1. Field of the Invention
The instant disclosure relates to a zipper head assembly structure and a sliding member thereof, and more particularly to a zipper head assembly structure and a sliding member thereof for increasing torsional strength due to an enlarged pivot portion of a pull member of the sliding member.
2. Description of Related Art
In general, zippers are basic elements in clothing or accessories. Compared to buttons, the zippers are easier to use. A conventional zipper comprises a zipper head and a tape. The zipper head works with the tape to allow the pulling action. Recently, the zipper has been commonly used for clothing, pants, backpack, and other accessories.
A traditional zipper head assembly structure comprises a fastening slider, a pulling piece, a horse-like hook and a cap. The above components of the conventional zipper head assembly structure are assembled using the following procedure. One end portion of the pulling piece is positioned into a recessed space of the fastening slider. The pulling piece is pushed toward one end of the fastening slider, so that a first fixing base or a second fixing base of the fastening slider can be put around a hole of the pulling piece. Then, the horse-like hook is fixed to the first fixing base and the second fixing base of the fastening slider. The head portion of the horse-like hook is positioned in a groove of the first fixing base, while the tail portion of the horse-like hook is positioned to abut against the bottom of the groove of the second fixing base. The abdominal portion of the horse-like hook is supported on the end portion of the pulling piece. The stop portion of the horse-like hook extends into a sliding groove of the fastening slider via a horse-like hook hole between the first fixing base and the second fixing base. Finally, the cap is used to cover on the first fixing base and the second fixing base of the fastening slider. An elastic piece is inserted into the interior of the cap for abutting on the horse-like hook.
One aspect of the instant disclosure relates to a zipper head assembly structure and a sliding member thereof for increasing torsional strength.
One of the embodiments of the instant disclosure provides a zipper head assembly structure for increasing torsional strength, comprising: a sliding member, a locking hook member, a pull member, a cap body, and an elastic member. The sliding member has a first sliding portion, a second sliding portion corresponding to the first sliding portion, and a connection portion connected between the first sliding portion and the second sliding portion, wherein a first receiving space is formed between the first sliding portion and the second sliding portion, the first sliding portion has a first support body and a second support body corresponding to the first support body, the first support body has a hook groove, and the second support body has a hook hole communicated with the first receiving space. The locking hook member is movably disposed on the first support body and the second support body, wherein the locking hook member has a first end portion disposed inside the hook groove, a second end portion passing through the hook hole, and a contact portion connected between the first end portion and the second end portion. The pull member has a pivot portion disposed on an end side thereof, wherein the pivot portion of the pull member is movably disposed between the locking hook member and the first sliding portion. The cap body has a first side portion disposed on the first support body and a second side portion opposite to the first side portion and disposed on the second support body. The elastic member is disposed between the inner surface of the cap body and the locking hook member.
More particularly, the first sliding portion has an arc-shaped outer surface concaved downwardly from an upper side thereof, a second receiving space is formed between the contact portion of the locking hook member and the arc-shaped outer surface of the first sliding portion, and the pivot portion of the pull member is received inside the second receiving space. The first sliding portion has a first left side wall portion, a left side reinforced rib connected to the first left side wall portion, a first right side wall portion corresponding to the first left side wall portion, and a right side reinforced rib connected to the first right side wall portion and corresponding to the left side reinforced rib, the first left side wall portion and the left side reinforced rib are extended along a first predetermined direction from a first side of the first sliding portion to the second sliding portion, and the first right side wall portion and the right side reinforced rib are extended along a second predetermined direction from a second side of the first sliding portion to the second sliding portion. The second sliding portion has a second left side wall portion facing the first left side wall portion, a left side inclined surface connected to the second left side wall portion and facing the left side reinforced rib, a second right side wall portion facing the first right side wall portion and corresponding to the second left side wall portion, and a right side inclined surface connected to the second right side wall portion and facing to the right side reinforced rib, the second left side wall portion is extended along a third predetermined direction from a first side of the second sliding portion to the first sliding portion, and the second right side wall portion is extended along a fourth predetermined direction from a second side of the second sliding portion to the first sliding portion.
Another one of the embodiments of the instant disclosure provides a zipper head assembly structure for increasing torsional strength, comprising: a sliding member, a locking hook member, a pull member, a cap body, and an elastic member. The sliding member has a first sliding portion, a second sliding portion corresponding to the first sliding portion, and a connection portion connected between the first sliding portion and the second sliding portion, wherein the first sliding portion has a first support body and a second support body corresponding to the first support body, and the first sliding portion has an arc-shaped outer surface concaved downwardly from an upper side thereof. The locking hook member is movably disposed on the first support body and the second support body. The pull member has a pivot portion disposed on an end side thereof, wherein the pivot portion of the pull member is movably disposed between the locking hook member and the arc-shaped outer surface of the first sliding portion. The cap body is disposed on the first support body and the second support body to cover the locking hook member. The elastic member is disposed between the inner surface of the cap body and the locking hook member.
More particularly, the first sliding portion has a first left side wall portion, a left side reinforced rib connected to the first left side wall portion, a first right side wall portion corresponding to the first left side wall portion, and a right side reinforced rib connected to the first right side wall portion and corresponding to the left side reinforced rib, the first left side wall portion and the left side reinforced rib are extended along a first predetermined direction from a first side of the first sliding portion to the second sliding portion, and the first right side wall portion and the right side reinforced rib are extended along a second predetermined direction from a second side of the first sliding portion to the second sliding portion.
Yet another one of the embodiments of the instant disclosure provides a sliding member, comprising: a first sliding portion, a second sliding portion, and a connection portion. The second sliding portion corresponds to the first sliding portion. The connection portion is connected between the first sliding portion and the second sliding portion, wherein the first sliding portion has a first support body and a second support body corresponding to the first support body, and the first sliding portion has an arc-shaped outer surface concaved downwardly from an upper side thereof. More particularly, the first sliding portion has a first left side wall portion, a left side reinforced rib connected to the first left side wall portion, a first right side wall portion corresponding to the first left side wall portion, and a right side reinforced rib connected to the first right side wall portion and corresponding to the left side reinforced rib, the first left side wall portion and the left side reinforced rib are extended along a first predetermined direction from a first side of the first sliding portion to the second sliding portion, and the first right side wall portion and the right side reinforced rib are extended along a second predetermined direction from a second side of the first sliding portion to the second sliding portion.
Therefore, the second receiving space is increased due to the design of the arc-shaped outer surface that is concaved downwardly from the upper side of the first sliding portion, such that the size (such as diameter) of the pivot portion of the pull member is enlarged for increasing the torsional strength of the pull member. Hence, the pull member can pass a strict torsion test due to the increased torsional strength of the pull member.
To further understand the techniques, means and effects of the instant disclosure applied for achieving the prescribed objectives, the following detailed descriptions and appended drawings are hereby referred to, such that, and through which, the purposes, features and aspects of the instant disclosure can be thoroughly and concretely appreciated. However, the appended drawings are provided solely for reference and illustration, without any intention to limit the instant disclosure.
The embodiments of “a zipper head assembly structure for increasing torsional strength and a sliding member thereof” of the instant disclosure are described. Other advantages and objectives of the instant disclosure can be easily understood by one skilled in the art from the disclosure. The instant disclosure can be applied in different embodiments. Various modifications and variations can be made to various details in the description for different applications without departing from the scope of the instant disclosure. The drawings of the instant disclosure are provided only for simple illustrations, but are not drawn to scale and do not reflect the actual relative dimensions. The following embodiments are provided to describe in detail the concept of the instant disclosure, and are not intended to limit the scope thereof in any way.
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More particularly, the arc-shaped outer surface 110 may be composed of a single arc surface (or a single chamber) or a plurality of arc surfaces connected with each other. For example, referring to
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According to the above, the second sliding portion 12 has a second left side wall portion 121 facing the first left side wall portion 111, a left side inclined surface 122 connected to the second left side wall portion 121 and facing the left side reinforced rib 112, a second right side wall portion 123 facing the first right side wall portion 113 and corresponding to the second left side wall portion 121, and a right side inclined surface 124 connected to the second right side wall portion 123 and facing to the right side reinforced rib 114. In addition, the second left side wall portion 121 is extended along a third predetermined direction from a first side of the second sliding portion 12 to the first sliding portion 11, and the second right side wall portion 123 is extended along a fourth predetermined direction from a second side of the second sliding portion 12 to the first sliding portion 11.
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In conclusion, the second receiving space S2 is increased due to the design of the arc-shaped outer surface 110 that is concaved downwardly from the upper side of the first sliding portion 11, such that the size (such as diameter) of the pivot portion 30 of the pull member 3 is enlarged for increasing the torsional strength of the pull member 3. Hence, the pull member 3 can pass a strict torsion test due to the increased torsional strength of the pull member 3.
The aforementioned descriptions merely represent the preferred embodiments of the instant disclosure, without any intention to limit the scope of the instant disclosure which is fully described only within the following claims. Various equivalent changes, alterations or modifications based on the claims of the instant disclosure are all, consequently, viewed as being embraced by the scope of the instant disclosure.
Number | Date | Country | Kind |
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104108084 A | Mar 2015 | TW | national |
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