Alloy surface polishing equipment

文档序号:1248640 发布日期:2020-08-21 浏览:31次 中文

阅读说明:本技术 一种合金表面光洁处理设备 (Alloy surface polishing equipment ) 是由 唐国富 于 2020-04-23 设计创作,主要内容包括:本发明公开了一种合金表面光洁处理设备,涉及合金表面处理设备技术领域。包括打磨机构和传送机构,所述打磨机构包括打磨电机和由打磨电机带动转动的打磨轮盘,所述打磨轮盘设置有多组且平铺设置在同一水平面上,所述传送机构包括固定合金板的前后两端处的传送压块,连接于传送压块的传送推杆,还包括设置在所述传送推杆的尾端处的推进装置和设置在推进装置上方的传送轨道,推进装置安装在传送轨道上。本发明主要用于对合金板表面进行打磨,以提升合金表面的粗糙度,在打磨的同时可以避免合金板被挤压变形,提升打磨质量,同时又可以通过控制合金板与打磨轮盘之间的接触力度和推进电机的运行功率来控制打磨精度。(The invention discloses alloy surface cleaning equipment, and relates to the technical field of alloy surface treatment equipment. Including grinding machanism and transport mechanism, grinding machanism includes grinding motor and drives the pivoted rim plate of polishing by grinding motor, the rim plate of polishing is provided with multiunit and tiling and sets up on same horizontal plane, transport mechanism includes the conveying briquetting of both ends department around the fixed alloy board, connects in the conveying push rod of conveying briquetting, still including setting up advancing device and the conveying track of setting in the advancing device top of the tail end department of conveying push rod, advancing device installs on conveying track. The alloy plate polishing device is mainly used for polishing the surface of an alloy plate so as to improve the roughness of the alloy surface, can prevent the alloy plate from being extruded and deformed during polishing, improves the polishing quality, and can control the polishing precision by controlling the contact force between the alloy plate and a polishing wheel disc and the running power of a propulsion motor.)

1. An alloy surface polishing equipment, which is characterized in that: including grinding machanism (1) and transport mechanism (2), grinding machanism (1) is including grinding motor (11) and drive pivoted grinding wheel disc (12) by grinding motor (11), grinding wheel disc (12) are provided with multiunit and tiling setting on same horizontal plane, transport mechanism (2) are including butt conveying briquetting (21) at the front end of alloy board or rear end department, connect in conveying push rod (22) of conveying briquetting (21), still including setting up advancing device (23) and the conveying track (24) of setting in advancing device (23) top of the tail end department of conveying push rod (22), and advancing device (23) are installed on conveying track (24).

2. The apparatus for surface finishing of alloy metal according to claim 1, wherein: the propelling device (23) comprises a moving device (231) with a 'return' structure and a propelling motor (232) for controlling the moving device (231) to move on the conveying track (24).

3. An alloy surface finishing apparatus according to claim 2, wherein: the moving device (231) comprises a track gear (2311) and a protective shell (2312) covering the periphery of the track gear (2311), and the protective shell (2312) can be sleeved on the conveying track (24) and can also allow the track gear (2311) to be butted with the conveying track (24).

4. An alloy surface finishing apparatus according to claim 3, wherein: the device also comprises a transmission chain (233) which is used for connecting the propulsion motor (232) and the track gear (2311) to transmit the power of the motor.

5. The apparatus for surface finishing of alloy metal according to claim 1, wherein: and fixing devices (3) which can be fixed at both sides of the alloy plate are also included.

6. An alloy surface finishing apparatus according to claim 5, wherein: the fixing device (3) includes a plurality of sets of clamping members (31) for clamping and fixing at both sides of the alloy plate, and a support frame (32) connected to the clamping members (31) and supporting the clamping members (31).

7. The apparatus for surface finishing of alloy metal according to claim 6, wherein: the support frame (32) comprises a frame chassis (321) and a telescopic hydraulic type support member (322) vertically arranged on the frame chassis (321) and connected to the clamping member (31).

Technical Field

The invention relates to the technical field of alloy surface treatment equipment, in particular to alloy surface cleaning equipment.

Technical Field

Polishers are widely used in various machine manufacturing industries, and are often used for mechanical grinding, polishing, and waxing. When the existing polishing machine polishes the alloy plate, two polishing rollers are usually used for polishing two surfaces of the alloy plate at the same time, but the polishing machine is easy to extrude the alloy plate during polishing operation, so that the alloy plate is deformed, and the quality of the alloy plate is influenced.

Disclosure of Invention

The invention provides an alloy surface polishing device, which is used for fixing an alloy plate, placing the alloy plate on a polishing wheel disc, polishing the alloy plate in a smooth manner by means of the gravity of the alloy plate, and controlling the operation of a transmission motor according to the thickness of the alloy plate so as to solve the technical problem.

The technical scheme for solving the problems is as follows: the utility model provides a clean treatment facility in alloy surface, includes grinding machanism and transport mechanism, grinding machanism includes grinding motor and drives the pivoted rim plate of polishing by grinding motor, the rim plate of polishing is provided with the multiunit and the tiling sets up on same horizontal plane, transport mechanism includes the butt at the conveying briquetting of alloy plate's front end or rear end department, connects in the conveying push rod of conveying briquetting, still including setting up advancing device and the conveying track of setting above advancing device of conveying push rod's tail end department, advancing device installs on conveying track.

Preferably, the propelling device comprises a moving device with a 'return' structure and a propelling motor for controlling the moving device to move on the conveying track.

Preferably, the moving device comprises a track gear and a protective shell covering the periphery of the track gear, and the protective shell can be sleeved on the conveying track and simultaneously can allow the track gear to be in butt joint with the conveying track.

Preferably, the device further comprises a transmission chain for connecting the propulsion motor and the track gear to transmit the power of the motor.

Preferably, a fixing device may be provided to be fixed at both sides of the alloy plate.

Preferably, the fixing device includes a plurality of sets of clamping members for clamping and fixing at both sides of the alloy plate, and a support frame connected to and supporting the clamping members.

Preferably, the support frame comprises a frame chassis and a telescopic hydraulic type support member vertically disposed on the frame chassis and connected to the clamp member.

The invention has the beneficial effects that: according to the alloy surface polishing device, the clamping pieces are fixed to the left side and the right side of the alloy plate, so that the alloy plate is prevented from deviating and polishing quality is prevented from being affected. Meanwhile, the front end or the rear end of the alloy plate is abutted with the conveying pressing block and is abutted to the position of the upper part of the alloy plate, and the alloy plate is pushed to move under the action of the conveying push rod, so that the single surface of the alloy plate is polished, and the phenomenon that the alloy plate deforms due to extrusion is avoided. In this device, advancing device sets up the top at the alloy board, and advancing device's telecontrol equipment sets up in the top of propulsion motor, and conveying push rod one end is fixed on propulsion motor, drives the telecontrol equipment and moves on the conveying track when the propulsion motor motion, and propulsion motor also then moves, and then promotes the conveying push rod and further promotes the alloy board and remove. The 'return' structure of the moving device can also effectively prevent the propelling device from overturning. The fixed clamping piece that sets up in the alloy board left and right sides can be used to press from both sides tight alloy board to this clamping piece is fixed in supporting the frame, and supports the frame and set up to hydraulic pressure type support piece, thereby controls the height of alloy board, thereby controls the contact degree between alloy board and the wheel disc of polishing, realizes the operation of polishing of different precision.

Drawings

Fig. 1 is a schematic view of an overall structure of an alloy surface polishing apparatus according to an embodiment of the present invention.

1-polishing mechanism, 11-polishing motor, 12-polishing wheel disc, 2-conveying mechanism, 21-conveying press block, 22-conveying push rod, 23-propelling device, 231-moving device, 2311-track gear, 2312-protecting shell, 232-propelling motor, 233-transmission chain, 24-conveying track, 3-fixing device, 31-clamping piece, 32-supporting rack, 321-rack chassis and 322-hydraulic type supporting piece.

Detailed Description

In order to more clearly illustrate the embodiments of the present invention and the technical solutions in the prior art, the following will describe the specific embodiments of the present invention with reference to the accompanying drawings. It is obvious that the drawings in the following description are only some examples of the invention, and it is obvious to a person skilled in the art that other drawings and other embodiments can be obtained from these drawings without inventive effort, and the invention is not limited to this example.

Referring to fig. 1, the alloy surface cleaning apparatus according to the embodiment of the present invention includes a polishing mechanism 1 and a conveying mechanism 2, where the polishing mechanism 1 includes a polishing motor 11 and a polishing wheel 12 driven by the polishing motor 11 to rotate, the polishing wheel 12 is provided with a plurality of groups and is laid on a same horizontal plane, the conveying mechanism 2 includes a conveying pressing block 21 abutting against the front end or the rear end of the alloy plate, a conveying push rod 22 connected to the conveying pressing block 21, a propelling device 23 disposed at the rear end of the conveying push rod 22, and a conveying rail 24 disposed above the propelling device 23, and the propelling device 23 is mounted on the conveying rail 24.

As one of the preferred options of this embodiment, the propelling device 23 comprises a moving device 231 with a 'return' structure and a propelling motor 232 for controlling the moving device 231 to move on the conveying track 24. The moving device 231 includes a track gear 2311 and a protective casing 2312 covering the periphery of the track gear 2311, and the protective casing 2312 can be sleeved on the conveying track 24 and also can allow the track gear 2311 to be butted with the conveying track 24. The protective housing 2312 is in a 'return' shape, and besides the conveying track 24 passing through the through hole of the 'return' shape of the protective housing 2312, the track gear 2311 can be placed to allow the track gear 2311 to be just in butt-joint engagement with the conveying track 24 so as to meet the requirement of the conveying motion propelling device 23. And further includes a driving chain 233 for connecting the propulsion motor 232 with the orbit gear 2311 to transmit the motor power.

As one of the preferences of this embodiment, further comprising fixing means 3 which can be provided fixed at both sides of the alloy plate. The fixing device 3 includes a plurality of sets of clamping members 31 for clamping and fixing at both sides of the alloy plate, and a support frame 32 connected to the clamping members 31 and supporting the clamping members 31. The support frame 32 includes a frame base 321 and a telescopic hydraulic type support 322 vertically disposed on the frame base 321 and coupled to the clamp 31.

Where not mentioned above, all are applicable to the prior art.

Specific embodiments of the present invention have been described above in detail. It should be understood that numerous modifications and variations could be devised by those skilled in the art in light of the present teachings without departing from the inventive concepts. Therefore, the technical solutions that can be obtained by logical analysis, reasoning or limited experiments in the prior art after the present inventive concept have been conceived by those skilled in the art should be within the scope of protection defined by the present claims.

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