SIDE HOLDING STRUCTURE AND THERMAL TRANSFER PRINTING DEVICE
20240343035 ยท 2024-10-17
Inventors
Cpc classification
B41F1/54
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention belongs to the field of thermal transfer printing technology, and relates to a side holding structure, comprising: side openings arranged on the opposite sides of the housing, wherein a plurality of snap joints are arranged on the edge of the side openings; holding covers assembled in the side openings, a plurality of hooks detachably connected to the plurality of snap joints are arranged on the inner side of the ring mouth portion, at least one positioning groove is arranged on the top outside of the cover wall; and at least one inserting portion arranged on the top cover of the housing and fitted to the positioning groove. The present invention also provides a thermal transfer printing device using the side holding structure described above.
Claims
1. A side holding structure, characterized in that it comprises: side openings arranged on the opposite sides of the housing of the thermal transfer printing device, wherein a plurality of snap joints are arranged on the edge of the side openings; holding covers assembled in the side openings, wherein the holding cover comprises a ring mouth portion and a cover wall of the holding groove that is connected to the rear side of the ring mouth portion and concave inward, a plurality of hooks detachably connected to the plurality of snap joints are arranged on the inner side of the ring mouth portion, at least one positioning groove is arranged on the top outside of the cover wall; at least one inserting part arranged on the top cover of the top side of the housing and fitted to the positioning groove, wherein the inserting portion is detachably inserted into the positioning groove.
2. The side holding structure according to claim 1, characterized in that, a step portion is arranged on the outer ring edge of the side opening, the ring mouth portion is fitted to the step portion, and a hook avoidance opening is arranged on the step portion.
3. The side holding structure according to claim 1, characterized in that more than two sets of the positioning grooves and inserting portions are arranged.
4. The side holding structure according to claim 1, characterized in that the underside of the cover wall is designed to uptilt along the inner side from the opening.
5. The side holding structure according to claim 1, characterized in that a lines structure is arranged on the inner surface of the cover wall.
6. The side holding structure according to claim 1, characterized in that the top cover is detachably connected to the top side of the housing by snap-on structures.
7. A thermal transfer printing device, characterized in that it comprises: a base frame; a housing, mounted on the base frame, wherein side openings are arranged on its opposite sides, and a plurality of snap joints are arranged on the edge of the side openings; holding covers, comprising a ring mouth portion and a cover wall of the grip groove that is connected to the rear side of the ring mouth portion and concave inward, a plurality of hooks detachably connected to the plurality of snap joints arranged on the inner side of the ring mouth portion, and at least one positioning groove arranged on the top outside of the cover wall; a top cover, detachably connected to the top side of the housing, wherein at least one inserting portion fitted to the positioning groove is arranged on the edge, an inserting mouth for the inserting portion to pass through is arranged on the top side of the housing, and the inserting portion is detachably inserted into the positioning groove through the inserting mouth; a hot plate assembly, mounted on the underside of the base frame, generates heat required for thermal transfer printing when energized.
8. The thermal transfer printing device according to claim 7, characterized in that a cover ring is mounted on the upper end of the housing, and a sinking platform holding the top cover is arranged on the inner edge of the cover ring.
9. The thermal transfer printing device according to claim 8, characterized in that the top cover is detachably connected to the housing by snap-on structures.
10. The thermal transfer printing device according to claim 9, characterized in that a concave area is arranged in the middle part of the housing, handle bases connected on its both ends are arranged in the concave area, an avoidance opening relative to the concave area, and a handle top covering the upper side of the handle base are arranged in the middle part of the top cover; the snap-on structures comprise a first snap-on structure arranged between the edge of the top cover and the top edge of the housing, a second snap-on structure between the edge of the avoidance opening and that of the concave area, and a third snap-on structure between the top of the handle and the handle base.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
DESCRIPTION OF EMBODIMENTS
Embodiment 1
[0021] Referring to
[0022] Compared with the prior art, the holding covers S of the side holding structure provided in the present invention are detachably connected to the side openings 2.1 through the snap-on structures, featuring fast and convenient assembly. The holding covers S are firmly connected to the top cover 3 through the inserting and positioning structures between them, and will not be deformed and pulled out when force is applied. The user can pull out the holding covers S through the inserting mouth 2.20 using a tool.
[0023] In one embodiment, to improve the positioning effect, more than two sets of positioning grooves S1.2 and inserting portions 3.1 are arranged. In this embodiment, two sets of positioning grooves S1.2 and inserting portions 3.1 are arranged.
[0024] In one embodiment, the underside of the cover wall S2 is designed to uptilt along the inner side from the opening. This arrangement facilitates the user to place hands in.
[0025] In one embodiment, the lines structure is arranged on the inner surface of the cover wall S2. This arrangement increases the friction between the hands and the cover wall.
[0026] In one embodiment, the top cover 3 is detachably connected to the top side of the housing 2 by snap-on structures. The use of this connection structure can avoid a connection hole structure via screwed connection, exhibiting the product with better integrity and appearance.
Embodiment 2
[0027] Referring to
[0028] The top cover 3 is detachably connected to the top side of the housing 2, at least one inserting portion 3.1 fitted to the positioning groove S1.2 is arranged on the edge, the inserting mouth 2.20 for the inserting portion 3.1 to pass through is arranged on the top side of the housing 2, and the inserting portion 3.1 is detachably inserted into the positioning groove S1.2 through the inserting mouth 2.20; the hot plate assembly H is mounted on the underside of the base frame 1, and generates heat required for thermal transfer printing when energized.
[0029] The avoidance opening 2.2 is arranged on the upper end of the housing 2 relative to the positioning groove S1.2.
[0030] The cover ring 2 is arranged on the upper end of the housing 2, and the sinking platform 2. 1 holding the top cover 3 is arranged on the inner edge of the cover ring 2. The use of the above structure achieves more tight connection, better appearance, and more flexible shape. The cover ring 2 is fixed to the upper end of the housing 2 by the screw 2.1.
[0031] In one embodiment, the top cover 3 is detachably connected to the housing 2 by snap-on structures. Specifically, the concave area 200 is arranged in the middle part of the housing 2, the handle bases 201 connected on its both ends are arranged in the concave area 200, the avoidance opening 300 relative to the concave area 200, and the handle top 301 covering the upper side of the handle base 201 are arranged in the middle part of the top cover 3; the snap-on structures comprise the first snap-on structure (L11, L12) arranged between the edge of the top cover 3 and the top edge of the housing 2, the second snap-on structure (L21, L22) between the edge of the avoidance opening 300 and that of the concave area 200, and the third snap-on structure (L31, L32) between the top of the handle 301 and the handle base 201. With the above structure, the user can apply force as required through the top handle or the side holding structure. The top cover 3 is more tightly and stably connected to the housing 2 by the first snap-on structure (L11, L12), the second snap-on structure (L21, L22) and third snap-on structure (L31, L32).
[0032] According to the disclosure and instructions of the above specification, the technical personnel in the field to which the present invention belongs may change and modify the above embodiments. The present invention is not limited to the specific embodiments disclosed and described above. Some modifications and changes to the present invention should fall within the scope of protection of the claims of the present invention.