Goblet production conveying device

By designing the transmission molds of the insulation box and hoisting rack, the problems of taking into account both lifting and insulation in the traditional conveying device of the goblet are solved, and efficient and safe conveying of goblets are achieved.

CN223200836UActive Publication Date: 2025-08-08SHANDONG HUAPENG SHIDAO GLASS PROD CO LTD
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Patent Information

Application Number
CN202422593867.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-08-08
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

In the existing goblet production and conveying devices, traditional conveying molds cannot take into account the lifting and insulation needs of goblets, resulting in poor space utilization and lack of maintenance of cup bodies, affecting transportation safety.

Method used

A transmission mold is designed, including an insulation box and a hoisting rack, which is used for the hoisting of the goblet cup feet, and the insulation box is used for the insertion and placement of the cup body, and combined with the indicator rubber strip on the conveying belt, ensuring the stable delivery of the goblet.

Benefits of technology

The safe and stable transportation of the goblet is achieved, the space utilization is improved, and the cup body is protected during the transportation process to avoid rupture caused by sprinting, and to ensure that the goblet is successfully delivered to the packaging line after quality inspection.

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Abstract

The utility model discloses a goblet production conveying device which comprises a conveyor and a conveying mold used for conveying goblets. The conveyor comprises a conveying belt, a plurality of indicating rubber strips are fixedly adhered to the conveying belt and are distributed in parallel, and a positioning area for placing a conveying mold is formed between every two adjacent indicating rubber strips at intervals; the conveying mold comprises a heat preservation box and a lifting frame arranged above the heat preservation box in a supporting mode, the lifting frame is used for lifting and placing goblet feet, and the heat preservation box is used for inserting and placing goblet bodies. The structure of the conveying mold is improved, the lifting frame is used for arranging a structural part for lifting the goblets, the heat preservation box is matched, the goblet body part can be maintained while the goblets are lifted and conveyed, and therefore the goblets can be safely and stably conveyed to a packaging line after production and quality inspection are completed, and packaging and factory leaving are achieved.
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Description

Technical Field

[0001] The utility model relates to a conveying device, in particular to a high-heeled glass production conveying device. Background Art

[0002] After the production and molding of high-heeled glasses, they need to be quality-inspected one by one before being transported to the packaging line. At present, the high-heeled glasses after quality inspection are mostly transported by means of transfer molds through conveyors. However, there are two traditional forms of transfer molds. One is a universal insulation box structure with placement holes set in the insulation box body, and one hole corresponds to one glass. This type of transfer mold is more suitable for straight-through glasses. The diameter of the high-heeled glasses is large, and it is easy for the high-heeled glasses to not fit the placement holes. The other is a hoisting structure. The hoisting structure mostly uses a plate body to open a hoisting hole, and one hoisting hole is used for the hoisting and placement of the foot of a high-heeled glass. There is a disadvantage of poor space utilization, and it is impossible to adapt to the setting of an insulation box, which makes the cup body of the high-heeled glass lack maintenance, which is not conducive to the transportation and maintenance of the high-heeled glasses to a certain extent. Utility Model Content

[0003] In order to solve the deficiencies existing in the above-mentioned technologies, the utility model provides a high-heeled glass production and conveying device.

[0004] In order to solve the above technical problems, the technical solution adopted by the utility model is: a high-heeled glass production and conveying device, including a conveyor, which also includes a conveying mold for conveying high-heeled glasses;

[0005] The conveyor includes a conveyor belt, on which a plurality of indicator rubber strips are fixed and attached. The plurality of indicator rubber strips are distributed in parallel, and a positioning area for placing the conveyor mold is separated between two adjacent indicator rubber strips.

[0006] The transfer mold includes an insulation box and a hanging frame supported and arranged above the insulation box. The hanging frame is used for hanging and placing the stems of the goblets, and the insulation box is used for inserting and placing the goblets.

[0007] Preferably, a protective pad is laid on the inner wall of the heat preservation box.

[0008] Preferably, a rod No. 1 is fixed at the top of one side wall of the heat preservation box, and a short support arm is fixed at the top of the rod No. 1;

[0009] The other side wall of the heat preservation box has two fixing ears extending outwards, a second rod is fixed to the fixing ears, and a long support arm is fixed to the top of the second rod;

[0010] The hanging frame is fixed between the short support arm and the long support arm.

[0011] Preferably, the hanging frame is composed of two frame rod units of the same shape and size;

[0012] Each frame rod unit has a straight rod portion and an extended portion;

[0013] The straight rod parts of the two frame rod units are arranged in parallel and together separate a lifting area;

[0014] The expansion part is inclined upward from one end of the straight rod part, and the expansion parts of the two frame rod units are respectively expanded outward to form a hoisting and placing area, and the opening size of the hoisting and placing area is gradually reduced toward the hoisting area.

[0015] Preferably, the other end of the straight rod portion is bent upward to lock and connect with the short support arm;

[0016] The other end of the extension portion is bent upward to lock and connect with the long support arm.

[0017] Preferably, the conveyor belt is installed between the side arms of the frame through conveyor rollers; the side arms of the frame are fixed to the top of the frame.

[0018] Preferably, a protective barrier bar is fixed above the side arm of the rack.

[0019] The utility model discloses a high-heeled glass production and conveying device, which is structurally improved based on an existing high-heeled glass conveyor. First, an indicator rubber strip is pasted on the conveyor belt of the conveyor to facilitate operators to quickly place the transfer mold; secondly, the transfer mold is structurally improved, and a lifting frame is used to set the high-heeled glass to realize the lifting of the structural part, and an insulation box is designed to meet the requirements of the high-heeled glass lifting and transmission while also allowing the cup body to be maintained. Therefore, after the high-heeled glass production quality inspection is completed, it can be safely and stably conveyed to the packaging line to realize packaging and shipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall structure of the utility model.

[0021] Figure 2 for Figure 1 Schematic diagram of the structure of the transfer mold.

[0022] Figure 3 for Figure 2 Schematic diagram of the central lifting frame structure.

[0023] In the figure: 1. Conveyor; 2. Conveying mold; 11. Frame; 12. Frame side arm; 13. Conveyor belt; 14. Indicator rubber strip; 15. Protective baffle; 21. Insulation box; 22. Protective pad; 23. Pole No. 1; 24. Short support arm; 25. Extension ear; 26. Pole No. 2; 27. Long support arm; 28. Hoisting frame; 281. Straight rod part; 282. Extension part; 283. Hoisting area; 284. Hoisting placement area. DETAILED DESCRIPTION

[0024] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0025] The utility model discloses a high-heeled cup production and conveying device, the overall structure is arranged as follows Figure 1 As shown, the conveyor 1 includes a belt conveyor 1 including a conveyor belt 13. The conveyor belt 13 is supported by a conveyor roller structure and installed between two sets of frame side arms 12. The power mechanism of the conveyor roller is located on one side of the frame 11, and the operation of the power mechanism is controlled by a control box. The frame side arms 12 are fixed to the top of the frame 11.

[0026] Unlike traditional high-heeled glass production conveying devices, the present new type has multiple indicator rubber strips 14 fixedly attached to the conveyor belt 13 of the conveyor 1. The multiple indicator rubber strips 14 are distributed in parallel, so that a positioning area for placing the conveying mold 2 is separated by two adjacent indicator rubber strips 14, so that the conveying mold 2 can be quickly positioned and placed.

[0027] Correspondingly, a protective bar 15 is fixed above the side wall 12 of the frame. The height of the protective bar 15 is about 5 cm, which plays the role of limiting protection on both sides of the transfer mold 2 and will not affect the operator's operation of placing or removing the transfer mold 2.

[0028] Furthermore, the high-heeled glass production and conveying device disclosed in the present invention is equipped with a newly designed transfer mold 2 that is specifically suitable for the production and conveying of high-heeled glasses.

[0029] The structure of the transfer mold 2 is as follows Figure 2 As shown, it includes an insulation box 21 and a hanging rack 28 supported and arranged above the insulation box 21. The hanging rack 28 is used for hanging and placing the stems of the high-heeled glasses, and the insulation box 21 is used for inserting and placing the cup body of the high-heeled glasses.

[0030] The insulation box 21 is implemented in the form of a structure in which insulation foam is embedded in a plastic shell, which has a certain insulation effect. The high-heeled glasses after quality inspection are usually not cooled to room temperature. Using the insulation box 21 to protect the high-heeled glasses can prevent the cup body from breaking in the case of sudden cooling. In addition, a layer of protective pad 22 is laid on the inner wall of the insulation box 21. The protective pad 22 can be made of elastic, impact-resistant sponge and other materials, which can protect the cup body to a certain extent. In addition, after the high-heeled glasses are hoisted by the hoisting frame 28, the cup body is partially protected by the insulation box, which also effectively reduces the probability of the high-heeled glasses shaking in the hoisting state, thereby effectively improving the safety protection level of the transmission mold for the transportation of the high-heeled glasses.

[0031] The hanging frame 28 is specifically arranged on the insulation box 21 through the vertical pole and the support arm structure, specifically: Figure 2As shown, a first rod 23 is fixed to the top of one side wall (the side wall where the short side is located) of the heat preservation box 21, and a short support arm 24 is fixed to the top of the first rod 23; similarly, fixing ears 25 extend outward from both ends of the other side wall (the side wall where the short side is located) of the heat preservation box 21, and a second rod 26 is fixed to the fixing ear 25, and a long support arm 27 is fixed to the top of the second rod 26;

[0032] The No. 1 pole and the No. 2 pole are both vertically distributed upright pole structures, and the short support arm and the long support arm are both horizontally distributed support arm structures, which are fixed between the short support arm 24 and the long support arm 27 by the hanging frame 28.

[0033] like Figure 3 As shown, the hanging frame 28 is composed of two frame rod units of the same shape and size;

[0034] Each frame rod unit has a straight rod portion 281 and an extension portion 282; the straight rod portions 281 between two frame rod units are arranged in parallel and together separate a hanging area 283;

[0035] The expansion portion 282 is inclined upward from one end of the straight rod portion 281 , and the expansion portion 282 between the two frame rod units is expanded outward, thereby forming a hoisting and placing area 284 whose opening size gradually shrinks toward the hoisting area 283 .

[0036] In addition, the specific assembly structure of the lifting frame and the support arm 24 is provided as follows: the other end of the straight rod portion 281 is bent upward to lock and connect the short support arm 24; the other end of the extension portion 282 is bent upward to lock and connect the long support arm 27; the locking connection can be achieved by using threaded joints, nuts and other structures.

[0037] In summary, the transfer mold 2 has a hoisting and placement area 284 that allows the body of a stemware to partially penetrate. The extended portion 282 slopes upward from one end of the straight rod portion 281, allowing the stemware to slide from the hoisting and placement area 284 to the hoisting area 283 where the straight rod portion 281 is located. The stemware's feet are hooked onto the straight rod portion 281 for hoisting, while the stemware's body is positioned downward within the cavity of the insulation box 21. Thus, after the stemware is positioned in the transfer mold 2, a worker places it in the positioning area of the conveyor belt 13. The conveyor then transports the stemware to the downstream packaging line.

[0038] Compared to the prior art, the stemware production and conveying device disclosed in this utility model utilizes a tailored structural modification to the stemware transfer mold based on the structural characteristics of stemware. The hoisting frame structure allows stemware to be arranged and hoisted. Compared to a structure where one hoisting hole fits one stemware, this device utilizes space more efficiently and can accommodate more stemware. Furthermore, while meeting the requirements for hoisting and transporting stemware, the device also provides enhanced protection through the insulated box, allowing for safe and stable delivery to the packaging line after quality inspection.

[0039] The above-mentioned implementation manner is not a limitation of the present invention, and the present invention is not limited to the above-mentioned examples. Any changes, modifications, additions or substitutions made by technicians in this technical field within the scope of the technical solution of the present invention also fall within the scope of protection of the present invention.

Claims

1. A highball glass production conveying device, comprising a conveyor (1), characterized in that: It also includes a transfer mold (2) for conveying high-heeled glasses; The conveyor (1) includes a conveyor belt (13), and a plurality of indicator rubber strips (14) are fixedly attached to the conveyor belt (13). The plurality of indicator rubber strips (14) are distributed in parallel, and a positioning area for placing the conveyor mold (2) is spaced between two adjacent indicator rubber strips (14); The transfer mold (2) comprises a heat preservation box (21) and a hanging frame (28) supported and arranged above the heat preservation box (21); the hanging frame (28) is used for hanging and placing the stem of the goblet; and the heat preservation box (21) is used for inserting and placing the body of the goblet.

2. The highball glass production and conveying device according to claim 1, characterized in that: A layer of protective pad (22) is laid on the inner side wall of the heat-insulating box (21).

3. The highball glass production and conveying device according to claim 1, characterized in that: A rod (23) is fixed to the top of one side wall of the heat preservation box (21), and a short support arm (24) is fixed to the top of the rod (23); The other side wall of the heat preservation box (21) has two ends extending outwardly to form fixing ears (25), a second rod (26) is fixed to the fixing ears (25), and a long support arm (27) is fixed to the top of the second rod (26); The hanging frame (28) is fixed between the short support arm (24) and the long support arm (27).

4. The highball glass production and conveying device according to claim 3, characterized in that: The hanging frame (28) is composed of two frame rod units of the same shape and size; Each of the frame rod units has a straight rod portion (281) and an expansion portion (282); The straight rod portions (281) of the two frame rod units are arranged in parallel and together separate a hoisting area (283); The expansion portion (282) is inclined upward from one end of the straight rod portion (281), and the expansion portions (282) of the two frame rod units are respectively expanded outward to form a hoisting and placement area (284), and the opening size of the hoisting and placement area (284) gradually shrinks toward the hoisting area (283).

5. The highball glass production and conveying device according to claim 4, characterized in that: The other end of the straight rod portion (281) is bent upward to lock and connect with the short support arm (24); The other end of the extension portion (282) is bent upward to lock and connect with the long support arm (27).

6. The highball glass production and conveying device according to claim 1, characterized in that: The conveyor belt (13) is installed between the frame side arms (12) via conveyor rollers; the frame side arms (12) are fixed to the top of the frame (11).

7. The highball glass production and conveying device according to claim 6, characterized in that: A protective barrier strip (15) is fixed above the frame side arm (12).