Silica gel feeding, impurity removing and cutting integrated device

By designing an integrated device for silicone feeding, impurity removal, and cutting, and using wear-resistant coated blades and filters, the problems of poor quantitative and thickness cutting and impurity removal of silicone were solved, achieving efficient production and environmentally clean silicone processing.

CN224044494UActive Publication Date: 2026-03-27XIAMEN METRO JUMBO TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing silicone compounding technology suffers from problems such as difficulty in quantitative and thickness-controlled cutting, environmental pollution, easy damage to cutting tools, and poor impurity removal.

Method used

An integrated feeding, impurity removal, and cutting device was designed, comprising a frame, screw extrusion mechanism, cutting mechanism, filtering mechanism, platform, controller, drive mechanism, main rubber roller, auxiliary rubber roller, rubber cutting mechanism, rubber blocking mechanism, feeding mechanism, and material transfer mechanism. It uses wear-resistant coated blades and filter screens to achieve quantitative and thickness-controlled cutting and effective impurity removal.

Benefits of technology

It improves production efficiency, ensures the durability of cutting tools, enhances the quality of silicone, reduces environmental pollution, and improves cutting and impurity removal effects.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of silica gel mixing, and discloses a silica gel feeding, impurity removing and cutting integrated device which comprises a rack, a screw extrusion mechanism, a cutting mechanism, a filtering mechanism, an objective table, a controller, a driving mechanism, a main rubber roller, an auxiliary rubber roller, a rubber cutting mechanism, a rubber blocking mechanism, a feeding mechanism and a conveying mechanism. A screw extrusion mechanism, a cutting mechanism, an objective table, a driving mechanism, a feeding mechanism, a material conveying mechanism and a controller are installed on the machine frame, the main rubber roller and the auxiliary rubber roller are both rotationally installed on the machine frame, a filtering mechanism is arranged on a rubber inlet of the screw extrusion mechanism, the cutting mechanism is arranged on the objective table, the driving mechanism is connected with the main rubber roller, the rubber cutting mechanism is installed on the machine frame, and the controller is installed on the machine frame. The glue blocking mechanism is arranged above the main glue roller and / or the auxiliary glue roller, the material conveying mechanism is arranged below the main glue roller, and the control end of the controller is electrically connected with the control ends of the driving mechanism, the screw extrusion mechanism, the cutting mechanism and the filtering mechanism; and mixing production of feeding, impurity removal and cutting of silica gel can be realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of silica gel mixing, and specifically relates to a feeding and impurity removing and cutting integrated device for silica gel. BACKGROUND

[0002] Silicone rubber refers to rubber whose main chain is alternately composed of silicon and oxygen atoms, and the silicon atoms are usually connected with two organic groups. Ordinary silicone rubber is mainly composed of siloxane links containing methyl groups and a small amount of vinyl groups. Silicone rubber is non-toxic and harmless, has good physiological inertia, and the mixing rubber made by special formula has many excellent properties. Among them, the toughness and elasticity of silica gel products are very excellent, and it is not easy to be permanently deformed by external force, and the hand feeling is relatively smooth, and silica gel products are widely used in various industries. At present, when silica gel is processed, the large block of silica gel needs to be cut in a quantitative and fixed thickness. There are great difficulties in such silica gel mixing and cutting. On the one hand, it is difficult to control the quantity and thickness. In the existing processing technology, the silica gel is spread by manual work, and then cut by small knives. This way is time-consuming and labor-intensive, and the production efficiency is low. In addition, the quantity and thickness are not balanced, which affects the use of subsequent processes. In addition, the silica gel production environment needs to be clean to reduce environmental impurity pollution. In addition, the existing knife cutting silica gel is often sticky or not wear-resistant. The cutting knife is easily damaged. In addition, the cut silica gel material also carries dust, particulate matter, dust and debris. The existence of these impurities will affect the quality of silica gel and the use of subsequent silica gel products. Therefore, the silica gel needs to be treated to remove impurities. However, the impurity removal effect of the existing impurity removal device is not good, and some impurities are always left in the silica gel material. In addition, the cutting knife of the silica gel is easily damaged, which affects the cutting of the silica gel.

[0003] Therefore, in view of the above problems, the existing silica gel mixing technology needs to be further improved. UTILITY MODEL CONTENTS

[0004] The utility model aims at overcoming the problems of the existing silica gel mixing technology, such as the inability to cut the silica gel material in a quantitative and fixed thickness, the poor mixing and cutting environment, and the poor wear resistance and use of the cutting knife. In addition, the silica gel impurity removal effect is not good, and the cutting knife is not wear-resistant and not durable. Through the rational design of the silica gel mixing technology, the rack, screw extrusion mechanism, cutting mechanism, filtering mechanism, object table, controller, driving mechanism, main rubber roller, auxiliary rubber roller, rubber cutting mechanism, rubber blocking mechanism, feeding mechanism and material conveying mechanism can effectively realize time and labor saving, improve production efficiency, realize quantitative and fixed thickness cutting, clean silica gel environment, and durable use of the cutting knife. In addition, the silica gel impurity removal can be effectively improved, the silica gel quality can be improved, the silica gel production efficiency can be increased, and the cutting knife can be used durably.

[0005] The technical scheme of the utility model is as follows:

[0006] The utility model discloses a silica gel's feeding and impurity removing cutting integration device, silica gel's feeding and impurity removing cutting integration device includes: frame, screw rod extruding mechanism, cutting mechanism, filter mechanism, object table, controller, drive mechanism, main rubber roller, auxiliary rubber roller, cut rubber mechanism, rubber blocking mechanism, feeding mechanism and material transmission mechanism, the frame is installed screw rod extruding mechanism, cutting mechanism, object table, drive mechanism, feeding mechanism, material transmission mechanism and controller, main rubber roller and auxiliary rubber roller are rotatory installation on the frame, the filter mechanism is equipped on the screw rod extruding mechanism's glue inlet, the filter mechanism is used for filtering the sundries and impurity in silica gel, cutting mechanism and object table all set up at the glue outlet of screw rod extruding mechanism, cutting mechanism and object table cooperate and are used for cutting off to silica gel, cutting mechanism sets up on the object table, the drive end of drive mechanism connects the driven end of main rubber roller, main rubber roller and auxiliary rubber roller are parallel and exist interval, cut rubber mechanism installs on the frame, and cut rubber mechanism sets up in the vicinity of main rubber roller, rubber blocking mechanism sets up in the upper of main rubber roller and / or auxiliary rubber roller, the feeding mechanism is used for placing silica gel on main rubber roller and / or auxiliary rubber roller, material transmission mechanism sets up below main rubber roller, and one end of material transmission mechanism is used for transmitting the silica gel that cut rubber mechanism cuts to the other end of material transmission mechanism, the other end of material transmission mechanism sets up at the glue inlet of screw rod extruding mechanism, the control end of controller is electrically connected with the control end of drive mechanism, the control end of controller is electrically connected with the control end of screw rod extruding mechanism, the control end of cutting mechanism and the control end of filter mechanism respectively.

[0007] Further, the screw rod extruding mechanism includes a driving motor, a screw rod and an extruding shell frame, the driving motor and the extruding shell frame are both mounted on the frame, the screw rod is rotatably installed in a cavity in the extruding shell frame, a driven end of the screw rod is connected with a driving end of the driving motor, and a control end of the driving motor is electrically connected with a control end of the controller.

[0008] Further, the screw rod extruding mechanism is a single screw rod extruding mechanism.

[0009] Further, the cutting mechanism includes a lifter, a lifting support and a cutting knife, the lifting support is mounted on the frame, the lifter is mounted on the lifting support, the cutting knife is mounted on a lifting end of the lifter, the cutting knife is slidably connected with the lifting support, and a control end of the lifter is electrically connected with a control end of the controller.

[0010] Further, the lifter is a lifting cylinder.

[0011] Further, the filtering mechanism comprises a telescopic device, a filter screen and a glue pressing plate, the telescopic device is installed on the rack, the filter screen is installed on the glue inlet of the screw extrusion mechanism, the telescopic end of the telescopic device is provided with the glue pressing plate, the glue pressing plate cooperates with the filter screen, and the telescopic device is used for pressing out the silica gel under the cooperation of the filter screen.

[0012] Further, the telescopic device is a telescopic cylinder.

[0013] Further, the filter screen and the glue pressing plate are arranged in parallel.

[0014] Further, the filter screen is a cutting and bevel type and is installed on the glue inlet of the screw extrusion mechanism.

[0015] Further, the filter screen and the horizontal plane form an angle in the range of 30°-60°.

[0016] Further, the filter screen and the horizontal plane form an angle of 45°.

[0017] Further, the cutting knife is a sharp steel knife with a TiCN / Al2O3 / TiN coating.

[0018] Further, the filter screen is made of stainless steel, polytetrafluoroethylene, nickel alloy or titanium alloy.

[0019] Further, the main glue roller and the auxiliary glue roller are made of stainless steel.

[0020] Further, the driving mechanism comprises a driving motor and a driving transmission mechanism, the driving motor and the driving transmission mechanism are installed on the rack, the control end of the controller is electrically connected with the control end of the driving motor, the driving end of the driving motor is connected with the driven end of the driving transmission mechanism, and the driving end of the driving transmission mechanism is connected with the driven end of the main glue roller.

[0021] Further, the driving transmission mechanism is a gear meshing type, for example, two gears can be selected, the first gear is installed on the driving end of the driving motor and is rotatably installed on the rack, the second gear is installed on the driven end of the main glue roller and is rotatably installed on the rack, and the first gear and the second gear are meshingly connected.

[0022] Further, the glue blocking mechanism comprises a glue blocking support and a glue blocking rod, the glue blocking support is installed on the rack, and the glue blocking rod is installed on the glue blocking support and used for blocking the silica gel.

[0023] Further, the glue blocking rod is selected to be rotatably installed on the glue blocking support, that is, the large piece of silica gel is placed on the interval between the main glue roller and the auxiliary glue roller, the main glue roller rotates to drive the silica gel into the interval, and the glue blocking rod blocks the silica gel from moving everywhere, and the rotation of the glue blocking rod is more helpful for the movement of the silica gel and prevents the silica gel from being scratched.

[0024] Further, the glue blocking mechanism is arranged above the interval between the main glue roller and the auxiliary glue roller.

[0025] Further, the glue blocking mechanism is arranged directly above the interval between the main glue roller and the auxiliary glue roller.

[0026] Further, the glue cutting mechanism comprises a glue cutting frame, a glue cutting knife and a lifting cylinder, the lifting cylinder is installed on the machine frame, the lifting end of the lifting cylinder is provided with the glue cutting frame, the glue cutting frame is provided with the glue cutting knife, the lifting cylinder is used to drive the lifting of the glue cutting knife and cut the silica gel, and the control end of the lifting cylinder is electrically connected with the control end of the controller.

[0027] Further, the glue cutting mechanism is arranged above the central horizontal plane of the main glue roller.

[0028] Further, the silica gel feeding, impurity removing and cutting integrated device further comprises a dust suction purifier, the dust suction purifier is installed on the machine frame, and the control end of the dust suction purifier is electrically connected with the control end of the controller.

[0029] Further, the dust suction purifier is arranged above the main glue roller and the auxiliary glue roller.

[0030] Further, the glue cutting knife is selected to be a sharp steel knife with a TiCN / Al2O3 / TiN coating on the surface.

[0031] Further, the silica gel feeding, impurity removing and cutting integrated device further comprises a storage disc, the storage disc is placed on the machine frame, and the storage disc is arranged below the main glue roller and the auxiliary glue roller, and the storage disc is used to store the silica gel falling after cutting.

[0032] Further, the feeding mechanism is selected to be a feeding manipulator, and the control end of the feeding manipulator is electrically connected with the control end of the controller.

[0033] Further, the transmission mechanism is selected to be a roller conveyor belt, and the glue inlet of the roller conveyor belt is higher than the glue outlet of the roller conveyor belt.

[0034] Advantages

[0035] This utility model, through the rational design of silicone compounding technology, employs a frame, screw extrusion mechanism, cutting mechanism, filtering mechanism, platform, controller, drive mechanism, main rubber roller, auxiliary rubber roller, rubber cutting mechanism, rubber blocking mechanism, feeding mechanism, and material transfer mechanism. It effectively achieves time and labor savings, improves production efficiency, enables quantitative and thickness-based cutting, maintains a clean silicone environment, and ensures durable cutting tools. It also effectively improves silicone impurity removal, enhances silicone quality, increases silicone production efficiency, and improves the durability of cutting tools. The design utilizes a lifting cylinder, lifting support, and cutting blade in conjunction, along with a TiCN / Al2 surface coating. O3 / TiN coated high-speed steel blades ensure the blade remains undamaged and allow for stable cutting of silicone. Wear-resistant coatings on high-speed steel blades enhance the silicone cutting effect. The combination of a filter screen, pressure plate, and telescopic cylinder enables effective silicone filtration, resulting in cleaner silicone. The use of a lifting cylinder, cutting frame, and cutting blade, along with a main roller, and a tiny gap between the blade tip and the main roller surface during cutting, allows the remaining silicone to be torn off under the weight of the cut silicone, achieving both quantitative and thickness-controlled silicone cutting while ensuring blade protection. Wear-resistant coatings on high-speed steel blades further enhance the silicone cutting effect. Attached Figure Description

[0036] Figure 1 This is a schematic diagram of the structure of an integrated device for feeding, removing impurities, and cutting silicone according to the present invention.

[0037] Figure 2 This is a schematic diagram of the post-mixing mechanism of a silicone feeding, impurity removal and cutting integrated device for silicone according to this utility model.

[0038] Figure 3 This is a schematic diagram of the pre-mixing mechanism of a silicone feeding, impurity removal and cutting integrated device for silicone according to this utility model.

[0039] Figure 4 This is a schematic diagram of the cutting blade and the cutting knife of the integrated feeding, impurity removal and cutting device for silicone according to this utility model.

[0040] Reference numerals: 1. Pre-mixing mechanism for silicone rubber; 2. Material transfer mechanism; 3. Post-mixing mechanism for silicone rubber; 4. Feeding mechanism; 102. Drive motor; 103. Inlet; 104. Filter screen; 105. Screw; 106. Pressure plate; 107. Telescopic cylinder; 108. Extrusion shell; 109. Platform; 110. Cutting mechanism; 111. Cutting blade; 01. Frame; 02. Drive mechanism; 03. Controller; 04. Dust collector; 05. Storage tray; 06. Cutting frame; 07. Cutting blade; 08. Main roller; 09. Cutting mechanism; 10. Glue blocking mechanism; 11. Auxiliary roller. Detailed Implementation

[0041] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.

[0042] Referring to Figures 1-4 The utility model provides a kind of loading and unloading of silica gel's integrated device of cutting impurity, and the loading and unloading of silica gel's integrated device of cutting impurity includes: rack 01, loading mechanism 4, material transmission mechanism 2, silica gel mixing forecourse mechanism 1, silica gel mixing aftercourse mechanism 3 and controller 03, rack 01 is installed with loading mechanism, material transmission mechanism, silica gel mixing forecourse mechanism, silica gel mixing aftercourse mechanism and controller 03, the control end of controller 03 is electrically connected the control end of silica gel mixing forecourse mechanism and the control end of silica gel mixing aftercourse mechanism respectively;

[0043] Wherein, the silica gel mixing forecourse mechanism includes drive mechanism 02, main rubber roller 08, auxiliary rubber roller 11, rubber cutting mechanism 09 and rubber blocking mechanism 10;

[0044] Wherein, the silica gel mixing aftercourse mechanism includes screw extrusion mechanism, cutting mechanism 110, filtering mechanism and object table 109;

[0045] Specifically, the silica gel feeding, impurity removing and cutting integrated device comprises a rack 01, a screw extrusion mechanism, a cutting mechanism 110, a filtering mechanism, a carrying table 109, a controller 03, a driving mechanism 02, a main rubber roller 08, an auxiliary rubber roller 11, a rubber cutting mechanism 09, a rubber blocking mechanism 10, a feeding mechanism and a material conveying mechanism, the screw extrusion mechanism, the cutting mechanism 110, the carrying table 109, the driving mechanism 02, the feeding mechanism, the material conveying mechanism and the controller 03 are installed on the rack 01, the main rubber roller 08 and the auxiliary rubber roller 11 are both rotationally installed on the rack 01, the filtering mechanism is arranged on the rubber inlet 103 of the screw extrusion mechanism, the filtering mechanism is used for filtering the sundries and impurities in the silica gel, the cutting mechanism 110 and the carrying table 109 are both arranged at the rubber outlet of the screw extrusion mechanism, the cutting mechanism 110 and the carrying table 109 are mutually matched and used for cutting the silica gel, the cutting mechanism 110 is arranged on the carrying table 109, the driving end of the driving mechanism 02 is connected with the driven end of the main rubber roller 08, the main rubber roller 08 and the auxiliary rubber roller 11 are parallel and spaced, the rubber cutting mechanism 09 is installed on the rack 01 and arranged near the main rubber roller 08, the rubber blocking mechanism 10 is arranged above the main rubber roller 08 and / or the auxiliary rubber roller 11, the feeding mechanism is used for placing the silica gel on the main rubber roller 08 and / or the auxiliary rubber roller 11, the material conveying mechanism is arranged below the main rubber roller 08, one end of the material conveying mechanism is used for conveying the silica gel cut by the rubber cutting mechanism 09 to the other end of the material conveying mechanism, the other end of the material conveying mechanism is arranged at the rubber inlet 103 of the screw extrusion mechanism, the control end of the controller 03 is electrically connected with the control end of the driving mechanism 02, the control end of the controller 03 is respectively electrically connected with the control end of the screw extrusion mechanism, the control end of the cutting mechanism 110 and the control end of the filtering mechanism.

[0046] The silicone mixing front-end mechanism comprises a driving mechanism 02, a main rubber roller 08, an auxiliary rubber roller 11, a rubber cutting mechanism 09 and a rubber blocking mechanism 10, and further comprises a storage disc 05 and a dust cleaning purifier 04; the driving mechanism 02 and the controller 03 are both mounted on the rack 01, the main rubber roller 08 and the auxiliary rubber roller 11 are both rotationally mounted on the rack 01, the driving end of the driving mechanism 02 is connected with the driven end of the main rubber roller 08, the main rubber roller 08 and the auxiliary rubber roller 11 are parallel to each other and have a spacing, the rubber cutting mechanism 09 is mounted on the rack 01 and is arranged near the main rubber roller 08, the rubber blocking mechanism 10 is arranged above the main rubber roller 08 and / or the auxiliary rubber roller 11, and the control end of the controller 03 is electrically connected with the control end of the driving mechanism 02; the rubber blocking mechanism 10 is arranged directly above the spacing between the main rubber roller 08 and the auxiliary rubber roller 11; the storage disc 05 is arranged on the rack 01 and below the main rubber roller 08 and the auxiliary rubber roller 11, and is used for storing the cut silicone; the dust cleaning purifier 04 is mounted on the rack 01 and has a control end electrically connected with the control end of the controller 03; the dust cleaning purifier 04 is used for removing dust, impurities and impurities in the surrounding environment of the silicone; the dust cleaning purifier 04 is arranged above the main rubber roller 08 and the auxiliary rubber roller 11; the main rubber roller 08 and the auxiliary rubber roller 11 are both made of stainless steel; the driving mechanism 02 comprises a driving motor and a driving transmission mechanism, both of which are mounted on the rack 01, the control end of the controller 03 is electrically connected with the control end of the driving motor, the driving end of the driving motor is connected with the driven end of the driving transmission mechanism, and the driving end of the driving transmission mechanism is connected with the driven end of the main rubber roller 08; the driving transmission mechanism is a gear meshing type driving transmission mechanism; for example, two gears can be selected, the first gear is mounted on the driving end of the driving motor and rotationally mounted on the rack 01, the second gear is mounted on the driven end of the main rubber roller 08 and rotationally mounted on the rack 01, and the first gear and the second gear are meshingly connected; the rubber blocking mechanism 10 comprises a rubber blocking bracket and a rubber blocking rod, the rubber blocking bracket is mounted on the rack 01, the rubber blocking rod is mounted on the rubber blocking bracket, and the rubber blocking rod is used for blocking the silicone; the rubber blocking rod is a rubber blocking rod rotationally mounted on the rubber blocking bracket; that is, the large piece of silicone is placed on the spacing between the main rubber roller 08 and the auxiliary rubber roller 11, the rotation of the main rubber roller 08 drives the silicone into the spacing, the rubber blocking rod blocks the silicone from moving everywhere, and the rotation of the rubber blocking rod is more helpful for the movement and non-scratching of the silicone; the rubber cutting mechanism 09 comprises a rubber cutting frame 06, a rubber cutting knife 07 and a lifting cylinder, the lifting cylinder is mounted on the rack 01, the rubber cutting frame 06 is mounted on the lifting end of the lifting cylinder, the rubber cutting knife 07 is mounted on the rubber cutting frame 06, and the lifting cylinder is used for driving the lifting of the rubber cutting knife 07 and cutting the silicone; the rubber cutting mechanism 09 is arranged above the central horizontal plane of the main rubber roller 08.The cutting knife 07 is selected from a sharp steel knife coated with a TiCN / Al2O3 / TiN coating on the surface;

[0047] The silica gel mixing mechanism comprises a screw extrusion mechanism, a cutting mechanism 110, a filtering mechanism and a loading platform 109, the screw extrusion mechanism, the cutting mechanism 110, the loading platform 109 and a controller 03 are installed on a rack 01, the filtering mechanism is arranged on a silica gel inlet 103 of the screw extrusion mechanism, the filtering mechanism is used for filtering sundries and impurities in the silica gel, the cutting mechanism 110 and the loading platform 109 are arranged at a silica gel outlet of the screw extrusion mechanism, the cutting mechanism 110 and the loading platform 109 are matched with each other and are used for cutting the silica gel, the cutting mechanism 110 is arranged on the loading platform 109, control ends of the controller 03 are electrically connected with a control end of the screw extrusion mechanism, a control end of the cutting mechanism 110 and a control end of the filtering mechanism respectively; the screw extrusion mechanism is selected from a single screw extrusion mechanism; the screw extrusion mechanism comprises a driving motor 102, a screw 105 and an extrusion shell frame 108, the driving motor 102 and the extrusion shell frame 108 are both installed on the rack 01, the screw 105 is rotatably installed in a cavity in the extrusion shell frame 108, a driven end of the screw 105 is connected with a driving end of the driving motor 102, and a control end of the driving motor 102 is electrically connected with a control end of the controller 03; the cutting mechanism 110 comprises a lifter, a lifting support and a cutting knife 111, the lifting support is installed on the rack 01, the lifter is installed on the lifting support, the cutting knife 111 is installed on a lifting end of the lifter, the cutting knife 111 is slidably connected with the lifting support, and a control end of the lifter is electrically connected with a control end of the controller 03; the lifter is selected from a lifting air cylinder; the filtering mechanism comprises a telescopic device, a filter screen 104 and a pressing plate 106, the telescopic device is installed on the rack 01, the filter screen 104 is installed on the silica gel inlet 103 of the screw extrusion mechanism, the pressing plate 106 is installed on a telescopic end of the telescopic device, the pressing plate 106 is matched with the filter screen 104, and the pressing plate 106 is used for pressing out the silica gel under the telescopic action of the telescopic device, a control end of the telescopic device is electrically connected with a control end of the controller 03; the telescopic device is selected from a telescopic air cylinder 107; the filter screen 104 and the pressing plate 106 are arranged in parallel; the filter screen 104 is installed on the silica gel inlet 103 of the screw extrusion mechanism in a cutting and beveling mode; the filter screen 104 is selected from a filter screen made of stainless steel, a filter screen made of polytetrafluoroethylene, a filter screen made of nickel alloy or a filter screen made of titanium alloy; an included angle between the filter screen 104 and a horizontal plane is preferably 45°; the cutting knife 111 is selected from a sharp steel knife coated with a TiCN / Al2O3 / TiN coating on the surface.

[0048] The feeding mechanism is selected from a feeding manipulator, a control end of the feeding manipulator is electrically connected with a control end of the controller 03; the feeding manipulator can be selected from a six-axis manipulator; the conveying mechanism is selected from a roller conveyor, and a silica gel inlet 103 of the roller conveyor is higher than a silica gel outlet of the roller conveyor.

[0049] The specific implementation manner of the utility model: after the device is assembled, the controller is started, the feeding manipulator will take a large piece of silica gel and place the large piece of silica gel between the main glue roller and the auxiliary glue roller, the controller controls the drive motor of the front process to run, the drive motor of the front process drives the main glue roller to work, at the same time, the controller controls the dust suction purifier to work, the surrounding environment is purified, the main glue roller rotates to drive the silica gel to spread uniformly, because the silica gel has viscosity, it will be slightly attached to the main glue roller, when the main glue roller rolls a circle of silica gel, the controller controls the cutting mechanism to cut the silica gel, then continues to roll the glue, when the silica gel moves to a certain position, the cutting mechanism cuts the silica gel again, the cut silica gel will fall off from the main glue roller into the material conveying mechanism due to the gravity of the silica gel, the material conveying mechanism will convey the silica gel to the rear process, in this process, the scattered silica gel will fall on the storage tray, the staff can take out the scattered silica gel for re-mixing production process; the main glue roller continues to rotate to drive the silica gel to spread uniformly, then continues to cut and cut, completing the production of the required quantitative silica gel; when the silica gel reaches the rear process, the silica gel material will enter the glue inlet, the controller controls the drive motor to run, the drive motor drives the screw to work, at the same time, the controller controls the telescopic cylinder to work, at this time, the silica gel material is between the glue pressing plate and the filter screen, then the telescopic cylinder pushes the glue pressing plate to press the silica gel material from the filter screen into the screw, the screw will convey the silica gel material to the glue outlet and enter the object table, the object table is a smooth surface, the controller controls the lifting cylinder to work and drives the cutting knife to cut the silica gel from the glue outlet, the silica gel is taken away by external manual or conveyed to the next station by external conveying mechanism; by analogy, the production of the required silica gel is completed. Here, the wear-resistant steel knife is selected, which can realize durable use and the like.

[0050] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A silica gel feeding, impurity removing and cutting integrated device, characterized in that, The feeding, impurity removing, cutting and integrating device of silica gel comprises a rack, a screw extrusion mechanism, a cutting mechanism, a filtering mechanism, a carrier, a controller, a driving mechanism, a main rubber roller, an auxiliary rubber roller, a rubber cutting mechanism, a rubber blocking mechanism, a feeding mechanism and a material conveying mechanism, the screw extrusion mechanism, the cutting mechanism, the carrier, the driving mechanism, the feeding mechanism and the material conveying mechanism are installed on the rack, the main rubber roller and the auxiliary rubber roller are rotatably installed on the rack, the filtering mechanism is arranged on the rubber inlet of the screw extrusion mechanism and used for filtering the impurities in the silica gel, the cutting mechanism and the carrier are arranged at the rubber outlet of the screw extrusion mechanism and used for cutting the silica gel, the cutting mechanism is arranged on the carrier, the driving end of the driving mechanism is connected to the driven end of the main rubber roller, the main rubber roller and the auxiliary rubber roller are parallel to each other and spaced apart, the rubber cutting mechanism is installed on the rack and arranged near the main rubber roller, the rubber blocking mechanism is arranged above the main rubber roller and / or the auxiliary rubber roller, the feeding mechanism is used for placing the silica gel on the main rubber roller and / or the auxiliary rubber roller, the material conveying mechanism is arranged below the main rubber roller and used for conveying the cut silica gel from one end to the other end, the other end of the material conveying mechanism is arranged at the rubber inlet of the screw extrusion mechanism, the control end of the controller is electrically connected to the control end of the driving mechanism, and the control end of the controller is electrically connected to the control end of the screw extrusion mechanism, the control end of the cutting mechanism and the control end of the filtering mechanism.

2. The device according to claim 1, wherein, The screw extrusion mechanism comprises a driving motor, a screw and an extrusion shell frame, the driving motor and the extrusion shell frame are installed on the rack, the screw is rotatably installed in a cavity in the extrusion shell frame, the driven end of the screw is connected to the driving end of the driving motor, and the control end of the driving motor is electrically connected to the control end of the controller.

3. The device according to claim 1, wherein the device is characterized by: The screw extrusion mechanism is a single screw extrusion mechanism.

4. The device according to claim 1, wherein the device is characterized by: The cutting mechanism comprises a lifter, a lifting support and a cutting knife, the lifting support is installed on the rack, the lifter is installed on the lifting support, the cutting knife is installed on the lifting end of the lifter, the cutting knife is slidably connected to the lifting support, and the control end of the lifter is electrically connected to the control end of the controller.

5. The device according to claim 4, wherein the device is characterized by: The lifter is a lifting cylinder.

6. The device according to claim 1, wherein the device is characterized by: The filtering mechanism comprises a telescopic device, a filter screen and a rubber pressing plate, the telescopic device is installed on the rack, the filter screen is installed on the rubber inlet of the screw extrusion mechanism, the rubber pressing plate is installed on the telescopic end of the telescopic device, the rubber pressing plate cooperates with the filter screen and presses out the silica gel under the telescopic action of the telescopic device, and the control end of the telescopic device is electrically connected to the control end of the controller.

7. The device according to claim 1, wherein the device is characterized by: The driving mechanism comprises a driving motor and a driving transmission mechanism, both of which are installed on the rack, the control end of the controller is electrically connected with the control end of the driving motor, the driving end of the driving motor is connected with the driven end of the driving transmission mechanism, and the driving end of the driving transmission mechanism is connected with the driven end of the main rubber roller. 8.The device of claim 1, wherein, The glue blocking mechanism comprises a glue blocking support and a glue blocking rod, the glue blocking support is installed on the rack, and the glue blocking rod is installed on the glue blocking support and used for blocking silica gel.

9. The device according to claim 1, wherein, The glue cutting mechanism comprises a glue cutting frame, a glue cutting knife and a lifting cylinder, the lifting cylinder is installed on the rack, the lifting end of the lifting cylinder is provided with the glue cutting frame, the glue cutting frame is provided with the glue cutting knife, the lifting cylinder is used for driving the lifting of the glue cutting knife and cutting silica gel, and the control end of the lifting cylinder is electrically connected with the control end of the controller.

10. The device according to claim 1, wherein the device is characterized by: The silica gel feeding, impurity removing and cutting integrated device further comprises a dust suction purifier, the dust suction purifier is installed on the rack, and the control end of the dust suction purifier is electrically connected with the control end of the controller.