CHISEL
20230093644 · 2023-03-23
Inventors
Cpc classification
E21C35/197
FIXED CONSTRUCTIONS
International classification
Abstract
Disclosed is a chisel in the application. The chisel includes a chisel end, a chisel holding portion, a holding seat, a limit disc, a hole having an annular surface formed around a central axis L of the limit disc, the limit disc being provided with at least one circle of groove in one side thereof, the groove being penetrated by the hole, the limit disc having a support surface and a first end surface, the groove being transitioned from the support surface to the first end surface, the holding seat being provided with a support portion, and the groove being engaged with the support portion. The chisel in the application may maintain the optimal rotary cutting performance and transmit the working pressure more effectively during operation, which may prolong the service life of the chisel.
Claims
1. A chisel (1), comprising a chisel end (11), a chisel holding portion (10), a holding seat (3), a limit disc (2), a hole (13) having an annular surface (2.2) formed around a central axis L of the limit disc (2), the limit disc (2) being provided with at least one circle of groove (2.4) in one side thereof, the groove (2.4) being penetrated by the hole (13), the limit disc (2) having a support surface (2.5) and a first end surface (2.6), the groove (2.4) being transitioned from the support surface (2.5) to the first end surface (2.6), the holding seat (3) being provided with a support portion (3.4), and the groove (2.4) being engaged with the support portion (3.4).
2. The chisel (1) of claim 1, wherein, the groove (2.4) on the limit disc (2) forms an annular groove around a central axis L.
3. The chisel (1) of claim 1, wherein, a guide surface (2.3) of the groove (2.4) extends along a central axis L in a way that the support surface (2.5) inclines towards the first end surface (2.6).
4. The chisel (1) of claim 3, wherein, the guide surface (2.3) is directly or transitionally connected to the support surface (2.5) and the first end surface (2.6).
5. The chisel (1) of claim 4, wherein, the guide surface (2.3) and the central axis L are circumferentially arranged at an included angle α, and, the included angle α is 1°-89°.
6. The chisel (1) of claim 1, wherein, the support portion (3.4) has a first receiving surface (3.5), and the first end surface (2.6) is in contact fit with the first receiving surface (3.5).
7. The chisel (1) of claim 1, wherein, the support portion (3.4) has a locking surface (3.2) and a second receiving surface (3.3), the locking surface (3.2) is in clearance fit with the guide surface (2.3); and the second receiving surface (3.3) is in clearance fit with the support surface (2.5).
8. The chisel (1) of claim 1, wherein, there is a distance a between the support surface (2.5) and the first end surface (2.6), a distance b between the second end surface (2.1) and the first end surface (2.6), and a ratio of the distance b to the distance a is greater than 2, and a ratio of the diameter D1 of the hole (13) to the distance a is greater than 6.
9. The chisel (1) of claim 8, wherein, the distance a between the support surface (2.5) and the first end surface (2.6) is 0.5 mm to 3 mm.
10. The chisel (1) of claim 8, wherein, the distance b between the second end surface (2.1) and the first end surface (2.6) is 3.5 mm to 10 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0024] The implementation of the disclosure is illustrated by specific examples, and other advantages and effects of the disclosure may be easily understood by those skilled in the art based on the contents disclosed in the specification. The disclosure may also be implemented or applied by other different implementations, and the details in the specification may also be based on different viewpoints and applications, and various modifications or changes may be made without departing from the spirit of the present disclosure. It should be noted that, the following embodiments and features in the embodiments may be combined with each other without conflicts.
[0025] It should be noted that the illustrations provided in the following embodiments are merely illustrative of the basic conception of the disclosure, and only related components in the disclosure are only shown in illustrations, but not drawn based on the number, shape and dimension of components in actual implementation, and the type, number and proportion of the components in actual implementation may be arbitrarily changed, and the layout type thereof may also be more complex.
[0026]
[0027] A chisel 1 is provided. The chisel 1 includes a chisel end 11, a chisel holding portion 10, a holding seat 3, a limit disc 2, a hole 13 having an annular surface 2.2 formed around a central axis L of the limit disc 2, the limit disc 2 being provided with at least one circle of groove 2.4 in one side thereof, the groove 2.4 being penetrated by the hole 13, the limit disc 2 having a support surface 2.5 and a first end surface 2.6, the groove 2.4 being transitioned from the support surface 2.5 to the first end surface 2.6, the holding seat 3 being provided with a support portion 3.4, and the groove 2.4 being engaged with the support portion 3.4.
[0028] As illustrated in
[0029] The groove 2.4 on the limit disc 2 forms an annular groove around the central axis L.
[0030] The guide surface 2.3 of the groove 2.4 extends along a central axis L in a way that the support surface 2.5 inclines towards the first end surface 2.6. The guide surface 2.3 is transitionally connected to the first end surface 2.6 by the support surface 2.5 and extended by inclining towards the first end surface 2.6.
[0031] The guide surface 2.3 is directly or transitionally connected to the support surface 2.5 and the first end surface 2.6.
[0032] The guide surface 2.3 and the central axis L are circumferentially arranged at an included angle α, and, the included angle α is 1°-89°. The included angle α is preferably between 30° and 50°, and especially preferably between 40° and 50°. The limit disc for the chisel is made of steel mold. In the direction of mold discharging, that is, in the direction of the central axis L, a draft angle needs to be made on the groove side, which is beneficial to smoothly pushing out the limit disc from the mold cavity.
[0033] The support portion 3.4 has a first receiving surface 3.5, and the first end surface 2.6 is in contact fit with the first receiving surface 3.5.
[0034] The support portion 3.4 has a locking surface 3.2 and a second receiving surface 3.3, the locking surface 3.2 is in clearance fit with the guide surface 2.3; and the second receiving surface 3.3 is in clearance fit with the support surface 2.5.
[0035] The locking surface 3.2 is in clearance fit with the guide surface 2.3, and there is a certain clearance value x of 0.01 mm to 0.05 mm between the locking surface 3.2 and the guide surface 2.3, so that the groove 2.4 of the limit disc 2 completely embraces the support portion 3.4 of the holding seat 3, and the limit disc 2 and the holding seat 3 may quickly return to the original relative position after separated to a certain extent during operation without jamming when the limit disc 2 is rotated.
[0036] The second receiving surface 3.3 is in clearance fit with the support surface 2.5, and the clearance value c and the distance value c being between 0.4 mm and 2.9 mm, which avoids the problem that the first end surface 2.6 cannot contact the first receiving surface 3.5 due to machining errors, and further ensure that the first end surface 2.6 can be in contact fit with the first receiving surface 3.5. When the first end surface 2.6 does not contact the first receiving surface 3.5, the working pressure on the chisel 1 and the limit disc 2 may not be effectively transmitted to the holding seat 3, and the service life of the chisel 1 and the chisel limit disc 2 is greatly affected, and may be quickly damaged under a large impact force.
[0037]
[0038] As can be seen from
[0039] The distance a between the support surface 2.5 and the first end surface 2.6 is 0.5 mm to 3 mm.
[0040] The distance b between the second end surface 2.1 and the first end surface 2.6 is 3.5 mm to 10 mm. Through long-term study on the actual use of the limit disc, the optimal dimension range has been obtained, which may not only effectively ensure the use effect and life of the chisel, but also control the amount of material used, so as not to cause material waste and increase use cost, which maximized combines use effect with material cost to achieve balance and unity of both.
[0041] As illustrated in
[0042]
[0043] The above description is only a preferred embodiment of the disclosure and an illustration of the applied technical principles. Those skilled in the art should understand that the scopes involved in the disclosure are not limited to the technical solutions formed by a specific combination of the above technical features, and should also cover other technical solutions formed by any combination of the above technical features or its equivalent features without departing from the above public conception. For example, a technical solution formed by substituting the above features with the technical features (but not limited to) with similar functions disclosed in this application.
[0044] The above embodiments merely illustrate the principles and effects of the disclosure, but are not intended to limit the disclosure. Those skilled in the art may modify or change the above embodiments without departing from the spirit and scope of the disclosure. Therefore, all equivalent modifications or changes made by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed in the disclosure should remain be covered by the claims of the disclosure.