The present invention relates to a ballpoint pen realizing a writing state by advancing of a knock part and a refill, and, more particularly, to a slim type ballpoint pen designed with a small-diameter shaft tube.
To date, the applicant has proposed constitutions of various types of ballpoint pens and filed patent applications thereon.
For example, a ballpoint pen disclosed in Patent Document 1 has an outer tube part capable of being screwed onto a writing tool body. During use, the writing tool body is covered from the outside, and thus the ballpoint pen can have a thickness suitable for being gripped. On the other hand, when not in use, a lead tip or a pen tip is covered from the outside, and thus not only can falling or vibration of the pen be prevented from causing damage to the tip, but the tip can be prevented from causing a puncture wound when the pen is pocketed.
Since a ballpoint pen disclosed in Patent Document 2 has a damper element having a specific structure in a shaft tube, elastic force of a refill spring can be reduced if necessary when a refill and a rotor retreat, and thus comfortable operation of a knock part can be realized.
Thereupon, recently, a slim type ballpoint pen has been required which has a small-diameter shaft tube so as to be realized compactly supported state in a pocket and speedy writing by simple gripping.
However, a specific device in designing for making a slim type ballpoint pen has not been created in the inventions disclosed not only in Patent Documents 1 and 2 but also in other publications.
[Patent Document 1] Japanese Published Unexamined Patent Application No. H11-342696
[Patent Document 2] Japanese Published Unexamined Patent Application No. 2002-307892
It is an object of the present invention to provide a slim type ballpoint pen which includes a shaft tube and a knock part, each having a small length in a before-behind direction and a small diameter, so as to be realized compactly supported state in a pocket and speedy writing.
In order to achieve the above object, the present invention provides slim type ballpoint pens having the following basic constitutions:
(1) A slim type ballpoint pen comprising:
(2) A slim type ballpoint pen comprising:
Basic principles of operations of the above-described basic constitutions (1) and (2) will be described first.
As shown in
On the other hand, as shown in
As shown in
In the case of cancelling the writing state, the upward insertion of the middle body part 82 in the front hole 11 in the shaft tube 1 and the contact of the rear end of the hole 11 with the part 82 are cancelled by pressing the button 8 downward with a finger, the spring 5 powers an upper body part 81 so as to move or slide the part 81 along a rear slit 12, and the knock part 6 is moved backward.
As shown in
In addition, whether a front end of the insertion hole 61 of the knock part contacts with the middle body part 82 or the lower body part 83 is decided in accordance with a ratio of vertical lengths of the middle body part 82 and the lower body part 83.
As shown in
In the case of cancelling the writing state, the upward insertion of the middle body part 82 in the front slit 11 of the shaft tube 1 and the contact of the rear end of the hole 11 with the part 82 are cancelled by pressing the button 8 downward with a finger, the spring 5 rearward powers an upper body part 81 so as to move or slide the part 81 along a rear slit 12, and the knock part 6 is moved backward.
As shown in
In addition, whether a lower end of the insertion hole 61 of the knock part contacts with the middle body part 82 or the lower body part 83 is decided in accordance with a ratio of vertical lengths of the middle body part and the lower body part 83 as the case of basic constitution (1).
In the basic constitutions (1) and (2), a pipe of the insertion hole 61 for inserting the button 8 is projected downward in the knock part 6 so that the knock part 6 can move before-behind integrally with the button 8 contacting with an inner wall of the pipe.
When the knock part 6 moves before-behind, an upper end of the middle body part 82 of the button 8 slides on a lower end surface of the side of the rear slit 12 in the shaft tube 1 while being powered upward by the vertical spring 7, and kinetic frictional resistance force is generated by the sliding. However, since a backward powering force of the spring 5 along with contact of the front wall of the pipe forming the insertion hole 61 with the lower body part 83 and forward moving force with a finger are larger than the kinetic frictional resistance force, the kinetic frictional resistance force by the sliding does not obstruct before-behind movement of the knock part.
On the other hand, powering force by the vertical spring 7 is required to be set so that the backward powering force of the spring 5 and the forward moving force with the finger are larger than the kinetic frictional resistance force.
In the case where the vertical spring 7 contacts with the lower inner wall of the knock part 6, there exists an advantage that a lower end of the vertical spring does not slide on the lower inner wall of the shaft tube 1 even if the knock part 6 moves. However, since the vertical spring 7 is short in vertical movement distance and extremely compressed, elastic fatigue is easily caused.
On the other hand, in the case where the vertical spring 7 contacts with the lower inner wall of the shaft tube 1, it slides on the lower inner wall and is slightly worn. However, there exists an advantage that the vertical spring 7 can be set long in vertical movement distance and elastic fatigue is hardly caused.
The button 8 shown in
In the above basic constitution (2), if the projection 62 concerning forward movement of the knock part 6 and the refill 3 were molded so as to project upward from the knock part 6, the knock part 6 could not then be inserted in the shaft tube 1.
For considering such a situation, in the basic constitution (2), a pipe of a fitting-in hole 65 is projected downward into which a columnar part 63 molded integrally with a lower side of the projection 62 in front of the insertion hole 61 is fitted.
Similar to the pipe forming the insertion hole 61, also the pipe forming the fitting-in hole 65 may be projected downward so as to reach the lower inner wall of the knock part 6 as shown in
In the case where the pipe is projected so as to reach the middle part, if the pipe includes a bottom surface as shown in
The pipe forming the fitting-in hole 65 is projected downward in the knock part 6 on the lower side of the front slit 11 so that the projection 62 projects upward through the front slit 11 in the shaft tube 1. By press-bonding or adhering the columnar part 63 to an inner wall of the pipe, the projection 62 can be fixed to the fitting-in hole 65.
Note that
In both the basic constitutions (1) and (2), of the button 8, at least the lower body part 83, and the whole of the vertical spring 7 (in the case where the lower end of the spring is supported on the lower inner wall of the knock part 6) or a part, which does not pass downward through a lower side hole 64 of the knock part 6, of the vertical spring 7 (in the case where the lower end thereof is supported on the lower inner wall of the shaft tube 1) are required to be disposed in the shaft tube 1 and the knock part 6.
As such a disposing method, the following methods can be adopted:
(a) a method including the steps of: forming a hole (not shown) having a diameter larger than that of the lower body part 83 of the button 8 behind the rear slit 12 in the shaft tube 1 or in front of the front hole or front slit 11 in advance; inserting the vertical spring 7 and the button 8 from the hole and the insertion hole 61 of the knock part (selectable from the cases of inserting the vertical spring 7 and then inserting the button 8, and of inserting both the spring 7 and the button 8 together); moving the button 8 and the knock part 6 forward; projecting the upper body part 81 of the button 8 upward from the rear slit 12 in the shaft tube 1; and covering the hole formed in the shaft tube 1 with a cover plate (not shown) from outside; and
(b) a method including the steps of: inserting the vertical spring 7 and the button 8 in the knock part 6 through the insertion hole 61 of the knock part (selectable from the cases of inserting the vertical spring 7 and then inserting the button 8, and of inserting both the spring 7 and the button 8 together); inserting the button 8 and the knock part 6 into the shaft tube 1 from its rear end opening part; moving the button 8 and the knock part 6 forward while sliding the upper body part 81 of the button 8 on an upper inner wall of the shaft tube 1; projecting the upper body part 81 from the rear slit 12; and covering part of the rear end of the shaft tube 1 with a rear end plate (not shown) (in the basic constitution (1)) or covering the whole of the opening part with a rear end plate (not shown) (in the basic constitution (2)).
Hereinafter, embodiments of the present invention will be described.
As shown in
Since the vertical spring 7 is thus wound around a lower side projection 84, engagement of the spring 7 and the button 8 is maintained, and the button 8 may be positionally fixed in the before-behind direction by a vertically elastically powering force. This point is applicable to both the basic constitutions (1) and (2).
As shown in
Engagement of the vertical spring 7 and the button 8 is maintained by fitting the vertical spring 7 in the hollow part 85 of the lower body part 83, and the button 8 can be positionally fixed in the before-behind direction by a vertically elastically powering force. This point is applicable to both the basic constitutions (1) and (2).
In the present inventions based on the basic constitutions (1) and (2), a lower body part of a button passes upward through an insertion hole of a knock part and a lower body part contacts with a front end of the insertion hole, a middle body part of the button is inserted in a front hole (basic constitution (1)) or a front slit (basic constitution (2)) and contacts with the front hole or a rear end of the front slit, and thus a pen tip projects from a cap and a writing state is maintained; and a not-writing state is maintained by making an upper body part of the button pass upward through a rear slit and contact with a rear end of the rear slit; and an original function of a ballpoint pen may be shown.
In addition, by setting the distance, influencing advancing for writing and retreat for not-writing, between the contact position of the fitted-in middle body part and the contact position of the fitted-in upper body part to about 3 to 6 mm, the lengths of the shaft tube and the knock part in their longitudinal directions may be made shorter than the lengths of those used in a conventional cam type ballpoint pen. Moreover, since almost all vertical parts are disposed in the knock part and the diameter of the lower body part having the largest diameter may be set to not longer than 1.5 mm, the ballpoint pen has a smaller diameter and may be shaped more slimly than the conventional cam type ballpoint pen.
In particular, since a rear end of the knock part does not project backward from a rear end of the shaft tube even in a not-writing state in the basic constitution (2), the length of the ballpoint pen in its longitudinal direction may be designed to be shorter than that of the ballpoint pen normally designed and the basic constitution (1) in which the rear end of the knock part projects backward in relation thereto in the not-writing state.
As described above, the present invention may be widely used as a compact type ballpoint pen.
Number | Date | Country | Kind |
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2013-106691 | May 2013 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
3657812 | Lee | Apr 1972 | A |
6309122 | Wang | Oct 2001 | B1 |
6752557 | Hsieh | Jun 2004 | B1 |
6773185 | Hsieh | Aug 2004 | B1 |
20020110403 | Nishitani | Aug 2002 | A1 |
Number | Date | Country |
---|---|---|
11-342696 | Dec 1999 | JP |
2002-307892 | Oct 2002 | JP |
2004-237662 | Aug 2004 | JP |
2011-42035 | Mar 2011 | JP |
Number | Date | Country | |
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20140334864 A1 | Nov 2014 | US |