing bottle clamps lack a structure to assist in cooling the glass bottles, resulting in a slow cooling rate and delaying subsequent processing efficiency.
A powerful cooling clamp bottle holder is designed, including a first clamp, a second clamp, an air source, a cooling-aiding component, and an air supply channel. It rapidly cools the inside and outside of the glass bottle by pressurizing gas, and uses the first and second cooling-aiding components to blow gas from the bottle mouth and bottle body respectively to increase the air flow speed.
It accelerates the cooling rate of the glass bottle, improves the efficiency of subsequent processing, and prevents the glass bottle from deforming.
Smart Images

Figure CN223737925U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of glass bottle feeding equipment especially relates to a daily glass product strong cold clamp bottle rack. BACKGROUND
[0002] Glass bottle is the container used in daily life, and the glass bottle is usually formed by blowing process in production; after the blowing is completed in the mold, the glass bottle needs to be clamped out by clamp and sent to the next process.
[0003] However, the temperature of the glass bottle after the mold is high, and the natural cooling rate is slow, and the existing clamp bottle rack does not have a structure for assisting the glass bottle cooling, thereby delaying the subsequent processing efficiency. UTILITY MODEL CONTENT
[0004] In view of the above problems, the utility model provides a daily glass product strong cold clamp bottle rack, which aims to improve the cooling rate of the glass bottle.
[0005] In order to achieve the above-mentioned purpose of the application, the utility model adopts the following technical scheme:
[0006] A daily glass product strong cold clamp bottle rack is provided, comprising: a first clamp and a second clamp for clamping the mouth of a glass bottle; a first cooling aid component is detachably mounted on the first clamp or the second clamp; a gas source for providing pressurized gas; a gas supply channel is provided in the first cooling aid component, one end is connected to the gas source, and the other end faces the inside of the glass bottle.
[0007] Further, the clamp bottle rack further comprises: a threaded hole, the threaded hole is provided on the first clamp or the second clamp, and the first cooling aid component is installed in the threaded hole through threaded connection.
[0008] Further, the gas supply channel comprises: a first channel and a second channel, the first channel is horizontally provided in the first cooling aid component, and the first channel is communicated with the gas source; the second channel is vertically provided in the first cooling aid component, and the second channel is communicated with the first channel, and the central axis of the second channel coincides with the central axis of the glass bottle.
[0009] Further, the clamp bottle rack further comprises: a storage rack arranged below the glass bottle; a second cooling aid component in the shape of a circular arc, hollow inside, mounted on the storage rack; an air inlet hole is provided on the second cooling aid component, one end is connected to the gas source, and the other end is communicated with the inside of the second cooling aid component; a plurality of air outlet holes are arranged in a circular array on the second cooling aid component with the central axis of the glass bottle as the center, one end is communicated with the inside of the second cooling aid component, and the other end faces the body of the glass bottle; an extension component, the main body of the extension component is arranged on the storage rack, and the piston rod of the extension component is connected to the second cooling aid component.
[0010] Further, the angle a between the central axis of the air outlet hole and the direction of gravity is an acute angle.
[0011] Further, the pressure of the pressurized gas provided by the gas source is 0.1-0.2 MPa.
[0012] The beneficial effects of the utility model are that: in the utility model, the first cooling assisting part is installed on the first clamp or the second clamp, the gas source can send gas to the glass bottle through the gas supply channel, the air flow speed is accelerated, the cooling rate of the glass bottle is improved, and the efficiency of subsequent processing can be accelerated; the gas source can also send pressurized gas to the bottle body of the glass bottle along the circumference through the second cooling assisting part, the air flow speed outside the glass bottle is improved, and the cooling rate of the glass bottle is improved. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 The utility model provides the overall structure schematic diagram of clamp bottle rack for embodiment of this application.
[0014] Figure 2 The installation schematic diagram of the first cooling assisting part is provided for the embodiment of the application.
[0015] Figure 3 The internal section view of the second cooling assisting part is provided for the embodiment of the application.
[0016] Figure 4 The top view of the second cooling assisting part is provided for the embodiment of the application.
[0017] Wherein, 11, first clamp;12, second clamp;2, first cooling assisting part;21, first channel;22, second channel;3, gas source;4, storage rack;5, second cooling assisting part;51, air inlet hole;52, air outlet hole;6, telescopic part;7, glass bottle. DETAILED DESCRIPTION
[0018] In order to better understand the above technical solutions, the above technical solutions will be described in detail in conjunction with the drawings of the specification and specific embodiments.
[0019] Referring to Figure 1 As shown in the figure, the application embodiment discloses a kind of daily glass products intensive cooling clamp bottle rack, comprising: first clamp 11 and second clamp 12, for clamping the mouth of glass bottle 7;First cooling assisting part 2, it is detachably installed on first clamp 11 or second clamp 12;Gas source 3, for providing pressurized gas;Gas supply channel, it is set up in first cooling assisting part 2, one end is connected gas source 3, another end is towards the inside of glass bottle 7.
[0020] In the utility model, first cold-aiding part 2 is additionally arranged on first clamp 11 or second clamp 12, and the glass bottle 7 after blowing is clamped out by first clamp 11 and second clamp 12, and is sent to the next process, and air source 3 can send gas to glass bottle 7 through gas supply channel, air flow speed is accelerated, the cooling rate of glass bottle 7 is improved, and the efficiency of subsequent processing can be accelerated.
[0021] It is worth mentioning that first clamp 11 and second clamp 12 can be installed on six-axis industrial robot, and first clamp 11 and second clamp 12 are driven to move relatively by hydraulic cylinder or servo motor, so that the clamping action of first clamp 11 and second clamp 12 on glass bottle 7 can be realized, and the specific mounting structure is the known technology in the field, and will not be repeated here.
[0022] Specifically, the bottle clamp further comprises: a threaded hole, the threaded hole is formed in the first clamp 11 or the second clamp 12, and the first cold-aiding part 2 is installed in the threaded hole through threaded connection.
[0023] In the embodiment, the threaded hole is formed in the first clamp 11, and the first cold-aiding part 2 is detachably installed on the first clamp 11 through threaded connection, so that the first cold-aiding part 2 can be flexibly replaced, and the later maintenance is facilitated.
[0024] Referring to Figure 2 As shown in the figure, the gas supply channel comprises: a first channel 21 and a second channel 22, the first channel 21 is horizontally formed in the first cold-aiding part 2, and the first channel 21 is communicated with the air source 3; the second channel 22 is vertically formed in the first cold-aiding part 2, and the second channel 22 is communicated with the first channel 21, and the central axis of the second channel 22 coincides with the central axis of the glass bottle 7.
[0025] In the embodiment, the pressurized gas delivered by the air source 3 is sent to the inside of the glass bottle 7 through the first channel 21 and the second channel 22, the high-temperature gas in the glass bottle 7 is pressurized and blown out, the air flow speed in the glass bottle 7 can be effectively improved, and the cooling rate of the glass bottle 7 is improved.
[0026] Specifically, the bottle clamp further comprises: a storage rack 4 arranged below the glass bottle 7; a second cold-aiding part 5 in the shape of a circular arc, hollow inside, and installed on the storage rack 4; an air inlet hole 51 formed on the second cold-aiding part 5, one end connected to the air source 3, and the other end communicated with the inside of the second cold-aiding part 5; a plurality of air outlet holes 52, with the central axis of the glass bottle 7 as the center, arranged in a circular array on the second cold-aiding part 5, one end communicated with the inside of the second cold-aiding part 5, and the other end towards the body of the glass bottle 7; and an extension part 6, the main body of the extension part 6 is arranged on the storage rack 4, and the piston rod of the extension part 6 is connected to the second cold-aiding part 5.
[0027] In specific use, the first clamp 11 and the second clamp 12 can also stop the clamped glass bottle 7 above the shelf 4 and buffer for a fixed time during the clamping process of the glass bottle 7; at this time, the telescopic component 6 is started, the piston rod of the telescopic component 6 is in elongation, the second cooling component 5 is driven to move along the axial direction of the glass bottle 7, and the second cooling component 5 is sleeved on the glass bottle 7; the air source 3 can deliver the pressurized gas to the bottle body of the glass bottle 7 along the circumferential direction through the second cooling component 5, so as to improve the air flow speed outside the glass bottle 7 and improve the cooling rate of the glass bottle 7.
[0028] It is worth mentioning that the telescopic component 6 can be selected from a hydraulic cylinder, an air cylinder and an electric push rod.
[0029] In the embodiment, the air source 3 is selected from an air compressor, and the air compressor is connected with the first cooling component 2 and the second cooling component 5 through a pipe; of course, the pipe should have sufficient length for the movement of the first cooling component 2 and the second cooling component 5.
[0030] Referring to FIGS. 1, 2 and 3, Figure 3 and Figure 4 As shown, the included angle α between the central axis of the air outlet hole 52 and the direction of gravity is an acute angle, the pressurized gas is blown obliquely upward through the air outlet hole 52, the air flow rate at the part of the mouth of the glass bottle 7 which is shielded by the first clamp 11 and the second clamp 12 is accelerated, and the cooling speed of the whole glass bottle 7 is accelerated.
[0031] Preferably, the pressure of the pressurized gas provided by the air source 3 is 0.1-0.2 MPa, which can ensure the cooling effect and also avoid that the pressure of the pressurized gas is too large to prevent the deformation of the unshaped glass bottle 7.
[0032] Those skilled in the art should understand that although the preferred embodiments of the utility model have been described, those skilled in the art can make other changes and modifications to the embodiments once they know the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications falling within the scope of the utility model. Obviously, those skilled in the art can make various changes and modifications to the utility model without departing from the spirit and scope of the utility model. Thus, if these modifications and changes of the utility model fall within the scope of the equivalent technology of the claims of the utility model, the utility model also intends to include these changes and modifications.
Claims
1. A strong cold glassware clamp bottle rack characterized by, The device comprises: a first clamp (11) and a second clamp (12) for clamping the mouth of a glass bottle (7); a first cooling component (2) detachably mounted on the first clamp (11) or the second clamp (12); a gas source (3) for providing pressurized gas; a gas supply channel formed in the first cooling component (2), one end of which is connected to the gas source (3) and the other end of which faces the interior of the glass bottle (7).
2. A strong cold glassware product holder according to claim 1, characterized in that, The device further comprises: a threaded hole formed in the first clamp (11) or the second clamp (12), and the first cooling component (2) is mounted in the threaded hole by screw connection.
3. The strong cold glassware gripper of claim 1, wherein, The gas supply channel comprises a first channel (21) and a second channel (22), the first channel (21) is horizontally formed in the first cooling component (2) and communicates with the gas source (3), and the second channel (22) is vertically formed in the first cooling component (2) and communicates with the first channel (21), the central axis of the second channel (22) coincides with the central axis of the glass bottle (7).
4. The strong cold glassware gripper of claim 1, wherein, The device further comprises: a rack (4) arranged below the glass bottle (7); a second cooling component (5) in the shape of a circular arc, hollow inside, mounted on the rack (4); an air inlet hole (51) formed in the second cooling component (5), one end of which is connected to the gas source (3) and the other end of which communicates with the interior of the second cooling component (5); a plurality of air outlet holes (52) formed in the second cooling component (5) in a circumferential array with the central axis of the glass bottle (7) as the center, one end of which communicates with the interior of the second cooling component (5) and the other end of which faces the body of the glass bottle (7); a telescopic component (6), the main body of which is arranged on the rack (4), and the piston rod of which is connected to the second cooling component (5).
5. A strong cold glassware gripper according to claim 4, characterized in that, The angle α between the central axis of the air outlet hole (52) and the direction of gravity is an acute angle.
6. The strong cold glassware gripper of claim 1, wherein, The pressure of the pressurized gas provided by the gas source (3) is 0.1-0.2 MPa.