Station adjustable structure for stone fretsaw cutting
By introducing an adjustable workstation structure into the stone wire saw cutting device, and using a drive motor and transmission system to achieve automatic workstation switching, the problem of the impact of feeding and unloading on efficiency in the existing technology is solved, and the processing efficiency is improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-03-27
AI Technical Summary
In the current stone wire saw cutting process, the machine needs to be stopped for loading and unloading, which affects processing efficiency.
An adjustable workstation structure for stone wire sawing was designed. Through the drive motor and transmission structure in the adjustable workstation structure, the workstation can be automatically switched, reducing the loading and unloading time.
It improves the processing efficiency of stone wire saw cutting, reduces manual intervention through automated workstation switching, and enhances production efficiency.
Smart Images

Figure CN224044183U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to stone processing technical field, concretely is a work station adjustable structure for stone line saw cutting. BACKGROUND
[0002] In the daily use process, the stone line saw cutting mostly adopts single workbench to process, so that the machine needs to be stopped when feeding and discharging, and manual operation can be carried out, thereby affecting the processing efficiency, and aiming at the above problems, a work station adjustable structure for stone line saw cutting needs to be provided. UTILITY MODEL CONTENTS
[0003] The utility model discloses a work station adjustable structure for stone line saw cutting to solve the problems in the above background art.
[0004] To achieve the above object, the utility model provides the following technical scheme:
[0005] A work station adjustable structure for stone line saw cutting, including the connecting base, the end surface of connecting base is connected with stone line saw, the end surface of connecting base is connected with work station adjustable structure below stone line saw, the end surface of connecting base is connected with controller through connecting seat;
[0006] The work station adjustable structure includes the connecting frame, the end surface of connecting frame is connected on the end surface of connecting base, the end surface of connecting frame is connected with the connecting box, the sidewall of connecting box is connected with drive motor through connecting seat, the drive end of drive motor is connected with drive screw through coupling, the sidewall of drive screw is connected with driven bevel gear through drive bevel gear meshing, the center of driven bevel gear is connected with rotary rotating lever, the other end of rotary rotating lever is connected with transmission bevel gear through rotary bevel gear meshing, the center of transmission bevel gear is connected with rotary screw, the sidewall of drive screw and rotary screw is connected with two groups of screw blocks, the end surface of screw block is connected with link sliding block, the link sliding block is connected with link sliding rail, the end surface of link sliding rail is connected with moving platform, the end surface of moving platform is connected with clamping tooling, the link sliding rail is connected with connecting sliding block on one side of link sliding block, the bottom of connecting sliding block is connected with limiting sliding block, the limiting sliding block is connected with limiting sliding rail, the limiting sliding rail is connected in the bottom of connecting frame through connecting seat, the bottom of moving platform is connected with guide wheel through connecting column, the bottom of connecting frame is provided with guide sliding groove corresponding with guide wheel.
[0007] As the preferred scheme of the utility model, the stone line saw is connected with the controller through wires and the connection mode is electrical connection, and the drive motor is connected with the controller through wires and the connection mode is electrical connection.
[0008] As the preferred scheme of the utility model, the driving screw rod is connected on the connecting frame through the bearing seat, wherein the connecting mode of the driving screw rod and the bearing seat is rotary connection, the rotary rotating lever is connected on the side wall of the connecting box through the bearing seat, wherein the connecting mode of the rotary rotating lever and the bearing seat is rotary connection.
[0009] As the preferred scheme of the utility model, the driving screw rod is connected on the connecting frame through the bearing seat, wherein the connecting mode of the driving screw rod and the bearing seat is rotary connection, the rotary rotating lever is connected on the side wall of the connecting box through the bearing seat, wherein the connecting mode of the rotary rotating lever and the bearing seat is rotary connection.
[0010] As the preferred scheme of the utility model, the driving screw rod is connected on the connecting frame through the bearing seat, wherein the connecting mode of the driving screw rod and the bearing seat is rotary connection, the rotary rotating lever is connected on the side wall of the connecting box through the bearing seat, wherein the connecting mode of the rotary rotating lever and the bearing seat is rotary connection.
[0011] As the preferred scheme of the utility model, the driving screw rod is connected on the connecting frame through the bearing seat, wherein the connecting mode of the driving screw rod and the bearing seat is rotary connection, the rotary rotating lever is connected on the side wall of the connecting box through the bearing seat, wherein the connecting mode of the rotary rotating lever and the bearing seat is rotary connection.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] In the utility model, the work station adjustable structure is arranged in the work station adjustable structure for stone linear saw cutting, the driving motor in the work station adjustable structure can switch the work stations on the left and right sides through the transmission structure, thereby saving the loading and unloading time and improving the processing efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the structure schematic diagram of the work station adjustable structure of the utility model.
[0015] Figure 2 It is the structure schematic diagram of the work station adjustable structure of the utility model.
[0016] Figure 3 It is the structure schematic diagram of the work station adjustable structure of the utility model. Figure 2
[0017] In the figure: 1, connecting base; 2, stone material wire saw; 3, work station adjustable structure; 4, controller; 301, connecting frame; 302, connecting box; 303, driving motor; 304, driving screw rod; 305, driving bevel gear; 306, driven bevel gear; 307, rotating rotating rod; 308, rotating bevel gear; 309, transmission bevel gear; 310, rotating screw rod; 311, screw rod sliding block; 312, linking sliding block; 313, linking sliding rail; 314, moving platform; 315, clamping tooling; 316, connecting sliding block; 317, limiting sliding block; 318, limiting sliding rail; 319, guide wheel; 320, guide sliding groove. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to 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 of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0019] In order to facilitate understanding of the present application, the present application will be described more fully below with reference to the related drawings, and several embodiments of the present application are given. However, the present application can be realized in many different forms, and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.
[0020] It should be noted that when an element is referred to as being "fixedly attached" to another element, it can be directly on the other element or there can be intervening elements. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can be present. As used herein the terms "vertical", "horizontal", "left", "right", and the like are used for explanation purposes only.
[0021] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terminology used in the description of the present application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the present application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0022] Embodiments, please refer to Figures 1-3 The present application provides a technical solution:
[0023] A work station adjustable structure for stone linear saw cutting, comprising a connecting base 1, a stone linear saw 2 connected to the end face of the connecting base 1, a work station adjustable structure 3 connected to the end face of the connecting base 1 and below the stone linear saw 2, and a controller 4 connected to the end face of the connecting base 1 through a connecting seat;
[0024] In this embodiment, referring to Figure 1 、 Figure 2 and Figure 3 , the work station adjustable structure 3 comprises a connecting frame 301 connected to the end face of the connecting base 1, a connecting box 302 connected to the end face of the connecting frame 301, a drive motor 303 connected to the side wall of the connecting box 302 through a connecting seat, a drive lead screw 304 connected to the drive end of the drive motor 303 through a shaft coupling, two groups of lead screw sliding blocks 311 connected to the side wall of the drive lead screw 304 through a drive bevel gear 305, a driven bevel gear 306 engaged with the drive bevel gear 305, a rotating rotating rod 307 connected to the center of the driven bevel gear 306, a transmission bevel gear 309 engaged with the rotating rotating rod 307 through a rotating bevel gear 308, a rotating lead screw 310 connected to the center of the transmission bevel gear 309, two groups of lead screw sliding blocks 311 connected to the side wall of the drive lead screw 304 and the rotating lead screw 310, a connecting sliding block 312 connected to the end face of the lead screw sliding block 311, a connecting sliding rail 313 connected to the connecting sliding block 312, a moving platform 314 connected to the end face of the connecting sliding rail 313, a clamping tool 315 connected to the end face of the moving platform 314, a connecting sliding block 316 connected to the connecting sliding rail 313 and located on one side of the connecting sliding block 312, a limiting sliding block 317 connected to the bottom of the connecting sliding block 316, a limiting sliding rail 318 connected to the limiting sliding block 317, the limiting sliding rail 318 connected to the bottom of the connecting frame 301 through a connecting seat, a guide wheel 319 connected to the bottom of the moving platform 314 through a connecting column, and a guide sliding groove 320 corresponding to the guide wheel 319 is formed in the bottom of the connecting frame 301;
[0025] Under the condition of the above structure and the connection relationship of the above structure, the driving motor 303 is controlled by the controller 4. When the driving end of the driving motor 303 rotates, the driving screw 304, the driving bevel gear 305, the driven bevel gear 306, the rotating rod 307, the bevel gear 308, the transmission bevel gear 309 and the rotating screw 310 are sequentially driven to rotate. When the driving screw 304 and the rotating screw 310 rotate, the screw block 311 moves on the side wall of the driving screw 304 and the rotating screw 310. Under the action of the screw block 311, the connecting block 312, the connecting rail 313, the connecting block 316, the limiting block 317 and the limiting rail 318, the moving platform 314 on the driving screw 304 moves forward. Under the interaction of the guide wheel 319 and the guide sliding groove 320, the stone on the moving platform 314 is pushed to the lower side of the stone wire saw 2. The moving platform 314 on the rotating screw 310 moves backward. Under the interaction of the guide wheel 319 and the guide sliding groove 320, the stone on the moving platform 314 is pushed to the unloading and feeding station.
[0026] Further, the stone wire saw 2 is connected with the controller 4 by wires and the connection mode is electrical connection. The driving motor 303 is connected with the controller 4 by wires and the connection mode is electrical connection. The operation of the stone wire saw 2 and the driving motor 303 can be controlled by the controller 4.
[0027] Further, the driving screw 304 is connected to the connecting frame 301 through a bearing seat, wherein the connection mode between the driving screw 304 and the bearing seat is rotating connection. The rotating rod 307 is connected to the side wall of the connecting box 302 through a bearing seat, wherein the connection mode between the rotating rod 307 and the bearing seat is rotating connection. The rotating screw 310 is connected to the connecting frame 301 through a bearing seat, wherein the connection mode between the rotating screw 310 and the bearing seat is rotating connection. The connection mode between the driving screw 304 and the rotating screw 310 and the screw block 311 is screw connection. The connecting block 312 has a sliding groove corresponding to the connecting rail 313, wherein the connection mode between the connecting rail 313 and the sliding groove is sliding connection. The connecting block 316 has a sliding groove corresponding to the connecting rail 313, wherein the connection mode between the connecting rail 313 and the sliding groove is sliding connection. The limiting block 317 has a sliding groove corresponding to the limiting rail 318, wherein the connection mode between the limiting rail 318 and the sliding groove is sliding connection. The guide wheel 319 and the guide sliding groove 320 are matched in clearance fit. The guide sliding groove 320 has a Z-shaped structure. Through the interaction between the various components in the station adjustable structure 3, the station adjustable structure 3 can run smoothly when in use.
[0028] The utility model discloses a work flow: when using the work station adjustable structure of stone line saw cutting, through controller 4 control drive motor 303, when the drive end of drive motor 303 rotates, and then drive lead screw 304, drive bevel gear 305, driven bevel gear 306, rotating lever 307, rotating bevel gear 308, transmission bevel gear 309 and rotating lead screw 310 are driven in proper order, when drive lead screw 304 and rotating lead screw 310 rotate, drive lead screw sliding block 311 on the lateral wall of drive lead screw 304 and rotating lead screw 310 to move, under the action of lead screw sliding block 311, link sliding block 312, link sliding rail 313, connecting sliding block 316, limiting sliding block 317, limiting sliding rail 318, the moving platform 314 on drive lead screw 304 moves forward, and under the interaction of guide wheel 319, guide sliding groove 320, make the stone on moving platform 314 be pushed to the below of stone line saw 2, the moving platform 314 on rotating lead screw 310 moves backward, and under the interaction of guide wheel 319, guide sliding groove 320, make the stone on moving platform 314 be pushed to the work station of unloading and feeding.
[0029] Although the embodiments of the utility model have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A work station adjustable structure for stone material wire saw cutting, comprising a connection base (1), characterized in that: The end surface of the connecting base (1) is connected with a stone wire saw (2), the end surface of the connecting base (1) is connected with a work station adjustable structure (3) below the stone wire saw (2), and the end surface of the connecting base (1) is connected with a controller (4) through a connecting seat; The work station adjustable structure (3) comprises a connecting frame (301) connected to the end surface of the connecting base (1), an end surface of the connecting frame (301) is connected with a connecting box (302), a side wall of the connecting box (302) is connected with a driving motor (303) through a connecting seat, a driving end of the driving motor (303) is connected with a driving screw (304) through a shaft coupling, a side wall of the driving screw (304) is connected with a driven bevel gear (306) through a driving bevel gear (305), a center of the driven bevel gear (306) is connected with a rotating rotating rod (307), another end of the rotating rotating rod (307) is connected with a transmission bevel gear (309) through a rotating bevel gear (308), a center of the transmission bevel gear (309) is connected with a rotating screw (310), side walls of the driving screw (304) and the rotating screw (310) are both connected with two groups of screw rod sliding blocks (311), end surfaces of the screw rod sliding blocks (311) are connected with link sliding blocks (312), the link sliding blocks (312) are connected with link sliding rails (313), end surfaces of the link sliding rails (313) are connected with a moving platform (314), an end surface of the moving platform (314) is connected with a clamping tool (315), the link sliding rails (313) are connected with a connecting sliding block (316) on one side of the link sliding blocks (312), a bottom of the connecting sliding block (316) is connected with a limiting sliding block (317), the limiting sliding block (317) is connected with a limiting sliding rail (318), the limiting sliding rail (318) is connected to the bottom of the connecting frame (301) through a connecting seat, a bottom of the moving platform (314) is connected with a guide wheel (319) through a connecting column, and a bottom of the connecting frame (301) is provided with a guide sliding groove (320) corresponding to the guide wheel (319).
2. A work station adjustable structure for stone material wire saw cutting according to claim 1, characterized in that: The stone wire saw (2) is connected with the controller (4) through wires in an electrical connection manner, and the driving motor (303) is connected with the controller (4) through wires in an electrical connection manner.
3. A work station adjustable structure for stone material wire saw cutting according to claim 1, characterized in that: The driving screw (304) is connected to the connecting frame (301) through a bearing seat, wherein the driving screw (304) is rotatably connected to the bearing seat, and the rotating rotating rod (307) is connected to a side wall of the connecting box (302) through a bearing seat, wherein the rotating rotating rod (307) is rotatably connected to the bearing seat. The driving screw (304) is connected to the connecting frame (301) through a bearing seat, wherein the driving screw (304) is rotatably connected to the bearing seat, and the rotating rotating rod (307) is connected to a side wall of the connecting box (302) through a bearing seat, wherein the rotating rotating rod (307) is rotatably connected to the bearing seat.
4. A work station adjustable structure for stone material wire saw cutting according to claim 1, characterized in that: The rotating screw rod (310) is connected to the connecting frame (301) through a bearing seat, wherein the connecting mode of the rotating screw rod (310) and the bearing seat is rotating connection, and the connecting modes of the driving screw rod (304) and the rotating screw rod (310) and the screw rod sliding block (311) are all screw connection.
5. A work station adjustable structure for stone material wire saw cutting according to claim 1, characterized in that: A sliding groove is arranged on the connecting sliding block (312) and corresponds to the connecting sliding rail (313), wherein the connecting mode of the connecting sliding rail (313) and the sliding groove is sliding connection, and a sliding groove is arranged on the connecting sliding rail (313) and corresponds to the connecting sliding block (316), wherein the connecting mode of the connecting sliding rail (313) and the sliding groove is sliding connection.
6. A work station adjustable structure for stone material wire saw cutting according to claim 1, characterized in that: A sliding groove is arranged on the limiting sliding block (317) and corresponds to the limiting sliding rail (318), wherein the connecting mode of the limiting sliding rail (318) and the sliding groove is sliding connection, the matching mode of the guide wheel (319) and the guide sliding groove (320) is gap matching, and the guide sliding groove (320) is a Z-shaped structure.