Abstract:
Dual-unit paving systems for covering a surface. The system includes pairs of first and second units. For each pair, the first and second unit have different respective shapes and sizes, and are matingly engageable for forming a hexagonal assembly having six, non-linear sides. The hexagonal assembly includes forming rotational tessellations. The first and second units are also shaped and matingly engageable so as to form horizontally aligned tessellations, as well as vertically aligned tessellations.
Abstract:
A dual-unit paving system for covering a surface is provided. The system comprises pairs of first and second units. For each pair, the first and second unit have different respective shapes and sizes, and are configured to be matingly engageable for forming a hexagonal assembly having six, non-linear sides. The hexagonal assembly allows forming rotational tessellations. The first and second units are also shaped and configured to be matingly engageable so as to form horizontally aligned tessellations, and also vertically aligned tessellations.
Abstract:
An artificial flagstone for use in combination with other similar flagstones for covering a surface with a natural random look, the flagstone having a generally hexagonal body comprising a first, second, third, fourth, fifth and sixth consecutive vertices; a first pair of first and second sides extending radially from the first vertex; a second pair of third and fourth sides extending radially from the third vertex; a third pair of fifth and sixth sides extending radially from the fifth vertex; wherein the sides of at least one of the first, second and third pair of sides have at least one split deviation along their length and are respectively rotational images of each other, and the artificial flagstone has no rotational symmetry when rotated about a central axis.
Abstract:
An artificial flagstone for use in combination with other similar flagstones for covering a surface with a natural random look, the flagstone having a generally hexagonal body comprising a first, second, third, fourth, fifth and sixth consecutive vertices; a first pair of first and second sides extending radially from the first vertex; a second pair of third and fourth sides extending radially from the third vertex; a third pair of fifth and sixth sides extending radially from the fifth vertex; wherein the sides of at least one of the first, second and third pair of sides have at least one split deviation along their length and are respectively rotational images of each other, and the artificial flagstone has no rotational symmetry when rotated about a central axis.
Abstract:
A deformable slat system for a building construction has one or more deformable slats(1). At least one of the aforementioned slats (1) has two slat parts (Ia, Ib) which are joined together in such a way that they are hingeable about a hinge line (2). This slat (1) is bendable and/or twistable in each first position where the slat parts (Ia, Ib) are hinged at a straight angle or a zero angle with respect to one another and is rigidified in each second position where the slat parts (Ia, Ib) are hinged at an angle differing from the straight angle or zero angle with respect to one another. The slat system includes means (13a, 13b, 19a, 19b, 14, 15, 16) for bringing the aforementioned slat (1) selectively into a first or a second position, and for bringing a slat (1), which has been brought into a first position, into a bent and/or twisted position. Furthermore, a slat (1) is provided for a slat system of this type, and also a building construction is provided with a slat system of this type.
Abstract:
An artificial flagstone for use in combination with other similar flagstones for covering a surface with a natural random look, the flagstone having a generally hexagonal body comprising a first, second, third, fourth, fifth and sixth consecutive vertices; a first pair of generally congruent irregularly-shaped first and second sides extending radially from the first vertex and being rotationally spaced from each other by an angle α of approximately 120°; a second pair of generally congruent irregularly shaped third and fourth sides extending radially from the third vertex and being rotationally spaced from each other by an angle β of approximately 120°; a third pair of generally congruent irregularly shaped fifth and sixth sides extending radially from the fifth vertex and being rotationally spaced from each other by an angle ω of approximately 120°; wherein the sides of each of the first, second and third pair of sides have at least one split deviation along their length and are respectively rotational images of each other, whereby in use in combination with other flagstones, each one of the sides is matingly engageable with the sides of an equivalent pair of sides of a neighboring flagstone.
Abstract:
An artificial flagstone for use in combination with other similar flagstones for covering a surface with a natural random look, the flagstone having a generally hexagonal body comprising a first, second, third, fourth, fifth and sixth consecutive vertices; a first pair of generally congruent irregularly-shaped first and second sides extending radially from the first vertex and being rotationally spaced from each other by an angle α of approximately 120°; a second pair of generally congruent irregularly shaped third and fourth sides extending radially from the third vertex and being rotationally spaced from each other by an angle β of approximately 120°; a third pair of generally congruent irregularly shaped fifth and sixth sides extending radially from the fifth vertex and being rotationally spaced from each other by an angle ω of approximately 120°; wherein the sides of each of the first, second and third pair of sides have at least one split deviation along their length and are respectively rotational images of each other, whereby in use in combination with other flagstones, each one of the sides is matingly engageable with the sides of an equivalent pair of sides of a neighbouring flagstone.
Abstract:
An artificial flagstone for use in combination with other similar flagstones for covering a surface with a natural random look, the flagstone having a generally hexagonal body comprising a first, second, third, fourth, fifth and sixth consecutive vertices; a first pair of generally congruent irregularly-shaped first and second sides extending radially from the first vertex and being rotationally spaced from each other by an angle α of approximately 120°; a second pair of generally congruent irregularly shaped third and fourth sides extending radially from the third vertex and being rotationally spaced from each other by an angle β of approximately 120°; a third pair of generally congruent irregularly shaped fifth and sixth sides extending radially from the fifth vertex and being rotationally spaced from each other by an angle ω of approximately 120°; wherein the sides of each of the first, second and third pair of sides have at least one split deviation along their length and are respectively rotational images of each other, whereby in use in combination with other flagstones, each one of the sides is matingly engageable with the sides of an equivalent pair of sides of a neighbouring flagstone.
Abstract:
4면 베이스 보드 및 상기 4면 베이스 보드에 고정 및 연결되는 4면 표층 보드를 포함하는 간편 설치용 바닥판재에 있어서, 상기 4면 베이스 보드는 4면 베이스 보드 본체 및 상기 4면 베이스 보드 본체의 에지들 상에 제공되는 보드형 후킹 설상부들을 포함하며; 상기 4면 베이스 보드 본체의 각각의 에지에는 일부 보드형 후킹 설상부들이 균일하게 제공되고; 상기 4면 베이스 보드 본체의 에지의 밑면에는 상기 보드형 후킹 설상부들에 대응하며 상기 보드형 후킹 설상부들 옆에 위치하는 버클들이 제공되며; 상기 4면 베이스 보드 본체의 2개의 에지 상의 상기 보드형 후킹 설상부들의 위치들과 상기 4면 베이스 보드 본체의 다른 2개의 에지 상의 상기 보드형 후킹 설상부들의 위치들은 지그재그 방식으로 배열되며, 또한 상기 4면 베이스 보드 본체의 2개의 에지 상의 상기 버클들의 위치들과 상기 4면 베이스 보드 본체의 다른 2개의 에지 상의 상기 버클들의 위치들은 지그재그 방식으로 배열되는 것을 특징으로 한다. 상기 기술 상태와 비교하여, 본 발명은 접착제나 또는 쇠못으로 고정시킬 필요없이 매우 편리하게 설치 및 고정되는 바닥판재를 가질 수 있다는 장점을 가지며, 또한 사용이 편리하며 구조가 간단하고, 상기 장식용 스트립이 채용된 후, 추가적인 양호한 장식 효과를 장점으로 가질 수 있다.
Abstract:
PURPOSE: An assembling floor slab is provided to display the various pattern on the floor and to prevent clearance between the slabs by arranging and varying the slabs, and to regulate the size by forming the cutting groove in the floor slab. CONSTITUTION: An assembling floor slab(10) is composed of a base plate(20) and a slab(30). Male and female links(21a,21b) are formed in the circumference of the base plate to connect the other base plate of the other floor slab. Plural assembling projections(22) are arranged in the upper part of the base plate corresponding to the alignment of the slabs. Assembling grooves(32) are formed and arranged longitudinally in the lower part of the slab corresponding to the assembling projections of the base plate. The upper part of the assembling projection is wide and the lower part of the assembling projection is narrow.