A drilling equipment for linear guide rail production

By designing a drilling device with a detachable drilling mechanism and shifting components, the problem of existing equipment requiring the workpiece to be flipped over to replace the cutter head is solved, and efficient processing of holes on both sides of the linear guide workpiece is achieved, thereby improving operational convenience and processing efficiency.

CN119794414BActive Publication Date: 2025-10-10ZHEJIANG BOXING IND & TRADE +1
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Patent Information

Application Number
CN202510104913.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-10-10
Estimated Expiration
2045-01-23

AI Technical Summary

Technical Problem

When drilling holes on both sides of a linear guide rail workpiece using existing drilling equipment, the workpiece needs to be turned over and the cutter head needs to be replaced, which is inconvenient to operate and affects processing efficiency.

Method used

A drilling device for linear guide rail production was designed. It adopts a detachable drilling mechanism and shift assembly, which can fully process the holes on both sides without turning the workpiece over, and the tool head can be easily replaced through a detachable mounting plate.

Benefits of technology

It improves processing efficiency and convenience, realizes comprehensive and efficient processing of holes on both sides of the linear guide workpiece, and reduces operation complexity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The drilling equipment for linear guide rail production disclosed in the application comprises a workbench, which is provided with a placing table; displacement assemblies are arranged on both sides of the top surface of the workbench relative to the placing table, at least one mounting table is arranged on the displacement end of each displacement assembly, and a drilling mechanism is detachably connected to the mounting table; a mounting plate is arranged at the bottom of the drilling mechanism, a mounting groove is formed in the top of the mounting table, the operating side of the mounting plate comprises a handle piece and a grip piece, at least one locking rod is movably arranged at the bottom of the mounting plate; the grip piece is provided with a driving rod, and the driving rod is linked with the locking rod for linkage cooperation. The drilling equipment for linear guide rail production can comprehensively process all hole positions on both sides of the linear guide rail workpiece, the drilling mechanism can be taken out alone for tool bit disassembly and assembly operation, the tool bit does not need to be replaced around the drilling equipment, the efficiency and convenience of operation are greatly improved, and the processing efficiency of the linear guide rail workpiece is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of guide rail drilling, in particular to a drilling device for producing linear guide rails. Background Art

[0002] A linear guide workpiece is a component used to support and guide movement. It is mainly used in situations where high-precision or high-speed linear reciprocating motion is required. During the production process of a linear guide workpiece, it needs to be drilled. For a linear guide workpiece with a long stroke, multiple holes with uniform spacing must be processed along the direction of movement of the guide rail. In the prior art, drilling operations on linear guide workpieces usually require the use of drilling equipment. The linear guide workpiece is placed on a drilling platform, and the linear guide workpiece is clamped and positioned by a fixture. The drilling mechanism moves along the length direction of the linear guide workpiece to perform drilling operations on the linear guide workpiece. For example, a linear guide workpiece drilling device disclosed in the utility model patent with announcement number CN208391492U includes a base, a fixed workbench is installed on the base, a fixture for fixing the linear guide workpiece is installed on the workbench, a support frame on the support platform is provided with a plurality of linear slides, and a drilling mechanism is installed on the linear slides. The distance between the linear slides can be adjusted according to processing needs, thereby adjusting the hole spacing of the drilling process.

[0003] Most of the existing drilling equipment only drills one side of the linear guide workpiece. After the drilling is completed, if the hole on the linear guide workpiece needs to be cut, such as reaming, boring, grinding, etc., the staff will stop the drilling equipment and manually flip the linear guide workpiece so that the opening of the hole to be processed corresponds to the drilling mechanism, and replace the corresponding cutter head for the corresponding cutting process. After the cutter head is replaced, the drilling equipment is started to perform secondary processing on the hole position of the linear guide workpiece. In this process, since the drilling mechanism on the equipment is difficult to remove separately, the staff needs to replace the cutter head around the drilling equipment. The cutter head disassembly and assembly operation is limited by space, and the operation is relatively inconvenient, which affects the processing efficiency of the linear guide workpiece. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the above-mentioned technology and to design a drilling device for linear guide rail production. All holes on both sides of the linear guide rail workpiece are fully processed. The drilling mechanism is taken out separately to perform the cutter head disassembly and assembly operation. There is no need to replace the cutter head around the drilling device, which greatly improves the efficiency and convenience of the operation and improves the processing efficiency of the linear guide rail workpiece.

[0005] In order to solve the above technical problems, the technical solution of the present invention is: a drilling device for linear guide rail production, comprising a workbench, the workbench is provided with a transversely extending placement table, the placement table is provided with a plurality of clamping mechanisms spaced apart along its length direction, the linear guide rail workpiece is placed transversely on the placement table and is clamped and fixed by each of the clamping mechanisms, the placement table is penetrated by a plurality of machining reserved holes spaced apart along its length direction, each of the machining reserved holes corresponds to the surface to be machined of the linear guide rail workpiece;

[0006] The top surface of the workbench is provided with shifting components on both sides relative to the placement table, and the shifting end of the shifting component is provided with at least one mounting platform, and the mounting platform is detachably connected to the drilling mechanism, and the shifting component adjusts the position of the corresponding drilling mechanism in the horizontal and vertical directions so that the processing end of the drilling mechanism corresponds to the processing reserved hole;

[0007] The bottom of the drilling mechanism is provided with a mounting plate, the top of the mounting platform is provided with a transversely extending mounting slot, the mounting plate is inserted into the mounting slot, the operating side of the mounting plate includes a U-shaped handle member and a T-shaped grip member, the bottom of the mounting plate is telescopically and movably provided with at least one locking rod, the locking rod is provided with a first elastic member, so that the locking rod has a tendency to move upward; the grip member is provided with a driving rod, the driving rod is telescopically and movably arranged on the mounting plate, the bottom of the driving rod is provided with a groove, the bottom inner wall of the mounting slot is provided with a locking groove, the upper and lower ends of the locking rod are respectively a driving part and a locking part, and the driving rod is linked to the locking rod for linkage cooperation; when the groove corresponds to the locking rod, the driving part is inserted into the groove so that the locking part disengages from the locking groove; or, when the groove and the locking groove are completely staggered, the driving part abuts against the driving rod so that the locking part is inserted into the locking groove.

[0008] Preferably, a first guide surface inclined toward the driving rod is formed on a side wall of the driving portion close to the handle, and the first guide surface is in contact with the inner wall of the groove, and a second guide surface inclined toward the driving rod is formed on a side wall of the locking portion away from the handle, and the second guide surface is in contact with the inner wall of the locking groove.

[0009] Preferably, the mounting plate is provided with a sliding groove for the driving rod to be slidably connected, the inner wall of the sliding groove is provided with a travel groove, the driving rod is provided with a travel block slidably connected to the travel groove, and a second elastic member is provided between the travel block and the travel groove, so that the handle member has a tendency to approach the mounting plate.

[0010] Preferably, the bottom inner wall of the travel groove is penetrated by a movable hole for the sliding connection of the locking rod, the inner diameter of the driving part is larger than the inner diameter of the locking rod, the movable hole is a stepped hole, and the first elastic member is arranged between the driving part and the inner wall of the movable hole.

[0011] Preferably, a laterally extending placement plate is provided on the top of the placement table, and each of the clamping mechanisms is fixedly connected to the placement plate. The clamping mechanism includes a lifting mechanism and an L-shaped clamping portion, and the clamping portion is provided on the lifting end of the lifting mechanism. The placement table is penetrated by a lifting hole for the lifting and translational movement of the clamping portion. The end of the clamping portion, the side wall of the placement table, and the bottom of the placement plate cooperate with each other to form a clamping space for clamping and positioning the linear guide workpiece.

[0012] Preferably, the mounting groove is detachably connected to a mounting strip, and the inner side wall of the mounting strip and the inner wall of the corresponding mounting groove are formed with two opposite and downwardly inclined limiting surfaces, and the limiting surfaces and the corresponding side walls of the mounting plate are in abutment with each other.

[0013] Preferably, a stand is provided on at least one end of the mounting bar close to the clamping space, and a pressing portion is retractably and movably provided on the top of the stand, and the pressing portion is arranged opposite to the placement table.

[0014] Preferably, the shift assembly includes a translation platform, a transverse translation mechanism and at least one longitudinal translation mechanism. The translation platform is slidably connected to the workbench, and the transverse translation mechanism drives the translation platform to translate transversely on the top surface of the workbench. The longitudinal translation mechanism is arranged on the translation platform, and the mounting platform is slidably connected to the translation platform, and the longitudinal translation mechanism drives the mounting platform to translate longitudinally on the translation platform.

[0015] Preferably, there are several mounting platforms on the translation platform, and the mounting platforms on the translation platform are arranged in parallel and spaced apart in the horizontal direction. There are several longitudinal translation mechanisms, and the translation ends of the longitudinal translation mechanisms are respectively connected to the mounting platforms.

[0016] Preferably, the top surface of the workbench is provided with two parallel and spaced-apart transverse slide rails on both sides of the placement table, the bottom of the translation table is slidably connected to the two adjacent slide rails, the transverse translation mechanism is provided on the translation table, the transverse translation mechanism is a rotating motor, the driving end of the transverse translation mechanism is provided with a gear part, the gear part is located between the two adjacent transverse slide rails, and at least one of the two adjacent transverse slide rails is engaged with the gear part; the longitudinal translation mechanism is a telescopic cylinder, the translation table is provided with a longitudinal slide rail for the sliding connection of the mounting table, and the translation end of the longitudinal translation mechanism is connected to the mounting table.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] 1. The drilling equipment places the linear guide workpiece horizontally through a placement table and clamps the linear guide workpiece through various clamping mechanisms on the placement table. The top surface of the worktable is provided with shift components on both sides relative to the placement table. Both sides of the clamped linear guide workpiece are provided with drilling mechanisms moved by the shift components. The drilling equipment can fully process all the hole positions on both sides of the linear guide workpiece without flipping the linear guide workpiece, thereby greatly improving the processing efficiency and accuracy.

[0019] 2. The drilling mechanism and the mounting table are designed with a detachable connection. The operating side of the mounting plate includes a U-shaped handle and a T-shaped grip, which makes it convenient for the staff to hold the operating side of the mounting plate and operate the driving rod to move horizontally by holding the grip. The locking rod is quickly locked and unlocked through the cooperation of the driving rod and the groove, so that the drilling mechanism can be easily disassembled and replaced. When the cutting head of the drilling mechanism needs to be replaced, the drilling mechanism can be taken out separately for cutting head disassembly and assembly. There is no need to replace the cutting head around the drilling equipment, which greatly improves the efficiency and convenience of operation and improves the processing efficiency of linear guide workpieces. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the structure of the drilling equipment in the embodiment Figure 1 ;

[0021] Figure 2 This is a schematic diagram of the structure of the drilling equipment in the embodiment Figure 2 ;

[0022] Figure 3 is a cross-sectional view of the drilling equipment in the embodiment;

[0023] Figure 4 Schematic diagram of the structure of the shift assembly and the drilling mechanism in the embodiment;

[0024] Figure 5This is a cross-sectional view of the shift assembly and drilling mechanism in the embodiment. Figure 1 ;

[0025] Figure 6 This is a cross-sectional view of the shift assembly and drilling mechanism in the embodiment. Figure 2 ;

[0026] Figure 7 is a cross-sectional view of the embodiment when the mounting plate and the mounting platform are locked;

[0027] Figure 8 2 is a cross-sectional view of the embodiment when the mounting plate and the mounting table are unlocked.

[0028] In the figure: 1. Linear guide workpiece; 101. Hole position; 2. Workbench; 3. Placement table; 301. Pre-processed hole; 302. Placement plate; 303. Lifting hole; 4. Clamping mechanism; 41. Lifting mechanism; 42. Clamping part; 5. Shifting assembly; 51. Translation table; 52. Horizontal translation mechanism; 53. Longitudinal translation mechanism; 6. Mounting table; 601. Mounting slot; 602. Locking slot; 7. Drilling mechanism; 8. Mounting plate; 801. Locking rod; 802. Slide slot; 803. Travel slot; 804. Movable hole; 805. Driving part; 806. Locking part; 807. First guide surface; 808. Second guide surface; 9. Handle member; 10. Grip member; 11. Driving rod; 1101. Groove; 1102. Travel block; 12. First elastic member; 13. Second elastic member; 14. Mounting bar; 1401. Stand; 1402. Pressing part; 1403. Translation rod; 1404. Translation hole; 1405. Spring member; 15. Limiting surface; 16. Clamping space; 17. Horizontal slide rail; 18. Gear member; 19. Longitudinal slide rail. DETAILED DESCRIPTION

[0029] The present invention will be further described below with reference to the accompanying drawings and examples.

[0030] refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4A drilling equipment for linear guide rail production includes a workbench 2, a laterally extending placement table 3 is provided in the middle of the workbench 2, and a plurality of clamping mechanisms 4 are provided on the placement table 3 and spaced apart along its length direction. A laterally extending placement plate 302 is provided on the top of the placement table 3, and each clamping mechanism 4 is fixedly connected to the placement plate 302. The clamping mechanism 4 includes a lifting mechanism 41 and an L-shaped clamping portion 42. The clamping portion 42 is provided on the lifting end of the lifting mechanism 41. The placement table 3 is penetrated by a lifting hole 303 for the clamping portion 42 to move up and down and translate. The end of the clamping portion 42, the side wall of the placement table 3, and the bottom of the placement plate 302 cooperate with each other to form a clamping space 16 for clamping and positioning the linear guide rail workpiece 1. The placement table 3 is penetrated by a plurality of processing reserved holes 301 spaced apart along its length direction.

[0031] The top surface of the workbench 2 is provided with a shift assembly 5 and two parallel and spaced-apart transverse slides 17 on both sides relative to the placement table 3. The shift assembly 5 includes a translation platform 51, a transverse translation mechanism 52 and two longitudinal translation mechanisms 53. The bottom of the translation platform 51 is slidably connected to the two adjacent slides, guiding the translation platform 51 to slide laterally relative to the workbench 2. The transverse translation mechanism 52 is provided on the translation platform 51. The transverse translation mechanism 52 is a rotating motor. The driving end of the transverse translation mechanism 52 is provided with a gear part 18. The gear part 18 is located between the two adjacent transverse slides 17. The transverse slides 17 are fixedly connected to the top surface of the workbench 2. At least one of the two adjacent transverse slides 17 is engaged with the gear part 18. The transverse translation mechanism 52 utilizes a rack and pinion transmission to drive the translation platform 51 to move laterally on the top surface of the workbench 2 more accurately.

[0032] The translation table 51 is the shift end of the shift assembly 5. The shift end of the shift assembly 5 is provided with two mounting tables 6. The mounting tables 6 on the translation table 51 are arranged in parallel and spaced apart in the horizontal direction. The translation table 51 is provided with a longitudinal slide rail 19 for sliding connection of the mounting tables 6. The mounting table 6 is detachably connected to a drilling mechanism 7. The drilling mechanism 7 is an electric spindle with a replaceable tool head. The electric spindle drives the tool head to rotate through a motor and utilizes a cutting action to remove the workpiece material. This is an existing technology and will not be described in detail here.

[0033] The longitudinal translation mechanism 53 is a telescopic cylinder, which is arranged on the translation platform 51 . The translation ends of each longitudinal translation mechanism 53 are respectively connected to each mounting platform 6 . The longitudinal translation mechanism 53 drives the mounting platform 6 to translate longitudinally on the translation platform 51 .

[0034] The drilling equipment places the linear guide workpiece 1 horizontally through the placement table 3 and clamps the linear guide workpiece 1 through the clamping mechanisms 4 on the placement table 3. Each processing reserved hole 301 corresponds to the surface to be processed of the linear guide workpiece 1. At this time, both sides of the clamped linear guide workpiece 1 are provided with a drilling mechanism 7 moved by a shift component 5. The shift component 5 adjusts the position of the corresponding drilling mechanism 7 in the horizontal and vertical directions so that the processing end of the drilling mechanism 7 corresponds to the processing reserved hole 301. The processing end of the drilling mechanism 7 on one of the shift components 5 directly cuts the side of the linear guide workpiece 1 away from the placement table 3, and the processing end of the drilling mechanism 7 on the other shift component 5 passes through the corresponding processing reserved hole 301 to cut the side of the linear guide workpiece 1 close to the placement table 3. Preferably, the processing ends of the two drilling mechanisms 7 on a shift assembly 5 can be respectively equipped with a drilling bit and a secondary processing bit. The drilling bit drills a hole 101 in the linear guide workpiece 1, and the secondary processing bit can be a bit for cutting processing such as a reaming bit, a boring bit, or a grinding bit. This drilling device can not only drill holes on both sides of the linear guide workpiece 1 on the placement table 3, but can also perform other cutting operations such as reaming, boring, and grinding. This drilling device can fully process all the hole positions 101 on both sides of the linear guide workpiece 1 without turning the linear guide workpiece 1, greatly improving processing efficiency and accuracy.

[0035] A mounting plate 8 is provided at the bottom of the drilling mechanism 7. A transversely extending mounting slot 601 is defined at the top of the mounting platform 6. A mounting bar 14 is detachably connected to the mounting slot 601. The inner sidewalls of the mounting bar 14 and the corresponding inner wall of the mounting slot 601 are each formed with two opposing, downwardly inclined stop surfaces 15. Mounting plate 8 is inserted into mounting slot 601, and the stop surfaces 15 engage with the corresponding sidewalls of mounting plate 8, thereby limiting the sliding movement of mounting plate 8 within the mounting slot 601 and preventing it from rocking.

[0036] Preferably, a stand 1401 is provided on at least one end of the mounting strip 14 near the clamping space 16, and a pressing portion 1402 is retractably and movably provided on the top of the stand 1401, and the pressing portion 1402 is arranged opposite to the placement table 3. Preferably, the pressing portion 1402 is provided with a translation rod 1403, and the stand 1401 is penetrated by a translation hole 1404 for sliding connection of the translation rod 1403, and a spring member 1405 is sleeved on the translation rod 1403 so that the pressing portion 1402 has a tendency to extend outward relative to the stand 1401. When the longitudinal mechanism close to the clamping space 16 drives the corresponding mounting table 6 close to the placement table 3, the clamping part 1402 is pressed on the outer wall of the linear guide workpiece 1 to ensure that the vibration of the linear guide workpiece 1 is reduced during the cutting process of the tool head of the drilling mechanism 7, and prevents the linear guide workpiece 1 from being displaced on the placement table 3; when the longitudinal mechanism away from the clamping space 16 drives the corresponding mounting table 6 close to the placement table 3, the clamping part 1402 is pressed on the side wall of the placement table 3, and the clamping part 1402 cooperates with the translation rod 1403 and the spring part 1405 to play a buffering role.

[0037] refer to Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 The side of the mounting plate 8 that extends out of the mounting slot 601 is the operating side. The operating side of the mounting plate 8 includes a U-shaped handle 9 and a T-shaped grip 10. The handle 9 is fixedly connected to the mounting plate 8. The grip 10 is provided with a drive rod 11. The mounting plate 8 is provided with a slide groove 802 for sliding connection of the drive rod 11, so that the drive rod 11 is retractably mounted on the mounting plate 8. The inner wall of the slide groove 802 is provided with a travel groove 803. The drive rod 11 is provided with a travel block 1102 that is slidably connected to the travel groove 803 to guide the sliding direction of the drive rod 11.

[0038] At least one locking rod 801 is retractably and movably provided at the bottom of the mounting plate 8, and a movable hole 804 for sliding connection of the locking rod 801 is passed through the bottom inner wall of the slide groove 802 to guide the extension and retraction direction of the locking rod 801. Preferably, a plurality of locking rods 801 are provided, and each locking rod 801 is spaced apart along a linear array. The upper and lower ends of the locking rod 801 are respectively the driving part 805 and the locking part 806, the movable hole 804 is a stepped hole, the inner diameter of the driving part 805 is larger than the inner diameter of the locking rod 801, and a first elastic member 12 is arranged between the driving part 805 and the inner wall of the movable hole 804. The first elastic member 12 is a spring structure. The first elastic member 12 is sleeved on the locking rod 801, so that the locking rod 801 can be telescopically and movably arranged at the bottom of the mounting plate 8 and the locking rod 801 has a tendency to move upward; a second elastic member 13 is arranged between the travel block 1102 and the travel groove 803, the second elastic member 13 is a spring structure, and the second elastic member 13 is sleeved on the driving rod 11, so that the handle member 10 has a tendency to approach the mounting plate 8. The elastic force of the second elastic member 13 is greater than the elastic force of the first elastic member 12. The bottom inner wall of the installation groove 601 is provided with a locking groove 602 for the locking part 806 to be inserted. The bottom of the driving rod 11 is provided with a groove 1101 for the driving part 805 to be inserted. The driving rod 11 is linked to the locking rod 801 for linkage cooperation.

[0039] The side wall of the driving part 805 close to the handle part 10 is formed with a first guide surface 807 inclined toward the driving rod 11, and the side wall of the locking part 806 away from the handle part 10 is formed with a second guide surface 808 inclined toward the driving rod 11. The first guide surface 807 and the second guide surface 808 are parallel to each other.

[0040] The staff holds the handle member 9 and the grip member 10 to drive the mounting plate 8 to be inserted into or extracted relative to the mounting groove 601. The staff holds and presses the grip member 10 by hand to make it overcome the second elastic member 13 and extend outward until the groove 1101 is at a position corresponding to the locking rod 801. Under the action of the first elastic member 12, the locking rod 801 is translated upward, and the driving part 805 is inserted into the groove 1101, causing the locking part 806 to disengage from the locking groove 602. The first guide surface 807 and the inner wall of the groove 1101 are in contact with each other to realize the unlocking between the mounting platform 6 and the drilling mechanism 7; or, when the insertion between the mounting plate 8 and the mounting groove 601 is completed, the user releases the grip member 10, and under the action of the second elastic member 13, the driving rod 11 is translated inward and drives the locking rod 801 to overcome the first elastic member 12 and translate downward through the first guide surface 807 until the groove 1101 is aligned with the lock member 802. When the fixed groove 602 is completely staggered, the driving part 805 abuts against the driving rod 11, causing the locking part 806 to be inserted into the locking groove 602, and the second guide surface 808 interferes with the inner wall of the locking groove 602 to realize the locking between the mounting platform 6 and the drilling mechanism 7; the drilling mechanism 7 and the mounting platform 6 adopt a detachable connection design, and the staff holds the operating side of the mounting plate 8 and operates the driving rod 11 to move horizontally by holding the handle 10, thereby changing the relative position between the groove 1101 and the locking rod 801, and the locking rod 801 is quickly locked and unlocked through the cooperation of the driving rod 11 and the groove 1101, so that the drilling mechanism 7 can be easily disassembled and replaced, so that when the drilling mechanism 7 needs to replace the cutter head, the drilling mechanism 7 can be taken out separately for the cutter head disassembly and assembly operation, and there is no need to replace the cutter head around the drilling equipment, which greatly improves the efficiency and convenience of the operation and improves the processing efficiency of the linear guide workpiece 1.

[0041] Of course, the above are only typical examples of the present invention. In addition, the present invention may also have many other specific implementation methods. Any technical solutions formed by equivalent replacement or equivalent transformation fall within the scope of protection required by the present invention.

Claims

1. A drilling device for linear guide rail production, characterized in that: The invention comprises a workbench (2), wherein the workbench (2) is provided with a transversely extending placement table (3), and the placement table (3) is provided with a plurality of clamping mechanisms (4) spaced apart along its length direction. A linear guide rail workpiece (1) is transversely placed on the placement table (3) and clamped and fixed by each of the clamping mechanisms (4). The placement table (3) is penetrated by a plurality of machining reserved holes (301) spaced apart along its length direction, and each of the machining reserved holes (301) corresponds to a surface to be machined of the linear guide rail workpiece (1); A shift assembly (5) is provided on both sides of the top surface of the workbench (2) relative to the placement table (3); a shift end of the shift assembly (5) is provided with at least one mounting table (6); a drilling mechanism (7) is detachably connected to the mounting table (6); the shift assembly (5) adjusts the position of the corresponding drilling mechanism (7) in the horizontal and vertical directions so that the processing end of the drilling mechanism (7) corresponds to the processing reserved hole (301); The bottom of the drilling mechanism (7) is provided with a mounting plate (8), the top of the mounting platform (6) is provided with a transversely extending mounting groove (601), the mounting plate (8) is inserted into the mounting groove (601), the operating side of the mounting plate (8) includes a U-shaped handle member (9) and a T-shaped grip member (10), the bottom of the mounting plate (8) is provided with at least one locking rod (801) which is telescopically movable, the locking rod (801) is provided with a first elastic member (12), so that the locking rod (801) has a tendency to move upward; the grip member (10) is provided with a driving rod (11), the driving rod (11) is telescopically movable and provided on the mounting plate (8), the bottom of the driving rod (11) is provided with a recessed The mounting groove (1101) is provided with a locking groove (602) on the inner wall of the bottom of the mounting groove (601), and the upper and lower ends of the locking rod (801) are respectively a driving part (805) and a locking part (806), and the driving rod (11) is linked to the locking rod (801) for linkage cooperation; when the groove (1101) corresponds to the locking rod (801), the driving part (805) is inserted into the groove (1101) so that the locking part (806) is disengaged from the locking groove (602); or, when the groove (1101) is completely offset from the locking groove (602), the driving part (805) abuts against the driving rod (11) so that the locking part (806) is inserted into the locking groove (602).

2. A drilling device for linear guide rail production according to claim 1, characterized in that: The driving portion (805) is formed with a first guide surface (807) inclined toward the driving rod (11) on the side wall close to the handle member (10), and the first guide surface (807) is in contact with the inner wall of the groove (1101). The locking portion (806) is formed with a second guide surface (808) inclined toward the driving rod (11) on the side wall away from the handle member (10), and the second guide surface (808) is in contact with the inner wall of the locking groove (602).

3. The drilling equipment for linear guide rail production according to claim 1, characterized in that: The mounting plate (8) is provided with a sliding groove (802) for the driving rod (11) to be slidably connected, the inner wall of the sliding groove (802) is provided with a travel groove (803), the driving rod (11) is provided with a travel block (1102) slidably connected to the travel groove (803), and a second elastic member (13) is provided between the travel block (1102) and the travel groove (803), so that the handle member (10) has a tendency to approach the mounting plate (8).

4. The drilling equipment for linear guide rail production according to claim 3, characterized in that: The bottom inner wall of the travel groove (803) is penetrated by a movable hole (804) for sliding connection of the locking rod (801), the inner diameter of the driving part (805) is larger than the inner diameter of the locking rod (801), the movable hole (804) is a stepped hole, and the first elastic member (12) is arranged between the driving part (805) and the inner wall of the movable hole (804).

5. The drilling equipment for linear guide rail production according to claim 1, characterized in that: A laterally extending placement plate (302) is provided on the top of the placement table (3), and each of the clamping mechanisms (4) is fixedly connected to the placement plate (302). The clamping mechanism (4) includes a lifting mechanism (41) and an L-shaped clamping portion (42). The clamping portion (42) is provided on the lifting end of the lifting mechanism (41). The placement table (3) is provided with a lifting hole (303) for the clamping portion (42) to move up and down and translate. The end of the clamping portion (42), the side wall of the placement table (3), and the bottom of the placement plate (302) cooperate with each other to form a clamping space (16) for clamping and positioning the linear guide workpiece (1).

6. The drilling equipment for linear guide rail production according to claim 5, characterized in that: The mounting groove (601) is detachably connected to a mounting strip (14), and the inner side wall of the mounting strip (14) and the inner wall of the corresponding mounting groove (601) are both formed with two opposing and downwardly inclined limiting surfaces (15), and the limiting surfaces (15) and the corresponding side walls of the mounting plate (8) are in abutment with each other.

7. The drilling equipment for linear guide rail production according to claim 6, characterized in that: A stand (1401) is provided at at least one end of the mounting bar (14) near the clamping space (16), and a pressing portion (1402) is retractably and movably provided on the top of the stand (1401), and the pressing portion (1402) is arranged opposite to the placement table (3).

8. The drilling equipment for linear guide rail production according to claim 1, characterized in that: The shift assembly (5) comprises a translation platform (51), a transverse translation mechanism (52) and at least one longitudinal translation mechanism (53); the translation platform (51) is slidably connected to the workbench (2); the transverse translation mechanism (52) drives the translation platform (51) to translate transversely on the top surface of the workbench (2); the longitudinal translation mechanism (53) is arranged on the translation platform (51); the mounting platform (6) is slidably connected to the translation platform (51); and the longitudinal translation mechanism (53) drives the mounting platform (6) to translate longitudinally on the translation platform (51).

9. The drilling equipment for linear guide rail production according to claim 8, characterized in that: There are a plurality of mounting platforms (6) on the translation platform (51), and the mounting platforms (6) on the translation platform (51) are arranged in parallel and spaced apart in the transverse direction. There are a plurality of longitudinal translation mechanisms (53), and the translation ends of the longitudinal translation mechanisms (53) are respectively connected to the mounting platforms (6).

10. The drilling equipment for linear guide rail production according to claim 8, characterized in that: The top surface of the workbench (2) is provided with two parallel and spaced-apart transverse slide rails (17) on both sides relative to the placement platform (3); the bottom of the translation platform (51) is slidably connected to the two adjacent slide rails; the transverse translation mechanism (52) is provided on the translation platform (51); the transverse translation mechanism (52) is a rotary motor; the driving end of the transverse translation mechanism (52) is provided with a gear part (18); the gear part (18) is located between the two adjacent transverse slide rails (17); at least one of the two adjacent transverse slide rails (17) is meshed with the gear part (18); the longitudinal translation mechanism (53) is a telescopic cylinder; the translation platform (51) is provided with a longitudinal slide rail (19) for sliding connection to the mounting platform (6); the translation end of the longitudinal translation mechanism (53) is connected to the mounting platform (6).

Citation Information

Patent Citations

  • Motor assembly production and processing equipment

    CN118971533A

  • Linear guide equipment of driling

    CN208391492U