Floor type through double-station pressing equipment
By designing a floor-standing, center-through, double-station pressing equipment and adopting a main cabinet and object conveying mechanism, the problems of low efficiency and unreasonable space utilization of existing pressing equipment are solved, and more efficient object pressing and equipment layout optimization are achieved.
Patent Information
- Application Number
- CN202422001343.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-08-19
AI Technical Summary
Existing pressing equipment is inefficient and occupies an unreasonable space, making it impossible to achieve an optimized structural layout of the equipment.
A floor-standing, center-through, double-station pressing equipment is designed, which includes a main cabinet, a pressing frame assembly and an object conveying mechanism. The pressing frame assembly consists of a bilaterally symmetrical L-shaped pressing frame, a pressing cylinder, a pressing panel and a vacuum suction hole. The object conveying mechanism realizes efficient conveying and pressing of objects through a conveying track, a mobile box, a material rack and a material rod.
It significantly improves the pressing efficiency, optimizes the space utilization of the equipment, and achieves a more efficient object pressing process.
Smart Images

Figure CN223355022U_ABST
Abstract
Description
[Technical field]
[0001] The utility model relates to the technical field of pressing equipment, in particular to a floor-standing center-through double-station pressing equipment with reasonable structural design and outstanding use effect. [Background Technology]
[0002] During use, the pressing equipment can press two objects together, or press the materials into shape by squeezing them, and press soft materials into predetermined shapes or patterns.
[0003] The pressing equipment in the existing technology generally uses a single loading mechanism combined with a matching independent pressing table to perform the pressing process between two objects. This situation not only causes low efficiency, but also has an unreasonable space occupation and cannot achieve a better structural layout of the equipment.
[0004] For example, the utility model patent with application number CN202320786990.0 and patent name "A positioning fixture for pressing equipment" specifically discloses a positioning fixture for pressing equipment, which relates to the field of pressing positioning technology. A positioning fixture for pressing equipment includes a pressing equipment, wherein the inner side of the pressing equipment is slidably connected to a pressing plate, and the inner side of the pressing equipment is slidably connected to a limiting guide ring. The inner side of the limiting guide ring is provided with an external docking groove, and the inner wall of the external docking groove is slidably connected to a mold pressing plate. The positioning fixture of the pressing equipment, at this time, the positioning column enters the inner wall of the positioning groove to limit the mold pressing plate. This method ensures the convenience of fixing the mold pressing plate when it is placed on the inner side of the limiting guide ring for use, and also ensures the flexibility of replacing and adjusting the mold pressing plate, reducing the cumbersomeness of the traditional mold pressing plate replacement and adjustment operation with the help of bolts. At the same time, this method also ensures the stability of the mold pressing plate when used inside the pressing equipment and the efficiency of adjustment.
[0005] Based on this, it is necessary to further improve and enhance the existing equipment. [Utility Model Content]
[0006] The problems existing in the prior art that this application solves are:
[0007] The pressing equipment in the existing technology generally uses a single loading mechanism combined with a matching independent pressing table to perform the pressing process between two objects. This situation not only causes low efficiency, but also has an unreasonable space occupation and cannot achieve a better structural layout of the equipment.
[0008] The solution to the technical problem solved by this utility model is:
[0009] Provided is a floor-standing, center-through, double-station pressing equipment, comprising a main cabinet, a pressing frame assembly arranged on the upper part of the main cabinet, and an object conveying mechanism for conveying objects, the pressing frame assembly comprising a first pressing frame mechanism and a second pressing frame mechanism which are symmetrically arranged on the left and right; the first pressing frame mechanism and the second pressing frame mechanism are arranged opposite to each other and have the same structure; the first pressing frame mechanism comprises an L-shaped pressing frame, a pressing cylinder fixedly arranged on the upper part of the L-shaped pressing frame, a pressing panel connected to the output shaft of the pressing cylinder, and a pressing bottom plate located at the lower part of the L-shaped pressing frame; a plurality of vacuum suction holes for stabilizing the object to be processed are arranged in a matrix on the pressing bottom plate; a vacuum adsorber is arranged inside the main cabinet and is interconnected with the vacuum suction holes through pipelines; the The object conveying mechanism is located between the first pressing frame mechanism and the second pressing frame mechanism; the object conveying mechanism includes a conveying track arranged on the upper surface of the main cabinet, a mobile box arranged on the conveying track, a material rack located on the upper part of the mobile box, a material rod that can be vertically lifted and lowered on the material rack, and a plurality of material adsorption heads located at both ends of the material rod; it also includes a driving motor for driving the mobile box to move on the conveying track and a driving cylinder for driving the material rod to move up and down; a ring part matching the material rack is provided in the middle part of the material rod; a slide rail matching the ring part is provided on the material rack; both ends of the material rod can be extended into the lower part of the L-shaped pressing frame when the object conveying mechanism is running.
[0010] Preferably, a cooling fan is further provided inside the main cabinet, and cooling windows are provided on both sides of the main cabinet; the cooling fan is provided close to the cooling windows.
[0011] Preferably, a temperature sensor for sensing temperature values is further provided inside the main cabinet, for sensing the operating temperature condition of the equipment in real time.
[0012] The technical effects of this application in solving the technical problem are as follows:
[0013] Compared with the prior art, the present invention is a floor-standing, center-through, double-station pressing equipment. By simultaneously setting a main cabinet, a pressing frame assembly set on the upper part of the main cabinet, and an object conveying mechanism for conveying objects, the pressing frame assembly includes a first pressing frame mechanism and a second pressing frame mechanism that are symmetrically arranged on the left and right; the first pressing frame mechanism and the second pressing frame mechanism are arranged opposite to each other and have the same structure; the first pressing frame mechanism includes an L-shaped pressing frame, a pressing cylinder fixedly arranged on the upper part of the L-shaped pressing frame, a pressing panel connected to the output shaft of the pressing cylinder, and a pressing bottom plate at the lower part of the L-shaped pressing frame; a plurality of vacuum suction holes for stabilizing the object to be processed are provided in a matrix on the pressing bottom plate; a vacuum adsorber is provided inside the main cabinet, which is interconnected with the vacuum suction holes through pipelines; the object conveying mechanism The feeding mechanism is located between the first pressing frame mechanism and the second pressing frame mechanism; the object conveying mechanism includes a conveying track arranged on the upper surface of the main cabinet, a mobile box arranged on the conveying track, a material rack located on the upper part of the mobile box, a material rod that can be vertically lifted and lowered on the material rack, and a plurality of material adsorption heads located at the end parts of the material rod; it also includes a driving motor for driving the mobile box to move on the conveying track and a driving cylinder for driving the material rod to move up and down; a ring part matching the material rack is provided in the middle part of the material rod; a slide rail matching the ring part is provided on the material rack; both ends of the material rod can be extended into the lower part of the L-shaped pressing frame when the object conveying mechanism is running. In actual application, the pressing efficiency can be significantly improved. [Brief Description of the Drawings]
[0014] Figure 1 The utility model is a three-dimensional structural diagram of a floor-standing center-through double-station pressing device. [Specific implementation method]
[0015] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0016] See also Figure 1The utility model is a floor-standing center-through double-station pressing device 1, which includes a main cabinet 11, a pressing frame assembly arranged on the upper part of the main cabinet 11, and an object conveying mechanism 14 for conveying objects. The pressing frame assembly includes a first pressing frame mechanism 12 and a second pressing frame mechanism 13 which are symmetrically arranged on the left and right; the first pressing frame mechanism 12 and the second pressing frame mechanism 13 are arranged opposite to each other and have the same structure; the first pressing frame mechanism 12 includes an L-shaped pressing frame, a pressing cylinder 121 fixedly arranged on the upper part of the L-shaped pressing frame, a pressing panel 123 connected to the output shaft of the pressing cylinder 121, and a pressing bottom plate 122 at the lower part of the L-shaped pressing frame; a plurality of vacuum pumps for stabilizing the object to be processed are provided in a matrix on the pressing bottom plate 122. Empty suction hole; A vacuum absorber is provided inside the main cabinet 11 and is connected to the vacuum suction hole through a pipeline; the object conveying mechanism 14 is located between the first pressing frame mechanism 12 and the second pressing frame mechanism 13; the object conveying mechanism 14 includes a conveying track 141 provided on the upper surface of the main cabinet 11, a mobile box 142 provided on the conveying track 141, a material rack 147 on the upper part of the mobile box 142, a material rod 146 that can be vertically lifted and moved on the material rack 147, and a plurality of material adsorption heads at both ends of the material rod 146; the present application does not specifically limit the structure of the material adsorption head, which is a conventional technical component in this field, mainly having a suction nozzle structure capable of vacuum adsorption, etc.;
[0017] It also includes a driving motor 143 for driving the mobile box 142 to move on the conveying track 141 and a driving cylinder 148 for driving the material rod 146 to move up and down; a ring part 144 matching the material rack 147 is provided in the middle part of the material rod 146; a slide rail matching the ring part 144 is provided on the material rack 14; both ends of the material rod 146 can be extended into the lower part of the L-shaped pressing frame when the object conveying mechanism 14 is running.
[0018] The present application simultaneously sets up a main cabinet 11, a pressing frame assembly set on the upper part of the main cabinet 11 and an object conveying mechanism 14 for conveying objects, the pressing frame assembly includes a first pressing frame mechanism 12 and a second pressing frame mechanism 13 which are symmetrically arranged on the left and right; the first pressing frame mechanism 12 and the second pressing frame mechanism 13 are arranged opposite to each other and have the same structure; the first pressing frame mechanism 12 includes an L-shaped pressing frame, a pressing cylinder 121 fixedly set on the upper part of the L-shaped pressing frame, a pressing panel 123 connected to the output shaft of the pressing cylinder 121 and a pressing bottom plate 122 at the lower part of the L-shaped pressing frame; a plurality of vacuum suction holes for stabilizing the objects to be processed are provided in a matrix on the pressing bottom plate 122; a vacuum absorber is provided inside the main cabinet 11, which is connected to the vacuum suction holes through a pipeline; the object conveying mechanism 14 is located between the first pressing frame mechanism 12 and the second pressing frame mechanism 13 The object conveying mechanism 14 includes a conveying track 141 arranged on the upper surface of the main cabinet 11, a mobile box 142 arranged on the conveying track 141, a material rack 147 on the upper part of the mobile box 142, a material rod 146 that can be vertically lifted and lowered on the material rack 147, and a plurality of material adsorption heads at both ends of the material rod 146; it also includes a driving motor 143 for driving the mobile box 142 to move on the conveying track 141 and a driving cylinder 148 for driving the material rod 146 to move up and down; a ring part 144 matching the material rack 147 is provided in the middle part of the material rod 146; a slide rail matching the ring part 144 is provided on the material rack 14; both ends of the material rod 146 can be extended into the lower part of the L-shaped pressing frame when the object conveying mechanism 14 is running. In actual application, the pressing efficiency can be significantly improved.
[0019] In some other embodiments, a cooling fan is further provided inside the main cabinet 11 , and cooling windows are provided on both sides of the main cabinet 11 ; the cooling fan is provided close to the cooling windows.
[0020] The main cabinet 11 is further provided with a temperature sensor for sensing a temperature value, which is used to sense the operating temperature condition of the device in real time.
[0021] The technical effects of this application in solving the technical problem are as follows:
[0022] Compared with the prior art, the present invention is a floor-standing, center-through, double-station pressing device 1, which is provided with a main cabinet 11, a pressing frame assembly provided on the upper part of the main cabinet 11, and an object conveying mechanism 14 for conveying objects. The pressing frame assembly includes a first pressing frame mechanism 12 and a second pressing frame mechanism 13 which are symmetrically arranged on the left and right; the first pressing frame mechanism 12 and the second pressing frame mechanism 13 are arranged opposite to each other and have the same structure; the first pressing frame mechanism 12 includes an L-shaped pressing frame, a pressing cylinder 121 fixedly provided on the upper part of the L-shaped pressing frame, a pressing panel 123 connected to the output shaft of the pressing cylinder 121, and a pressing bottom plate 122 located at the lower part of the L-shaped pressing frame; a plurality of vacuum suction holes for stabilizing the object to be processed are provided in a matrix on the pressing bottom plate 122; a vacuum adsorber is provided inside the main cabinet 11, which is connected to the vacuum suction holes through a pipeline; the object conveying mechanism 14 is located in the first pressing frame mechanism 1 2 and the second pressing frame mechanism 13; the object conveying mechanism 14 includes a conveying track 141 arranged on the upper surface of the main cabinet 11, a mobile box 142 arranged on the conveying track 141, a material rack 147 on the upper part of the mobile box 142, a material rod 146 that can be vertically lifted and lowered on the material rack 147, and a plurality of material adsorption heads at the end parts of the material rod 146; it also includes a driving motor 143 for driving the mobile box 142 to move on the conveying track 141 and a driving cylinder 148 for driving the material rod 146 to move up and down; a ring part 144 matching the material rack 147 is provided in the middle part of the material rod 146; a slide rail matching the ring part 144 is provided on the material rack 14; both ends of the material rod 146 can be extended into the lower part of the L-shaped pressing frame when the object conveying mechanism 14 is running, which can significantly improve the pressing efficiency in actual application.
[0023] The above-described embodiments of the present invention do not limit the scope of protection of the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present invention shall be included in the scope of protection of the claims of the present invention.
Claims
1. A floor-standing, center-through, double-station pressing device comprising a main cabinet, a pressing frame assembly disposed on the upper portion of the main cabinet, and an object conveying mechanism for conveying objects, characterized in that: The pressing frame assembly includes a first pressing frame mechanism and a second pressing frame mechanism that are symmetrically arranged on the left and right; the first pressing frame mechanism and the second pressing frame mechanism are arranged opposite to each other and have the same structure; the first pressing frame mechanism includes an L-shaped pressing frame, a pressing cylinder fixedly arranged on the upper part of the L-shaped pressing frame, a pressing panel connected to the output shaft of the pressing cylinder, and a pressing base plate at the lower part of the L-shaped pressing frame; a plurality of vacuum suction holes for stabilizing the object to be processed are arranged in a matrix on the pressing base plate; a vacuum absorber is arranged inside the main cabinet and is connected to the vacuum suction holes through pipelines; the object conveying mechanism is located between the first pressing frame mechanism and the second pressing frame mechanism. The object conveying mechanism includes a conveying track arranged on the upper surface of the main cabinet, a mobile box arranged on the conveying track, a material rack on the upper part of the mobile box, a material rod that can be vertically lifted and lowered on the material rack, and a plurality of material adsorption heads at both ends of the material rod; it also includes a driving motor for driving the mobile box to move on the conveying track and a driving cylinder for driving the material rod to move up and down; a ring part matching the material rack is provided in the middle part of the material rod; a slide rail matching the ring part is provided on the material rack; both ends of the material rod can extend into the lower part of the L-shaped pressing frame when the object conveying mechanism is running.
2. A floor-standing center-through double-station pressing device according to claim 1, characterized in that: A cooling fan is further provided inside the main cabinet, and cooling windows are provided on both sides of the main cabinet; the cooling fan is arranged close to the cooling windows.
3. The floor-standing center-through double-station pressing device according to claim 2, characterized in that: A temperature sensor for sensing temperature values is also provided inside the main cabinet, which is used to sense the operating temperature status of the equipment in real time.
Citation Information
Patent Citations
Positioning jig of pressing equipment
CN219486700U