Four-edge woodworking gang drill

By incorporating an inverted conical cutting edge and multiple chip removal grooves into the woodworking drill bit, the problem of unsatisfactory chip removal in woodworking drills is solved, resulting in more efficient chip removal and extended drill bit life.

CN224158558UActive Publication Date: 2026-04-24CHENGDU HENGCHENG TOOLS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHENGDU HENGCHENG TOOLS CO LTD
Filing Date
2025-05-30
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing woodworking drills have poor chip removal performance during drilling, which can easily lead to overheating and jamming of the drill bit.

Method used

A four-blade woodworking drill was designed. By setting an inverted conical structure on the outer side of the cutting edge of the drill bit, and combining it with the connection of the drainage groove, the drill bit chip removal groove, the auxiliary chip removal groove and the main chip removal groove, the chip removal efficiency is improved.

Benefits of technology

It effectively improves chip removal during drilling, reduces drill bit overheating and jamming, and extends the service life of the drill bit.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224158558U_ABST
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Abstract

The utility model belongs to the technical field of woodworking tools, and particularly relates to a four-edge woodworking gang drill. One part of wood chips generated in the drilling machining process are discharged through the main chip discharging groove, the other part of the wood chips are discharged through the first peripheral chip discharging section, the drill bit chip discharging groove, the auxiliary chip discharging groove and the main chip discharging groove, and the other part of the wood chips are discharged through the drainage groove, the drill bit chip discharging groove, the auxiliary chip discharging groove and the main chip discharging groove. Compared with the prior art that a spirally extending groove is formed in the cylindrical side face of the drill bit, the chip removal effect can be further improved.
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Description

Technical Field

[0001] This utility model belongs to the field of woodworking tool technology, specifically relating to a four-bladed woodworking drill. Background Technology

[0002] A wood drill is a tool used to drill holes in wood. When drilling, a wood drill produces a lot of sawdust, which, if not removed in time, can easily cause technical problems such as overheating and jamming of the drill bit.

[0003] Chinese patent document CN206484687U discloses a four-flute crown drill. The above technical solution involves setting a spirally extending groove on the cylindrical side of the drill bit, which is connected to an auxiliary chip removal groove, allowing some wood chips to be discharged through both the groove and the auxiliary chip removal groove. However, due to the relatively small chip removal capacity of the groove, there is a technical problem of unsatisfactory chip removal effect. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a four-blade woodworking drill to improve chip removal efficiency.

[0005] The technical solution adopted by this utility model to solve its technical problem is: a four-blade woodworking drill, including a drill bit, a drill rod, and a drill shank, wherein the drill bit, drill rod, and drill shank are sequentially connected to form a whole; the main cutting edge of the drill bit and the slicing edge of the drill bit form a first platform on the circumferential plane of the drill bit; the outer surface of the slicing edge extends spirally around the drill bit axis to a stepped platform, and is arranged correspondingly to the auxiliary chip removal groove of the drill rod; the spiral extension direction of the outer surface of the slicing edge is consistent with the spiral extension direction of the auxiliary chip removal groove; characterized in that: the extension surface of the outer surface of the slicing edge forms an inverted conical structure of the outer circumferential surface of the drill bit, the outer circumferential surface of the drill bit includes A first outer peripheral chip removal section and a second outer peripheral chip removal section are arranged adjacently along the direction from the drill bit to the drill rod. The slicing edge of the drill bit has an arc structure and is obliquely distributed on the first outer peripheral chip removal section on the outer peripheral surface of the drill bit. A flow channel extending from the edge of the first platform to the ladder is provided on the outer side of the slicing edge. The flow channel is consistent with the spiral extension direction of the outer side of the slicing edge. A drill bit chip removal groove located in the second outer peripheral chip removal section is provided on the outer side of the slicing edge. The drill bit chip removal groove connects the flow channel, the main chip removal groove on the drill rod, and the auxiliary chip removal groove on the drill rod, and is located on the side opposite to the flow channel along the feed direction.

[0006] Furthermore, the cone angle α of the outer circumference of the drill bit is 4 to 6°.

[0007] Furthermore, the cone angle α is 5°.

[0008] Furthermore, the drill bit is a cemented carbide product.

[0009] Furthermore, the drill bit and the drill rod are connected by brazing.

[0010] Compared with the prior art, the beneficial effects of this utility model are: This utility model provides a four-blade woodworking drill, which improves chip removal efficiency. During the drilling process, a portion of the wood chips are discharged through the main chip removal groove, another portion through the first outer peripheral chip removal section, the drill bit chip removal groove, the auxiliary chip removal groove, and the main chip removal groove, and a further portion through the diversion groove, the drill bit chip removal groove, the auxiliary chip removal groove, and the main chip removal groove. Compared to the prior art where spirally extending grooves are opened on the cylindrical side of the drill bit, this further improves chip removal efficiency. Attached Figure Description

[0011] Figure 1 This is a perspective view of the present invention from one angle;

[0012] Figure 2 yes Figure 1 Enlarged view of part A in the image;

[0013] Figure 3 This is the front view of this utility model;

[0014] Figure 4 yes Figure 3 Enlarged view of part B in the image;

[0015] Figure 5 This is a perspective view of the present invention from another angle;

[0016] Figure label:

[0017] 1-Drill bit; 11-Drill tip; 12-Main cutting edge; 121-Main cutting edge end; 122-Main cutting edge tip; 123-Main cutting edge body; 13-Splitting edge; 131-Splitting edge end; 132-Splitting edge tip; 133-Splitting edge body; 134-First outer peripheral chip removal section; 135-Second outer peripheral chip removal section; 141-First platform; 142-Step platform; 15-Drill bit chip removal groove; 16-Drainage groove;

[0018] 2-Drill pipe; 21-Auxiliary chip removal flue; 22-Main chip removal flue;

[0019] 3-Drill shank; 31-Clamping plane; 32-Securing screw hole. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0021] As cited in the background section, Chinese patent document CN206484687U describes an existing four-flute woodworking drill bit, comprising a drill bit 1, a drill rod 2, and a drill shank 3, which are sequentially connected as a whole. The drill bit 1 has a centrally symmetrical structure, containing a drill tip 11, two main cutting edges 12, two scouring edges 13, and a step 142. The main cutting edges 12 and scouring edges 13 are alternately distributed at the bottom of the drill bit 1. The drill tip 11 has a pyramidal structure and is located at the center of the drill bit 1. The step 142 is located at the connection surface between the drill bit 1 and the drill rod 2. Two main cutting edges 12 are centrally symmetrically distributed at the bottom of the drill bit 1 with the drill tip 11 as the center. Each edge includes a main cutting end 121, a main cutting tip 122, and a main cutting body 123. The main cutting end 121 has an arc structure and extends outward from the drill tip 11 to the outer circumference of the drill bit 1. The main cutting tip 122 is located at the outermost end of the main cutting end 121, i.e., distributed on the outer circumference of the drill bit 1. The main cutting body 123 is connected to the main cutting end 121, and its outer surface extends spirally to the step 142. Two scouring edges 13 are centrally symmetrically distributed at the bottom of the drill bit 1 with the drill tip 11 as the center. Each edge includes a scouring end 131, a scouring tip 132, and a scouring body 133. The scouring tip 132 is located at the highest point of the scouring end 131. The scouring body 133 is connected to the scouring end 131, and its outer surface extends spirally around the drill bit 1 to the step 142. The main cutting edge 123 and the slicing edge 133 form a first platform 141 on the circumferential plane of the drill bit 1. The drill rod 2 is a rod structure containing two main chip removal grooves 22 and two auxiliary chip removal grooves 21, which are distributed alternately and spirally arranged. One end of the main chip removal groove 22 extends to the platform 142 and corresponds to the position of the main cutting edge 123, while the other end of the main chip removal groove 22 spirally extends to the bottom of the drill shank 3. One end of the auxiliary chip removal groove 21 extends to the platform 142 and corresponds to the slicing edge 133, while the other end of the auxiliary chip removal groove 21 spirally extends to the bottom of the drill shank 3. The drill shank 3 is a cylindrical structure containing a clamping plane 31 and a fastening screw hole 32. The clamping plane 31 is located on the cylindrical side of the drill shank 3 and is vertically distributed. The height of the clamping plane 31 is the same as the height of the drill shank 3, and its bottom is opposite to the end of one of the auxiliary chip removal grooves 21. The fastening screw hole 32 is located at the central axial position of the drill shank 3.

[0022] The extended surface of the outer side of the slicing body 133 forms an inverted conical outer peripheral surface of the drill bit. The outer peripheral surface of the drill bit includes a first outer peripheral chip removal section 134 and a second outer peripheral chip removal section 135 arranged adjacent to each other along the direction from the drill bit 1 to the drill rod 2. The slicing end 131 of the drill bit 1 has an arc structure and is inclinedly distributed on the first outer peripheral chip removal section 134 of the outer peripheral surface of the drill bit. A guide groove 16 extending from the edge of the first platform 142 to the ladder 142 is provided on the outer side of the slicing body 133. The guide groove 16 is consistent with the spiral extension direction of the outer side of the slicing body 133. A drill bit chip removal groove 15 located in the second outer peripheral chip removal section 135 is provided on the outer side of the slicing body 133. The drill bit chip removal groove 15 connects the guide groove 16, the main chip removal groove 22 on the drill rod 2, and the auxiliary chip removal groove 21 on the drill rod 2, and is located on the side opposite to the feed direction of the guide groove 16.

[0023] Specifically, the junction C between the first outer peripheral chip removal section 134 and the second outer peripheral chip removal section 135 is located between the two ends of the guide channel 16. The guide channel 16 connects the first platform 142 and the auxiliary chip removal channel 21.

[0024] Specifically, the cutting edge 131 is located at the end of the drill bit 1 away from the drill rod 2.

[0025] The outer circumference of the drill bit has an inverted conical structure, specifically meaning that the diameter of the end of the drill bit 1 connected to the drill rod 2 is small, and the diameter of the end of the drill bit 1 away from the drill rod 2 is large.

[0026] During drilling, some of the wood chips are discharged through the main chip removal groove 22, while another portion is discharged through the first outer peripheral chip removal section 134, the drill bit chip removal groove 15, the auxiliary chip removal groove 21, and the main chip removal groove 22. A further portion is discharged through the diversion groove 16, the drill bit chip removal groove 15, the auxiliary chip removal groove 21, and the main chip removal groove 22. Compared to the prior art where spirally extending grooves are formed on the cylindrical side of the drill bit, this method further improves chip removal efficiency.

[0027] The cone angle α of the outer circumference of the drill bit is 4 to 6°. As a further preferred embodiment, the cone angle α is 5°.

[0028] Preferably, drill bit 1 is a cemented carbide product. As a further preferred option, the cemented carbide material used in drill bit 1 is mainly composed of tungsten carbide.

[0029] Preferably, the drill bit 1 and the drill rod 2 are connected by brazing. The brazing filler metal used is a copper-based and / or silver-based alloy.

[0030] Example 1: The cone angle α is 4°, the wood being processed is particleboard, the drilling depth is 20mm, and the drill bit life is 5500 holes.

[0031] Example 2: The cone angle α is 5°, the wood being processed is particleboard, the drilling depth is 20mm, and the drill bit life is 6000 holes.

[0032] Example 3: The cone angle α is 6°, the wood being processed is particleboard, the drilling depth is 20mm, and the drill bit life is 5500 holes.

[0033] The specific embodiments described are preferred embodiments of this utility model and are not intended to limit the scope of protection of this utility model. All equivalent changes made to the structure, shape, and principle of this utility model should be included within the scope of protection of this utility model.

Claims

1. A four-blade woodworking drill, comprising a drill bit (1), a drill rod (2), and a drill shank (3), wherein the drill bit (1), drill rod (2), and drill shank (3) are sequentially connected as a whole; the main cutting edge (123) of the drill bit (1) and the slicing edge (133) of the drill bit (1) form a first platform (141) on the circumferential plane of the drill bit (1); the outer surface of the slicing edge (133) extends spirally around the axial direction of the drill bit (1) to a platform (142), and is arranged correspondingly to the auxiliary chip removal groove (21) of the drill rod (2); the spiral extension direction of the outer surface of the slicing edge (133) is consistent with the spiral extension direction of the auxiliary chip removal groove (21); characterized in that: The extended surface of the outer side of the cutting edge (133) forms an inverted conical outer peripheral surface of the drill bit. The outer peripheral surface of the drill bit includes a first outer peripheral chip removal section (134) and a second outer peripheral chip removal section (135) arranged adjacent to each other along the direction from the drill bit (1) to the drill rod (2). The cutting edge (131) of the drill bit (1) has an arc structure and is obliquely distributed on the first outer peripheral chip removal section (134) of the outer peripheral surface of the drill bit. The outer side of the cutting edge (133) is provided with a section extending from the edge of the first platform (141) to the step platform (135). The guide groove (16) of 142) is consistent with the spiral extension direction of the outer side of the cutting edge (133); the outer side of the cutting edge (133) is provided with a drill bit chip removal groove (15) located in the second outer peripheral chip removal section (135), the drill bit chip removal groove (15) is connected to the guide groove (16), the main chip removal groove (22) on the drill rod (2) and the auxiliary chip removal groove (21) on the drill rod (2), and is located on the side opposite to the feed direction of the guide groove (16).

2. The four-blade woodworking drill as described in claim 1, characterized in that: The cone angle α of the outer circumference of the drill bit is 4 to 6°.

3. The four-blade woodworking drill as described in claim 2, characterized in that: The cone angle α is 5°.

4. The four-blade woodworking drill as described in claim 1, characterized in that: The drill bit (1) is a cemented carbide product.

5. The four-blade woodworking drill as described in claim 1, characterized in that: The drill bit (1) and the drill rod (2) are connected by brazing.

Citation Information

Patent Citations

  • Four sword skull trephines

    CN206484687U